ASTM E1245-2003 Standard Practice for Determining the Inclusion or Second-Phase Constituent Content of Metals by Automatic Image Analysis《用自动图象分析法测定金属的夹杂物或次生相要素含量的标准操作规程》.pdf
《ASTM E1245-2003 Standard Practice for Determining the Inclusion or Second-Phase Constituent Content of Metals by Automatic Image Analysis《用自动图象分析法测定金属的夹杂物或次生相要素含量的标准操作规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1245-2003 Standard Practice for Determining the Inclusion or Second-Phase Constituent Content of Metals by Automatic Image Analysis《用自动图象分析法测定金属的夹杂物或次生相要素含量的标准操作规程》.pdf(8页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1245 03Standard Practice forDetermining the Inclusion or Second-Phase ConstituentContent of Metals by Automatic Image Analysis1This standard is issued under the fixed designation E 1245; the number immediately following the designation indicates the year oforiginal adoption or, in the
2、 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.INTRODUCTIONThis practice may be used to produce stereological measurements that describe the amou
3、nt, number,size, and spacing of the indigenous inclusions (sulfides and oxides) in steels. The method may also beapplied to assess inclusions in other metals or to assess any discrete second-phase constituent in anymaterial.1. Scope1.1 This practice describes a procedure for obtaining stereo-logical
4、 measurements that describe basic characteristics of themorphology of indigenous inclusions in steels and other metalsusing automatic image analysis. The practice can be applied toprovide such data for any discrete second phase.NOTE 1Stereological measurement methods are used in this practiceto asse
5、ss the average characteristics of inclusions or other second-phaseparticles on a longitudinal plane-of-polish. This information, by itself,does not produce a three-dimensional description of these constituents inspace as deformation processes cause rotation and alignment of theseconstituents in a pr
6、eferred manner. Development of such informationrequires measurements on three orthogonal planes and is beyond the scopeof this practice.1.2 This practice specifically addresses the problem ofproducing stereological data when the features of the constitu-ents to be measured make attainment of statist
7、ically reliabledata difficult.1.3 This practice deals only with the recommended testmethods and nothing in it should be construed as defining orestablishing limits of acceptability.1.4 The measured values are stated in SI units, which are tobe regarded as standard. Equivalent inch-pound values are i
8、nparentheses and may be approximate.1.5 This standard does not 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 limi
9、tations prior to use.2. Referenced Documents2.1 ASTM Standards:E 3 Methods of Preparation of Metallographic Specimens2E 7 Terminology Relating to Metallography2E 45 Test Methods for Determining the Inclusion Contentof Steel2E 768 Practice for Preparing and Evaluating Specimens forAutomatic Inclusion
10、 Assessment of Steel23. Terminology3.1 Definitions:3.1.1 For definitions of terms used in this practice, seeTerminology E 7.3.2 Symbols:A= the average area of inclusions or particles, m2.AA= the area fraction of the inclusion or constituent.Ai= the area of the detected feature.AT= the measurement ar
11、ea (field area, mm2).HT= the total projected length in the hot-workingdirection of the inclusion or constituent in thefield, m.L= the average length in the hot-working directionof the inclusion or constituent, m.LT= the true length of scan lines, pixel lines, or gridlines (number of lines times the
12、length of thelines divided by the magnification), mm.n = the number of fields measured.NA= the number of inclusions or constituents of agiven type per unit area, mm2.1This practice is under the jurisdiction of ASTM Committee E04 on Metallog-raphy and is the direct responsibility of Subcommittee E04.
13、14 on QuantitativeMetallography.Current edition approved Jan. 10, 2003. Published April 2003. Originallyapproved in 1988. Last previous edition approved in 2000 as E 1245 00.2Annual Book of ASTM Standards, Vol 03.01.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken
14、, PA 19428-2959, United States.Ni= the number of inclusions or constituent par-ticles or the number of feature interceptions, inthe field.NL= the number of interceptions of inclusions orconstituent particles per unit length (mm) ofscan lines, pixel lines, or grid lines.PPi= the number of detected pi
15、cture points.PPT= the total number of picture points in the fieldarea.s = the standard deviation.t = a multiplier related to the number of fieldsexamined and used in conjunction with thestandard deviation of the measurements to de-termine the 95 % CIVV= the volume fraction.X= the mean of a measureme
16、nt.Xi= an individual measurement.l = the mean free path (m) of the inclusion orconstituent type perpendicular to the hot-working direction.(X = the sum of all of a particular measurement overn fields.(X2= the sum of all of the squares of a particularmeasurement over n fields.95 % CI = the 95 % confi
17、dence interval.% RA = the relative accuracy, %.4. Summary of Practice4.1 The indigenous inclusions or second-phase constituentsin steels and other metals are viewed with a light microscopeor a scanning electron microscope using a suitably preparedmetallographic specimen. The image is detected using
18、atelevision-type scanner tube (solid-state or tube camera) anddisplayed on a high resolution video monitor. Inclusions aredetected and discriminated based on their gray-level intensitydifferences compared to each other and the unetched matrix.Measurements are made based on the nature of the discrimi
19、-nated picture point elements in the image.3These measure-ments are made on each field of view selected. Statisticalevaluation of the measurement data is based on the field-to-field or feature-to-feature variability of the measurements.5. Significance and Use5.1 This practice is used to assess the i
20、ndigenous inclusionsor second-phase constituents of metals using basic stereologi-cal procedures performed by automatic image analyzers.5.2 This practice is not suitable for assessing the exogenousinclusions in steels and other metals. Because of the sporadic,unpredictable nature of the distribution
21、 of exogenous inclu-sions, other methods involving complete inspection, for ex-ample, ultrasonics, must be used to locate their presence. Theexact nature of the exogenous material can then be determinedby sectioning into the suspect region followed by serial,step-wise grinding to expose the exogenou
22、s matter for identi-fication and individual measurement. Direct size measurementrather than application of stereological methods is employed.5.3 Because the characteristics of the indigenous inclusionpopulation vary within a given lot of material due to theinfluence of compositional fluctuations, so
23、lidification condi-tions and processing, the lot must be sampled statistically toassess its inclusion content. The largest lot sampled is the heatlot but smaller lots, for example, the product of an ingot, withinthe heat may be sampled as a separate lot. The sampling of agiven lot must be adequate f
24、or the lot size and characteristics.5.4 The practice is suitable for assessment of the indigenousinclusions in any steel (or other metal) product regardless of itssize or shape as long as enough different fields can be measuredto obtain reasonable statistical confidence in the data. Becausethe speci
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