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本文(ASTM A924 A924M-2010 Standard Specification for General Requirements for Steel Sheet Metallic-Coated by the Hot-Dip Process《热浸镀锌金属涂层薄钢板的一般要求标准规范》.pdf)为本站会员(李朗)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ASTM A924 A924M-2010 Standard Specification for General Requirements for Steel Sheet Metallic-Coated by the Hot-Dip Process《热浸镀锌金属涂层薄钢板的一般要求标准规范》.pdf

1、Designation: A924/A924M 10Standard Specification forGeneral Requirements for Steel Sheet, Metallic-Coated bythe Hot-Dip Process1This standard is issued under the fixed designation A924/A924M; the number immediately following the designation indicates the yearof original adoption or, in the case of r

2、evision, 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 specification covers the general requirements that,unless otherwise specified in the produc

3、t specification, apply tosteel sheet in coils and cut lengths, metallic-coated on continu-ous lines by the hot-dip process. The product is intended forapplications requiring corrosion resistance. The product speci-fications contain requirements for specific strength levels, heatresistance, paintabil

4、ity, or formability, or a combinationthereof.1.2 Subject to individual product specification provisions,steel sheet is available as Commercial Steel (CS) Types A, B,and C, Forming Steel (FS), Drawing Steel (DS), Deep DrawingSteel (DDS), Extra Deep Drawing Steel (EDDS), High Tem-perature Steel (HTS),

5、 Structural Steel (SS), and High StrengthLow Alloy Steel (HSLAS). Steel sheet is produced with thefollowing metallic coatings. Specific information on each ofthe following is contained in the individual product specifica-tion:1.2.1 Zinc or zinc-iron alloy coated,1.2.2 Zinc-5 % aluminum alloy coated,

6、1.2.3 55 % aluminumzinc alloy coated,1.2.4 Aluminumcoated,1.2.5 Terne (lead-tin alloy) coated, and1.2.6 Zinc-aluminum-magnesium alloy coated.1.3 Products covered by this general requirements specifi-cation are described in the following product standards: Speci-fications A308/A308M; A463/A463M; A653

7、/A653M; A755/A755M; A792/A792M; A875/A875M; A929/A929M; andA1046/A1046M.1.4 Metallic-coated steel sheet is produced to various coat-ing designations, as shown in the individual product specifica-tions. Except for differentially coated sheet, the coating isalways expressed as the total coating of bot

8、h surfaces.1.5 In case of any conflict in requirements, the requirementsof the individual product specifications shall prevail over thoseof this general specification.1.6 The purchaser is permitted to specify additional require-ments that do not negate any of the provisions of this generalspecificat

9、ion or of the individual product specifications. Suchadditional requirements, the acceptance of which are subject tonegotiation with the supplier, shall be included in the orderinformation.1.7 For purposes of determining conformance with thisspecification and the various product specifications refer

10、encedin 1.3, values shall be rounded to the nearest unit in theright-hand place of figures used in expressing the limitingvalues (except to the nearest 5 MPa for SI strength values) inaccordance with the rounding method of Practice E29.1.8 Metallic-coated steel sheet covered by this specificationis

11、produced to thickness requirements expressed to 0.001 in.0.01 mm for both coils and cut lengths. The thickness is thetotal of the base steel and the coating.1.9 The values stated in inch-pound units or SI units are tobe regarded separately as standard. Within the text, the SI unitsare shown in brack

12、ets. The values stated in each system are notexact equivalents; therefore, each system must be used inde-pendently of the other.1.10 This specification and some of the applicable productspecifications are expressed in both inch-pound and SI units.However, unless the order specifies the applicable “M

13、” speci-fication designation (SI units), the product shall be furnished toinch-pound units.1.11 The text of this specification references notes andfootnotes that provide explanatory material. These notes andfootnotes (excluding those in tables and figures) shall not beconsidered as requirements of t

14、he specification.2. Referenced Documents2.1 ASTM Standards:2A90/A90M Test Method for Weight Mass of Coating onIron and Steel Articles with Zinc or Zinc-Alloy CoatingsA308/A308M Specification for Steel Sheet, Terne (Lead-Tin Alloy) Coated by the Hot-Dip ProcessA309 Test Method for Weight and Composit

15、ion of Coating1This specification is under the jurisdiction of ASTM Committee A05 onMetallic-Coated Iron and Steel Products and is the direct responsibility ofSubcommittee A05.11 on Sheet Specifications.Current edition approved June 1, 2010. Published July 2010. Originally approvedin 1994. Last prev

16、ious edition approved in 2009 as A924/A924M - 09a. DOI:10.1520/A0924_A0924M-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 standards Document Summary page o

17、nthe ASTM website.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.on Terne Sheet by the Triple-Spot TestA370 Test Methods and Definitions for Mechanical Testingof Stee

