MINISTRY OF
PUBLIC SECURITY OF VIETNAM
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SOCIALIST
REPUBLIC OF VIETNAM
Independence - Freedom - Happiness
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No.
123/2021/TT-BCA
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Hanoi, December
28, 2021
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CIRCULAR
NATIONAL TECHNICAL
REGULATIONS ON FIREFIGHTING APPARATUS
Pursuant to the Law on Fire Prevention and
Firefighting dated 2001;
Pursuant to the Law on Amendments to the Law on
Fire Prevention and Firefighting dated 2013;
Pursuant to the Law on Technical Regulations and
Standards dated 2006;
Pursuant to the Law on People’s Public Security
Force dated 2018;
Pursuant to Decree No. 127/2007/ND-CP dated
August 01, 2007 of the Government elaborating the Law on Technical Regulations
and Standards;
Pursuant to Decree No. 78/2018/ND-CP dated May
16, 2018 of the Government on amendment to the Decree No. 127/2007/ND-CP;
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Pursuant to Decree No. 136/2020/ND-CP dated
November 24, 2020 of the Government elaborating the Law on Fire Prevention and
Firefighting and the Law on amendments to the Law on Fire Prevention and
Firefighting;
At request of Director of Central Department of
Fire safety, Firefighting, and Rescue;
The Minister of Public Security promulgates
Circular on National Technical Regulations on “Firefighting Apparatus”.
Article 1. The National Technical
Regulations on “Firefighting Apparatus - QCVN 03:2021/BCA” is attached hereto.
Article 2. Entry into force
This Circular comes into force from June 28, 2022.
Article 3. Organizing implementation
1. Director of the Central Department of Fire
safety, Firefighting, and Rescue are responsible for guiding and inspecting the
implementation of this Circular.
2. Heads of entities affiliated to Ministry of
Public Security, Directors of Police authorities of provinces and
central-affiliated cities, and relevant agencies, organizations, and
individuals are responsible for the implementation of this Circular.
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MINISTER
General To Lam
QCVN 03:2021/BCA
NATIONAL TECHNICAL
REGULATIONS ON FIREFIGHTING APPARATUS
PREFACE
The QCVN 03:2021/BCA is compiled by the Central
Department of Fire safety, Firefighting, and Rescue, appraised by the Ministry
of Science and Technology, and promulgated by the Ministry of Public Security
under Circular No. 123/2021/TT-BCA dated December 28, 2021.
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NATIONAL
TECHNICAL REGULATIONS ON FIREFIGHTING APPARATUS
1.
GENERAL PROVISIONS
1.1. Scope
1.1.1. These technical regulations prescribe
the limits of technical specifications and management of inspection of
firefighting apparatus produced, assembled, and modified in Vietnam or imported
prior to being introduced into circulation in Vietnam (name and HS code of
firefighting apparatus are specified under Part 2 hereof).
1.1.2. These technical regulations do not
apply to firefighting apparatus imported in form of sample products or products
for exhibition or display; firefighting apparatus temporarily imported, or in
transit and not for sale or use in Vietnam.
1.2. Regulated entities
1.2.1. Organizations and individuals
manufacturing, assembling, modifying in Vietnam, and importing firefighting
apparatus.
1.2.2. Agencies and organizations entitled
to conduct firefighting apparatus inspection.
1.2.3. Agencies and organizations relevant
to quality control of firefighting apparatus.
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The following reference documents are necessary for
the application of this document. If a reference document is mentioned together
with its publishing year, only the referenced edition shall prevail. If a
reference document is not mentioned together with its publishing year, the
latest version and all its amendments and revisions (if any) shall prevail:
TCVN 4208: 2009 - Vane pump - General technical
requirements;
TCVN 9222: 2012 (ISO 9906: 1999) - Rotodynamic
pumps - Hydraulic performance acceptance tests - Grades 1 and 2;
TCVN 8531: 2010 (ISO 9905:1994) - Technical
specifications for centrifrigal pumps - Class I;
TCVN 12110: 2018 - Fire protection - Portable fire
centrifugal pump with internal combustion engine - Technical requirements and
test methods;
TCVN 5740 - Fire fighting equipment - Fire fighting
hoses - Fire rubberized hoses made of synthetic thrends;
TCVN 6379:1998 - Fire protection equipment – Fire
hydrant – Technical requirements;
TCVN 5739 - Fire – Fighting equipment – Coupling
heads;
TCVN 7026:2013 (ISO 7165:2009) - Fire fighting -
Portable fire extinguishers - Performance and construction;
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TCVN 12314-1:2018 - Fire fighting - Automatic
diffusion fire extinguishers;
TCVN 6102:1996 (ISO 7202:1987) Fire protection –
Fire extinguishing media – Powder;
TCVN 7278-1:2003 (ISO 7302 - 1 : 1995) - Fire
extinguishing media – Foam concentrates – Part 1: Specification for low
expansion foam concentrates for top application to water – immiscible liquids;
TCVN 7278-2:2003 (ISO 7203 - 2 : 1995) - Fire
extinguishing media – Foam concentrates – Part 2: Specification for medium and
high expansion foam concentrates for top application to water-immiscible
liquids;
TCVN 9311-1:2012 - Fire - resistance test- Elements
of building construction - Part 1: General requirements;
TCVN 9311-3:2012 (ISO 834-3:1994) - Fire -
resistance test - Elements of building construction - Part 3: Commentary on
test method and test data application;
TCVN 9311-4:2012 (ISO 834-4:2000) - Fire -
resistance test - Elements of building construction - Part 4: Specific
requirements for loadbearing vertical separating elements;
TCVN 9311-5:2012 (ISO 834-5:2000) - Fire -
resistance test - Elements of building construction - Part 5: Specific
requirements for loadbearing horizontal separating elements;
TCVN 9311-6:2012 (ISO 834-6:2000) - Fire -
resistance tests - Elements of building construction- Part 6: Specific
requirements for beams;
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TCVN 9311-8:2012 (ISO 834-8:2000) - Fire -
resistance test- Elements of building construction - Part 8: Specific
requirements for non - loadbearing vertical separating elements;
ISO 834-9:2003 Fire-resistance tests - Elements of
building construction - Part 9: Specific requirements for non-loadbearing
ceiling elements;
ISO 834-10:2014 Fire resistance tests - Elements of
building construction - Part 10: Specific requirements to determine the
contribution of applied fire protection materials to structural steel elements;
ISO 834-11:2014 Fire resistance tests - Elements of
building construction — Part 11: Specific requirements for the assessment of
fire protection to structural steel elements;
ISO 3009: 2003 Fire resistance tests - Elements of
building construction - Glazed elements;
BS EN 13381-3:2015 Test methods for determining the
contribution to the fire resistance of structural members Applied protection to
concrete members;
TCVN 9383:2012 - Fire resistance test - Fire door
and Shutter Assemblies;
BS EN 13381-4:2014 Test methods for determining the
contribution to the fire resistance of structural members Part 4: Applied
passive protection to steel members;
ISO 10294-1:1996 - Fire resistance tests - Fire
dampers for air distribution systems - Part 1: Test method;
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ISO 10294-4:2001 - Fire resistance tests — Fire
dampers for air distribution systems - Part 4: Test of thermal release
mechanism;
ASTM 6064 - 11(2015) Standard Specification for
HFC-227ea, 1,1,1,2,3,3,3-Heptafluoropropane (CF3CHFCF3)
ISO 3363:2015 Fluorochlorinated hydrocarbons for
industrial use — Determination of acidity — Titrimetric method
ISO 3427:2015 Gaseous halogenated hydrocarbons
(liquefied gases) — Taking of a sample
TCVN 7568-2:2013 (ISO 7240-2:2003) - Fire detection
and alarm systems - Part 2: Control and indicating equipment
TCVN 7568-7:2015 (ISO 7240-7:2011) - Fire detection
and alarm systems - Part 7: Point-type smoke detectors using scattered light,
transmitted light or ionization;
TCVN 7568-5:2013 (ISO 7240-5:2003) - Fire detection
and alarm systems – Part 5: Point-type heat detectors;
TCVN 7568-10:2015 (ISO 7240-10:2012) - Fire
detection and alarm systems - Part 10: Point-type flame detectors;
TCVN 7568-12:2015 (ISO 7240-12:2014) - Fire
detection and alarm systems - Part 12: Line type smoke detectors using a
transmitted optical beam;
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TCVN 7568-8:2015 (ISO 7240-8:2014) - Fire detection
and alarm systems - Part 8: Point-type fire detectors using a carbon monoxide
sensor in combination with a heat sensor;
TCVN 7568-3:2015 (ISO 7240-3:2010) - Fire detection
and alarm systems - Part 3: Audible alarm devices;
TCVN 7568-11:2015 (ISO 7240-11:2011) - Fire
detection and alarm systems - Part 11: Manual call points;
TCVN 7568-23:2016 (ISO 7240-23:2013) - Fire
detection and alarm systems - Part 23: Visual alarm devices;
TCVN 7161-1:2009 (ISO 14520-1 : 2006) - Gaseous
fire - extinguishing systems - Physical properties and system design - Part 1:
General requirements;
TCVN 7161-9:2009 (ISO 14520-9 : 2006) - Gaseous
fire-extinguishing systems - Physical properties and system design - Part 9:
HFC 227ea extinguishant;
ISO 14520-5:2019 - Gaseous fire-extinguishing
systems - Physical properties and system design - Part 5: FK-5-1-12
extinguishant;
TCVN 7161-13:2009 (ISO 14520-13 : 2005) - Gaseous
fire-extinguishing systems - Physical properties and system design - Part 13:
IG-100 extinguishant;
EN 12094-1:2003- Fixed firefighting systems.
