Standard Practice for Dosimetry for a Self-Contained Dry-Storage Gamma Irradiator

SIGNIFICANCE AND USE
4.1 The design and operation of a self-contained irradiator should ensure that reproducible absorbed doses are obtained when the same irradiation parameters are used. Dosimetry is performed to determine the relationship between the irradiation parameters and the absorbed dose.
4.1.1 For most applications, the absorbed dose is expressed as absorbed dose to water (see ISO/ASTM Practice 51261). For conversion of absorbed dose to water to that to other materials, for example, silicon, see Annex A1 of ISO/ASTM Practice 51261.
4.2 Self-contained dry-storage gamma irradiators contain properly shielded radioactive sources, namely 137Cs or 60Co, that emit ionizing electromagnetic radiation (gamma radiation). These irradiators have an enclosed, accessible irradiator sample chamber connected with a sample positioning system, for example, irradiator drawer, rotor, or irradiator turntable, as part of the irradiation device.
4.3 Self-contained dry-storage gamma irradiators can be used for many radiation processing applications, including the calibration irradiation of dosimeters; studies of dosimeter influence quantities; radiation effects studies, and irradiation of materials or biological samples for process compatibility studies; batch irradiations of microbiological, botanical, or in-vitro samples; irradiation of small animals; radiation “hardness” testing of electronics components and other materials; and batch radiation processing of containers of samples.
NOTE 1—Self-contained dry-storage gamma irradiators contain a sealed radiation source, or an array of sealed radiation sources securely held in a dry container constructed of solid materials. The sealed radiation sources are shielded at all times, and human access to the chamber undergoing irradiation is not physically possible due to the irradiator’s design configuration (see ANSI/HPS N43.7).
NOTE 2—For reference–standard dosimetry, the absorbed dose and absorbed-dose rate can be expressed in water or other material...
SCOPE
1.1 This practice outlines dosimetric procedures to be followed with self-contained dry-storage gamma irradiators. For irradiators used for routine processing, procedures are given to ensure that product processed will receive absorbed doses within prescribed limits.
1.2 This practice covers dosimetry in the use of dry-storage gamma irradiators, namely self-contained dry-storage 137Cs or 60Co irradiators (shielded freestanding irradiators). It does not cover underwater pool sources, panoramic gamma sources, nor does it cover self-contained bremsstrahlung X-ray units.
1.3 The absorbed-dose range for the use of the dry-storage self-contained gamma irradiators covered by this practice is typically 1 to 105 Gy, depending on the application. The absorbed-dose rate range typically is from 10–2 to 103 Gy/min.
1.4 For irradiators supplied for specific applications, specific ISO/ASTM or ASTM practices and guides provide dosimetric procedures for the application. For procedures specific to dosimetry in blood irradiation, see ISO/ASTM Practice 51939. For procedures specific to dosimetry in radiation research on food and agricultural products, see ISO/ASTM Practice 51900. For procedures specific to radiation hardness testing, see ASTM Practice E1249. For procedures specific to the dosimetry in the irradiation of insects for sterile release programs, see ISO/ASTM Guide 51940. In those cases covered by ISO/ASTM 51939, 51900, 51940, or ASTM E1249, those standards take precedence.
1.5 This document is one of a set of standards that provides recommendations for properly implementing and utilizing dosimetry in radiation processing. It is intended to be read in conjunction with ASTM E2628, “Practice for Dosimetry in Radiation Processing”.
1.6 This standard does not purport to address all of the safety concerns, if any, associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and he...

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Publication Date
28-Feb-2013
Technical Committee
Current Stage
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ISO/ASTM 52116:2013(E)
Standard Practice for
Dosimetry for a Self-Contained Dry-Storage Gamma
1
Irradiator
This standard is issued under the fixed designation ISO/ASTM 52116; the number immediately following the designation indicates the
year of original adoption or, in the case of revision, the year of last revision.
1. Scope responsibility of the user of this standard to establish appro-
priate safety and health practices and determine the applica-
1.1 This practice outlines dosimetric procedures to be fol-
bility of regulatory limitations prior to use.
lowed with self-contained dry-storage gamma irradiators. For
irradiators used for routine processing, procedures are given to
2. Referenced documents
ensure that product processed will receive absorbed doses
2
2.1 ASTM Standards:
within prescribed limits.
