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本文(ASTM B619-2010 Standard Specification for Welded Nickel and Nickel-Cobalt Alloy Pipe《焊接的镍和镍钴合金管的标准规格》.pdf)为本站会员(hopesteam270)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 B619-2010 Standard Specification for Welded Nickel and Nickel-Cobalt Alloy Pipe《焊接的镍和镍钴合金管的标准规格》.pdf

1、Designation: B619 10Standard Specification forWelded Nickel and Nickel-Cobalt Alloy Pipe1This standard is issued under the fixed designation B619; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number

2、in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope*1.1 This specification2covers welded pipe of nickel andnickel-cobalt alloys (UNS N10001; UNS N10242; UNSN10665; UNS N12160; UNS N10624; UNS N1062

3、9; UNSN10675; UNS N10276; UNS N06455; UNS N06007; UNSN06975; UNS N08320; UNS N06002; UNS N06022; UNSN06035; UNS N06058; UNS N06059; UNS N06200; UNSN10362; UNS N06985; UNS N06030; UNS R30556; UNSN08031; UNS N06230; UNS N06686; UNS N06210; and UNSR20033)* as shown in Table 1.1.2 This specification cov

4、ers pipe in Schedules 5S, 10S,40S, and 80S through 8-in. nominal pipe size and larger as setforth in ANSI B36.19 (see Table 2).1.3 Two classes of pipe are covered as follows:1.3.1 Class IAs welded and solution annealed or weldedand sized and solution annealed.1.3.2 Class IIWelded, cold worked, and s

5、olution an-nealed.1.4 All pipe shall be furnished in the solution annealed anddescaled condition. When atmosphere control is used, descal-ing is not necessary.1.5 The values stated in inch-pound units are to be regardedas standard. The values given in parentheses are mathematicalconversions to SI un

6、its that are provided for information onlyand are not considered standard.1.6 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to become familiarwith all hazards including those identified in th

7、e appropriateMaterial Safety Data Sheet (MSDS) for this product/materialas provided by the manufacturer, to establish appropriatesafety and health practices, and determine the applicability ofregulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:3B775 Specification for Genera

8、l Requirements for Nickeland Nickel Alloy Welded PipeB899 Terminology Relating to Non-ferrous Metals andAlloysE527 Practice for Numbering Metals and Alloys in theUnified Numbering System (UNS)2.2 ANSI Standards:4B36.19 Stainless Steel PipeB2.1 Pipe Threads2.3 ASME Boiler and Pressure Vessel Code5Sec

9、tion IX Welding and Brazing Qualifications3. Terminology3.1 For definitions of terms used in this standard refer toTerminology B899.4. General Requirement4.1 Material furnished under this specification shall con-form to the applicable requirements of Specification B775unless otherwise provided herei

10、n.5. Ordering Information5.1 It is the responsibility of the purchaser to specify allrequirements that are necessary for material ordered under thisspecification. Examples of such requirements include, but arenot limited to the following:5.1.1 Alloy (Table 1),5.1.2 Class (see 1.3),5.1.3 Quantity (fe

11、et or number of lengths),5.1.4 Size (nominal size or outside diameter and schedulenumber or average wall thickness),5.1.5 LengthSpecify cut length or random,1This specification is under the jurisdiction of ASTM Committee B02 onNonferrous Metals and Alloys and is the direct responsibility of Subcommi

12、tteeB02.07 on Refined Nickel and Cobalt and Their Alloys.Current edition approved Oct. 1, 2010. Published October 2010. Originallyapproved in 1981. Last previous edition approved in 2006 as B619 06. DOI:10.1520/B0619-10.2For ASME Boiler and Pressure Vessel Code applications see related Specifi-catio

13、n SB-619 in Section II of that Code.* New designation established in accordance with Practice E527 and SAE J1086,Practice for Numbering Metals and Alloys (UNS).3For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of