Components for gas extinguishing systems. Requirements and test methods for
electrical automatic control and delay devices;
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TCVN 7336:2003 - Fire protection – Automatic
sprinkler systems – Design and installation requirements;
TCVN 6305-1:2007 (ISO 6182-1:2004) - Part 1: Requirements
and test methods for sprinklers;
TCVN 6305-7:2006 (ISO 6182-7:2004) - Part 7:
Requirements and test methods for early suppression fast response (ESFR)
sprinklers;
TCVN 6305-9:2013 (ISO 6182-9:2005 - Part 9:
Requirements and test methods for water mist nozzles;
TCVN 6305-10:2013 (ISO 6182-10:2006) - Part 10:
Requirements and tests methods for domestic sprinklers;
TCVN 6305-2:2007 (ISO 6182-2:2005) - Part 2:
Requirements and test methods for wet alarm valves, retard chambers and water
motor alarms;
TCVN 6305-5:2009 (ISO 6182-5:2006) - Part 5:
Requirements and test methods for deluge valves;
TCVN 12653-1:2019 - CPVC pipe and fittings used in
automatic sprinkler system - Part 1: Technical requirements;
TCVN 12653-2:2019 - CPVC pipe and fittings used in
automatic sprinkler system - Part 2: Test methods
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TCVN 12366:2018 (ISO 11999-3:2015) - PPE for
Firefighters - Test methods and requirements for PPE used by firefighters who
are at risk of exposure to high levels of heat and/or flame while fighting
fires occurring in structures;
TCVN 7205:2002 (ISO 15025:2000) - Protective
clothing - Protective against heat and flame. Method of test for limited flame
spread;
TCVN 7206:2002 (ISO 17493:2000) - Clothing and
equipment for protection against heat. Test method for convective heat
resistance using a hot air circulating oven;
ISO 13934-1:2013 - Textiles — Tensile properties of
fabrics — Part 1: Determination of maximum force and elongation at maximum
force using the strip method;
ISO 3146: 2000 - Plastics - Determination of
melting behaviour (melting temperature or melting range) of semi-crystalline
polymers by capillary tube and polarizing- microscope methods;
ISO 13937-2:2000 - Textiles - Tear properties of
fabrics - Part 2: Determination of tear force of trouser-shaped test specimens
(Single tear method);
TCVN 12366-3:2018 (ISO 11999-3:2015) - PPE for
Firefighters - Test methods and requirements for PPE used by firefighters who
are at risk of exposure to high levels of heat and/or flame while fighting
fires occurring in structures - Part 3: Clothing;
TCVN 12366-5:2019 (ISO 11999-5:2015) - PPE for
firefighters - Test methods and requirements for PPE used by firefighters who
are at risk of exposure to high levels of heat and/or flame while fighting
fires occurring in structures - Part 5: Helmets;
ISO 13935-2:2014 -Textiles - Seam tensile
properties of fabrics and made-up textile articles - Part 2: Determination of
maximum force to seam rupture using the grab method;
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ISO 811:1981 - Textile fabrics - Determination of
resistance to water penetration - Hydrostatic pressure test;
ISO 6530:2005 - Protective clothing - Protection
against liquid chemicals - Test method for resistance of materials to
penetration by liquids;
TCVN 12367:2018 - PPE for Firefighters -
Firefighting Footwear - Technical requirements and testing methods;
TCVN 7651:2007 (ISO 20344: 2004) - Personal
protective equipment- Test methods for footwear;
TCVN 7652:2007 (ISO 20345: 2004) - Personal
protective equipment – Safety footwear;
QCVN 06:2021/BXD: National Technical Regulation on
Fire Safety of Buildings and Constructions;
QCVN 02:2020/BCA: National Technical Regulation on
Stationary Pumps for Fire Protection.
1.4. Definitions
In this document, the terms below are construed as
follows:
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Firefighting apparatus
Means mechanical devices, equipment, machinery,
tools, chemicals, and combat gear used specifically for firefighting, rescuing
humans, and saving property.
1.4.2.
Fire pump
Means an assembly consisting of pump body,
transmission engine, control mechanism (if any), and other accessories,
creating pressure and flow rate necessary for firefighting.
1.4.3.
Fire hose
Means a high-pressure hose that carries
extinguishants to the fire.
A fire hose consists of a hose and couplings.
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Spray nozzle
Means a portable firefighting apparatus which is
connected directly to fire hose or via couplings to deliver extinguishants.
Spray nozzle consists of nozzle body and coupling.
1.4.5.
Fire hydrant
Means a specialized device fitted onto water supply
pipeline to collect water for firefighting. Fire hydrant consists of valve,
body, and outlets with standard dimensions.
1.4.6.
Fire hose couplings
Means a device that connects fire hoses, connects
fire hose to other firefighting apparatus.
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Fire extinguisher
Means a device that contains fire extinguishant and
is capable of spraying, directing fire extinguishant to the fire by compressed
air.
Compressed air that propels fire extinguishant
towards the fire can be compressed directly in fire extinguishant containment
area or in separate container.
1.4.8.
Portable fire extinguisher
Means a fire extinguisher that is designed to be
carried and operated by hand and weights no more than 20 kg.
1.4.9.
Wheeled fire extinguisher
Means a fire extinguisher that is mounted on wheels
and weight more than 20 kg to 450 kg and is designed to be operated and
transported to the fire by one person.
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Automatic diffusion dry-powder fire
extinguisher
Means an extinguisher that uses powder as
extinguishant and automatically activates in the event of ambient temperature
or fire exceeding the working threshold (working temperature).
The delivery of fire extinguishant can be done by:
- Compressed air directly from the extinguisher
(with unchanged pressure inside the container).
- Activation of cylinder of propellant gas
(increase in pressure at the moment of use by the release of pressurized gas in
a separate high-pressure cylinder).
1.4.11.
Hanging type automatic diffusion dry-powder
fire extinguisher
Means an automatic diffusion dry-powder fire
extinguisher that is fixed by hanging (to the ceiling, to the wall, beneath the
roof, etc.).
1.4.12.
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Means a solid, salt-type extinguishant consisting
of one or many chemical components mixed with additives to supplement its
properties.
1.4.13.
Foam concentrate
Means a liquid chemical which when mixes with water
in correct proportions will create foaming solution.
1.4.14.
Fire door
Means an assembly of parts such as frame, guide
rail, door leaf, rolling shutter or accordion doors, etc. which is used to seal
doorways in separating elements. These doors must also contain other parts such
as side strips, overhead strips, vision panels, and other accessories,
including washers (to prevent the passage of fire or smoke or ventilation or
soundproofing, etc.).
1.4.15.
Separating element
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1.4.16.
Loadbearing horizon separating element
Means horizontal load-bearing floors and roofs
which act as fire separation assembly or fire shield. These components separate
a building into fire compartments or fire proof zones or separate fire passage
to adjacent buildings in order to prevent fire from reaching other compartments
or adjacent buildings.
1.4.17.
Vertical separating element
Means vertical load-bearing parts of a building
which act as fire separation assembly or fire shield. These components separate
a building into fire compartments or fire proof zones or separate fire passage
to adjacent buildings in order to prevent fire from reaching other compartments
or adjacent buildings.
1.4.18.
Non-loadbearing vertical separating element
Means vertical non-load bearing parts of a building
which act as fire separation assembly or fire shield. These components separate
a building into fire compartments or fire proof zones or separate fire passage
to adjacent buildings in order to prevent fire from reaching other compartments
or adjacent buildings.
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Automatic fire detection and alarm system
Means a system that automatically detects and
notifies location of the fire.
1.4.20.
Automatic fire detector
Means a device that is sensitive to factors
associated with fire (increase in temperature, smoke, light emission) and
transmits appropriate signal to fire alarm control.
1.4.20.1
Combination detector
Means a fire detector that incorporates at least 2
principles of detecting fire.
1.4.20.2
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Means a fire detector that is sensitive to
radiation emitted by the flame.
1.4.20.3
Heat detector
Means a fire detector that is sensitive to unusual
temperature and/or increase in ambient temperature of where the fire detector
is installed.
1.4.20.4
Smoke detector
Means an automatic fire detector that is sensitive
to smoke created by solid or liquid particles produced by combustion and/or
thermal decomposition.
1.4.20.5
Photoelectric smoke detector
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1.4.20.6
Ionization smoke detector
Means a smoke detector that is sensitive to
combustion products which potentially affect flows of ions in the detector.
1.4.20.7
Point detector
Means a fire detector that reacts to fire within a
zone around a sensor.
1.4.21.
Fire alarm control panel
Means a device that powers automatic fire detectors
and:
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- Transmits fire detection signal to designated
receivers and/or automatic firefighting apparatus.
- Examines regular operation of the system,
indicates malfunction of the system such as broken wires, short circuit, etc.
- Automatically controls operation of other
peripherals.
1.4.22.
Manual call point
Means a device that initiates fire alarm manually.
1.4.23.
Extinguishant cylinder
Means a device that contains gaseous extinguishant
and supplies gaseous fire-extinguishing systems.
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Nozzle
Means an apparatus which discharges extinguishant
and is positioned on predetermined paths in sufficient quantity over design
area.
1.4.24.1.
Sprinkler
Means a heat-sensitive nozzle which is designed to
be activated at a predetermined temperature.
1.4.24.2.
Drencher
Means a nozzle without a heat-sensitive mechanism
which is affiliated with deluge system, controlled by a fast opening valve
(deluge valve), activated by an automatic fire detection and fire alarm system
or sprinklers installed the same area.
1.4.25.
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Emergency lights shall be used when power supply
for regular lighting is disrupted; emergency lighting includes emergency escape
lighting, lighting in high-risk work areas, and backup lighting.
1.4.26.
Emergency escape lighting
Means a part of emergency lighting system which
provides directional lighting to ensure safety for people evacuating from the
area or resolving dangerous situations before evacuating from the area.
1.4.27.
Helmets
Means equipment which protects head and neck of
firefighters.
1.4.30.
Firefighting footwear
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1.4.31.
Fire fighting clothing
Means outfit which protects upper body, lower body,
neck, arms, and legs but offers no protection for head, hands, and feet of
firefighters.
1.4.32.
Batch
Means a combination of a type of products, goods
with the same technical specifications and produced in the same batch on the
same production line.
1.5 General requirements
1.5.1. Type of firefighting apparatus
declared by manufacturing, importing organizations and individuals must conform
to the list of firefighting apparatus under Part 2 of this document. If the
type of firefighting apparatus has not been clearly defined, manufacturing,
importing organizations and individuals must cooperate with competent
authorities in identifying the firefighting apparatus.
1.5.2. Firefighting apparatus must be
managed, preserved, and maintained in accordance with regulations, relevant
technical standards, technical regulations, or manufacturers’ instructions.
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Firefighting apparatus that is for sale on the
market and has not been inspected as per the law must be dealt with as per the law.
2.
TECHNICAL PROVISIONS
2.1. Fire pump
No.
Article
Technical
specification
Requirement
Testing method
Sampling method
and guidelines
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2.1.1
Fixed centrifugal fire pump, of a type using
electric motor
1. Flow rate, pressure, rotation per minute of
pump
2.3 TCVN 4208: 2009
Install pump on testing rig with operational
stability in accordance with 5.4.2 TCVN 9222:2012; Operate the pump until
stability is reached and measure along characteristic curves in accordance
with 6.3.4.1 TCVN 8531:2010; Determine flow rate and total head in accordance
3.19 and 6.1.2 TCVN 9222:2012;
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10 apparatus, collect 1
sample;
- If a batch has >10 apparatus and ≤ 20
apparatus, collect 2 samples
- If a batch has > 20 apparatus and ≤ 100
apparatus, collect 3 samples;
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8413.70.11
2. Determine working current of the engine at
110% of the maximum flow rate (for pump designed to work at one area)
