ASTM E112-2010 4375 Standard Test Methods for Determining Average Grain Size《测定平均粒度的标准试验方法》.pdf
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1、Designation: E112 10Standard Test Methods forDetermining Average Grain Size1This standard is issued under the fixed designation E112; 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 () indicates an editorial change since the last revision or reapproval.This standard has been approved for use by agencies of the Department of Defense.INTRODUCTIONThese test methods of determination of average grain size in metallic mate
3、rials are primarilymeasuring procedures and, because of their purely geometric basis, are independent of the metal oralloy concerned. In fact, the basic procedures may also be used for the estimation of average grain,crystal, or cell size in nonmetallic materials. The comparison method may be used i
4、f the structure ofthe material approaches the appearance of one of the standard comparison charts. The intercept andplanimetric methods are always applicable for determining average grain size. However, thecomparison charts cannot be used for measurement of individual grains.1. Scope1.1 These test m
5、ethods cover the measurement of averagegrain size and include the comparison procedure, the planimet-ric (or Jeffries) procedure, and the intercept procedures. Thesetest methods may also be applied to nonmetallic materials withstructures having appearances similar to those of the metallicstructures
6、shown in the comparison charts. These test methodsapply chiefly to single phase grain structures but they can beapplied to determine the average size of a particular type ofgrain structure in a multiphase or multiconstituent specimen.1.2 These test methods are used to determine the averagegrain size
7、 of specimens with a unimodal distribution of grainareas, diameters, or intercept lengths. These distributions areapproximately log normal. These test methods do not covermethods to characterize the nature of these distributions.Characterization of grain size in specimens with duplex grainsize distr
8、ibutions is described in Test Methods E1181. Mea-surement of individual, very coarse grains in a fine grainedmatrix is described in Test Methods E930.1.3 These test methods deal only with determination ofplanar grain size, that is, characterization of the two-dimensional grain sections revealed by t
9、he sectioning plane.Determination of spatial grain size, that is, measurement of thesize of the three-dimensional grains in the specimen volume, isbeyond the scope of these test methods.1.4 These test methods describe techniques performedmanually using either a standard series of graded chart images
10、for the comparison method or simple templates for the manualcounting methods. Utilization of semi-automatic digitizingtablets or automatic image analyzers to measure grain size isdescribed in Test Methods E1382.1.5 These test methods deal only with the recommended testmethods and nothing in them sho
11、uld be construed as definingor establishing limits of acceptability or fitness of purpose ofthe materials tested.1.6 The measured values are stated in SI units, which areregarded as standard. Equivalent inch-pound values, whenlisted, are in parentheses and may be approximate.1.7 This standard does n
12、ot purport to address all of thesafety 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.1.8 The paragraphs appear in the follow
13、ing order:Section NumberScope 1Referenced Documents 2Terminology 3Significance and Use 4Generalities of Application 5Sampling 6Test Specimens 7Calibration 8Preparation of Photomicrographs 9Comparison Procedure 10Planimetric (Jeffries) Procedure 11General Intercept Procedures 12Heyn Linear Intercept
14、Procedure 13Circular Intercept Procedures 14Hilliard Single-Circle Procedure 14.2Abrams Three-Circle Procedure 14.31These test methods are under the jurisdiction of ASTM Committee E04 onMetallography and are the direct responsibility of Subcommittee E04.08 on GrainSize.Current edition approved Nov.
15、1, 2010. Published December 2010. Originallyapproved in 1955. Last previous edition approved 2004 as E112 96(2004)2. DOI:10.1520/E0112-10.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.Statistical Analysis 15Specimens with Non-equia
16、xed Grain Shapes 16Specimens Containing Two or More Phases or Constituents 17Report 18Precision and Bias 19Keywords 20Annexes:Basis of ASTM Grain Size Numbers AnnexA1Equations for Conversions Among Various Grain Size Measurements AnnexA2Austenite Grain Size, Ferritic and Austenitic Steels AnnexA3Fra
17、cture Grain Size Method AnnexA4Requirements for Wrought Copper and Copper-Base Alloys AnnexA5Application to Special Situations AnnexA6Appendixes:Results of Interlaboratory Grain Size Determinations Appen-dix X1Referenced Adjuncts Appen-dix X22. Referenced Documents2.1 ASTM Standards:2E3 Guide for Pr
18、eparation of Metallographic SpecimensE7 Terminology Relating to MetallographyE407 Practice for Microetching Metals and AlloysE562 Test Method for Determining Volume Fraction bySystematic Manual Point CountE691 Practice for Conducting an Interlaboratory Study toDetermine the Precision of a Test Metho
19、dE883 Guide for ReflectedLight PhotomicrographyE930 Test Methods for Estimating the Largest Grain Ob-served in a Metallographic Section (ALA Grain Size)E1181 Test Methods for Characterizing Duplex Grain SizesE1382 Test Methods for Determining Average Grain SizeUsing Semiautomatic and Automatic Image
20、 Analysis2.2 ASTM Adjuncts:2.2.1 For a complete adjunct list, see Appendix X23. Terminology3.1 DefinitionsFor definitions of terms used in these testmethods, see Terminology E7.3.2 Definitions of Terms Specific to This Standard:3.2.1 ASTM grain size numberthe ASTM grain sizenumber, G, was originally
21、 defined as:NAE5 2G21(1)where NAEis the number of grains per square inch at 100Xmagnification. To obtain the number per square millimetre at1X, multiply by 15.50.3.2.2 grainthat area within the confines of the original(primary) boundary observed on the two-dimensional plane-of-polish or that volume
22、enclosed by the original (primary)boundary in the three-dimensional object. In materials contain-ing twin boundaries, the twin boundaries are ignored, that is,the structure on either side of a twin boundary belongs to thegrain.3.2.3 grain boundary intersection countdetermination ofthe number of time
23、s a test line cuts across, or is tangent to,grain boundaries (triple point intersections are considered as1-12 intersections).3.2.4 grain intercept countdetermination of the number oftimes a test line cuts through individual grains on the plane ofpolish (tangent hits are considered as one half an in
24、terception;test lines that end within a grain are considered as one half aninterception).3.2.5 intercept lengththe distance between two opposed,adjacent grain boundary intersection points on a test linesegment that crosses the grain at any location due to randomplacement of the test line.3.3 Symbols
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