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本文(ASTM A109 A109M-2016 Standard Specification for Steel Strip Carbon (0 25 Maximum Percent) Cold-Rolled《冷轧碳素 (碳最大百分比0 25) 钢带的标准规格》.pdf)为本站会员(confusegate185)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 A109 A109M-2016 Standard Specification for Steel Strip Carbon (0 25 Maximum Percent) Cold-Rolled《冷轧碳素 (碳最大百分比0 25) 钢带的标准规格》.pdf

1、Designation: A109/A109M 16Standard Specification forSteel, Strip, Carbon (0.25 Maximum Percent), Cold-Rolled1This standard is issued under the fixed designation A109/A109M; the number immediately following the designation indicates the yearof original adoption or, in the case of revision, the year o

2、f 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.This standard has been approved for use by agencies of the U.S. Department of Defense.1. Scope*1.1 This specification covers col

3、d-rolled carbon steel strip incut lengths or coils, furnished to closer tolerances than cold-rolled carbon steel sheet, with specific temper, with specificedge or specific finish, and in sizes as follows:Width, in. Thickness, in.Over12 to 231516 0.300 and underOver 12.5 to 600 mm 7.6 mm and under1.2

4、 Cold-rolled strip is produced with a maximum specifiedcarbon not exceeding 0.25 percent.1.3 Strip tolerance products may be available in widthswider than 231516 in. 600 mm by agreement between pur-chaser and supplier. However, such products are technicallyclassified as cold rolled sheet. The tolera

5、nces, finishes,tempers, edges, and available widths and thicknesses differen-tiate cold rolled strip from the product known as cold rolledsheet which is defined by Specification A568/A568M and fromcold rolled high carbon strip which is defined by SpecificationA682/A682M.1.4 For the purpose of determ

6、ining conformance with thisspecification, values shall be rounded to the nearest unit in theright hand place of figures used in expressing the limitingvalues in accordance with the rounding method of PracticeE29.1.5 The SI portions of the tables contained herein listpermissible variations in dimensi

7、ons and mass (see Note 1)inSI (metric) units. The values listed are not exact conversions ofthe values listed in the inch-pound tables, but instead arerounded or rationalized values. Conformance to SI tolerancesis mandatory when the “M” specification is used.NOTE 1The term weight is used when inch-p

8、ound units are thestandard. However, under SI the preferred term is mass.1.6 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 exact equivalents; therefore, eachsystem shall be used independently of the other

9、. Combiningvalues from the two systems may result in non-conformancewith the standard.1.7 This specification is expressed in both inch-pound unitsand SI units. However, unless the order specifies the applicable“M” specification designation (SI units), the material shall befurnished to inch-pound uni

10、ts.2. Referenced Documents2.1 ASTM Standards:2A370 Test Methods and Definitions for Mechanical Testingof Steel ProductsA568/A568M Specification for Steel, Sheet, Carbon,Structural, and High-Strength, Low-Alloy, Hot-Rolled andCold-Rolled, General Requirements forA682/A682M Specification for Steel, St

11、rip, High-Carbon,Cold-Rolled, General Requirements For (Withdrawn2009)3A700 Guide for Packaging, Marking, and Loading Methodsfor Steel Products for ShipmentA751 Test Methods, Practices, and Terminology for Chemi-cal Analysis of Steel ProductsA941 Terminology Relating to Steel, Stainless Steel, Relat

12、edAlloys, and FerroalloysA1073/A1073M Practice for Using Hand Micrometers toMeasure the Thickness of Uncoated Steel Sheet andNonmetallic and Metallic-Coated Steel SheetE29 Practice for Using Significant Digits in Test Data toDetermine Conformance with SpecificationsE430 Test Methods for Measurement

13、of Gloss of High-GlossSurfaces by Abridged Goniophotometry2.2 Military Standard:MIL-STD-129 Marking for Shipment and Storage41This specification is under the jurisdiction of ASTM Committee A01 on Steel,Stainless Steel and Related Alloys and is the direct responsibility of SubcommitteeA01.19 on Steel

14、 Sheet and Strip.Current edition approved Sept. 1, 2016. Published September 2016. Originallyapproved in 1926. Last previous edition approved in 2015 as A109/A109M 15.DOI: 10.1520/A0109_A0109M-16.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at

15、 serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.3The last approved version of this historical standard is referenced onwww.astm.org.4Available from Standardization Documents Order Desk, DODSSP, Bldg. 4,Section D,

16、700 Robbins Ave., Philadelphia, PA 19111-5098, http:/quicksearch.dla.mil.*A Summary of Changes section appears at the end of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States12.3 Federal Standard:123 Marking for Shipments (

17、Civil Agencies)4183 Continuous Identification Marking of Iron and SteelProducts43. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 annealingthe process of heating to and holding at asuitable temperature and then cooling at a suitable rate, forsuch purposes as reducing hardness, f

18、acilitating cold working,producing a desired microstructure, or obtaining desiredmechanical, physical, or other properties.3.1.1.1 box annealinginvolves annealing in a sealed con-tainer under conditions that minimize oxidation. The strip isusually heated slowly to a temperature below the transforma-

