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GB/T 10264-2014 English PDF

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GB/T 10264-2014: Thermoluminescence dosimetry for personal and environmental monitoring
Status: Valid

GB/T 10264: Evolution and historical versions

Standard IDContents [version]USDSTEP2[PDF] delivered inStandard Title (Description)StatusPDF
GB/T 10264-2014English1054 Add to Cart 3 days [Need to translate] Thermoluminescence dosimetry for personal and environmental monitoring Valid GB/T 10264-2014
GB/T 10264-1988English199 Add to Cart 2 days [Need to translate] Thermoluminescence dosimetry for personal and environmental monitoring Obsolete GB/T 10264-1988

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Basic data

Standard ID GB/T 10264-2014 (GB/T10264-2014)
Description (Translated English) Thermoluminescence dosimetry for personal and environmental monitoring
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard F84
Classification of International Standard 13.280
Word Count Estimation 53,538
Date of Issue 9/3/2014
Date of Implementation 2/1/2015
Older Standard (superseded by this standard) GB/T 10264-1988
Quoted Standard GB/T 2900.81-2008; GB/T 2900.82-2008; IEC 60050-311-2001; IEC 60068-2-32; IEC 60904-3; IEC 61000-4-2; IEC 61000-4-3; IEC 61000-4-4; IEC 61000-4-5; IEC 61000-4-6; IEC 61000-4-8; IEC 61000-4-11; IEC 61000-6-2; ISO 6980; ISO 12794-2000; ICRU REPORT 39; ICRU
Adopted Standard IEC 61066-2006, IDT
Regulation (derived from) People's Republic of China Announcement of Newly Approved National Standards No. 21 of 2014
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary This Standard applies to measuring the dose range of 0.01 mSv ~ photon or �� radiation personal dose equivalent from external exposure within 10 Sv Hp (10) or Hp (0.07), or the ambient dose equivalent H (10) of the thermal dosimetry (TLD)system. For differ

GB/T 10264-2014: Thermoluminescence dosimetry for personal and environmental monitoring

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Thermoluminescence dosimetry for personal and environmental monitoring ICS 13.280 F84 National Standards of People's Republic of China Replacing GB/T 10264-1988 Personal and environmental monitoring thermal dosimetry system (IEC 61066.2006, IDT) Issued on. 2014-09-03 2015-02-01 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China released

