ASTM C1128-2001 Standard Guide for Preparation of Working Reference Materials for Use in the Analysis of Nuclear Fuel Cycle Materials《核燃料循环材料分析用操作参考材料制备的标准指南》.pdf
《ASTM C1128-2001 Standard Guide for Preparation of Working Reference Materials for Use in the Analysis of Nuclear Fuel Cycle Materials《核燃料循环材料分析用操作参考材料制备的标准指南》.pdf》由会员分享,可在线阅读,更多相关《ASTM C1128-2001 Standard Guide for Preparation of Working Reference Materials for Use in the Analysis of Nuclear Fuel Cycle Materials《核燃料循环材料分析用操作参考材料制备的标准指南》.pdf(12页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C 1128 01Standard Guide forPreparation of Working Reference Materials for Use in theAnalysis of Nuclear Fuel Cycle Materials1This standard is issued under the fixed designation C 1128; the number immediately following the designation indicates the year oforiginal adoption or, in the cas
2、e of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide covers the preparation and characterizationof working reference materials (WRM)
3、 that are produced by alaboratory for its own use in the analysis of nuclear materials.Guidance is provided for establishing traceability of WRMs tocertified reference materials by a defined characterizationprocess. The guidance provided is generic; it is not specific fora given material.1.2 The inf
4、ormation provided by this guide is found in thefollowing sections:SectionPlanning 6Preparation 7Packaging and Storage 8Characterization 9Statistical Analysis 10Documentation 111.3 The values stated in SI units are to be regarded as thestandard.1.4 This standard does not purport to address all of the
5、safety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:C 859 Terminology Relating to
6、 Nuclear Materials2C 1009 Guide for Establishing a Quality Assurance Pro-gram for Analytical Chemistry Laboratories Within theNuclear Industry2C 1068 Guide for Qualification of Measurement Methodsby a Laboratory Within the Nuclear Industry2C 1215 Guide for Preparing and Interpreting Precision andBia
7、s Statements in Test Method Standards in the NuclearIndustry22.2 ISO Standards:ISO Guide to the Expression of Uncertainty in Measure-ment3ISO 17025 General Requirements for the Competence ofCalibration and Testing Laboratories3ISO Guide 30 Terms and Definitions Used in Connectionwith Reference Mater
8、ials33. Terminology43.1 Definitions of Terms Specific to This Standard:3.1.1 certified reference material (CRM)5a reference ma-terial with one or more property values that are certified by atechnically valid procedure, accompanied by or traceable to acertificate or other documentation that is issued
9、 by a certifyingbody (as defined by ISO Guide 30). A certifying body is atechnically competent body (organization or firm, public orprivate) that issues a reference material certificate (as definedby ISO Guide 30). A reference material certificate is a docu-ment certifying one or more property value
10、s for a certifiedreference material, stating that the necessary procedures havebeen carried out to establish their validity (as defined by ISOGuide 30).3.1.2 reference material (RM)5a material or substanceone or more properties of which are sufficiently well estab-lished to be used for the calibrati
11、on of an apparatus, theassessment of a measurement method, or assigning values tomaterials (as defined by ISO Guide 30). A reference materialmay be referred to in this guide also as a standard, such ascalibration standard or control standard.3.1.3 working reference material (WRM)5a RM usuallyprepare
12、d by a single laboratory for its own use as a calibrationstandard, as a control standard, or for the qualification of ameasurement method (see Guide C 1068) as indicated in Fig.1.4. Summary of Guide4.1 This guide covers the preparation of WRMs fromnuclear fuel cycle materials. These materials are co
13、mpoundsand metal of uranium and plutonium, absorber materials such1This guide is under the jurisdiction of ASTM Committee C26 on Nuclear FuelCycle and is the direct responsibility of Subcommittee C26.8 on Quality AssuranceApplications.Current edition approved June 10, 2001. Published September 2001.
14、 Originallypublished as C 1128 89. Last previous edition C 1128 95.2Annual Book of ASTM Standards, Vol 12.01.3Available from American National Standards Institute, 11 W. 42nd St., 13thFloor, New York, NY 10036.4See C 859 for other terms specific to the nuclear fuel cycle.5It is important that a well
15、 defined uncertainty in the stated value(s) be given inthe certificate.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.as boron carbide, and cladding materials such as zirconium andstainless steel. The criteria governing the preparat
16、ion of reli-able WRMs are identified and discussed. Because this guide isgeneric, requirements and detailed information for specificnuclear materials are not given. A flow diagram to illustrate anapproach to producing WRMs is given in Fig. 2.5. Significance and Use5.1 Certified reference materials (
17、CRMs) prepared fromnuclear materials are generally of high purity, possessingchemical stability or reproducible stoichiometry. Usually theyare certified using the most unbiased and precise measurementmethods available, often with more than one laboratory beinginvolved in making certification measure
18、ments. CRMs aregenerally used on a national or international level, and they areat the top of the metrological hierarchy of reference materials.A graphical representation of a national nuclear measurementsystem is shown in Fig. 3.5.2 Working reference materials (WRMs) need to havequality characteris
19、tics that are similar to CRMs, although therigor used to achieve those characteristics is not usually asstringent as for CRMs. Where possible, CRMs are often usedto calibrate the methods used for establishing the concentrationvalues (reference values) assigned to WRMs, thus providingtraceability to
20、CRMs as required by ISO 17025. A WRM isnormally prepared for a specific application.5.3 Because of the importance of having highly reliablemeasurement data from nuclear materials, particularly forcontrol and accountability purposes, CRMs are sometimesused for calibration when available. However, CRM
21、s preparedfrom nuclear materials are not always available for specificapplications. Thus, there may be a need for a laboratory toprepare WRMs from nuclear materials. Also, CRMs are oftentoo expensive, or their supply is too limited for use in thequantities needed for long-term, routine use. When pro
22、perlyprepared, WRMs will serve equally well as CRMs for mostapplications, and using WRMs will preserve supplies ofCRMs.5.4 Difficulties may be encountered in the preparation ofRMs from nuclear materials because of the chemical andphysical properties of the materials. Chemical instabilities,problems
23、in ensuring stoichiometry, and radioactivity arefactors involved, with all three factors being involved withsome materials. Those preparing WRMs from nuclear materi-als must be aware of how these factors affect preparation, aswell as being aware of the other criteria governing thepreparation of reli
24、able WRMs.6. Planning6.1 Producing a WRM requires forethought to ensure thecredibility of the completed WRM. Planning also ensures thatthe necessary resources are available. Time, funding, andmaterials can be wasted easily without thorough planning.Planning should include developing an outline or ge
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