The engine does not overload
Install pump on testing rig with operational
stability in accordance with 5.4.2 TCVN 9222:2012; measure current intensity
of each phase at point corresponding to 110% flow rate
3. Airtightness of pump casing.
Pressure is not leaked during one minute of
testing (at maximum pressure with outlet sealed)
Visual inspection:
Start and slowly seal outlet of the pump, observe
pressure gauge to choose a point in which the pump operates at maximum
pressure, maintain the pump at that point and inspect the casing
2.1.2
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1. Flow rate, pressure, rotation per minute of
pump
2.3 TCVN 4208: 2009
Install pump on testing rig to operational
stability according to 5.4.2 TCVN 9222:2012; Operate the pump until the pump
is stable, measure at working points along characteristic curves in
accordance with 6.3.4.1 TCVN 8531:2010;
Determine flow rate and full head in accordance
with 3.19 and 6.1.2 TCVN 9222:2012;
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10 apparatus, collect 1
sample;
- If a batch has >10 apparatus and ≤ 20
apparatus, collect 2 samples
- If a batch has > 20 apparatus and ≤ 100
apparatus, collect 3 samples;
- If a batch has > 100 apparatus, collect 5
sample
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2. Determine working capacity of the engine at
110% of the maximum flow rate (for pump designed to work at one area)
Rotation per minute of the engine does not exceed
100% of the nameplate rotation per minute
Install pump on testing rig with operational
stability in accordance with 5.4.2 TCVN 9222:2012;
Measure rotation speed at point corresponding to
110% flow rate
3. Airtightness of pump casing
Pressure is not leaked during one minute of
testing (at maximum pressure with outlet sealed)
Visual inspection: Start and slowly seal outlet
of the pump, observe pressure gauge to choose a point in which the pump
operates at maximum pressure, maintain the pump at that point and inspect the
casing
2.1.3
Portable centrifugal fire pump, of a type
using internal combustion engine
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Articles 5, 6.1.11 TCVN 12110: 2018;
Overall dimensions must conform to technical specifications
published by manufacturers
Examine dimensions using rulers precise to 1 mm;
Examine dimensions of suction inlets, outlets
using rulers precise to 0,1 mm
Examine weight in accordance with 7.2.4 TCVN
12110:2018 using scale with appropriate capacity and 0,5 kg increment
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10 apparatus, collect 1
sample;
- If a batch has >10 apparatus and ≤ 20
apparatus, collect 2 samples
- If a batch has > 20 apparatus and ≤ 100
apparatus, collect 3 samples;
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8413.70.11
2. General requirements
6.1.2, 6.1.3, 6.1.4, 6.1.5, 6.1.6, 6.1.7, 6.1.8,
6.1.9 TCVN 12110: 2018
7.2.1, 7.2.2 TCVN 12110: 2018;
3. Flow rate, pressure, rotation per minute of
pump
2.3 TCVN 4208: 2009 and Schedule 1 TCVN 12110:
2018
Install pump on testing rig with operational
stability in accordance with 5.4.2 TCVN 9222:2012;
Operate the pump to operational stability and
measure along working points of characteristic curve in accordance with
6.3.4.1 TCVN 8531:2010;
Determine flow rate and full head in accordance
with 3.19 and 6.1.2 TCVN 9222:2012;
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6.2.2 TCVN 12110: 2018
7.2.5 TCVN 12110: 2018
5. Cooling system
6.2.3 TCVN 12110: 2018
7.2.6 TCVN 12110: 2018
6. Electrical system
6.2.4 TCVN 12110: 2018
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7. Noise-cancelling equipment
6.2.5 TCVN 12110: 2018
7.2.8 TCVN 12110: 2018
8. Outlets, inlets
6.3.4, 6.3.5 TCVN 12110: 2018;
7.2.13 TCVN 12110: 2018
9. Airtightness of pump casing
6.1.10 TCVN 12110: 2018
7.2.3 TCVN 12110: 2018
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6.3.6 TCVN 12110: 2018
Test in accordance with 7.2.15 TCVN 12110:2018,
measure suction lift at working points in accordance with manufacturers’
publication
11. Vacuum priming ability
6.3.6 TCVN 12110: 2018
Test in accordance with 7.2.15 TCVN 12110:2018
Note:
(1) In regard to fire pumps located in work
items and structures with specific technical requirements mentioned under
National Standards and National Technical Regulations, conduct additional tests
to examine and assess technical features in accordance with respective
technical requirements;
(2) In regard to fire pumps with minimum
capacity of 150 kW imported as CBU for each project and construction,
examination and testing can be conducted at the project or construction site.
The installation and testing at project and construction site must conform to
manufacturers’ instructions and applicable technical standards, regulations.
2.2. Common firefighting apparatus
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Article
Technical
specification
Requirement
Testing method
Sampling method
and guidelines
HS Code
2.2.1
Fire hose
1. Weight (kg)
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TCVN 5740
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 200 apparatus, collect 10
samples;
- If a batch has >200 apparatus and ≤ 1.000
apparatus, collect 20 samples
- If a batch has > 1.000 apparatus and ≤ 2.000
apparatus, collect 30 samples;
- If a batch has > 2.000 apparatus, collect 40
samples
5909.00.10
2. Length (m)
TCVN 5740
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3. Internal diameter (mm)
TCVN 5740
TCVN 5740
4. Pressure (MPa)
Testing - working
TCVN 5740
TCVN 5740
5. Anti-absorbent layer
TCVN 5740
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6. Strength of connection between inner
anti-absorbent layer and outer jacket
TCVN 5740
TCVN 5740
7. Coupling
TCVN 5739
TCVN 5739
2.2.2.
Spray nozzle
1. Rigidity and airtightness
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6.1 TCVN 13261:2021
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 100 apparatus, collect 3
samples;
- If a batch has >100 apparatus and ≤ 200
apparatus, collect 6 samples
- If a batch has > 200 apparatus and ≤ 600
apparatus, collect 9 samples;
- If a batch has > 600 apparatus, collect 12
samples
8424.2029
2. Spray pattern
5.1.3 and 5.1.4
TCVN 13261:2021
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3. Spray flow
5.2.1.3 and
5.2.2.3 TCVN 13261:2021
6.2 and 6.3 TCVN 13261:2021
4. Collision resistance
5.1.5 TCVN
13261:2021
6.4 TCVN 13261:2021
5. Corrosion resistance
5.1.5 TCVN
13261:2021
6.5 TCVN 13261:2021
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Fire hydrant
1. Geometry shape and weight of the hydrant
4.1, 5.15 TCVN
6379:1998;
6.3, 6.4, 6.5, 6.6, 6,7 6.9, TCVN 6379:1998;
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10 apparatus, collect 1
sample;
- If a batch has >10 apparatus and ≤ 20
apparatus, collect 2 samples
- If a batch has > 20 apparatus and ≤ 30
apparatus, collect 3 samples;
- If a batch has > 30 apparatus, collect 4
samples
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2. Geometry dimensions of valves
4.2, 5.15 TCVN
6379:1998;
6.4 TCVN 6379:1998
3. Pressure drop factor
4.1 TCVN 6379:1998
6.8 TCVN 6379:1998
4. Test pressure
5.2 TCVN 6379:1998
6.10 TCVN 6379:1998
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5.3 TCVN 6379:1998
6.11 TCVN 6379:1998
6. Opening and closing torque
5.3 TCVN 6379:1998
6.12 TCVN 6379:1998
7. Stagnant water in hydrant
5.5 TCVN 6379:1998
6.14 TCVN 6379:1998
8. Parameters and geometry shape of drain holes
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6.15 TCVN 6379:1998
9. Outer screw thread of joints connecting to
hydrant lead of underground hydrant
5.7 TCVN 6379:1998
TCVN 1917:1993
10. Compatibility of outlets of above-ground
hydrant and couplings
5.8 TCVN 6379:1998
6.7. TCVN 6379:1998
11. Screw thread of operating stem
5.9 TCVN 6379:1998
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12. Thread connection between flange and hydrant
barrel
5.10 TCVN
6379:1998
TCVN 1917:1993
13. Coating paint
5.17 TCVN
6379:1998
Visual inspection
14. Position of stem nut
5.19 TCVN
6379:1998
6.7 TCVN 6379:1998
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Fire hose coupling
1. Design, visual appearance
TCVN 5739
TCVN 5739
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10 apparatus, collect 2
samples;
- If a batch has >10 apparatus and ≤ 100
apparatus, collect 4 samples
- If a batch has > 100 apparatus and ≤ 500
apparatus, collect 6 samples;
- If a batch has > 500 apparatus, collect 10
samples
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2. Structures
3. Dimensions
4. Durability, tightness
5. Collision resistance
6. Corrosion resistance
7. Labeling
2.2.5.
Portable fire extinguisher
1. Extinguishant
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Conform to 2.3 under this document
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 5000 apparatus, collect 18
samples;
- If a batch has >5000 apparatus and ≤ 50000
apparatus, collect 36 samples
- If a batch has > 50000 apparatus, collect 54
samples;
8424.1090
2. Ability to withstand pressure in regard to
low-pressure extinguishers
6.1 TCVN 7026:2013
9.7.1 TCVN 7026:2013
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7.2.1.1, 7.2.2.1, 7.2.3.1 TCVN 7026:2013
7.2.1.2, 7.2.2.2, 7.2.3.2 TCVN 7026:2013
4. Resistance to change in temperature
7.3.1 TCVN 7026:2013
7.3.2 TCVN 7026:2013
5. Collision resistance
7.5.1.1 TCVN 7026:2013
7.5.1.2 TCVN 7026:2013
6. Vibration resistance
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7.5.2.5.2 TCVN 7026:2013 7.5.2.5.3 TCVN 7026:2013
7. Corrosion resistance
7.6.1 TCVN 7026:2013 7.6.2 TCVN 7026:2013
7.6.1 TCVN 7026:2013 7.6.2 TCVN 7026:2013
8. Features in case of test fire
8.1 TCVN 7026:2013
8.2 through 8.8 TCVN 7026:2013
2.2.6.
Wheeled fire extinguisher
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Conform to 2.3 under this document (in regard to
extinguishers that use powder or foam concentrate), except the ability to
extinguish fire
2.3 of this document
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 1000 apparatus, collect 11
samples;
- If a batch has >1000 apparatus and ≤ 5000
apparatus, collect 22 samples
- If a batch has > 5000 apparatus and ≤ 10000
apparatus, collect 33 samples;
- If a batch has > 10.000 apparatus, collect
44 samples
8424.1090
2. Ability to withstand pressure in regard to
low-pressure extinguishers
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8.3.1.2 TCVN 7027:2013
3. Minimum duration of effective spray and spray
range
6.2.1.1, 6.2.1.2, 6.2.1.3 TCVN 7027:2013
6.2.2.2 TCVN 7027:2013
4. Resistance to change in temperature
6.3.1 TCVN 7027:2013
6.3.2 TCVN 7027:2013
5. Corrosion resistance
6.6.1 TCVN 7027:2013 6.6.2 TCVN 7027:2013
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6. Features in case of test fire
7.1 TCVN 7027:2013
7.2 TCVN 7027:2013
2.2.7.
Automatic diffusion dry-powder fire
extinguisher - Hanging type dry-powder extinguisher
1. Extinguishant
Conform to 2.3 under this document, except the
ability to extinguish fire
Conform to 2.3 under this document
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
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- If a batch has >100 apparatus and ≤ 1000
apparatus, collect 10 samples
- If a batch has > 1000 apparatus and ≤ 5000
apparatus, collect 15 samples;
- If a batch has > 5000 apparatus, collect 20
samples
8424.1090
2. Working temperature of thermal sensor
6.3 TCVN 6305-1
7.7 TCVN 6305-1
3. Spray effectiveness and duration
4.1.8 TCVN 12314- 1:2018
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4. Extinguishing effectiveness
4.1.9 TCVN 12314- 1:2018
5.5 TCVN 12314- 1:2018
5. Nozzle and hose
4.4 TCVN 12314- 1:2018
Visual inspection
6. Cap, safety valve, and pressure gauge
4.5 TCVN 12314- 1:2018
Cap, safety valve: Visual inspection. Pressure
gauge, conform to 9.12 TCVN 7026:2013
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5.2.1 TCVN 12314- 1:2018 5.2.2 TCVN 12314- 1:2018
7.6.1 TCVN 7026:2013
8. Hydrostatic pressure
5.3 TCVN 12314- 1:2018
9.2.2 TCVN 7026:2013
9. Tightness
5.6 TCVN 12314- 1:2018
5.6 TCVN 12314- 1:2018
2.3. Extinguishant
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Article
Technical
specification
Requirement
Testing method
Sampling method
and guidelines
HS Code
2.3.1.