14、 ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.4Available from American National Standards Institute (ANSI), 25 W. 43rd St.,4th Floor, New York, NY 10036, http:/www.ansi.org.5Available from American Society of Mechanical Engineers (ASME), ASMEInter

15、national Headquarters, Three Park Ave., New York, NY 10016-5990, http:/www.asme.org.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.5.1.6 CertificationState if certifi

16、cation or a report of testresults is required,5.1.7 Purchaser InspectionState which tests or inspec-tions are to be witnessed,5.1.8 EndsPlain ends cut and deburred will be furnished,unless otherwise specified, and5.1.9 Samples for Product (Check) AnalysisState whethersamples shall be furnished.6. Ma

17、terials and Manufacture6.1 The pipe shall be made from flat-rolled alloy by anautomatic welding process with no addition of filler metal.6.2 Subsequent to welding and prior to final heat treatment,Class II pipes shall be cold worked either in both weld and basemetal or in weld metal only. The method

18、 of cold working maybe specified by the purchaser.7. Chemical Composition7.1 The material shall conform to the composition limitsspecified in Table 1.7.2 If a product (check) analysis is made by the purchaser,the material shall conform to the requirements specified inTable 1 subject to the permissib

19、le tolerances in SpecificationB775.8. Mechanical Properties and Other Requirements8.1 Tension TestThe tensile properties of the material atroom temperature shall conform to those shown in Table 3.8.1.1 One tension test shall be made on each lot of pipe.8.2 Flattening TestOne flattening test shall be

20、 made on aspecimen from one end of one pipe from each lot.8.3 Transverse Guided Bend Test:8.3.1 At the option of the pipe manufacturer, the transverseguided bend test may be substituted in lieu of the flatteningtest. Two bend specimens shall be taken transversely from pipeor the test specimens may b

21、e taken from a test plate of the samematerial and heat as pipe, which is attached to the end of thecylinder and welded as a prolongation of the pipe longitudinalseam. Except as provided in 8.3.2, one shall be subjected to aface guided bend and a second to a root guided bend test. Onespecimen shall b

22、e bent with the inside surface of the pipeagainst the plunger and the other with the outside surface of thepipe against the plunger. Guided bend test specimens shall beprepared and tested in accordance with Section IX, Part QW160 of theASME Boiler and Pressure Vessel Code and shall beone of the type

23、s shown in QW462.2 and QW462.3 of that code.8.3.2 For specified wall thicknesses38 in. (9.5 mm) andover, but less than34 in. (19 mm) side bend tests may be madeinstead of the face and root bend tests. For specified wallthicknesses34 in. (19 mm) and over, both specimens shall besubjected to the side

24、bend tests. Side bend specimens shall bebent so that one of the side surfaces becomes the convexsurface of the bend specimen.8.3.3 The bend test shall be acceptable if no cracks or otherdefects exceeding18 in. (3 mm) in any direction be present inthe weld metal or between the weld and the pipe or pl

25、ate metalafter bending. Cracks which originate along the edges of thespecimen during testing, and are less than14 in. (6.5 mm)measured in any direction shall not be considered.8.4 Hydrostatic or Nondestructive Electric TestEach pipeshall be subjected to either the hydrostatic or the nondestruc-tive

26、electric test at the manufacturers option.9. Dimensions and Permissible Variations9.1 Wall ThicknessVariations in wall thickness shall notexceed the specified nominal wall thickness by more than61212 %, except as follows:9.1.1 If weld beads are present on the inner surface of thepipe, they shall not

27、 exceed the wall thickness of the pipe bymore than 20 % or 0.050 in. (1.27 mm), whichever is less, ofthe specified nominal wall thickness for Class I pipe, and 5 %or 0.005 in. (0.127 mm), whichever is less, of the specifiednominal wall thickness for Class II pipe.9.1.2 Sunken welds in Class I pipe s

28、hall not be deeper than15 % of the specified nominal wall thickness and never deeperthan 0.030 in. (0.79 mm). Class II pipe shall not have sunkenwelds.9.2 Outside DiameterThe permissible variations in out-side diameter shall not exceed the limits prescribed in Table 4,except as provided for in 9.1.2

