Loại
liều kế
|
Độ
dày danh định,
µm
|
Bước
sóng phân tích,
nm
|
Dải
liều sử dụng
kGy
|
Harwell Red 4034
|
3
|
640
|
5
đến 50
|
Harwell Amber 3042
|
3
|
603
hoặc 651
|
1
đến 30
|
Harwell Gammachrome
YR
|
2
|
530
|
0,1
đến 3
|
Radix W
|
1,5
|
280
hoặc 320
|
1
đến 150
|
Bảng
A.2 - Một số nhà cung cấp liều kế
polymetylmetacrylat (PMMA)
Loại
Địa
chỉ nhà cung cấp
Harwell
Harwell Dosimeters Ltd.,
540 Becquerel
Ave.,
Harwell S&l
Campus
DIDCOT Oxfordshire,
0X11 OTA, Anh
Radix
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168 Ooyagi
Takasaki
Gunma 370-0072,
Nhật Bản
Thư
mục tài liệu tham khảo
[1] Beu,
R., Watts, M. P., Plested
, M. E., “The shelf life of dyed polymethylmethacrylate dosimeters” Radiation Physics and Chem- istry, Vol 63, 2002, pp.
793-797.
[2] Whinaker, B., Watts, M. F., “The
Influence of Dose Rate, Ambient Temperature and Time on the Radiation Response of PMMA Dosim- eters,” Radiation
Physics and Chemistry, Vol 60,2001, pp 101-110.
[3] Takehisa, M ., Sato,
Y., Snsuga, T., Haneda, N., Haruyama, Y., and Sunaga, H. “Gamma-ray Response of a Clear, Crosslinked PMMA Dosimeter, Radix W,” Radiation
Physics and Chemistry, Vol 76, 2007. pp. 1619-1623.
[4] Seito,
H., Ichikawa, T., Haneda, N., Kaneko, H.. Sato, Y., Watanabe,
H. and Kojima T., “Characteristics srudy of clear polymethylmeth- acrylate
dosimeter, Radix W, in several kGy range,” Radiation Physics and CI!Lmistry,
Vol 78, 2009, pp. 356-359.
...
...
...
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[6] Miller, A., Bjergbakke, E.,
and McLaughlin, W. L., “Some Limitations in the Use of Plastic and Dyed Plastic Dosimeters,” Internationa/Journal of Applied
Radiation and Isotopes, Vol26, 1975, pp. 611- 620.
[7] Olejnik, T. A., “Red 4034
‘Perspex’ Dosimeters in Industrial Radiation Sterilization Process Control,” Radiation Physics and Chemistry, Vol 14, 1979, pp.431-447.
[7] Barrett, J. H., “Dosimetry
with Dyed and Undyed Acrylic Plastic,” International Journal of Applied Radiation and Isotopes,
Vol 33, 1982, pp. 1177-1187.
[8] Whinaker, B., Watts, M. P., Mellor, S., and
Heneghan, M. “Some Parameters Affecting the Radiation Response
and Post-Irradiation stability of Red 4034 'Perspex' Dosimeters,” Proceedings
of the International Symposium, "High-Dose Dosimetry," IAEA
Publication STIIPUB/671, Vienna, 1984.
[9] Levine, H., McLaughlin, W. L., and
Miller, A., “Temperature and Humidity Effects on the Gamma- Ray Response and Stability of Plastics and Dyed-Plastic
Dosimeters,” Radiation Physics and Chem- istry,vol 14, 1979, pp.
551-574.
[10] Al-Sheikhly, M., Chappas, W. J .,
McLaughlin, W. L.• and Hum-
phreys, J . C., "Effects of Absorbed Dose-rate, Irradiation Tempera- ture,
and
Post trradia.tion Temperature on the Gamma Ray Response of Red Perspex
Dosimeters," Proceedings of an Imemationa/
Sym- posium, 'H igh Dose Dosimetry for
Radiation Processing," IAEA Publication STI/PUB/846, International Atomic
Energy Agency, Vienna, 1991.
[11] McLaughlin, W. L., Boyd,
A.W., Chadwick, K.H., McDonald, J. C., and Miller, A.,
"Dosimetry for Radiation Processing," Taylor and Francis
(publishers), London, New York, Philadelphia, 1989.