Extinguishing powder
1. Test extinguishing ability
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12.3.2 TCVN 6102
Section 4 of TCVN
6102
3813.0000
6.2 TCVN 6102 Class B
12.3.3 TCVN 6102
6.3 TCVN 6102 Class C
2. Test powder discharge capability
Article 7 TCVN 6102
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3. Anti-caking and anti-coagulating
Article 8 TCVN 6102
12.5 TCVN 6102
4. Anti-absorbent
Article 9 TCVN 6102
12.6 TCVN 6102
5. Ability to withstand low temperature
Article 10 TCVN 6102
12.7 TCVN 6102
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Foam concentrate
1. Freezing temperature
Article 5 - TCVN 7278-1: 2003;
Article 5 - TCVN 7278-2: 2003;
Appendix A.2, Appendix B - TCVN 7278-1: 2003;
- Appendix A.2, Appendix B - TCVN 7278-2: 2003;
Number of samples,
L, shall be calculated as follows:
L = 13 x
recommended concentration (recommended concentration is specified under Point
c of 14.1 - TCVN 7278)
3813.0000
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Article 6 - TCVN 7278-1: 2003;
Article 6 - TCVN 7278-2: 2003;
Appendix A.1, Appendix C - TCVN 7278-1: 2003;
- Appendix A.1, Appendix C - TCVN 7278-2: 2003.
3. pH
Article 8 - TCVN 7278-1: 2003;
Article 8 - TCVN 7278- 2: 2003
6≤pH≤9,5 at (20±2)°C, Appendix A2 - TCVN 7278-1:
2003;
- 6≤pH≤9,5 at (20±2)°C, Appendix A2 - TCVN
7278-2: 2003.
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Article 9 - TCVN 7278-1: 2003;
Article 9 - TCVN 7278-2: 2003;
Appendix A.2, Appendix E.2 - TCVN 7278-1: 2003;
- Appendix A.2, Appendix E.2 - TCVN 7278-2: 2003;
5. Surface tension separating foaming solution
and cyclohexane
Article 10 - TCVN 7278-1: 2003;
Article 10 - TCVN 7278-2: 2003;
Appendix A.2, Appendix E.3 - TCVN 7278-1: 2003;
- Appendix A.2, Appendix E.3 - TCVN 7278-2: 2003;
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Article 11 - TCVN 7278-1: 2003;
Article 11 - TCVN 7278-2: 2003;
Appendix A.2, Appendix E.4 - TCVN 7278-1: 2003;
- Appendix A.2, Appendix E.4 - TCVN 7278-2: 2003;
7. Expansion
12.1 - TCVN 7278-1: 2003; 12.1 - TCVN 7278-2:
2003
12.2 - TCVN 7278-2: 2003
Appendix A.2, Appendix G.1.4; Appendix F - TCVN
7278-1:2003;
- Appendix A.2, Appendix G.1.4; Appendix F1 -
TCVN 7278-2:2003;
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8. Drainage level
12.2 TCVN 7278- 1:2003
Appendix A.2, Appendix G.1.4; Appendix F - TCVN
7278-1:2003;
9. Extinguishing effectiveness, gentle
application
Article 13 - TCVN 7278- 1: 2003;
13.1 - TCVN 7278-2: 2003
Schedule 1, Appendix G1 and Appendix G2 - TCVN
7278-1:2003;
- Appendix A.2, Appendix G.1.4, Schedule 1,
Appendix G1 and G2 - TCVN 7278-2:2003
10. Extinguishing effectiveness, forceful
application
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13.2 - TCVN 7278-2: 2003
Schedule 1, Appendix G1 and Appendix G3 - TCVN 7278-1:2003;
- Appendix A.2, Appendix G.1.4, Schedule 1,
Appendix G1 and G3 - TCVN 7278-2:2003
2.4. Structures protected by coatings of
fire-resistance-rated substances or materials; fire-rated structural elements
No.
Article
Technical
specification
Requirement
Testing method
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HS Code
2.4.1
Fire door
2.4.1.1
Door and window
1. Integrity
10.2.2 -TCVN 9311- 1:2012
TCVN 9383:2012
- Quantity: 6.2 - TCVN 9383:2012
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- Design: 7.1 - TCVN 9311-1:2012
7308.30.00
2. Thermal insulation
10.2.3 -TCVN 9311- 1:2012
Note: Other than the direct application of test
results according to TCVN 9383:2012, it is possible to apply BS EN 15269 (or
equivalent National Standards) in order to assess expanded application of
test results.
2.4.1.2
Hoistway door
1. Integrity
15.1 - TCVN 6396-58
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- Quantity: 7.2 - TCVN 6396-58
- Dimensions: 7.3 - TCVN 6396-58
- Design: 7.1 - TCVN 6396-58
7308.30.00
2. Thermal insulation
15.2 - TCVN 6396-58
2.4.1.3
Roller door
1. Integrity
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TCVN 9383:2012
- Quantity: 6.2 - TCVN 9383:2012
- Dimensions: 6.1- TCVN 9383:2012
- Design: 7.1 - TCVN 9311-1:2012
2. Thermal insulation
10.2.3 -TCVN 9311- 1:2012
Note: Other than the direct application of test
results according to TCVN 9383:2012, it is possible to apply BS EN
15269-10:2012 (or equivalent National Standards) in order to assess expanded
application of test results.
2.4.1.4
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1. Integrity
10.2.2-TCVN 9311- 1:2012
TCVN 9383:2012
- Quantity: 6.2 - TCVN 9383:2012
- Dimension: Practical requirements and scope of
application of sample
- Design: 7.1 - TCVN 9311-1:2012
7007.19.00
2. Thermal insulation
10.2.3 -TCVN 9311- 1:2012
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Fire-resistance-rated partition
2.4.2.1
Fire-resistance-rated glass partition
1. Integrity
10.2.2-TCVN 9311- 1:2012
ISO 3009:2003 (or
BS EN 1364-1:2015 or equivalent National Standards)
- Quantity: 6.2 ISO 3009:2003 (or 6.2 BS EN
1364-1:2015)
- Dimension: 6.3 ISO 3009:2003 (or 6.1 BS EN
1364-1:2015)
- Design: 6.4 ISO 3009:2003 (or 6.3 BS EN
1364-1:2015).
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2. Thermal insulation
10.2.3 -TCVN 9311- 1:2012
Note: Other than the direct application of test
results according to ISO 3009:2003 (or BS EN 1364-1 or equivalent National
Standards), it is possible to apply EN 15254-4:2018 (or equivalent National
Standards) in order to assess expanded application of test results.
2.4.2.2
Façade
1. Integrity
10.2.2-TCVN 9311- 1:2012
BS EN 1364-3:
2014, BS EN 1364-4 :2014 (or equivalent National Standards)
- Quantity: 6.2 BS EN 1364-3: 2014 (full
configuration) and 6.2 BS EN 1364-4: 2014 (part configuration)
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- Quantity: 6.3 BS EN 1364-3: 2014 (full
configuration) and 6.3 BS EN 1364-4: 2014 (part configuration)
7007.19.00
2. Thermal insulation
10.2.3 -TCVN 9311- 1:2012
2. Thermal insulation
10.2.3 -TCVN 9311- 1:2012
2.4.2.3
Non-loadbearing vertical separating element
1. Integrity
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TCVN 9311-8:2012
- Quantity: 7.3 TCVN 9311-8:2012
- Dimensions: 7.2 TCVN 9311-8:2012
- Design: 7.1 TCVN 9311-8:2012
2. Thermal insulation
10.2.3 -TCVN 9311- 1:2012
Note: Other than the direct application of test
results according to TCVN 9311-8:2012, it is possible to apply BS EN 15254
(or equivalent National Standards) in order to assess expanded application of
test results. If the BS EN 15254 is applied, testing methods must combine
with BS EN 1364-1:2015.
2.4.2.4.
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1. Load-bearing capacity
10.2.1-TCVN 9311- 1:2012
TCVN 9311-4:2012
- Quantity: 7.3 TCVN 9311-4:2012
- Dimensions: 7.2 TCVN 9311-4:2012
- Design: 7.1 TCVN 9311-4:2012
2. Integrity
10.2.2-TCVN 9311- 1:2012
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10.2.3 -TCVN 9311- 1:2012
2.4.2.5.
Loadbearing horizon separating element
1. Load-bearing capacity
10.2.1-TCVN 9311- 1:2012
TCVN 9311-5:2012
- Quantity: 7.3 - TCVN 9311-5:2012
- Dimensions: 7.2 TCVN 9311-5:2012
- Design: 7.1 TCVN 9311-5:2012
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2. Integrity
10.2.2-TCVN 9311- 1:2012
3. Thermal insulation
10.2.3 -TCVN 9311- 1:2012
2.4.3
Fire curtain
1. Integrity
10.2.2-TCVN 9311- 1:2012
TCVN 9383:2012
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- Dimensions: 6.1- TCVN 9383:2012
- Design: 7.1 - TCVN 9311-1:2012
2. Thermal insulation
10.2.3 -TCVN 9311- 1:2012
Note: Other than the direct application of test
results according to TCVN 9383:2012, it is possible to apply BS EN
15269-11:2018 (or equivalent National Standards) in order to assess expanded
application of test results.
2.4.4
Fire damper
2.4.4.1
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1. Smoke leak at ambient temperature
Schedule 1 of ISO 10294-2:1996
ISO 10294-1:1996
(or equivalent National Standards)
6.1; 6.2 Part 1 and Schedule 1 of ISO
10294-2:1996 (or equivalent National Standards). At least 2 samples for each
type
2. Smoke leak in case of fire
Schedule 1 of ISO 10294-2:1996
3. Integrity
Schedule 1 of ISO 10294-2:1996
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Schedule 1 of ISO 10294-2:1996
5. Heat-activation mechanism (for fire dampers
that open and close based on temperature)
Article 4 of ISO 10294-4:1996
ISO 10294-4:1996 (or equivalent National
Standards)
Note: Other than the direct application of test
results according to ISO 10294, it is possible to apply BS EN 15882-2:2015
(or equivalent National Standards) in order to assess expanded application of
test results.