18、l ProductsA428/A428M Test Method for Weight Mass of Coating onAluminum-Coated Iron or Steel ArticlesA463/A463M Specification for Steel Sheet, Aluminum-Coated, by the Hot-Dip ProcessA653/A653M Specification for Steel Sheet, Zinc-Coated(Galvanized) or Zinc-Iron Alloy-Coated (Galvannealed)by the Hot-Di

19、p ProcessA700 Practices for Packaging, Marking, and Loading Meth-ods for Steel Products for ShipmentA751 Test Methods, Practices, and Terminology for Chemi-cal Analysis of Steel ProductsA754/A754M Test Method for Coating Weight (Mass) ofMetallic Coatings on Steel by X-Ray FluorescenceA755/A755M Spec

20、ification for Steel Sheet, MetallicCoated by the Hot-Dip Process and Prepainted by theCoil-Coating Process for Exterior Exposed Building Prod-uctsA792/A792M Specification for Steel Sheet, 55 %Aluminum-Zinc Alloy-Coated by the Hot-Dip ProcessA875/A875M Specification for Steel Sheet, Zinc-5 % Alu-minu

21、m Alloy-Coated by the Hot-Dip ProcessA902 Terminology Relating to Metallic Coated Steel Prod-uctsA929/A929M Specification for Steel Sheet, Metallic-Coated by the Hot-Dip Process for Corrugated Steel PipeA1030/A1030M Practice for Measuring Flatness Character-istics of Steel Sheet ProductsA1046/A1046M

22、 Specification for Steel Sheet, Zinc-Aluminum-Magnesium Alloy-Coated by the Hot-Dip Pro-cessE29 Practice for Using Significant Digits in Test Data toDetermine Conformance with SpecificationsE376 Practice for Measuring Coating Thickness byMagnetic-Field or Eddy-Current (Electromagnetic) Exami-nation

23、Methods2.2 Federal Standard:Fed. Std. No. 123 Marking for Shipment (Civil Agencies)33. Terminology3.1 DefinitionsFor definitions of items used in this speci-fication, refer to Terminology A902.4. Ordering Information4.1 Ordering information for all products are shown in theindividual product specifi

24、cations.5. Materials and Manufacture5.1 Hot-dip metallic coatings are used to provide corrosionprotection to steel sheets. Hot-dip metallic coatings are avail-able in six different types, zinc and zinc-iron alloy, lead-tinalloy (Terne), aluminum, 55 % aluminum-zinc alloy, zinc-5 %aluminum alloy, and

25、 zinc-aluminum-magnesium alloy. Eachcoating type is available in various coating weights whichprovide varying degrees of corrosion protection and the con-sumer should consult the individual producers for applicabilityto the intended application and to obtain product information.5.2 Hot-dip metallic

26、coated products may be subject tochanges in mechanical properties after coating. As suchchanges are functions of the chemistry and processing historyof the material, the consumer should consult the individualproducers for applicability to the intended application.6. Chemical Composition6.1 Base Stee

27、l:6.1.1 Chemical composition requirements of the base steelare shown in the individual product specifications.6.1.2 An analysis of each heat shall be made by themanufacturer to determine the percentage of carbon, manga-nese, phosphorus, sulfur, and any other elements specified orrestricted by the in

28、dividual product specification.6.1.3 When desired, product analysis shall be made by thepurchaser on finished product. The product analysis so deter-mined shall meet the tolerances shown in Table 1.6.1.3.1 Capped or rimmed steels are not technologicallysuited to product analysis due to the nonunifor

29、m character oftheir chemical composition, and therefore, the tolerances inTable 1 do not apply. Product analysis is appropriate on thesesteels only when misapplication is apparent.6.1.3.2 Product analysis for phosphorus or sulfur is nottechnologically appropriate because of segregation of theseeleme

30、nts in non-killed steels. Product analysis is appropriateonly when misapplication is apparent.6.1.3.3 Samples for product analysis shall be drillingsthrough areas stripped free of coating. At least three piecesshall be selected, but if the product of more than one mill liftor coil is involved, at le

31、ast six pieces shall be selected.6.1.3.4 When supplying High-Strength Low-Alloy Steel(HSLA), some producers use one or more microalloyingelements as strengthening agents or use alloy additions to effectinclusion control, or both. The producer shall be consulted for3Available from Yale University Lib

32、rary, Standardization Documents OrderDesk, Bldg. 4 Section D, 700 Robbins Ave., Philadelphia, PA 191115094, Attn:NPODS.TABLE 1 Product Analysis TolerancesElementLimited or Maximum ofSpecified Element, %ToleranceUnderMinimumLimitOverMaximumLimitCarbon To 0.15, incl 0.02 0.03Over 0.15 to 0.40, incl 0.