19、tion range, but sometimes above or within it, and is then cooledslowly.3.1.1.2 continuous annealinginvolves heating the strip incontinuous strands through a furnace having a controlledatmosphere followed by a controlled cooling.3.1.2 carbon steelthe designation for steel when no mini-mum content is

20、specified or required for aluminum, chromium,cobalt, columbium, molybdenum, nickel, titanium, tungsten,vanadium, zirconium or any other element added to obtain adesired alloying effect; when the specified minimum for copperdoes not exceed 0.40 % or when the maximum contentspecified for any of the fo

21、llowing elements does not exceed thepercentage noted: manganese 1.65, silicon 0.60, or copper0.60.3.1.2.1 DiscussionIn all carbon steels small quantities ofcertain residual elements unavoidably retained from raw ma-terials are sometimes found which are not specified or required,such as copper, nicke

22、l, molybdenum, chromium, and so forth.These elements are considered as incidental and are notnormally reported.3.1.3 cold reductionthe process of reducing the thicknessof the strip at room temperature. The amount of reduction isgreater than that used in skin-rolling (see 3.1.7).3.1.4 dead softthe te

23、mper of strip produced without defi-nite control of stretcher straining or fluting. It is intended fordeep drawing applications where such surface disturbances arenot objectionable.3.1.5 finishthe degree of smoothness or luster of the strip.The production of specific finishes requires special prepar

24、ationand control of the roll surfaces employed.3.1.6 normalizingheating to a suitable temperature abovethe transformation range and then cooling in air to a tempera-ture substantially below the transformation range. In brightnormalizing the furnace atmosphere is controlled to preventoxidizing of the

25、 strip surface.3.1.7 skin-rolleda term denoting a relatively light coldrolling operation following annealing. It serves to reduce thetendency of the steel to flute or stretcher strain during fabrica-tion. It is also used to impart surface finish, or affect hardnessor other mechanical properties, or

26、to improve flatness.3.1.8 tempera designation by number to indicate thehardness as a minimum, as a maximum, or as a range. Thetempers are obtained by the selection and control of chemicalcomposition, by amounts of cold reduction, by thermaltreatment, and by skin-rolling.3.2 Refer to Terminology A941

27、 for additional definitions ofterms used in this Specification.4. Ordering Information4.1 Orders for material to this specification shall include thefollowing information, as necessary, to describe adequately thedesired product:4.1.1 Quantity,4.1.2 Name of material (cold-rolled carbon steel strip),4

28、.1.3 Condition (oiled or not oiled),4.1.4 Temper (Section 7),4.1.5 Edge (Section 8),4.1.6 Dimensions (Section 9),4.1.7 Workmanship, Finish, and Appearance (Section 10),4.1.8 Coil size requirements (15.2),4.1.9 ASTM designation and year of issue,4.1.10 Copper-bearing steel, if required,4.1.11 Applica

29、tion (part identification or description),4.1.12 Cast or heat analysis (request, if required), and4.1.13 Special requirements, if required.NOTE 2A typical ordering description is as follows: 20 000 lbCold-Rolled Strip, Oiled, Temper 4, Edge 3, Finish 3, 0.035 by 9 in. bycoil, 5000 lb max, 16-in. ID

30、ASTM A 109-XX, for Toaster Shells.5. Materials and Manufacture5.1 The steel shall be made by the open-hearth, basic-oxygen, or electric-furnace process.5.2 Cold-rolled carbon steel strip is normally manufacturedfrom continuously cast steel with aluminum used as thedeoxidizer. However, some applicati

31、ons are specified as siliconkilled. Ingot cast rimmed, capped and semi-killed steels aresubject to limited availability.5.3 Cold-rolled carbon steel strip is manufactured fromhot-rolled descaled coils by cold reducing to the desiredthickness on a single stand mill or on a tandem mill consistingof se

32、veral single stands in series. Sometimes an anneal is usedat some intermediate thickness to facilitate further cold reduc-tion or to obtain desired temper and mechanical properties inthe finished strip. An anneal and skin pass is typically used asthe final step for Temper 4 and 5.6. Chemical Composi

33、tion6.1 Heat AnalysisAn analysis for each heat of steel shallbe made by the manufacturer to determine the percentage ofelements shown in Table 1. This analysis shall conform to therequirements shown in Table 1. When requested, heat analysisshall be reported to purchaser or his representative.6.2 Pro

34、duct, Check, or Verification Analysis may be madeby the purchaser on the finished material.6.2.1 Capped or rimmed steels are not technologicallysuited to product analysis due to the nonuniform character oftheir chemical composition and therefore, the tolerances inA109/A109M 162Table 2 do not apply.

