ASTM D4821-2015 Standard Guide for Carbon BlackValidation of Test Method Precision and Bias《炭黑试验方法精确度和偏差验证的标准指南》.pdf
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1、Designation: D4821 14D4821 15Standard Guide forCarbon BlackValidation of Test Method Precision andBias1This standard is issued under the fixed designation D4821; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revi
2、sion. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide covers procedures for using theASTM Standard Reference Blacks2 (SRBs) and the HT and INR Iodine NumberStandards to c
3、ontinuously monitor the precision of those carbon black test methods for which reference values have beenestablished. It also offers guidelines for troubleshooting various test methods.1.2 This guide establishes procedures for the use of x-charts to continuously monitor those tests listed in Section
4、 2 for within-labprecision (repeatability) and between-lab accuracy (reproducibility).1.3 This guide provides a statistical procedure for improving test reproducibility when a laboratory cannot physically calibrateits apparatus to obtain the reference values of the ASTM reference blacks, within the
5、ranges given in this guide.2. Referenced Documents2.1 ASTM Standards:3D1510 Test Method for Carbon BlackIodine Adsorption NumberD1513 Test Method for Carbon Black, PelletedPour DensityD1765 Classification System for Carbon Blacks Used in Rubber ProductsD2414 Test Method for Carbon BlackOil Absorptio
6、n Number (OAN)D3265 Test Method for Carbon BlackTint StrengthD3324 Practice for Carbon BlackImproving Test Reproducibility Using ASTM Standard Reference Blacks (Withdrawn2002)4D3493 Test Method for Carbon BlackOil Absorption Number of Compressed Sample (COAN)D6556 Test Method for Carbon BlackTotal a
7、nd External Surface Area by Nitrogen AdsorptionE177 Practice for Use of the Terms Precision and Bias in ASTM Test MethodsE2282 Guide for Defining the Test Result of a Test MethodE2586 Practice for Calculating and Using Basic Statistics3. Terminology3.1 Definitions:3.1.1 accepted reference value, na
8、value that serves as an agreed-upon reference for comparison, and which is derived as: (1)a theoretical or established value, based on scientific principles, (2) an assigned or certified value, based on experimental work ofsome national or international organization, or (3) a consensus or certified
9、value, based on collaborative experimental work underthe auspices of a scientific or engineering group.3.1.1.1 Discussion1 This guide is under the jurisdiction of ASTM Committee D24 on Carbon Black and is the direct responsibility of Subcommittee D24.61 on Carbon Black Sampling andStatistical Analys
10、is.Current edition approved June 1, 2014Jan. 1, 2015. Published August 2014February 2015. Originally approved in 1988. Last previous edition approved in 20072014 asD4821 07D4821 14.1. DOI: 10.1520/D4821-14.10.1520/D4821-15.2 Standard Reference Blacks are available from Laboratory Standards thus, “st
11、andarddeviation of test results among operators in a laboratory,” or “day-to-day standard deviation within a laboratory for the sameoperator.”3.1.7.2 DiscussionBecause the training of operators, the agreement of different pieces of equipment in the same laboratory and the variation ofenvironmental c
12、onditions with longer time intervals all depend on the degree of within-laboratory control, the intermediatemeasures of precision are likely to vary appreciably from laboratory to laboratory. Thus, intermediate precisions may be morecharacteristic of individual laboratories than of the test method.
13、E1773.1.8 intermediate precision conditions, nconditions under which test results are obtained with the same test method using testunits or test specimens taken at random from a single quantity of material that is as nearly homogeneous as possible, and withchanging conditions such as operator, measu
14、ring equipment, location within the laboratory, and time. E1773.1.9 measured value, nan observed test results as opposed to a standard value. D33243.1.10 normalization, nthe practice of applying a statistical correction to test measurements to improve accuracy.3.1.10.1 DiscussionThe correction of te
15、st data using a straight-line equation (linear regression) where measurements of ASTM reference blacks areanalyzed with published accepted reference values to determine a slope and y-intercept. Normalization is a proven technique toimprove the accuracy or reproducibility of laboratory data when all
16、other means of calibration do not satisfactorily achieve adesired state of calibration.3.1.11 observation, nthe process of obtaining information regarding the presence or absence of an attribute of a test specimen,or of making a reading on a characteristic or dimension of a test specimen. E22823.1.1
17、2 observed value, nthe value obtained by making an observation. E22823.1.13 precision, nthe closeness of agreement between independent test results obtained under stipulated conditions.3.1.13.1 DiscussionD4821 152Precision depends on random errors and does not relate to the accepted reference value.
18、3.1.13.2 DiscussionThe measure of precision usually is expressed in terms of imprecision and computed as a standard deviation of the test results. Lessprecision is reflected by a larger standard deviation.3.1.13.3 Discussion“Independent test results” means results obtained in a manner not influenced
19、 by any previous result on the same or similar testobject. Quantitative measures of precision depend critically on the stipulated conditions. Repeatability and reproducibilityconditions are particular sets of extreme stipulated conditions. E1773.1.14 regression of standard values on measured values,
20、 nstatistical equation derived by the method of least-squares. D33243.1.15 repeatability, nprecision under repeatability conditions.3.1.15.1 DiscussionRepeatability is one of the concepts or categories of the precision of a test method.3.1.15.2 DiscussionMeasures of repeatability defined in this com
21、pilation are repeatability standard deviation and repeatability limit. E1773.1.16 repeatability conditions, nconditions where independent test results are obtained with the same method on identical testitems in the same laboratory by the same operator using the same equipment within short intervals
22、of time.3.1.16.1 DiscussionSee precision, the “same operator, same equipment” requirement means that for a particular step in the measurement process, thesame combination of operator and equipment is used for every test result. Thus, one operator may prepare the test specimens, asecond measure the d
23、imensions and a third measure the mass in a test method for determining density.3.1.16.2 DiscussionBy “in the shortest practical period of time” is meant that the test results, at least for one material, are obtained in a time periodnot less than in normal testing and not so long as to permit signif
24、icant change in test material, equipment or environment. E1773.1.17 repeatability limit (r), nthe value below which the absolute difference between two individual test results obtainedunder repeatability conditions may be expected to occur with a probability of approximately 0.95 (95 %).3.1.17.1 Dis
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