33、03 0.04Over 0.40 to 0.80, incl 0.03 0.05Manganese To 0.60, incl 0.03 0.03Over 0.60 to 1.15, incl 0.04 0.04Over 1.15 to 1.65, incl 0.05 0.05Phosphorus . . . . . . 0.01Sulfur . . 0.01Silicon To 0.30, incl 0.02 0.03Over 0.30 to 0.60 0.05 0.05Copper . . . 0.02 . . .Titanium To 0.10, incl 0.01A0.01Vanadi

34、um To 0.10, incl 0.01A0.01Over 0.10 to 0.25, incl 0.02 0.02Minimum only specified 0.01 . . .Columbium To 0.10, incl 0.01A0.01AIf the minimum of the range is 0.01 %, the under tolerance is 0.005 %.A924/A924M 102the specific chemical composition applied. If any alloyingaddition is known to be of conce

35、rn to the user, the producershall be notified of this concern.6.1.4 Method of AnalysisThe determination of chemicalcomposition is permitted to be made by any test method,except in case of dispute, where the referee test methods listedin the section on test methods of Test Methods A751 shall beused.6

36、.2 Coating:6.2.1 Coating AnalysisThe nominal composition of thecoating is described in the individual product specification.6.2.2 Method of AnalysisThe determination of chemicalcomposition shall be made in accordance with acceptablechemical, spectrochemical, or other test methods.7. Tests for Mechan

37、ical Properties7.1 Test specimens shall be prepared from finished metallic-coated product.7.2 Mechanical Properties-Base MetalWhen base metalmechanical properties are specified, tests shall be conducted inaccordance with Test Methods A370. Requirements for allmechanical properties are included in th

38、e individual productspecifications.7.2.1 Tension TestsSpecimens for base-metal tension testsshall be taken longitudinally, approximately midway betweenthe center and edge of the product as rolled, and shall conformto the requirements for the sheet-type test specimen in thefigure for rectangular tens

39、ion test specimens of Test MethodsA370.7.2.1.1 The determination of the yield strength and tensilestrength values shall be based on the as-produced base-metalthickness that shall be obtained by one of the followingmethods. Unless specified in the order, the producer shalldetermine the method to be u

40、sed; however, in the event of adispute the method in 7.2.1.2 shall be used.7.2.1.2 The base metal thickness shall be determined bystripping the coating from the ends of the specimen contactingthe grips of the tension testing machine. The thickness mea-surement shall be made before testing on an end

41、of thespecimen that has been stripped free of coating.7.2.1.3 The base metal thickness shall be determined bysubtracting the coating thickness from the measured thicknessof the tension test specimen. The coating thickness shall becalculated from the coating weight mass test.8. Tests for Coating Prop

42、erties8.1 Coating Weight Mass:8.1.1 Coating weight mass shall conform to the require-ments prescribed in the individual product specifications (see1.3).8.1.2 The coating weight mass is ordered as total bothsides requirements, or if requested on those product specifica-tions permitting it, to single

43、side/single spot coating massrequirements.8.1.3 Total both sides requirements8.1.3.1 The coating weight mass of equally coated productis the total amount on both sides of the sheet, expressed inounces per square foot grams per square metre of sheet.8.1.3.2 For differentially coated product, the coat

44、ing weightmass on each surface is nominally one half of the statedcoating designation.8.1.4 Single side/single spot requirements8.1.4.1 The coating mass for each surface shall be specifiedseparately, for example, 60G60G, and each single spot testshall meet the specified requirements for the coating

45、designa-tion.8.2 Coating Weight Mass TestsOne of the following testmethods shall be used:8.3 Weigh-Strip-Weigh Method:8.3.1 The weigh-strip-weigh method, described in TestMethods A90/A90M, A309, and A428/A428M, is a destructivetest that determines coating weight mass by measuring thedifference in we

46、ight mass between a coated and a stripped(uncoated) sample. If one surface is protected suitably duringthe initial stripping, coating weight mass can be determinedfor each surface independently.8.3.2 Test specimens for product over 18 in. 450 mm inwidth shall be taken from a representative sample pi

47、eceapproximately 1 ft 300 mm in length by the associated width.Three test specimens shall be taken from the sample, one fromthe middle of the width and one from each edge. The edgesamples shall not be taken closer than 2 in. 50 mm from eachedge. The test specimen shall have a minimum area of 5in.232

48、00 mm2.8.3.3 For product 18 in. 450 mm in width and narrower,only one test specimen is required. Specimens shall be at least2 in. 50 mm from the edge, when possible. For productnarrower than 2.25 in. 60 mm the test specimen shall bechosen to give a minimum area of 5 in.23200 mm2.8.3.4 The triple-spo

49、t coating weight mass shall be theaverage of the determinations of the three tests done inaccordance with the procedures in 8.3.2.8.3.5 The total both sides minimum single-spot coatingweight mass shall be that test result that is the lightest coatingweight mass, or in those cases where only one test is needed,it shall be that single test result.8.3.6 The single side/single spot coating mass shall meetboth the lower and upper limits of the specified coatingdesignation.8.3.7 The frequency of sampling shall be sufficient toadequ

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