2.4.4.2
Smoke damper
1. Integrity
Section a Article 4.1.1; 4.3.1 (or 4.4.1) BS EN
12101-8:2011
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In accordance with Article 5.2 of BS EN 12101-
8:2011 and Article 5 of BS EN 1366- 10:2011
2. Thermal insulation
Section b Article 4.1.1 of BS EN 12101-8:2011
In accordance with Article 5.2 of BS EN 12101-
8:2011 and Article 5 of BS EN 1366- 10:2011
3. Smoke leak in case of fire
Section c Article 4.1.1; 4.3.1 (or 4.4.1) BS EN
12101-8:2011
5.2 BS EN 12101-8:2011 and Article 5 BS EN
1366-10:2011
4. Mechanical stability
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5.2 BS EN 12101-8:2011 and Article 5 BS EN
1366-10:2011
5. Maintenance of cross section
Section e Article 4.1.1 BS EN 12101-8:2011
5.2 BS EN 12101-8:2011 and Article 5 BS EN
1366-10:2011
6. High operational temperature
Section f Article 4.1.1; 4.3.1 (or 4.4.1) BS EN
12101-8:2011
5.2 BS EN 12101-8:2011 and Article 5 BS EN
1366-10:2011
2.4.5
Load bearing structures protected by coatings
of fire-resistant materials and substances
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Reinforced concrete structures: Article 5 of BS
EN 1992-1-2
Steel structures: 4.2.3 of BS EN 1993-1-2
- Reinforced concrete structures: 10.3, 10.5
through 10.7, Appendix A, Appendix B, Appendix D, and Appendix E of the BS EN
13381-3:2015
- Steel structures: 8 through 11 of ISO 834-10
and assessment according to ISO 834-11 or 13 and Appendices A through E of BS
EN 13381- 4:2014 (or BS EN 13381- 8:2013)
- Quantity: 6.1 of BS EN 13381- 3:2015 in case of
reinforced concrete structures; 6.1, 6.6 of BS EN 13381- 4:2014 or 7.1, 7.4
or ISO 834-10 in case of steel structures
- Dimensions:
+ 4.14 QCVN 06:2020/BXD, 6.2, 6.6 of BS EN
13381-3:2015 in case of reinforced concrete structures;
+ 4.14 QCVN 06:2020/BXD, Article 6.1 of BS EN
13381-4:2014 or 7.2. 7.4 of ISO 834-10 in case of steel structures
- Design: 6.3, 6.4 and 6.5 of BS EN 13381-3:2015
in case of reinforced concrete structures; 6.1 of BS EN 13381- 4:2014 or 7.2,
7.3 and 7.4 of ISO 834-10 in case of steel structures
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Note: Rely on Regulations under 06:2021/BXD to
choose technical parameters accordingly.
2.5. Apparatus affiliated with fire detection
and alarm system
No.
Article
Technical
specification
Requirement
Testing method
Sampling method
and guidelines
HS Code
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Fire alarm control panel
1. Functionality test
16.2.2. TCVN 7568-
2:2013
16.2.2 TCVN 7568-
2:2013
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 100 apparatus, collect 3
samples;
- If a batch has >100 apparatus and ≤ 500
apparatus, collect 6 samples
- If a batch has > 500 apparatus, collect 09
samples;
8531.10.20
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16.5.2.4 TCVN
7568-2:2013
16.5.2.1 TCVN
7568- 2:2013
3. Collision (operational) - Test of choice
16.6.2.4 TCVN
7568-2:2013
16.6.2.1 TCVN
7568- 2:2013
4. Sinusoidal vibration (operational)
16.7.2.4 TCVN
7568-2:2013
16.7.2.1 TCVN
7568- 2:2013
5. Change in voltage of supply source
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16.9.2.1 TCVN
7568- 2:2013
6. Sinusoidal vibration (durability)
16.11.2.4 TCVN
7568-2:2013
16.11.2.1
according to TCVN 7568-2:2013
2.5.2.
Point-type smoke detector
1. Repeatability
5.2.3 TCVN 7568-
7:2015
5.2.2 TCVN 7568-
7:2015
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- If a batch has ≤ 1000 apparatus, collect 9
samples;
- If a batch has >1000 apparatus and ≤ 5000
apparatus, collect 18 samples
- If a batch has > 5000 apparatus and ≤ 10000
apparatus, collect 27 samples;
- If a batch has > 10000 apparatus, collect 36
samples
8531.1030
2. Directional dependence
5.3.3 TCVN 7568-
7:2015
5.3.2 TCVN 7568-
7:2015
3. Reproducibility
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5.4.2 TCVN 7568-
7:2015
4. Change to parameters of power supply
5.5.3 TCVN 7568-
7:2015
5.5.2 TCVN 7568-
7:2015
5. Air movement
5.6.3 TCVN 7568-
7:2015
5.6.2 TCVN 7568-
7:2015
6. Glaring
5.7.3 TCVN 7568-
7:2015
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7. Dry heat (operational)
5.8.3 TCVN 7568-
7:2015
5.8.2 TCVN 7568-
7:2015
8. Damp heat, steady state (operational)
5.10.3 TCVN 7568-
7:2015
5.10.2 TCVN 7568-
7:2015
9. Sulfur dioxide (SO2) corrosion
10. (resistance)
5.12.3 TCVN 7568-
7:2015
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11. Intense vibration (operational)
5.13.3 TCVN 7568-
7:2015
5.13.2 TCVN 7568-
7:2015
12. Collision (operational)
5.14.3 TCVN 7568-
7:2015
5.14.2 TCVN 7568-
7:2015
13. Sinusoidal vibration (operational)
5.15.3 TCVN 7568-
7:2015
5.15.2 TCVN 7568-
7:2015
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5.16.3 TCVN 7568-
7:2015
5.16.2 TCVN 7568-
7:2015
2.5.3.
Point-type heat detector
1. Directional dependence
5.2.3 TCVN 7568- 5:2013
5.2.2 TCVN 7568- 5:2013
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 1000 apparatus, collect 10
samples;
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- If a batch has > 5000 apparatus and ≤ 10000
apparatus, collect 30 samples;
- If a batch has > 10000 apparatus, collect 40
samples
8531.1020
2. Static response temperature
5.3.3 TCVN 7568- 5:2013
5.3.2 TCVN 7568- 5:2013
3. Response time from typical application
temperature
5.4.3 TCVN 7568- 5:2013
5.4.2 TCVN 7568- 5:2013
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5.5.3 TCVN 7568- 5:2013
5.5.2 TCVN 7568- 5:2013
5. Response time from high ambient temperature,
dry heat (operational)
5.6.3 TCVN 7568- 5:2013
5.6.2 TCVN 7568- 5:2013
6. Change to provided parameters
5.7.3 TCVN 7568- 5:2013
5.7.2 TCVN 7568- 5:2013
7. Reproducibility (response time in case of
environment testing)
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5.8.2 TCVN 7568- 5:2013
8. Dry heat (long-lasting)
5.10.3 TCVN 7568- 5:2013
5.10.2 TCVN 7568- 5:2013
9. Damp heat, cyclic (operational)
5.11.3 TCVN 7568- 5:2013
5.11.2 TCVN 7568- 5:2013
10. Sulfur dioxide (SO2) corrosion
(long-lasting)
5.13.3 TCVN 7568- 5:2013
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11. Collision (operational)
5.14.3 TCVN 7568- 5:2013
5.14.2 TCVN 7568- 5:2013
12. Collision (operational)
5.15.3 TCVN 7568- 5:2013
5.15.2 TCVN 7568- 5:2013
13. Sinusoidal vibration (operational)
5.16.3 TCVN 7568- 5:2013
5.16.2 TCVN 7568- 5:2013
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5.17.3 TCVN 7568- 5:2013
5.17.2 TCVN 7568- 5:2013
15. Additional testing for S-rated detectors
6.1.3 TCVN 7568- 5:2013
6.1.2 TCVN 7568- 5:2013
16. Additional testing for R-rated detectors
6.2.3 TCVN 7568- 5:2013
6.2.2 TCVN 7568- 5:2013
2.5.4
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1. Reproducibility
5.2.3, TCVN 7568- 3:2015
5.2.2, TCVN 7568- 3:2015
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 1000 apparatus, collect 10
samples;
- If a batch has >1000 apparatus and ≤ 5000
apparatus, collect 20 samples
- If a batch has > 5000 apparatus and ≤ 10000
apparatus, collect 30 samples;
- If a batch has > 10000 apparatus, collect 40
samples
8531.8010
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5.3.3, TCVN 7568- 3:2015
5.3.2, TCVN 7568- 3:2015
3. Life span
5.4.3, TCVN 7568- 3:2015
5.4.2, TCVN 7568- 3:2015
4. Dry heat (operational)
5.5.3, TCVN 7568- 3:2015
5.5.2, TCVN 7568- 3:2015
5. Damp heat, cyclic (operational)
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5.8.2, TCVN 7568- 3:2015
6. SO2 corrosion (resistance)
5.113, TCVN 7568- 3:2015
5.11.2, TCVN 7568- 3:2015
7. Intense vibration (operational)
5.12.3, TCVN 7568- 3:2015
5.12.2, TCVN 7568- 3:2015
8. Collision (operational)
5.13.3, TCVN 7568- 3:2015
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9. Sinusoidal vibration (operational)
5.14.3, TCVN 7568- 3:2015
5.14.2, TCVN 7568- 3:2015
10. Sinusoidal vibration (resistance)
5.15.3, TCVN 7568- 3:2015
5.15.2, TCVN 7568- 3:2015
11. Synchronization
5.20.3, 5.20.4 TCVN 7568-3:2015
5.20.2, TCVN 7568- 3:2015
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Manual call point
1. Operational characteristics
5.2.3 TCVN 7568-
11:2015
5.2.2 TCVN 7568-
11:2015
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 1000 apparatus, collect 8
samples;
- If a batch has >1000 apparatus and ≤ 5000
apparatus, collect 16 samples
- If a batch has > 5000 apparatus and ≤ 10000
apparatus, collect 24 samples;
- If a batch has > 10000 apparatus, collect 32
samples
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2. Operation
5.3.3 TCVN 7568-
11:2015
5.3.2 TCVN 7568-
11:2015
3. Test devices (operational)
5.4.3 TCVN 7568-
11:2015
5.4.2 TCVN 7568-
11:2015
4. Reliability (resistance)
5.5.3 TCVN 7568-
11:2015
5.5.2 TCVN 7568-
11:2015
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5.6.3 TCVN 7568-
11:2015
5.6.2 TCVN 7568-
11:2015
6. Dry heat (operational)
5.7.3 TCVN 7568-
11:2015
5.7.2 TCVN 7568-
11:2015
7. Damp heat, cyclic (operational)
5.10.3 TCVN 7568-
11:2015
5.10.2 TCVN 7568-
11:2015
8. SO2 corrosion (resistance)
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5.13.2 TCVN 7568-
11:2015
9. Intense vibration (operational)
5.14.3 TCVN 7568-
11:2015
5.14.2 TCVN 7568-
11:2015
10. Collision (operational)
5.15.3 TCVN 7568-
11:2015
5.15.2 TCVN 7568-
11:2015
11. Sinusoidal vibration (operational)
5.16.3 TCVN 7568-
11:2015
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12. Sinusoidal vibration (resistance)
5.17.3 TCVN 7568-
11:2015
5.17.2 TCVN 7568-
11:2015
2.5.6
Fire alarm beacon (flashing beacon)
1. Repeatability
5.2.3 TCVN 7568-
23:2016
5.2.2 TCVN 7568-
23:2016
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
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- If a batch has >1000 apparatus and ≤ 5000
apparatus, collect 20 samples
- If a batch has > 5000 apparatus and ≤ 10000
apparatus, collect 30 samples;
- If a batch has > 10000 apparatus, collect 40
samples
8531.8010
2. Change to voltage of supply sources
5.3.3 TCVN 7568-
23:2016
5.3.2 TCVN 7568-
23:2016
3. Operational features
5.4.3 TCVN 7568-
23:2016
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4. Resistance
5.5.3 TCVN 7568-
23:2016
5.5.2 TCVN 7568-
23:2016
5. Dry heat (operational)
5.6.3 TCVN 7568-
23:2016
5.6.2 TCVN 7568-
23:2016
6. Dry heat (resistance)
5.7.3 TCVN 7568-
23:2016
5.7.2 TCVN 7568-
23:2016
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5.9.3 TCVN 7568-
23:2016
5.9.2 TCVN 7568-
23:2016
8. Damp heat, cyclic (resistance)
5.11.3 TCVN 7568-
23:2016
5.11.2 TCVN 7568-
23:2016
9. SO2 corrosion (resistance)
5.12.3 TCVN 7568-
23:2016
5.12.2 TCVN 7568-
23:2016
10. Shock (operational)
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5.13.2 TCVN 7568-
23:2016
11. Collision (operational)
5.14.3 TCVN 7568-
23:2016
5.14.2 TCVN 7568-
23:2016
12. Sinusoidal vibration (operational)
5.15.3 TCVN 7568-
23:2016
5.15.2 TCVN 7568-
23:2016
13. Sinusoidal vibration (resistance)
5.16.3 TCVN 7568-
23:2016
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14. Strobe synchronization (any function)
5.19.3 TCVN 7568-
23:2016
5.19.2 TCVN 7568-
23:2016
2.6. Apparatus affiliated with gaseous
fire-extinguishing systems
No.
