ASTM A800 A800M-2010 Standard Practice for Steel Casting Austenitic Alloy Estimating Ferrite Content Thereof《奥氏体合金钢铸件中铁素体含量估算的标准实施规程》.pdf
《ASTM A800 A800M-2010 Standard Practice for Steel Casting Austenitic Alloy Estimating Ferrite Content Thereof《奥氏体合金钢铸件中铁素体含量估算的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM A800 A800M-2010 Standard Practice for Steel Casting Austenitic Alloy Estimating Ferrite Content Thereof《奥氏体合金钢铸件中铁素体含量估算的标准实施规程》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: A800/A800M 10Standard Practice forSteel Casting, Austenitic Alloy, Estimating Ferrite ContentThereof1This standard is issued under the fixed designation A800/A800M; the number immediately following the designation indicates the yearof original adoption or, in the case of revision, the y
2、ear 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 procedures and definitions forestimating ferrite content in certain grades of austenitic
3、iron-chromium-nickel alloy castings that have compositions bal-anced to create the formation of ferrite as a second phase inamounts controlled to be within specified limits. Methods aredescribed for estimating ferrite content by chemical, magnetic,and metallographic means.1.2 The grades covered by t
4、his practice are: CF-3, CF-3A,CF-8, CF-8A, CF-3M, CF-3MA, CF-8M, CF-8C, CG-8M, andCH-10.1.3 The values stated in either inch-pound units or SI unitsare to be regarded separately as standard. The values stated ineach system are not exact equivalents; therefore, each systemmust be used independently o
5、f the other. Combining valuesfrom the two systems may result in nonconformance with thepractice.1.3.1 Within the text, the SI units are shown in brackets.1.4 This standard does not purport to address the safetyconcerns, if any, associated with its use. It is the responsibilityof the user of this sta
6、ndard to establish appropriate safety andhealth practices and determine the applicability of regulatorylimitations prior to use.2. Referenced Documents2.1 ASTM Standards:2A351/A351M Specification for Castings, Austenitic, forPressure-Containing PartsA370 Test Methods and Definitions for Mechanical T
7、estingof Steel ProductsA799/A799M Practice for Steel Castings, Stainless, Instru-ment Calibration, for Estimating Ferrite ContentA941 Terminology Relating to Steel, Stainless Steel, Re-lated Alloys, and FerroalloysE38 Methods for Chemical Analysis of Nickel-Chromiumand Nickel-Chromium-Iron AlloysE35
8、3 Test Methods for Chemical Analysis of Stainless,Heat-Resisting, Maraging, and Other Similar Chromium-Nickel-Iron AlloysE562 Test Method for Determining Volume Fraction bySystematic Manual Point Count2.2 Constitution Diagrams:Schoefer Diagram for Estimating Ferrite Content of Stain-less Steel Casti
9、ngs (1980 revision)3Schaeffler Diagram for Estimating Ferrite Content of Stain-less Steel Weld Metal4DeLong Diagram for Estimating Ferrite Content of StainlessSteel Weld Metal52.3 American Welding Society Specification:AWS A 4.2, Procedures for Calibrating Magnetic Instru-ments to Measure the Delta
10、Ferrite Content of AusteniticStainless Steel Weld Metal63. Terminology3.1 Definitions:3.1.1 ferritethe ferromagnetic, body-centered, cubic-microstructural constituent of variable chemical composition iniron-chromium-nickel alloys. This may be formed upon solidi-fication from the molten metal (delta
11、ferrite) or by transforma-tion from austenite or sigma phase on cooling in the solid state(alpha ferrite).3.1.2 ferrite contentthe proportion of total volume of aniron-chromium-nickel alloy present as the ferrite phase.3.1.3 ferrite numberthe ferrite content expressed as anarbitrary number based on
12、the magnetic response of the alloyin a weld deposit.1This practice is under the jurisdiction of ASTM Committee A01 on Steel,Stainless Steel and Related Alloys and is the direct responsibility of SubcommitteeA01.18 on Castings.Current edition approved Oct. 1, 2010. Published November 2010. Originally
13、approved in 1982. Last previous edition approved in 2006 as A800/A800M 01(2006). DOI: 10.1520/A0800_A0800M-10.2For 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 st
14、andards Document Summary page onthe ASTM website.3Appendix of this practice.4Metal Progress Data Book, American Society for Metals, Mid June 1977, p.161.5Welding Journal, American Welding Society, Vol 38, No. 7, July 1973, p.293s.6Available from American Welding Society (AWS), 550 NW LeJeune Rd.,Mia
15、mi, FL 33126.1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.1.4 ferrite percentagethe ferrite content expressed as avolume percent.3.1.5 heat treatmentthe definitio
16、ns in Terminology A941are applicable to this practice.4. Significance and Use4.1 The tensile and impact properties, the weldability, andthe corrosion resistance of iron-chromium-nickel alloy castingsmay be influenced beneficially or detrimentally by the ratio ofthe amount of ferrite to the amount of
17、 austenite in themicrostructure. The ferrite content may be limited by purchaseorder requirements or by the design construction codes gov-erning the equipment in which the castings will be used. Thequantity of ferrite in the structure is fundamentally a functionof the chemical composition of the all
18、oy and its thermalhistory. Because of segregation, the chemical composition,and, therefore, the ferrite content, may differ from point topoint on a casting. Determination of the ferrite content by anyof the procedures described in the following practice is subjectto varying degrees of imprecision wh
19、ich must be recognized insetting realistic limits on the range of ferrite content specified.Sources of error include the following:4.1.1 In Determinations from Chemical CompositionDeviations from the actual quantity of each element present inan alloy because of chemical analysis variance, althoughpo
20、ssibly minor in each case, can result in substantial differencein the ratio of total ferrite-promoting to total austenite-promoting elements. Therefore, the precision of the ferritecontent estimated from chemical composition depends on theaccuracy of the chemical analysis procedure.4.1.2 In Determin
21、ations from Magnetic ResponsePhasesother than ferrite and austenite may be formed at certaintemperatures and persist at room temperature. These may soalter the magnetic response of the alloy that the indicatedferrite content is quite different from that of the same chemicalcomposition that has under
22、gone different thermal treatment.Also, because the magnets or probes of the various measuringinstruments are small, different degrees of surface roughness orsurface curvature will vary the magnetic linkage with thematerial being measured.4.1.3 In Determinations from MetallographicExaminationMetallog
23、raphic point count estimates of ferritepercentage may vary with the etching technique used foridentification of the ferrite phase and with the number of gridpoints chosen for the examination, as explained in Test MethodE562.4.2 The estimation of ferrite percent by chemical composi-tion offers the mo
24、st useful and most common method of ferritecontrol during melting of the metal.4.3 For most accurate estimate of ferrite percent, a quanti-tative metallographic method should be used.5. Ordering Information5.1 Orders for material to this practice should include thefollowing as required:5.1.1 Applica
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