E170 Terminology Relating to Radiation Measurements and
1.2 This practice covers dosimetry in the use of dry-storage
Dosimetry
137
gamma irradiators, namely self-contained dry-storage Cs or
E1249 Practice for Minimizing Dosimetry Errors in Radia-
60
Co irradiators (shielded freestanding irradiators). It does not
tion HardnessTesting of Silicon Electronic Devices Using
cover underwater pool sources, panoramic gamma sources, nor
Co-60 Sources
does it cover self-contained bremsstrahlung X-ray units.
E2628 Practice for Dosimetry in Radiation Processing
1.3 The absorbed-dose range for the use of the dry-storage E2701 Guide for Performance Characterization of Dosim-
eters and Dosimetry Systems for Use in Radiation Pro-
self-contained gamma irradiators covered by this practice is
5
cessing
typically 1 to 10 Gy, depending on the application. The
–2 3 2
2.2 ISO/ASTM Standards:
absorbed-dose rate range typically is from 10 to 10 Gy/min.
51261 Practice for Calibration of Routine Dosimetry Sys-
1.4 For irradiators supplied for specific applications, spe-
tems for Radiation Processing
cific ISO/ASTM or ASTM practices and guides provide
51539 Guide for Use of Radiation-Sensitive Indicators
dosimetric procedures for the application. For procedures
51707 Guide for Estimating Uncertainties in Dosimetry for
specific to dosimetry in blood irradiation, see ISO/ASTM
Radiation Processing
Practice 51939. For procedures specific to dosimetry in radia-
51900 Guide for Dosimetry in Radiation Research on Food
tionresearchonfoodandagriculturalproducts,seeISO/ASTM
and Agricultural Products
Practice 51900 . For procedures specific to radiation hardness
51939 Practice for Blood Irradiation Dosimetry
testing, see ASTM Practice E1249. For procedures specific to
51940 Guide for Dosimetry for Sterile Insects Release Pro-
the dosimetry in the irradiation of insects for sterile release
grams
programs,seeISO/ASTMGuide51940.Inthosecasescovered
2.3 International Commission on Radiation Units and Mea-
by ISO/ASTM 51939, 51900 , 51940, or ASTM E1249, those
3
surements (ICRU) Reports:
standards take precedence.
ICRU 85a Fundamental Quantities and Units for Ionizing
1.5 This document is one of a set of standards that provides
Radiation
4
recommendations for properly implementing and utilizing
2.4 ANSI Standards:
dosimetry in radiation processing. It is intended to be read in
ANSI/HPS N43.7 Safe Design and Use of Self-Contained,
conjunction with ASTM E2628, “Practice for Dosimetry in
Dry Source Storage Gamma Irradiators (Category I)
Radiation Processing”.
2.5 Joint Committee for Guides in Metrology (JCGM)
1.6 This standard does not purport to address all of the Reports:
JCGM 100:2008, GUM 1995 with minor corrections, Evalu-
safety concerns, if any, associated with its use. It is the
ation of measurement data – Guide to the Expression of
1 2
This practice is under the jurisdiction of ASTM Committee E61 on Radiation For referenced ASTM and ISO/ASTM standards, visit the ASTM website,
Processing and is the direct responsibility of Subcommittee E61.04 on Specialty www.astm.org, or contact ASTM Customer Service at service@astm.org. For
Application, and is also under the jurisdiction of ISO/TC 85/WG 3. Annual Book of ASTM Standards volume information, refer to the standard’s
Current edition approved Aug. 16, 2012. Published April 2013. Originally Document Summary page on the ASTM website.
3
published as ASTM E 2116–00. Last previous edition ASTM E 2116–00. The International Commission on Radiation Units and Measurements (ICRU), 7910
presentInternationalStandardISO/ASTM52116:2013(E)replacesE2116-00andis Woodmont Ave., Suite 800, Bethesda, MD 20810, U.S.A.
4
a major revision of the last previous edition ISO/ASTM 52116:2002:(E). Available from the Health Physics Society, http://hps.org.
© ISO/ASTM International 2020 – All rights reserved
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ISO/ASTM 52116:2013(E)
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Uncertainty in Measurement that emit ionizing electromagnetic radiation (gamma radia-
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