Article
Technical
specification
Requirement
Testing method
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HS Code
2.6.1.
Control panel of gaseous fire-extinguishing
system
1. Power supply
Power supply must be independent of power supply
of areas where fire occurs and must include an emergency backup power supply
with an automatic transfer switch in case primary power supply malfunctions
6.4.3 TCVN 7161-
1:2009
6.4.3, 8.2.9 TCVN 7161-1:2009
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 100 apparatus, collect 3
samples;
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- If a batch has > 500 apparatus, collect 9
samples;
8531.10.20
2. Change to
provided parameters
a) Provide the highest input voltage according to
manufacturers' regulations;
b) Provide the lowest input voltage according to
manufacturers’ regulations.
16.9 TCVN 7568-
2:2013
3. Operating
capability
Examine samples’
compliance with each requirement under the EN-12094-1-2003 and prove
operation of the samples before, during, and/or after conditioning (9.2
EN-12094-1- 2003).
9.2
EN-12094-1-2003
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During test, state
of samples must not alter unless due to function test During function test,
samples must operate accurately. (9.4.3 EN-12094-1- 2003)
9.4.2
EN-12094-1-2003
5. Sinusoidal
vibration (operational)
Subject the samples to vibration in each of the 3
perpendicular axes with one of the axes perpendicular to mounting plane of the
samples. Conditioning severities:
- Frequency range: 10 Hz to 150 Hz;
Acceleration amplitude: 0,981 ms-2 (0,1 Gn);
- Number of axes: three.
- Frequency per
axis: one for each function.
16.7 TCVN 7568-
2:2013 or 9.3 f EN 12904-1-2003
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Subject the samples to vibration in each of the 3
perpendicular axes with one of the axes perpendicular to mounting plane of
the samples. Conditioning severities:
- Frequency range: 10 Hz to 150 Hz; Acceleration
amplitude: 4,905 ms-2 (051 Gn);
- Number of axes: three.
- Frequency per
axis: 20 per axis.
16.11 of TCVN
7568-2:2013 or 9.3 g EN 12904-1-2003
2.6.2
HFC-227ea extinguishant cylinder
1. Purity
Schedule 1, TCVN7161-9
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ASTM 6064-11
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10 apparatus, collect 1
sample;
- If a batch has >10 apparatus and ≤ 200
apparatus, collect 2 samples
- If a batch has > 200 apparatus, collect 05
samples;
3813.0000
2. Acid content
Schedule 1, TCVN7161-9
ISO 3427
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3. Water content
Schedule 1, TCVN7161-9
ISO 3427
ASTM 6064-11
4. Non-volatile residue
Schedule 1, TCVN7161- 9
ISO 3427
ASTM 6064-11
5. Amount of gas for refill
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Weigh filled cylinders and subtract weight of
cylinder shells.
6. Refill pressure
- Refill pressure must not be lower by more than
10% of value specified on the label
According to 9.2.1.3, TCVN 7161-1:2009
Use calibrated pressure gauge to connect to gas
cylinder to measure pressure.
7. Refill rate:
≤1150kg / m3 6.1, TCVN 7161-9 : 2009
6.1, TCVN 7161-9
Examine amount of gas refilled / volume of
cylinder
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FK-5-1- 12 extinguishant cylinder
1. FK-5-1-12 technical characteristics
Schedule 1, ISO 14520- 5:2019
Use gas analyzers to determine compositions in
accordance with Schedule 1, ISO 14520 -5:2019
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10 apparatus, collect 1
sample;
- If a batch has >10 apparatus and ≤ 200
apparatus, collect 2 samples
- If a batch has > 200 apparatus, collect 5
samples;
3813.0000
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- Amount of gas refilled must not be lower by
more than 5% of value specified on the label according to 9.2.1.3, TCVN
7161-1:2009
Weigh filled cylinders and subtract weight of
cylinder shells.
3. Refill pressure
- Refill pressure must not be lower by more than
10% of value specified on the label 9.2.1.3, TCVN 7161-1:2009
Use calibrated pressure gauge to connect to gas
cylinder to measure pressure.
4. Refill rate
6.1, ISO 14520- 5:2019
6.1, ISO 14520-5:2019 Examine weight of refilled
gas / volume of gas cylinder
2.6.4
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1. IG-100 technical characteristics
According to Schedule 1, TCVN 7161-13:2009
Use analyzers to determine compositions in
accordance with Schedule 1, TCVN 7161-13:2009
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10 apparatus, collect 1
sample;
- If a batch has >10 apparatus and ≤ 200
apparatus, collect 2 samples
- If a batch has > 200 apparatus, collect 05
samples;
3813.0000
2. Amount of gas for refill
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Weigh filled cylinders and subtract weight of
cylinder shells.
3. Refill pressure
- Refill pressure must not be lower by more than
10% of value specified on the label 9.2.1.3, TCVN 7161-1:2009
Use calibrated pressure gauge to connect to gas
cylinder to measure pressure.
2.6.5
Selector valve
1. Pressure resistance of valve casing
4.5 ISO 16003:2008:
5.5.3 ISO 16003:2008
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- If a batch has ≤ 10 apparatus, collect 1
sample;
- If a batch has >10 apparatus and ≤ 200
apparatus, collect 2 samples
- If a batch has > 200 apparatus, collect 05
samples;
8481.4090
2. Tightness of valve
4.7.3 ISO 16003:2008
5.7.3 ISO
16003:2008:
3. Internal pressure resistance and leak
prevention
4.9 ISO 16003:2008: Parts must not leak or suffer
from any permanent deformation when tested in accordance with 5.5 ISO
16003:2008
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2.6.6
Gas nozzle
1. Nozzle design
Ensure parameters according to manufacturers’
design
- Examine nozzle
profile
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10 apparatus, collect 1
sample;
- If a batch has >10 apparatus and ≤ 200
apparatus, collect 2 samples
- If a batch has > 200 apparatus, collect 05
samples;
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2. Dimension, weight
Conform to parameters published by manufacturers
Examine using
electronic scales and rulers
3. Filter
6.3.6.4 TCVN7161- 1:2009
6.3.6.4 TCVN7161-
1:2009
4. Resistance to high temperature and pressure
5.12.2 ISO 16003:2008
5.12.2 ISO
16003:2008
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No.
Article
Technical
specification
Requirement
Testing method
Sampling method
and guidelines
HS Code
2.7.1
Sprinkler
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Article 5 TCVN
6305-1
7.2 TCVN 6305-1
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has >198 apparatus and ≤ 10000
apparatus, collect 198 samples;
- If a batch has > 10000 apparatus, collect
396 samples
8424.9030
2. Dimension measurement
6.1 TCVN 6305-1
7.3 TCVN 6305-1
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6.6.1 TCVN 6305-1
7.4 TCVN 6305-1
4. Leak prevention and hydrostatic pressure
resistance
Article 5 and 6.8
TCVN 6305-1
7.5 TCVN 6305-1
5. Function
6.5.1 TCVN 6305-1
7.6 TCVN 6305-1
6. Operating temperature
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7.7 TCVN 6305-1
7. Increase in thermodynamics and coefficient of
thermal conductivity
6.14 TCVN 6305-1
7.7.2 TCVN 6305-1
8. Heat resistance
6.9 TCVN 6305-1
7.8.1 TCVN 6305-1
9. Sudden change in temperature (thermal shock)
6.10 TCVN 6305-1
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10. Flow rate
6.4.1 TCVN 6305-1
7.11 TCVN 6305-1
11. Water distribution
6.4.2 TCVN 6305-1
7.12 TCVN 6305-1
12. Salt-laden air corrosion
6.11.3 TCVN 6305-1
7.13.3 TCVN 6305-1
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6.11.2 TCVN 6305-1
7.13.2 TCVN 6305-1
14. Heat resistance (for fast opening valves)
6.15 TCVN 6305-1
7.15 TCVN 6305-1
15. Hydraulic shock
6.13 TCVN 6305-1
7.16 TCVN 6305-1
16. Vibration test
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7.17 TCVN 6305-1
17. Collision
6.17 TCVN 6305-1
7.18 TCVN 6305-1
18. Thermal sensitivity test for concealed
sprinkler, pendent sprinkler, and recessed sprinkler
6.24 TCVN 6305-1
7.25 TCVN 6305-1
2.7.2
Drencher
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4. 5 TCVN 6305-1
7.2 TCVN 6305-1
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 10000 apparatus, collect 78
samples;
- If a batch has > 10000 apparatus, collect
156 samples
8424.9030
2. Dimension measurement
7.3 TCVN 6305-1
7.3 TCVN 6305-1
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6.6.1 TCVN 6305-1
7.4 TCVN 6305-1
4. Flow rate
6.4.1 TCVN 6305-1
7.11 TCVN 6305-1
5. Water distribution
6.4.2 TCVN 6305-1
7.12 TCVN 6305-1
6. Salt-laden air corrosion
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7.13.3 TCVN 6305-1
7. Sulfur dioxide corrosion test
6.11.2 TCVN 6305-1
7.13.2 TCVN 6305-1
8. Heat resistance
6.15 TCVN 6305-1
7.15 TCVN 6305-1
9. Vibration test
6.16 TCVN 6305-1
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10. Collision test
6.17 TCVN 6305-1
7.18 TCVN 6305-1
2.7.3
Alarm valve
1. Appearance
No fissure, crack,
fracture
Visual inspection
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
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- If a batch has >100 apparatus and ≤ 1000
apparatus, collect 10 samples
- If a batch has > 10000 apparatus and ≤ 50000
apparatus, collect 20 samples;
- If a batch has > 50000 apparatus, collect 30
samples
8481.4090
2. Spring and membrane
4.7.6 TCVN 6305-2
6.2 TCVN 6305-2
3. Resistance
4.13 TCVN 6305-2
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4. Friction loss
4.12 TCVN 6305-2
6.7 TCVN 6305-2
5. Leak and deformation of valves
4.8 TCVN 6305-2
6.8 TCVN 6305-2
6. Durability of casing
4.5 TCVN 6305-2
6.9 TCVN 6305-2
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4.4.3 TCVN 6305-2
6.10 TCVN 6305-2
8. Operational requirements
4.7.7; 4.14.6;
4.16 TCVN 6305-2; sealing components of wet-type alarm valves must not leak
or be damaged after all tests.
