ASTM A799 A799M-2010(2015) Standard Practice for Steel Castings Stainless Instrument Calibration for Estimating Ferrite Content《用户评估铁素体含量的钢铸件 不锈钢和仪表校准的标准实施规程》.pdf
《ASTM A799 A799M-2010(2015) Standard Practice for Steel Castings Stainless Instrument Calibration for Estimating Ferrite Content《用户评估铁素体含量的钢铸件 不锈钢和仪表校准的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM A799 A799M-2010(2015) Standard Practice for Steel Castings Stainless Instrument Calibration for Estimating Ferrite Content《用户评估铁素体含量的钢铸件 不锈钢和仪表校准的标准实施规程》.pdf(5页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: A799/A799M 10 (Reapproved 2015)Standard Practice forSteel Castings, Stainless, Instrument Calibration, forEstimating Ferrite Content1This standard is issued under the fixed designation A799/A799M; the number immediately following the designation indicates the yearof original adoption or
2、, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval.A superscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope*1.1 This practice covers the procedure for calibration ofinstruments to be used fo
3、r estimating the ferrite content of themicrostructure of cast stainless steels by magnetic response ormeasurement of permeability. This procedure covers bothprimary and secondary instruments.1.1.1 A primary instrument is one that has been calibratedusing National Institute of Standards and Technolog
4、y-StandardReference Material (NIST-SRM) thickness coating standards.It is a laboratory tool to be used with test specimens. Someprimary instruments may be used to directly measure the ferritecontent of castings.1.1.2 A secondary instrument is one that has been calibratedby the use of secondary stand
5、ards that have been measured bya calibrated primary instrument. Secondary instruments are tobe used to directly measure the ferrite content of castings.1.2 The values stated in either SI units or inch-pound unitsare to be regarded separately as standard. The values stated ineach system may not be ex
6、act equivalents; therefore, eachsystem shall be used independently of the other. Combiningvalues from the two systems may result in non-conformancewith the standard.1.2.1 Within the text, the SI units are shown in brackets.1.3 This standard does not purport to address all of thesafety concerns, if a
7、ny, 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:2A941 Terminology Relating to Steel, Stainless Ste
8、el, RelatedAlloys, and FerroalloysB499 Test Method for Measurement of Coating Thicknessesby the Magnetic Method: Nonmagnetic Coatings onMagnetic Basis MetalsE562 Test Method for Determining Volume Fraction bySystematic Manual Point Count2.2 NIST Standard:NIST-SRM Coating Thickness StandardsNOTE 1The
9、 specific coating thickness standards previously refer-enced in this practice are no longer available. Similar ones are nowavailable from NIST.3. Terminology3.1 DefinitionsThe definitions in Terminology A941 areapplicable to this standard.3.2 Definitions of Terms Specific to This Standard:3.2.1 ferr
10、ite, nthe body-centered cubic microconstituentin stainless steel.3.2.2 ferrite percentage, na value designating the ferritecontent of stainless steels.3.2.2.1 DiscussionThe Steel Founders Society ofAmerica (SFSA) has assigned ferrite percentages to the seriesof NIST coating thickness standards3. Thi
11、s assignment wasbased on the magnetic attraction for a standard magnet by thecoating standards when compared with the magnetic attractionof the same magnet by a series of cast stainless steels whoseferrite content had been determined by an accurate metallo-graphic point count. A similar assignment b
12、ased on magneticpermeability was also established. Algebraic equations havenow been derived from a plot of the thickness of thesestandards and the assigned ferrite percentages. By the use ofthese equations, any primary instrument will have its calibra-tion traceable to the SFSAs instruments or any o
13、ther calibratedinstrument and thus afford comparable reproducible ferritepercentages. It also allows traceability to NIST.3.2.3 secondary standards, na piece of cast stainless steelwhose ferrite percentage has been determined by a calibratedprimary instrument.1This practice is under the jurisdiction
14、 of ASTM Committee A01 on Steel,Stainless Steel and Related Alloys and is the direct responsibility of SubcommitteeA01.18 on Castings.Current edition approved Nov. 1, 2015. Published November 2015. Originallyapproved in 1982. Last previous edition approved in 2010as A799/A799M 10.DOI: 10.1520/A0799_
15、A0799M-10R152For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website. DOI: 10.1520/A0799_A0799M-04R09.3Aubrey, L.S., W
16、eiser, P.F., Pollard, W.J., and Schoefer, E.A., “ FerriteMeasurement and Control in Cast Duplex Stainless Steels,” Stainless Steel Castings,ASTM STP 756, ASTM, 1982, p 126.*A Summary of Changes section appears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C70
17、0, West Conshohocken, PA 19428-2959. United States13.2.3.1 DiscussionSecondary statements are used to cali-brate secondary instruments (see Calibration of SecondaryInstruments).4. Significance and Use4.1 The amount of ferrite present in an austenitic stainlesssteel has been shown to influence the st
18、rength, toughness andcorrosion resistance of this type of cast alloy. The amount offerrite present tends to correlate well with the magneticpermeability of the steel. The methods described in thisstandard cover calibration practice for estimating ferrite by themagnetic permeability of the steel. The
19、 practice is inexpensiveto use over large areas of the cast part and is non-destructive.4.2 This practice has been used for research, alloydevelopment, quality control, and manufacturing control.4.2.1 Many instruments are available having differentdesigns, and different principles of operation. When
20、 the probeis placed on the material being investigated, a closed magneticcircuit is formed allowing measurement of the magneticpermeability. When calibrated with standards having knownferrite content, this permeability indicates the ferrite content ofthe material being analyzed. The estimated ferrit
21、e content isread from a calibrated dial or from a digital-readout dial.Follow the manufacturers instructions for proper calibration ofthe instrument.4.3 Since this practice measures magnetic attraction and notferrite directly, it is subject to all of the variables that affectmagnetic permeability, s
22、uch as the shape, size, orientation, andcomposition of the ferrite phase. These in turn are affected bythermal history. Ferrite measurements by magnetic methodshave also been found to be affected by the surface finish of thematerial being analyzed.4.4 Magnetic methods should not be used for arbitrat
23、ion ofconflicts on ferrite content except when agreed upon betweenmanufacturer and purchaser.5. Apparatus5.1 One primary instrument that uses magnetic attractionconsists of a spring-loaded balance arm from which a rod-shaped magnet is suspended.4The opposite end of the balancearm from the magnet has
24、 counterweights that balance most butnot all of the weight of the magnet.5.1.1 When this instrument is used, the spring load isrelaxed sufficiently to allow the magnet to make contact withthe material being tested.5.1.2 The spring is then wound until the force of the coiledspring overcomes the magne
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