ASTM A139 A139M-2004(2015) Standard Specification for Electric-Fusion (Arc)-Welded Steel Pipe (NPS 4 and Over)《电熔 (弧) 焊接钢管 (纳米颗粒4及以上) 的标准规格》.pdf
《ASTM A139 A139M-2004(2015) Standard Specification for Electric-Fusion (Arc)-Welded Steel Pipe (NPS 4 and Over)《电熔 (弧) 焊接钢管 (纳米颗粒4及以上) 的标准规格》.pdf》由会员分享,可在线阅读,更多相关《ASTM A139 A139M-2004(2015) Standard Specification for Electric-Fusion (Arc)-Welded Steel Pipe (NPS 4 and Over)《电熔 (弧) 焊接钢管 (纳米颗粒4及以上) 的标准规格》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: A139/A139M 04 (Reapproved 2015)Standard Specification forElectric-Fusion (Arc)-Welded Steel Pipe (NPS 4 and Over)1This standard is issued under the fixed designation A139/A139M; the number immediately following the designation indicates the yearof original adoption or, in the case of re
2、vision, 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. Scope1.1 This specification covers five grades of electric-fusion(arc)-welded straight-seam or helical-seam
3、 steel pipe. Pipe ofNPS4(Note 1) and larger with nominal (average) wallthickness of 1.0 in. 25.4 mm and less are covered. Listing ofstandardized dimensions are for reference (Note 2). The gradesof steel are pipe mill grades having mechanical propertieswhich differ from standard plate grades. The pip
4、e is intendedfor conveying liquid, gas, or vapor.NOTE 1The dimensionless designator NPS (nominal pipe size) hasbeen substituted in this standard for such traditional terms as “nominaldiameter,”“ size,” and “nominal size.”NOTE 2A comprehensive listing of standardized pipe dimensions iscontained in AS
5、ME B36.10M.NOTE 3The suitability of pipe for various purposes is somewhatdependent on its dimensions, properties, and conditions of service. Forexample, for high-temperature service see applicable codes and Specifi-cation A691.1.2 The values stated in either inch-pound units or in SIunits are to be
6、regarded separately as standard. Within the text,the SI units are shown in brackets. The values in each systemare not exact equivalents; therefore, each system is to be usedindependently of the other.2. Referenced Documents2.1 ASTM Standards:2A370 Test Methods and Definitions for Mechanical Testingo
7、f Steel ProductsA691 Specification for Carbon and Alloy Steel Pipe,Electric-Fusion-Welded for High-Pressure Service at HighTemperaturesA751 Test Methods, Practices, and Terminology for Chemi-cal Analysis of Steel ProductsE59 Practice for Sampling Steel and Iron for Determinationof Chemical Compositi
8、on (Withdrawn 1996)32.2 American Welding Society Standard:4AWS B2.1 Standard for Welding Procedure and Perfor-mance Qualifications Welding Handbook, Vol 1, 8th ed2.3 ASME Standards:5ASME B36.10M Welded and Seamless Wrought Steel PipeASME B36.19M Stainless Steel PipeASME Boiler and Pressure Vessel Co
9、de, Section IX3. Ordering Information3.1 Orders for material under this specification shouldinclude the following, as required, to describe the desiredmaterial adequately:3.1.1 Quantity (feet, metres, or number of lengths),3.1.2 Name of material (electric-fusion-(arc) welded steelpipe),3.1.3 Grade (
10、Table 1),3.1.4 Size (NPS, or outside diameter, and nominal wallthickness, or schedule number),3.1.5 Lengths (specific or random, Section 17),3.1.6 End finish (Section 18),3.1.7 Hydrostatic test pressure (Section 16, Note 8, andNote 9),3.1.8 ASTM specification designation, and3.1.9 End use of materia
11、l.4. Process4.1 The steel shall be made by one or more of the followingprocesses: open-hearth, basic-oxygen, or electric-furnace.4.2 Steel may be cast in ingots or may be strand cast. Whensteels of different grades are sequentially strand cast, identifi-cation of the resultant transition material is