In regard to
proportion test, in addition to requirements under 4.16.1 TCVN 6305-2, the
valves must satisfy requirements under 4.14.7 TCVN 6305-2
6.11 TCVN 6305-2
9. Design and intelligibility of water motor
alarm
4.18 TCVN 6305-2
Examine design
visually; Examine intelligibility 6.12.2 TCVN 6305-2
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4.17.2; 4.17.6
TCVN 6305-2
6.13 TCVN 6305-2
11. Corrosion resistance
4.11.7 TCVN 6305-2
6.14 TCVN 6305-2
2.7.4
Deluge valve
1. Appearance
No fissure, crack,
fracture
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Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 100 apparatus, collect 03
samples;
- If a batch has >100 apparatus and ≤ 5000
apparatus, collect 4 samples
- If a batch has > 5000 apparatus, collect 06
samples;
8481.4090
2. Spring and membrane
4.7.6 TCVN 6305-5
6.2 TCVN 6305-5
3. Friction loss
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6.6 TCVN 6305-5
4. Leak and deformation
4.8 TCVN 6305-5
6.7 TCVN 6305-5
5. Durability of casing
4.5.1 TCVN 6305-5
6.8 TCVN 6305-5
6. Resistance to flame
4.4.3 TCVN 6305-5
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7. Operational requirements
4.7.7; 4.10.4;
4.14; 4.16 TCVN 6305-5
6.10 TCVN 6305-5
8. Resistance
4.13 TCVN 6305-5
6.11 TCVN 6305-5
9. Anti-closing capability
4.7.7 TCVN 6305-5
6.12 TCVN 6305-5
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4.11.7 TCVN 6305-5
6.13 TCVN 6305-5
2.7.5
Metal hose connecting nozzles in water-based
fire-extinguishing system
1. Design
Standard No. 2021-
10 (Korea) or equivalent National Standards
Standard No. 2021-
10 (Korea) or equivalent National Standards
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 3000 apparatus, collect 20
samples;
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- If a batch has > 10000 apparatus, collect 60
samples;
8307.1000
2. Form
3. Material
4. Operating pressure
5. Resistance to hydraulic pressure
6. Deformation
7. Vibration resistance
8. Flexibility
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10. Resistance to destructive pressure
11. Change to diameter during compression
12. Resistance to compression
13. Friction loss
14. Labeling
2.7.6
Non-metallic pipe for water supply for
firefighting (CPVC pipes and accessories thereof for use in automatic
sprinkler system)
1. Dimension, appearance
5.2, 6.1, 6.2 TCVN
12653-1:2019
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5.1.3 and 5.1.9 TCVN 12653-2:2019
3917.2300
2. Operating pressure and temperature
7.1 TCVN 12653-
1:2019
Design documents
3. Longitudinal compression by heat
7.2 TCVN 12653-
1:2019
7.2 TCVN 12653-
1:2019
4. Vicat softening temperature
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5.1.5 TCVN 12653-
2:2019
5. Mass density
7.4 TCVN 12653-
1:2019
TCVN 6039-1:2015
6. Combustibility
7.5 TCVN 12653-
1:2019
6 TCVN
12653-2:2019
7. Fire resistance
7.6 TCVN 12653-
1:2019
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8. Cyclic heat resistance
7.7 TCVN 12653-
1:2019
21 TCVN 12653-
2:2019
9. Friction factor
7.8 TCVN 12653-
1:2019
9 TCVN
12653-2:2019
10. Equivalent pipe length of accessories
(pressure loss of accessories)
7.9 TCVN 12653-
1:2019
10 TCVN 12653-
2:2019
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7.10.1 TCVN 12653-
1:2019
12 TCVN 12653-
2:2019
12. Durability of label
7.11 TCVN 12653-
1:2019
24 TCVN 12653-
2:2019
13. Short-term leak prevention and hydrostatic
pressure resistance
8.1.1 TCVN 12653-
1:2019
8 TCVN
12653-2:2019
14. Conditional leak prevention and hydrostatic
pressure resistance
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19 TCVN
12653-2:2019
15. Bending resistance
8.3 TCVN 12653-
1:2019
13 TCVN
12653-2:2019
16. Collision resistance
8.4 TCVN 12653-
1:2019
14 TCVN
12653-2:2019
17. Compression resistance
8.5 TCVN 12653-
1:2019
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18. Tensile resistance
8.6 TCVN 12653-
1:2019
8.6 TCVN 12653-
1:2019
19. Vibration resistance
8.8 TCVN 12653-
1:2019
16 TCVN 12653-
2:2019
20. Operational capability of high-pressure
sprinkler
8.9 TCVN 12653-
1:2019
17 TCVN 12653-
2:2019
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8.10 TCVN 12653-
1:2019
5.1.4; 18 TCVN
12653- 2:2019
22. Cyclic pressure resistance
8.11 TCVN 12653-
1:2019
20 TCVN 12653-
2:2019
23. Labeling
9 TCVN
12653-1:2019
Visual inspection
2.8. Exit light, emergency light
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Article
Technical
specification
Requirement
Testing method
Sampling method
and guidelines
HS Code
2.8.1
Emergency exit
lighting (exit light)
1. Markings
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Visual inspection
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 1000 apparatus, collect 10
samples;
- If a batch has >1000 apparatus and ≤ 5000
apparatus, collect 20 samples
- If a batch has > 5000 apparatus, collect 30
samples;
8531.2000
2. Color
Background: Green
Detail: White
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Safety green must cover at least 50% of the sign
Chromaticity coordinates are specified under
Appendix A of ISO 3864-1:2011
Measure color spectrum where luminance of safety
color and contrasting color is the greatest
3. Activation
Lights can automatically activate in case of
emergency when primary power supply is out without the need to activate
auxiliary equipment
Visual inspection
4. Circuit requirement
Malfunctioning of any bulb must not affect other
bulbs in the same circuit
Attempt to shut down any bulb and visually
inspect remaining bulbs in the circuit
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Color must be green; if a directive serves both
functions, both green and red are acceptable
Visual inspection
6. Requirement regarding exposed and concealed
electrical wires
Electrical connections between sources of grid
electricity, individual parts of lights (for example remote control panels) and
between components of lights must be protected from random disconnection.
Internal plugs and sockets without protection
against random disconnection are allowed if they cannot be accessed directly
(for example if such components are covered by caps which cannot be removed
while one hand is occupied).
External plugs and sockets without protection
against random disconnection are allowed only if the lights are accompanied
by a warning that says: “Đèn này chỉ được thiết kế để lắp ở những nơi phích
cắm và ổ cắm được bảo vệ để không bị rút ra khi không được phép” (This light
is designed for places where plugs and sockets are protected from
unauthorized removal)
Visual and manual inspection
7. Requirement regarding heat and durability
After test, lights must be visually inspected.
Parts of the lights must operate normally, without deformation, and with
clear label.
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Lights must be placed in temperature controllers
for testing purposes. Lights must be placed on supporting platform (in the
same operating position) in similar manner as testing for regular operating
temperature.
Temperature of testing environment must be kept
within ±2°C of (ta + 10)oC during the test; ta
shall be 25 oC unless otherwise specified on the label.
Ambient temperature must be measured in
accordance with Appendix K under TCVN 7722-1 (IEC 60598-1). Electrical
ballast for use individually with lights must operate at temperature of 25 °C
± 5 °C.
Lights must be tested for a total of 390 hours,
consisting of 10 consecutive cycles of 36 hours and one last cycle of 30
hours at the maximum nameplate voltage.
In each cycle, the lights must operate normally
at the highest voltage for 30 hours and in emergency mode for 6 hours
(duration of a cycle may vary depending on the maximum number of hours in
which the lights are fully charged and stay on on backup power supply
according to manufacturers’ statement)
8. Requirement regarding sudden disconnection and
connection
Lights operate normally after testing
Lights must be able to operate normally within 50
instances of disconnecting and connecting voltage when batteries are fully
charged in the 11th cycle following durability test. Each instance
of disconnection and connection consists of connecting to nominal power
supply for 60 seconds and disconnecting from it in 20 seconds.
9. Requirement regarding rechargeable
batteries/batteries
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Visual inspection
10. Contrast, luminance, and color spectrum
Lights must provide sufficient nominal luminance
at the end of nominal working duration.
Minimum luminance at any point within safety
color area must be 2 cd/m2 or 10 cd/m2 if primary risk
is smoke;
Consistency of luminance in safety color and
contrasting color is measured by proportion of minimum to maximum luminance
of the color and must be greater than 1:5 (see ISO 3864- 1:2011). If
luminance of safety signs exceeds 100 cd/m2, the proportion of
minimum to maximum luminance must be greater than 1:10. Proportion of
luminance of contrasting color to luminance of area adjacent to safety color
must not be lower than 5:1 and must not be greater than 15:1.
After finishing test in temperature controller,
lights must be let cool to nominal ambient temperature (ta) or 25 oC,
whichever is higher and must be charged for 24 hours at 0,9 times the nominal
supply voltage.
Utilize measuring instruments that measure
luminance. Measurement shall be performed on 5 samples, results shall be
average values of 5 measurements performed on different samples.
2.8.2
Backup lighting (Emergency light)
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Lights can automatically activate in case of
emergency when primary power supply is out without the need to activate
auxiliary equipment
Visual inspection
Samples shall be gathered at random from an
apparatus batch, the quantity of samples shall be:
- If a batch has ≤ 1000 apparatus, collect 10
samples;
- If a batch has >1000 apparatus and ≤ 5000
apparatus, collect 20 samples
- If a batch has > 5000 apparatus, collect 30
samples;
9405.4099
2. Circuit requirement
Malfunctioning of any bulb must not affect other
bulbs in the same circuit
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3. Directive regarding electric-powered lighting
sources
Color must be green; if a directive serves both
functions, both green and red are acceptable
Visual inspection
4. Requirement regarding exposed and concealed
electrical wires
Electrical connections between sources of grid electricity,
individual parts of lights (for example remote control panels) and between
components of lights must be protected from random disconnection.
Internal plugs and sockets without protection
against random disconnection are allowed if they cannot be accessed directly
(for example if such components are covered by caps which cannot be removed
while one hand is occupied).
