ASTM E 1026 : 2015 : REDLINE
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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Standard Practice for Using the Fricke Dosimetry System
15-07-2015
05-06-2015
CONTAINED IN VOL. 12.02, 2013 Describes testing, preparation, and procedure for using the Fricke dosimeter to measure absorbed dose in water when exposed to ionizing radiation.
Committee |
E 61
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DevelopmentNote |
Supersedes ASTM D 1671. (02/2002)
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DocumentType |
Redline
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PublisherName |
American Society for Testing and Materials
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Status |
Superseded
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SupersededBy |
1.1This practice covers the procedures for preparation, testing and using the acidic aqueous ferrous ammonium sulfate solution dosimetry system to measure absorbed dose to water when exposed to ionizing radiation. The system consists of a dosimeter and appropriate analytical instrumentation. The system will be referred to as the Fricke dosimetry system. The Fricke dosimetry system may be used as either a reference standard dosimetry system or a routine dosimetry system.
1.2This practice is one of a set of standards that provides recommendations for properly implementing dosimetry in radiation processing, and describes a means of achieving compliance with the requirements of ISO/ASTM Practice 52628 for the Fricke dosimetry system. It is intended to be read in conjunction with ISO/ASTM Practice 52628.
1.3The practice describes the spectrophotometric analysis procedures for the Fricke dosimetry system.
1.4This practice applies only to gamma radiation, X-radiation (bremsstrahlung), and high-energy electrons.
1.5This practice applies provided the following are satisfied:
1.5.1The absorbed dose range shall be from 20 to 400 Gy (1).2
1.5.2The absorbed-dose rate does not exceed 106 Gy·s−1 (2).
1.5.3For radioisotope gamma sources, the initial photon energy is greater than 0.6 MeV. For X-radiation (bremsstrahlung), the initial energy of the electrons used to produce the photons is equal to or greater than 2 MeV. For electron beams, the initial electron energy is greater than 8 MeV.
Note 1:The lower energy limits given are appropriate for a cylindrical dosimeter ampoule of 12 mm diameter. Corrections for displacement effects and dose gradient across the ampoule may be required for electron beams (3). The Fricke dosimetry system may be used at lower energies by employing thinner (in the beam direction) dosimeter containers (see ICRU Report 35).
1.5.4The irradiation temperature of the dosimeter should be within the range of 10 to 60°C.
1.6This 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 health practices and determine the applicability of regulatory limitations prior to use.
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