12、 required. Theproducer shall remove the transition material by any estab-lished procedure that positively separates the grades.NOTE 4The term “basic-oxygen steelmaking” is used generically todescribe processes in which molten iron is refined to steel under a basic1This specification is under the jur
13、isdiction of ASTM Committee A01 on Steel,Stainless Steel and Related Alloys, and is the direct responsibility of SubcommitteeA01.09 on Carbon Steel Tubular Products.Current edition approved Sept. 1, 2015. Published September 2015. Originallyapproved in 1932. Last previous edition approved in 2010 as
14、 A139/A139M04(2010). DOI: 10.1520/A0139_A0139M-04R15.2For 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 onthe ASTM website.3The las
15、t approved version of this historical standard is referenced onwww.astm.org.4Available from American Welding Society (AWS), 550 NW LeJeune Rd.,Miami, FL 33126, http:/www.aws.org.5Available from American Society of Mechanical Engineers (ASME), ASMEInternational Headquarters, Two Park Ave., New York,
16、NY 10016-5990, http:/www.asme.org.Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States1slag in a cylindrical furnace lined with basic refractories, by directing a jetof high-purity gaseous oxygen onto the surface of the hot metal bath.5. M
17、anufacture5.1 The longitudinal edges of the steel shall be shaped togive the most satisfactory results by the particular weldingprocess employed. The weld shall be made by automatic (Note5) means (except tack welds if used) and shall be of reasonablyuniform width and height for the entire length of
18、the pipe.NOTE 5Upon agreement between the purchaser and the manufacturer,manual welding by qualified procedure and welders may be used as anequal alternative under these specifications.5.2 All weld seams made in manufacturing pipe shall bemade using complete joint penetration groove welds.6. Chemica
19、l Composition6.1 The steel shall conform to the chemical requirementsprescribed in Table 1 and the chemical analysis shall be inaccordance with Test Methods, Practices, and TerminologyA751.7. Tensile Requirements for the Steel7.1 Longitudinal tension test specimens taken from the steelshall conform
20、to the requirements as to tensile propertiesprescribed in Table 2.At the manufacturers option, the tensiontest specimen for sizes 858 in. 219.1 mm in outside diameterand larger may be taken transversely as described in 19.4.7.2 The yield point shall be determined by the drop of thebeam, by the halt
21、in the gage of the testing machine, by the useof dividers, or by other approved methods. The yield strengthcorresponding to a permanent offset of 0.2 % of the gage lengthTABLE 1 Chemical RequirementsElement Composition, max, %Grade A Grade B Grade C Grade D Grade ECarbon 0.25 0.26 0.28 0.30 0.30Mang
22、anese 1.00 1.00 1.20 1.30 1.40Phosphorus 0.035 0.035 0.035 0.035 0.035Sulfur 0.035 0.035 0.035 0.035 0.035TABLE 2 Tensile RequirementsGrade A Grade B Grade C Grade D Grade ETensile strength, min, ksi MPa 48 330 60 415 60 415 60 415 66 455Yield strength, min, ksi MPa 30 205 35 240 42 290 46 315 52 36
23、0Elongation in 2 in. or 50 mm, min, %:Basic minimum elongation for walls516 in. 7.9 mm and over in 35 30 25 23 22thickness, longitudinal strip testsFor longitudinal strips tests, a deduction for each132-in. 0.8-mm 1.75A1.50A1.25 1.50 2.0decrease in wall thickness below516 in. 7.9 mm from thebasic mi
24、nimum elongation of the following percentageAElongation in 8 in. or 200 mm, min, %B,CInch Pound Units, 1500/specified minimum tensile strength (ksi)SI Units, 10 300/specified minimum tensile strength MPaAThe table below gives the computed minimum values.BFor wall thicknesses12 in. 12.7 mm and greate
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