35、Product analysis is appropriate on thesetypes of steel only when misapplication is apparent or forcopper when copper steel is specified.6.2.2 For steels other than rimmed or capped, when productanalysis is made by the purchaser, the chemical analysis shallnot vary from the limits specified by more t

36、han the amounts inTable 2. The several determinations of any element shall notvary both above and below the specified range.6.3 For referee purposes, if required, Test Methods,Practices, and Terminology A751 shall be used.6.4 For applications where cold-rolled strip is to be welded,care must be exer

37、cised in selection of chemical composition, aswell as mechanical properties, for compatibility with thewelding process and its effect on altering the properties.7. Temper and Bend Test Requirement7.1 Cold-rolled carbon strip specified to temper numbersshall conform to the Rockwell hardness requireme

38、nts shown inTable 3.7.1.1 When a temper number is not specified, Rockwellhardness requirements are established by agreement.7.2 It is recommended that hardness values be specified inthe same scale as that which will be used in testing the strip.7.3 Bend tests shall be conducted at room temperature a

39、ndtest specimens shall be capable of being bent to the require-ments shown in Table 4.7.4 All mechanical tests are to be conducted in accordancewith Test Methods and Definitions A370.TABLE 1 Heat AnalysisAComposition Wt %ElementTemper No.1, 2, 3Temper No.4, 5Carbon, max 0.25 0.15Manganese, max 0.90

40、0.60Phosphorous, max 0.025 0.025Sulfur, max 0.025 0.025SiliconA. .AluminumA,B. .CopperC0.20 0.20Nickel, maxD0.20 0.20Chromium, maxD, E0.15 0.15Molybdenum, maxD0.06 0.06VanadiumF. .ColumbiumF. .TitaniumF. .AWhere an ellipsis (. . .) appears in this table, there is no requirement, but theanalysis shal

41、l be reported unless otherwise specified in this specification.BThe analysis shall be reported. When killed steel is specified and aluminum is thedeoxidizing element, the minimum is 0.02, and the analysis shall be reported.CWhen copper steel is specified, the copper limit specified is a minimumrequi

42、rement. When copper steel is not specified, the copper limit is a maximumrequirement.DThe sum of copper, nickel, chromium, and molybdenum shall not exceed 0.50 %on heat analysis. When one or more of these elements is specified, the sum doesnot apply; in which case, only the individual limits on the

43、remaining elements willapply.EChromium is permitted, at the producers option, to 0.25 % maximum when thecarbon is less than or equal to 0.05 %. In such case, the limit on the sum of the fourelements in Footnote D does not apply.FReporting shall be required when the level for any of these elements ex

44、ceeds0.008 wt%.TABLE 2 Tolerances for Product AnalysisElementLimit or Maximumof Specified Ele-ment %ToleranceUnderMinimumLimitOverMaxi-mumLimitCarbon to 0.15, inclover 0.15 to 0.25, incl0.020.030.030.04Manganese to 0.60, incl 0.03 0.03Phosphorus . 0.01Sulfur . 0.01Copper 0.02 .TABLE 3 Hardness Requi

45、rementsINCH-POUND UNITSTemperThickness, in. Rockwell HardnessUnder Through MinimumMaximum(approx.)No. 1 (hard) 0.025 . . . 15T90 . . .0.040 0.025 30T76 . . .0.070 0.040 B90.0 . . .0.300 0.070 B84.0 . No. 2A(half-hard) 0.025 . . . 15T83.5 15T88.50.040 0.025 30T63.5 30T73.50.300 0.040 B70.0 B85No. 3A(

46、quarter-hard) 0.025 . . . 15T80 15T850.040 0.025 30T56.5 30T670.300 0.040 B60 B75No. 4A,B(skin-rolled) 0.025 . . . . . . 15T820.040 0.025 . . . 30T600.300 0.040 . . . B65No. 5A,B(dead-soft) 0.025 . . . 15T78.50.040 0.025 . . . 30T530.300 0.040 . . . B55SI UNITSThickness, mm Rockwell HardnessTemperUn

47、der Through MinimumMaximun(approx.)No. 1 (hard) 0.6 . . . 15T90 . . .1.0 0.6 30T76 . . .1.8 1.0 B90.0 . . .7.6 1.8 B84.0 . . .No. 2A(half-hard) 0.6 . . . 15T83.5 15T88.51.0 0.6 30T63.5 30T73.57.6 1.0 B70.0 B85No. 3A(quarter-hard) 0.6 . . . 15T80 15T851.0 0.6 30T56 30T677.6 1.0 B60 B75No. 4A,B(skin-r

48、olled) 0.6 . . . . . . 15T821.0 0.6 . . . 30T607.6 1.0 . . . B65No. 5A,B(dead-soft) 0.6 . . . . . . 15T78.51.0 0.6 . . . 30T537.6 1.0 . . . B55ARockwell hardness values apply at time of shipment. Aging may cause slightlyhigher values when tested at a later date.BWhere No. 4 and 5 tempers are ordered

49、 with a carbon range of 0.15 to 0.25 %,the maximum hardness requirement is established by agreement.A109/A109M 1638. Edge8.1 The desired edge number shall be specified as follows:8.1.1 Number 1 Edge is a prepared edge of a specifiedcontour (round or square), which is produced when a veryaccurate width is required or when an edge condition suitablefor electroplating is required, or both.8.1.2 Number 2 Edge is a natural mill edge carried throughthe cold rolling from the hot-rolled strip without additionalprocessing of the edge.8.1.3 Number 3 Edge is an approxim

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