[12] Glover, K. M., Plested, M.
E., Watts, M. F., and Whittaker, B., “A Study of Some Parameters Relevant to the Response of Harwell PMMA Dosimeters to
Gamma and Electron Irradiation” Radiation Physics and Chemistry, Vol 42,
1993, pp. 739-742.
[13] Sohrabpour, M., Kazemi, A .
A., Mousavi, H., and Soluti, K., "Temperature Response of a Number of Plastic
Dosimeters for Radiation Processing," Radiation Physics and Chemistry,
Vol 42, 1993, pp. 783-787.
...
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ĐT: (028) 3930 3279 DĐ: 0906 22 99 66
[15] "Absorbed Dose
Determination in Photon and Electron Beams," IAEA, Technical Report
Series, No. 277, Vienna, 1987.
[16] Whittaker, B.•
"Uncertainties in Absorbed Dose us Measured Using PMMA Dosimeters," Radiation
Physics and Chemistry, Vol42,1993, pp. 84HI44.
[17] Whitt aker, B., "Recent
Developments in Poly(Methyl Methacrylate)/ Dye Systems for Dosimetry
Purposes," Proceedings of the Interna- tional Symposium,
"Radiation Dose and Dose Distribution Measure- ments in the Megarad
Range," National Physical Laboratory, United Kingdom, 1970.
[18] Barrett, J. H., Glover, K.
M., McLaughlin, W. L., Sharpe, P. H . G., Watts, M. F., and Whittaker, B.,"A High-Dose Intercomparison Study Involving Red
4034 'Perspex' and Radiochromic Dye Film," UKAEA, H arwell Report
AERE-RI3159, 1988, Radiation Physics and Chemistry, Vol 36, 1990, pp.
505-507.
[19] Kojima, T., Hanedu, N.,
Mitomo, S., Tachibana, H., and Tanaka, R., “The Gamma-Ray Response of Clear
Polymethylmethacrylate Do- simeter, Radix RNI5,” Journal of Applied
Radiation and Isotopes, Vol 43, No. 10, 1992, p. 1197.
[20] Chadwick, K. H., "The
Effect of Light Exposure on the Optical Densi ty of Irradiated Clear
Polymethylmethacrylate," Physics in Medicine and Biology, Vol 17,
1972, pp. 88-93.
[21] Chadwick, K. H.• “The
Effect of Humidity on the Response of HX 'Perspex' Dosimeters,” IAEA Report
TECDOX-321, 1984.
[22] Whittaker, B., "A New
PMMA Dosimeter for Low Doses and Low Temperatures," Radiation Physics
and Chemistry, Vol 35, 1990, pp. 699-702.
[23] Miller, A., "Dosimetry
for Radiation Processing," Proceedings of an Imemational Symposium on
Radiation Chemistry and Processing, Czechoslovakia, Radiation Physics and
Chemistry, Vol 28, 1986, pp. 521-529.
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ĐT: (028) 3930 3279 DĐ: 0906 22 99 66
[25] Ellis, S. C., Barrett, J. H.,
and Morris, W. T.," Radiation Standards and Dosimetry for Radiation
Processing," Proceedings of the Imer- national Conference,"Radiation
Processing for Plastics and Rubber," Cambridge, UK, 1984.
[26] Biramontri, S., Haneda, N.,
Tachibana, H., and Kojima, T., "Effect of Low Irradiation Temperature on
the Gamma-Ray Respon se of Dyed and Un-dyed PMMA,Dosimeters", Radiation
Physics and
Chemistry, Vol
48, No. I, 1996, pp. 105-109.
[27] Sharpe, P., Miller, A.,
"Guidelines for the Calibration of Dosimeters for use in Radiation
Processing" Centre for Ionising Radiation Metrology publication,
C1RM29, 2009.
[28] Seito, H., Ichikawa, T.,
Hanaya, H., Soto, Y., Keneko, H., Haruyama, Y., Watanabe, H., Kojima, T.•
"Application of clear polymethy Imeth- acrylate dosimeter, Radix W, to a
few MeV electron in radiation processing," Radiation Physics and
Chemistry, Vol 78, 2009, pp. 961-965.