Table of Contents

Introduction Ⅴ Introduction Ⅵ 1 Scope 1 2 Normative references 1 3 Terms and definitions 3 4 units and symbols 10 5 General test methods 12 5.1 Basic Test Method 12 5.2 Test Method 13 for each test to be considered 6 performance requirements. Overview 14 Function 7 dosimetry system 19 7.1 Overview 19 7.2 Measuring range and type of radiation 19 7.3 influence quantity the rated range of 19 7.4 The maximum rated measurement time tmax 19 19 7.5 Reusability 7.6 model function 20 7.7 Dosimetry System features Example 20 About 8 Dosimetry System requirements 20 8.1 Overview 20 8.2 dose indicated value (dose measurement system) 20 8.3 dosimeter (dose measurement system) dose assignment 21 8.4 Information given instrument (reader and dosimeters) 21 8.5 radioactive contamination retention and removal (dosimeters) 21 8.6 Evaluation algorithm indicated value (dose measurement system) 21 8.7 mixed radiation field with a dosimeter (dose measurement system) 21 9 Performance requirements and test radiation (dose measurement system) 21 9.1 Overview 21 9.2 coefficient of variation 21 9.3 Nonlinear Response 22 9.4 overload characteristics, residual effects and reuse 23 9.5 Hp (10) and H * (10) dosimeter radiation energy and angle of incidence of 23 9.6 Hp (0.07) dosimeter radiation energy and angle of incidence of 25 9.7 from Hp (10) or Hp (0.07) dose meter 26 side Additivity 10 (dosimetry system) indicates the value of 27 27 10.1 Requirements 10.2 Test Method 27 10.3 Interpretation of Results 28 11 environmental performance requirements and test 28 11.1 Overview 28 11.2 ambient temperature and relative humidity (dosimeters) 28 11.3 light (dosimeters) 29 11.4 cumulative dose, decline, since exposure and response (dosimeter) of natural radiation 30 11.5 seal (dosimeters) 30 11.6 Stability reader (reader) 31 11.7 Ambient temperature (readout) 31 11.8 illumination (reader) 32 11.9 Power (reader) 32 11.10 The overall interpretation of the results 33 12 Electromagnetic Performance requirements and tests (dose measurement system) 33 12.1 Overview 33 33 12.2 Requirements 12.3 Test Method 33 12.4 Interpretation of Results 34 13 mechanical performance requirements and test 34 13.1 Overview 34 13.2 drop test (dosimeters) 34 13.3 Vibration test (weighing less than 15kg and dosimeter reader) 35 13.4 The overall interpretation of the results 35 14 dosimetry system software, data and interface 35 14.1 Overview 35 36 14.2 Requirements 14.3 Test Method 37 15 User's Manual 39 15.1 Overview 39 15.2 Technical Data Description 39 16 File 40 16.1 type test report 40 16.2 type test laboratory certificate issued 40 Appendix A (normative) Confidence Limits 41 Annex B (informative) read causality signal indicating value and the measured value is between 43 Necessary action to Annex C (informative) according to the standard type tests taken 44 Overview Appendix NA (normative) Normative references in this standard correspondence documents of international documents and files 45 Figure A.1 confidence interval test 41 Figure B.1 dose measurement data Evaluation System 43 Table 1 Symbols and Abbreviations 10 Table 2 Reference conditions and standard test conditions 12 Performance Table 3 Hp (10) dose meter of claim 14 Performance Table 4 Hp (0.07) dose meter of claim 15 Performance Table 5 H * (10) dosimeter of claim 16 Table 6 dosimeter environmental performance and the requirements of the reader 17 Table 7 Chapter 12 on performance reader electromagnetic disturbance requirements 18 Table 8 dosimeter reader and mechanical requirements 19 Table A.1 95% confidence level bilateral student Distribution Coverage Factor 42 (10) dose meter type test List Table C.1 meet the minimum requirements of the rated range Hp 44 Table NA.1 this correspondence between standard normative references in international documents and files of 45

Foreword

This standard was drafted in accordance with GB/T 1.1-2009 given rules. This standard replaces GB/T 10264-1988 "personal and environmental monitoring thermal dosimetry system", and GB/T 10264-1988 Compared to the main technical changes are as follows. --- Standard text structural changes to prepare the format and technical content by IEC 61066.2006. --- "1" and no longer distinguish between the energy range of environmental monitoring and personal monitoring for Hp (10) and H * (10), photon radiation energy The amount of range extension of 12keV ~ 7MeV, β radiation of maximum energy range extended to 225keV ~ 3.54MeV, an increase of In Hp (0.07) photon radiation energy range 8keV ~ 250keV. --- Added "2 normative references." --- "3 Terms and Definitions" modify, supplement the terms and their definitions. --- "4 units and symbols" to increase the dose equivalent units Greek [Waters] (Sv) and Table 1, "Symbols and abbreviations." --- Product no longer follow the original method does not distinguish between environmental dosimeters and personal dosimeters performance requirements. --- Technical requirements change. • Type test reference conditions, radiation background is less than 0.1μSv/h, the reference radiation is S-Cs, N-80; • standard test conditions for type testing, β reference radiation source is a 90Sr/90Y; γ radiation background ≤0.25μSv/h; • Evaluation of the performance of dosimetry system has been simplified and principled; • increasing the dose measurement system software, and interface parameters of performance requirements. This standard uses the translation method identical with IEC 61066.2006 "Personal and environmental monitoring thermoluminescence dosimetry system." The standard IEC 61066.2006 made the following editorial changes. --- "2 Normative references" to the new standard replaces the old version of the standard (to IEC 60050-394.2007 instead of IEC 60050- 394.1995) and has corresponding national standards with international standards to our standards; --- The "2 Normative references" in ISO 4037-1, ISO 4037-2, ISO 4037-3 and ISO 4037-4 combined to ISO 4037 (All parts), the ISO 8529-1, ISO 8529-2 and ISO 8529-3 combined to ISO 8529 (all parts); --- Remove the body does not appear in the IEC 60359.2001; --- In the text in Tables 3 to 5 later, press the Chinese practice of using [0.71,1.67] instead of [0.71..1.67] represents the data interval; --- In order to facilitate the following description in line with Chinese habits, 11.9.3 "Group 1 (the reference group). the nominal voltage and nominal frequency" was changed to "Group 1 (the reference group). Nominal voltage (Un), the nominal frequency (fn)"; --- Increased appendix NA "Normative references in this standard correspondence documents of international documents and files." This standard by the National Nuclear Instrument Standardization Technical Committee (SAC/TC30) and focal points. This standard was drafted. Taishan Nuclear Power Joint Venture Co., Ltd. Nuclear Power Operation Management. The main drafters of this standard. Guozhijun, Wang Chuan, who Shintada. This standard was first released in December 1988, this revision is the first revision.

