ASTM C1592-2004 Standard Guide for Nondestructive Assay Measurements《无损分析测量的标准指南》.pdf
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1、Designation: C 1592 04Standard Guide forNondestructive Assay Measurements1This standard is issued under the fixed designation C 1592; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parenthese
2、s indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide is a compendium of Good Practices forperforming measurements of radioactive material using non-destructive assay (NDA) instruments. The primary
3、 purpose ofthe guide is to assist its users in arriving at quality NDA results,that is, results that satisfy the end users needs. This isaccomplished by providing an acceptable and uniform basis forthe collection, analysis, comparison, and application of data.The recommendations are not compulsory o
4、r pre requisites toachieving quality NDA measurements, but are consideredcontributory in most areas.1.2 This guide applies to the use of NDA instrumentationfor the measurement of nuclear materials by the observation ofspontaneous or stimulated nuclear radiations, including pho-tons, neutrons, or the
5、 flow of heat. Recommended calibration,operating, and assurance methods represent guiding principlesbased on current NDA technology. The diversity of industry-wide nuclear materials measurement applications and instru-mentation precludes discussion of specific measurement situ-ations. As a result, c
6、ompliance with practices recommended inthis guide must be based on a thorough understanding ofcontributing variables and performance requirements of thespecific measurement application.1.3 Selection of the best instrument for a given measure-ment application and advice on the use of this instrument
7、mustbe provided by a qualified NDA professional following guid-ance provided in Guide C 1490. This guide is to be used as areference, and to supplement the critical thinking, professionalskill, expert judgement, and experimental test and verificationneeded to ensure that the instrumentation and meth
8、ods havebeen properly implemented.1.4 The intended audience for this guide includes but is notlimited to Management, Auditor Support, NDA QualifiedInstrument Operators, NDA Technical Specialists, and NDAProfessionals.2. Referenced Documents2.1 ASTM Standards:2C 859 Terminology Relating to Nuclear Ma
9、terialsC 1030 Test Method for Determination of Plutonium Isoto-pic Composition by Gamma-Ray SpectrometryC 1133 Test Method for Nondestructive Assay of SpecialNuclear Material in Low-Density Scrap and Waste bySegmented Passive Gamma-Ray ScanningC 1207 Test Method for Nondestructive Assay of Plutonium
10、in Scrap and Waste by Passive Neutron CoincidenceCountingC 1215 Guide for Preparing and Interpreting Precision andBias Statements in Test Method Standards used in theNuclear IndustryC 1221 Test Method for Nondestructive Analysis of SpecialNuclear Materials in homogeneous Solutions by Gamma-Ray Spect
11、rometryC 1254 Test Method for Determination of Uranium inMineral Acids by X-ray FluorescenceC 1268 Test Method for Quantitative Determination ofAmericium 241 in Plutonium by Gamma-Ray Spectrom-etryC 1316 Test Method for Nondestructive Assay of NuclearMaterial in Scrap and Waste by Passive-Active Neu
12、tronCounting Using a252Cf ShufflerC 1455 Guide for Nondestructive Assay of Special NuclearMaterial Holdup Using Gamma-Ray Spectroscopic Meth-odsC 1458 Test Method for Nondestructive Assay of Pluto-nium, Tritium and241Am by Calorimetric AssayC 1490 Guide for the Selection, Training and Qualificationo
13、f Nondestructive Assay (NDA) PersonnelC 1493 Test Method for Non Destructive Assay of NuclearMaterial in Waste by Passive and Active Neutron CountingUsing a Differential Die Away System1This guide is under the jurisdiction of ASTM Committee C26 on Nuclear FuelCycle and is the direct responsibility o
14、f Subcommittee C26.10 on Non DestructiveAssay.Current edition approved Feb. 1, 2004. Published March 2004.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standa
15、rds Document Summary page onthe ASTM website.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.C 1514 Test Method for Measurement of235U FractionUsing the Enrichment Meter Principle3. Terminology3.1 Definitions presented here are confi
16、ned to those termsnot defined in common nuclear materials glossaries/referencesor whose use is specific to this application. The use ofstatistical terms is consistent with the definitions in AmericanNational Standard Statistical Terminology and Notation forNuclear Materials Management, N15.5-1972. S
17、ome of thosedefinitions are repeated here for convenience to the reader.3.2 Definitions:3.2.1 (a n) reactions(a, n) reactions occur when energeticalpha particles collide with low atomic number nuclei, such asO, F, or Mg, producing single neutrons.3.2.2240Pu effective massmeffis the mass of240Pu that
18、would produce the same coincident, or total, neutron responsein the instrument as the assay item, all other factors remainingunchanged. It is correlated to the quantity of even massisotopes of plutonium in the assay item.3.2.3 absorber foilsthin metal foils that are used to reducethe contribution of
19、 low-energy gamma rays to the overall countrate.3.2.4 accidentalsthe accidental or random summing ofneutrons generate a signature like that from true or Realcoincidences. For shift register pulse train deconvolution thenumber of neutrons detected in the (A) gate period followingthe initial detection
20、 of each neutron during the selected counttime t. This is a measured quantity.3.2.5 accuracy(1) bias; (2) the closeness of a measuredvalue to the true value; and (3) the closeness of a measuredvalue to an accepted reference or standard value.3.2.6 assayto determine quantitatively the amount of oneor
21、 more nuclides of interest contained in an item, or the resultof such a determination.3.2.7 backgroundextraneous signal superimposed on thesignal of interest.3.2.8 benign matrixbulk material that has no effect on theresult of the measured parameter.3.2.9 biasa constant positive or negative deviation
22、 of themethod average from the correct value or accepted referencevalue.3.2.10 calibrationthe determination of the values of thesignificant parameters by comparison with values indicated bya reference instrument, by a set of reference standards ormodeled parameters. C 8593.2.11 certificationa writte
23、n declaration from a certifyingbody or its legitimate designee that a particular measurementprocess complies with stated criteria, or a measured item hasthe stated characteristics.3.2.12 coincident neutronstwo or more neutrons emittedsimultaneously from single event, such as from a nucleusduring fis
24、sion.3.2.13 collimatorusually constructed of lead or tungsten,a collimator serves to define a gamma-ray detectors horizontaland vertical viewing angles and to shield the detector fromambient radiation.3.2.14 confidence intervalthe range of values, calculatedfrom an estimate of the mean and standard
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