ASTM D4483-2005a Standard Practice for Evaluating Precision for Test Method Standards in the Rubber and Carbon Black Manufacturing Industries《在橡胶和碳黑生产工业中试验方法标准的精确度评价的标准规程》.pdf
《ASTM D4483-2005a Standard Practice for Evaluating Precision for Test Method Standards in the Rubber and Carbon Black Manufacturing Industries《在橡胶和碳黑生产工业中试验方法标准的精确度评价的标准规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM D4483-2005a Standard Practice for Evaluating Precision for Test Method Standards in the Rubber and Carbon Black Manufacturing Industries《在橡胶和碳黑生产工业中试验方法标准的精确度评价的标准规程》.pdf(60页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: D 4483 05aStandard Practice forEvaluating Precision for Test Method Standards in theRubber and Carbon Black Manufacturing Industries1This standard is issued under the fixed designation D 4483; the number immediately following the designation indicates the year oforiginal adoption or, in
2、 the case 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.INTRODUCTIONThe primary precision standard for ASTM test method standards is Practice E 691; a
3、 genericstandard that presents the fundamental statistical approach and calculation algorithms for evaluatingrepeatability and reproducibility precision. However, certain parts of Practice E 691 are notcompatible with precision as evaluated in the rubber manufacturing and carbon black industries ove
4、rthe past four decades. Thus a separate standard is required for precision in these two industries. Thispractice is being issued as a major revision of Practice D 4483, which has been used for precisionevaluation by Committee D11 since 1985. The basic Practice D 4483 precision calculation algorithms
5、,the same as in Practice E 691, are unchanged. This new revised Practice D 4483, organized toaccommodate the requirements of the rubber and carbon black manufacturing industries, has threenew features that provide for a more formal and structured analysis of interlaboratory test program(ITP) data.Fi
6、rst it addresses the overriding issues with precision evaluation over the past several decadesthefrequent discovery that reproducibility for many test methods is quite poor. Experience has shown thatfrequently poor reproducibility is caused by only a few laboratories that differ from the remainder t
7、hatgive good agreement. A new procedure designated as robust analysis provides an improved methodfor detecting outliers that cause poor precision, especially poor between laboratory agreement.Second, after outlier detection the new standard provides two options; (1) outlier deletion or (2) outlierre
8、placement. When outliers are deleted the revised standard provides a way to retain the non-outlierlaboratory data. This allows for a broader database for precision calculation. The current ASTMCommittee E11 computer program for calculating precision does not allow for outlier deletion in thisway. Th
9、ird, when exercising outlier Option 2, the standard gives a procedure for calculating specialreplacement values for deleted outliers in ITPs that have only a few participating laboratories. Thereplacement values are obtained in a way that preserves the observed data distribution of thenon-outlier da
10、ta. This is important since many ITPs are in the limited number of participatinglaboratories category.1. Scope1.1 This practice covers guidelines for evaluating precisionand serves as the governing practice for interlaboratory testprograms (ITP) used to evaluate precision for test methods asused in
11、the rubber manufacturing and the carbon black indus-tries. This practice uses the basic one way analysis of variancecalculation algorithms of Practice E 691. Although bias is notevaluated in this practice, it is an essential concept in under-standing precision evaluation.1.2 This practice applies to
12、 test methods that have testresults expressed in terms of a quantitative continuous variable.Although exceptions may occur, it is in general limited to testmethods that are fully developed and in routine use in a numberof laboratories.1.3 Two precision evaluation methods are given that aredescribed
13、as robust statistical procedures that attempt toeliminate or substantially decrease the influence of outliers.The first is a General Precision procedure intended for all testmethods in the rubber manufacturing industry, and the secondis a specific variation of the general precision proceduredesignat
14、ed as Special Precision, that applies to carbon black1This practice is under the jurisdiction ofASTM Committee D11 on Rubber andis the direct responsibility of Subcommittee D11.16 on Application of StatisticalMethods.Current edition approved Dec. 1, 2005. Published January 2006. Originallyapproved i
15、n 1985. Last previous edition approved in 2005 as D 4483 05.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.testing. Both of these procedures use the same uniform levelexperimental design and the Mandel h and k statistics to reviewth
16、e precision database for potential outliers. However, they useslight modifications in the procedure for rejecting incompatibledata values as outliers. The Special Precision procedure isspecific as to the number of replicates per database cell ormaterial-laboratory combination.1.4 This practice is di
17、vided into the following sections:SectionScope 1Referenced Documents 2Terminology 3Significance and Use 4Precision EvaluationGeneral Precision and Spe-cial Precision5Steps in Organizing an Interlaboratory Test Program(ITP)6Overview of the General Precision Analysis Proce-dure7General Precision: Anal
18、ysis Step 1 8Preliminary Graphical Data Review 8.1Calculation of Precision for Original Database 8.2Detection of Outliers at 5 % Significance LevelUsing h and k Statistics8.3Generation of Revision 1 Database Using OutlierTreatment Option 1 or 28.4General Precision: Analysis Step 2 9Calculation of Pr
19、ecision for Revision 1 Database 9.1Detection of Outliers at 2 % Significance LevelUsing h and k Statistics9.1Generation of Revision 2 Database Using OutlierTreatment Option 1 or 29.1.2General Precision: Analysis Step 3 10Calculation of Precision Using Revision 2 Data-base10.1Special Precision Analys
20、isCarbon Black Testing 11Format for Precision Table and Clause in TestMethod Standards12Preparation of Report for Precision Analysis 13Definitions for Selected Terms Concerned with Preci-sion and TestingAnnex A1Statistical Model for Interlaboratory Testing Pro-gramsAnnex A2Calculating the h and k Co
21、nsistency Statistics forOutliersAnnex A3Spreadsheet Calculation Formulas, Table Layout,and Calculation SequenceAnnex A4Procedure for Calculating Replacement Values ofDeleted OutliersAnnex A5Example of General Precision EvaluationMooneyViscosity TestingAnnex A61.5 Six annexes are presented; these ser
22、ve as supplements tothe main body of this practice. Annex A1 and Annex A2 aregiven mainly as background information that is important for afull understanding of precision evaluation. Annex A3-AnnexA5 contain detailed instructions and procedures needed toperform the operations as called for in variou
23、s parts of thepractice. The use of these annexes in this capacity avoids longsections of involved instruction in the main body of thispractice. This allows for a better presentation and understand-ing of the central concepts involved in the evaluation ofprecision. Annex A6 is also important; it give
24、s a completeexample of precision evaluation that illustrates all of theprocedures and options likely to be encountered in anyprecision evaluation, from the simple to the most complex.1.6 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is there
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