External plugs and sockets without protection
against random disconnection are allowed only if the lights are accompanied
by a warning that says: “Đèn này chỉ được thiết kế để lắp ở những nơi phích
cắm và ổ cắm được bảo vệ để không bị rút ra khi không được phép” (This light
is designed for places where plugs and sockets are protected from
unauthorized removal)
Visual inspection
5. Requirement regarding heat and durability
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Following durability tests, lights must be able
to stay on for at least 2 hours on backup power supply after the 10th test
cycle (30-hour recharge cycle).
Lights must be placed in temperature controllers
for testing purposes. Lights must be placed on supporting platform (in the
same operating position) in similar manner as testing for regular operating
temperature.
Temperature of testing environment must be kept
within ±2°C of (ta + 10)oC during the test; ta shall be
25 oC unless otherwise specified on the label.
Ambient temperature must be measured in accordance
with Appendix K under TCVN 7722-1 (IEC 60598-1). Electrical ballast for use
individually with lights must operate at temperature of 25 °C ± 5 °C.
Lights must be tested for a total of 390 hours,
consisting of 10 consecutive cycles of 36 hours and one last cycle of 30
hours at the maximum nameplate voltage.
In each cycle, the lights must operate normally
at the highest voltage for 30 hours and in emergency mode for 6 hours
(duration of a cycle may vary depending on the maximum number of hours in
which the lights are fully charged and stay on on backup power supply
according to manufacturers’ statement)
6. Requirement regarding sudden disconnection and
connection
Lights operate normally after testing
Lights must be able to operate normally within 50
instances of disconnecting and connecting voltage when batteries are fully
charged in the 11th cycle following durability test. Each instance of
disconnection and connection consists of connecting to nominal power supply
for 60 seconds and disconnecting from it in 20 seconds.
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Rechargeable batteries/batteries fitted in
emergency lights must be: Recessed nickel–cadmium batteries or valve-regulated
lead-acid batteries or rechargeable batteries with similar safety.
Visual inspection
8. Requirement regarding luminous flux and color
rendering index (CRI)
Lights must be able to provide sufficient nominal
luminous flux at the end of nominal working duration;
CRI of lights throughout nominal working duration
must be ≥ 40
After finishing test in temperature controller,
lights must be let cool to nominal ambient temperature (ta) or 25 oC,
whichever is higher and must be charged for 24 hours at 0,9 times the nominal
supply voltage.
Utilize measuring instruments which measure
luminous flux and CRI. Measurement shall be performed on 5 samples, results
shall be average values of 5 measurements performed on different samples.
2.9. Specialized firefighting outfit
No.
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Technical
specification
Requirement
Testing method
Sampling method
and guidelines
HS Code
2.9.1
Protective hat
1. Design
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4.1 TCVN 12366-5:2019
Samples shall be collected at random from batch
of apparatus; number of samples: 11 samples
- 5 samples for physical tests and 6 samples for
fire, heat tests and tests for other characteristics.
6506.1020
2. Fit
4.1.1 TCVN 12366-5:2019
4.1.1 TCVN 12366- 5:2019
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4.1.8 TCVN 12366-5:2019
4.1.8 TCVN 12366- 5:2019
4. Protected zone
4.1.10 TCVN 12366-5:2019
4.1.10 TCVN 12366- 5:2019
5. Weight
4.1.12 TCVN 12366-5:2019
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6. Labeling
5 TCVN 12366-5:2019
5 TCVN 12366-5:2019
7. Heat resistance
4.4.4.1 TCVN 12366- 5:2019
4.5.3.1 TCVN 12366- 5:2019
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4.4.5.1 TCVN 12366-5:2019
4.5.4.1 TCVN 12366- 5:2019
9. Collision force
Force transferred to test head must not exceed 15
kN
4.5.7.1 TCVN 12366- 5:2019
10. Penetration
Contact between hammer and test piece is not
allowed
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2.9.2
Firefighting footwear
1. Form and classification
4.1 TCVN 12367:2018
Visual inspection, or inspection using ruler
Samples shall be collected at random from batch
of apparatus; number of samples: 6 samples (3 pairs).
6401.9200
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5.2.1 TCVN 7652:2007 (ISO 20345:2004)
6.2 TCVN 7651:2007 (ISO 20344:2004)
3. Specific ergonomic features
5.3.4 TCVN 7652:2007 (ISO 20345:2004)
5.1 TCVN 7651:2007 (ISO 20344:2004)
4. Tightness
5.3.3 TCVN 7652:2007 (ISO 20345:2004)
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5. Stretching
Schedule 5 TCVN 12367:2018
6.4 TCVN 7651:2007 (ISO 20344:2004)
6. Puncture resistance
5.2.4 TCVN 12367:2018
5.8.2 TCVN 7651:2007 (ISO 20344:2004)
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5.3 TCVN 12367:2018
5.12 TCVN 7651:2007 (ISO 20344:2004)
8. Internal length of toe cap
5.3.2.2 TCVN 7652:2007 (ISO 20345:2004)
5.3 TCVN 7651:2007 (ISO 20344:2004)
9. Corrosion resistance of metal toe cap
5.4.1 TCVN 12367:2018
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10. Tread pattern
5.7.1 TCVN 12367:2018
Visual inspection
11. Sole height
5.7.2 TCVN 12367:2018
8.1 TCVN 7651:2007 (ISO 20344:2004)
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5.7.3 TCVN 12367:2018
Ruler
13. Heel
5.7.4 TCVN 12367:2018
Ruler
14. Fire resistance
5.8.2 - TCVN 12367:2018
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15. Thickness of toe cap
5.4.2 TCVN 7652:2007 (ISO 20345:2004)
6.1 TCVN 7651:2007 (ISO 20344:2004)
16. Tear resistance of outsole
5.8.2 TCVN 7652:2007 (ISO 20345:2004)
8.2 TCVN 7651:2007 (ISO 20344:2004)
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5.8.7 - TCVN 7652:2007 (ISO 20345:2004)
8.6.1 - TCVN 7651: 2007 (ISO 20344: 2004)
18. Heat resistance of outsole
6.4.4 TCVN 7652:2007 (ISO 20345:2004)
8.7 TCVN 7651:2007 (ISO 20344:2004)
2.9.3
Firefighting clothing
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4.1 through 4.13 - TCVN 12366- 3:2018 (ISO
11999-3:2015)
Visual inspection, inspection by ruler
Samples shall be collected at random from batch
of apparatus; number of samples: 02 samples
6113.0030
2. Flame resistance (surface ignition) for
performance level A1
4.17.2 - TCVN 12366-3:2018 (ISO 11999-3:2015)
Procedure A of TCVN 7205:2002 (ISO 15025:2000)
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4.17.3 - TCVN 12366-3:2018 (ISO 11999-3:2015)
Procedure B of TCVN 7205:2002 (ISO 15025:2000)
4. Heat resistance
4.17.4 - TCVN 12366-3:2018 (ISO 11999-3:2015)
TCVN 7206:2002 (ISO 17493)
5. Thread heat resistance
4.17.10 - TCVN 12366- 3:2018 (ISO 11999-3:2015)
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6. Tensile strength
4.18.1 - TCVN 12366-3:2018 (ISO 11999-3:2015)
ISO 13934-1:2013
7. Tear resistance
4.18.2 - TCVN 12366-3:2018 (ISO 11999-3:2015)
Method B of ISO 13937-2:2000
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Method B of TCVN 10501-1:2014 (ISO 4674-1)
8. Seam strength (woven materials
4.18.3 - TCVN 12366- 3:2018 (ISO 11999-3:2015)
ISO 13935-2:2014
9. Seam strength (knit or stretch woven
materials)
4.18.4 - TCVN 12366-3:2018 (ISO 11999-3:2015)
ISO 13935-2:2014
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10. Surface wetting
4.19.2 - TCVN 12366-3:2018 (ISO 11999-3:2015)
ISO 4920:2012
11. Water absorption resistance
4.19.3- TCVN 12366-3:2018 (ISO 11999-3:2015)
ISO 4920:2012
12. Water penetration resistance
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ISO 811:1981
13. Liquid penetration resistance (runoff method)
for performance level c1
4.19.5 - TCVN 12366-3:2018 (ISO 11999-3:2015)
ISO 6530:2005
14. Cleaning shrinkage resistance
4.21.1- TCVN 12366-3:2018 (ISO 11999-3:2015)
TCVN 8041:2009 (ISO 5077)
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15. Hardware corrosion resistance
4.21.2- TCVN 12366-3:2018 (ISO 11999-3:2015)
ISO 9227:2017
3.
REGULATIONS ON MANAGEMENT
3.1. Regulations on management
Methods for examining, experimenting, testing, and
assessing quality of firefighting apparatus samples:
3.1.1. In regard to structures protected by
coatings of fire-resistance-rated substances or materials and fire-rated
structural elements (hereinafter referred to as “structures and elements”)
under Section 2.4 of this document:
a) Carry out inspection and issue certificate of
inspection for the structures and elements. Quantity and format of samples for
testing shall conform to Section 2.4 of this document. Samples shall be
supervised and collected by inspecting entities. Following inspection,
inspecting entities are responsible for keeping one sample with design similar
to the tested sample for 18 months from the date on which certificate for
sample inspection is issued.
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3.1.2. In regard to firefighting apparatus under
Part 2 of this document (other than those under Section 2.4 of this document):
a) Inspect and issue certificate for inspection for
firefighting apparatus before introducing the apparatus to sale.
b) Quantity of samples for testing varies depending
on the type of apparatus specified under Part 2 of this document. Inspecting
entities shall collect the samples. Samples of firefighting apparatus that have
been tested must be returned to requesting entities by inspecting entities
(except for firefighting apparatus depleted during testing).
c) Inspected firefighting apparatus that qualifies
shall be issued with certificate for inspection and inspection stamps as per
the law.
3.2. Approval of international, foreign test and
inspection results
In regard to firefighting apparatus that Vietnam
has not promulgated standards for or that has not been regulated under this
document, the Central Department of Fire safety, Firefighting, and Rescue shall
rely on test conditions under ISO/IEC 17025 - General requirements regarding
capacity of test and calibration laboratories to consider using inspection
results published by foreign organizations licensed by competent authority of
the home country and issue Certificate for inspection.
3.3 Labeling of firefighting apparatus
Firefighting apparatus must be labeled in
accordance with Decree No. 43/2017/ND-CP of the Government and specific
requirements under applicable standards.
In regard to products whose fire resistant
structures and elements have been inspected, manufacturing and importing
organizations, individuals responsible for the products shall include the
following information in product labels: Manufacturing entities; code; year of
manufacturing, fire-resistance rating, number, date of issue, issuing authority
of Certificate for inspection; average weight/m2 of door leaf (in
case of fire doors).
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4.1. Heads of agencies and entities under
Section 1.2 of this document are responsible for popularizing this document
within their entities and subordinates.
4.2. The Central Department of Fire safety,
Firefighting, and Rescue shall popularize, guide, and examine and application
of this document in relevant entities.
4.3. Difficulties that arise during the
implementation of this document should be reported to the Ministry of Public
Security (via the Central Department of Fire safety, Firefighting, and Rescue)
for consideration./.
TABLE OF CONTENTS
PREFACE
Part 1 . General provisions
Part 2. Technical regulations
Part 3. Management regulations
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