Introduction

Thermal dosimetry system (TLD) by the following components. a) passive components (in the middle of this standard dosimeter). one or more radiation detectors and some methods of identification; b) the reader. heating after exposure to ionizing radiation detectors and measuring the amount of light emitted by the heating used to determine the radiation dose; c) the reader with a computer control software. memory readout data coming from paper to electronic documents or text computing, Evaluation of dose data display and storage; d) auxiliary equipment and program files (manual). used for correlation processing, for example, the dose delete stored information, clean dose Meter or the whole system to ensure the necessary effectiveness. Personal and environmental monitoring thermal dosimetry system

1 Scope

This standard applies to measuring the dose range within 0.01mSv ~ 10Sv photon irradiation or β radiation outside the personal dose equivalent Hp (10) Or Hp (0.07), or the ambient dose equivalent H * (10) thermal dosimetry (TLD) systems. For different practical amount and type of radiation Type, were provided for different energy range (see table below). Table of total energy value of the average energy are commonly used dosimetric quantity. Practical photon radiation amount β radiation Hp (10); H * (10) 12keV ~ 7MeV - Hp (0.07) 8keV ~ 250keV 0.07MeVa ~ 1.2MeV almost equal to the 225keV ~ 3.54MeV Maximum energy Emax range a β radiation of energy greater than 0.07MeV particles can penetrate the depth of 0.07mm nominal dead layer of skin (the equivalent of 0.07mm depth of ICRU tissue equivalent). Note 1. Unless otherwise indicated, the standard "dose" refers to the personal dose equivalent or ambient dose equivalent. Note 2. For Hp (10) and H * (10), without regard to β radiation, because it applies no conversion factor in ICRU56, ICRU57 and ISO 6980 in. This standard applies to the desired energy unit (Sv) Evaluation read dose TLD (TLD) measurement system. Only other Dosimeter measurements of natural background radiation correction. Note 3. The dose calculation may be performed before or after the amendment of the natural background radiation. For a fixed range of influence quantity, this standard specifies the minimum requirements, such as the photon energy range 80keV ~ 1.25MeV (Table 3 ~ table 5). Dosimetry system should meet the requirements for the minimum range. But different manufacturers may affect the amount specified greater range, for example, Such as, 60keV ~ 7MeV. These larger range called nominal range. In this case, the system should meet the dose measurement range for rated Wai requirements. Accordingly, the scope prescribed by a group meets the requirements of this standard (dose, energy, temperature, etc.) of the dosimetry system sort. This standard specifies the thermal dosimetry system general characteristics, general test methods and performance requirements, as well as radiation characteristic ring Environmental, electrical, mechanical, software, and security features. Since the system is concerned only with performance during the type test requirements of this standard does not check the thermal dosimetry system of absolute calibration. in Check the absolute calibration during routine testing. This standard does not cover the requirements of the neutron dosimeter not involve the results of data processing.

2 Normative references

The following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein Member. For undated references, the latest edition (including any amendments) applies to this document. GB/T 2900.81-2008 Electrotechnical terminology Nuclear Instruments Physical phenomena and basic concepts (IEC 60050-393.2003, IDT) GB/T 2900.82-2008 Electrotechnical terminology nuclear instrumentation equipment, systems, equipment and detectors (IEC 60050-394.2007, IDT) IEC 60050-311.2001 International Electrotechnical Vocabulary (IEV) electrical and electronic measuring and measuring instruments - Part 311. Measurement through The term (InternationalElectrotechnicalVocabulary (IEV) -Electricalandelectronicmeasurementsand measuringinstruments-Part 311. Generaltermsrelatingtomeasurements) IEC 60068-2-32 Environmental testing Part 2. Tests - Test Ed. Free fall (Environmentaltesting-

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