29、.9.3 For pipe diameters greater than shown in Table 4,permissible variations in dimensions at any point in a length ofpipe shall not exceed the following:9.3.1 Outside DiameterBased on circumferential mea-surement, 60.5 % of the nominal outside diameter.9.3.2 Out-of-RoundnessDifferences between majo

30、r andminor outside diameters, 1.0 % of the specified outside diam-eter.9.3.2.1 For thin-wall pipe, defined as pipe having a wallthickness of 3 % or less of the outside diameter, the differencein the extreme outside readings (ovality) in any one crosssection shall not exceed 1.5 % of the specified ou

31、tside diam-eter.9.3.3 Alignment (Camber)Using a 10 ft. (3 m) straight-edge placed so that both ends are in contact with the pipe, thecamber shall not be more than18 in. (3.17 mm).10. Keywords10.1 UNS N06002; UNS N06007; UNS N06022; UNSN06030; UNS N06035; UNS N06058; UNS N06059; UNSN06200; UNS N10362

32、; UNS N06210; UNS N06230; UNSN06455; UNS N06975; UNS N06985; UNS N08031; UNSN08320; UNS N10001; UNS N10242; UNS N10276; UNSN10624; UNS N10629; UNS N10665; UNS N10675; UNSR30556; welded pipeB619 102TABLE 1 Chemical RequirementsComposition Limits, %Ni Cr Mo Fe W C SimaxCo Mn V PmaxSmaxTi Cu Cb(Nb)+TaA

33、l Zr La N B Cb(Nb)Ta Ni+MoMgNi-Mo AlloysN10001 remainderA1.0max26.0-30.04.0-6.0 . 0.05max1.0 2.5max1.0max0.2-0.40.04 0.03 . . .N10665 remainderA1.0max26.0-30.02.0 max . 0.02max0.10 1.0max1.0max. 0.04 0.03 . . .N10675 65.0 min 1.0-3.027.0-32.01.0-3.0 3.0max0.01max0.10 3.0max3.0max0.20max0.030 0.010 0

34、.20max0.20max. 0.50max0.10max. . . 0.20max0.20max94.0-98.0N10629 remainderA0.5-1.526.0-30.01.0-6.0 . 0.01max0.05 2.5max1.5max. 0.04 0.01 . 0.5max. 0.1-0.5. . . . . . .N10624 remainderA6.0-10.021.0-25.05.0-8.0 . 0.01max0.10 1.0max1.0max. 0.025 0.01 . 0.5max. . . . . . . . .Ni-Mo-Cr-FeAlloyN10242 rema

35、inderA7.0-9.024.0-26.02.0 max 0.03max0.80 1.00max0.80max0.030 0.015 0.50max0.50max0.006maxLowCNi-Cr-Mo AlloysN10276 remainderA14.5-16.515.0-17.04.0-7.0 3.0-4.50.010max0.08 2.5max1.0max0.35max0.04 0.03 . . .N06022 remainderA20.0-22.512.5-14.52.0-6.0 2.5-3.50.015max0.08 2.5max0.5max0.35max0.02 0.02 .

36、. .N06035 remainderA32.25-34.257.60-9.002.00 max 0.60max0.050max0.60 1.00max0.50max0.20max0.030 0.015 . 0.30max. 0.40maxN06455 remainderA14.0-18.014.0-17.03.0 max . 0.015max0.08 2.0max1.0max. 0.04 0.03 0.70max. .Ni-Cr-Fe-Mo-CuAlloysN06007 remainderA21.0-23.55.5-7.518.0-21.0 1.0max0.05max1.0 2.5max1.

37、0-2.0. 0.04 0.03 . 1.5-2.51.75-2.5N06975 47.0-52.0 23.0-26.05.0-7.0remainder . 0.03max1.0 . 1.0max. 0.03 0.03 0.70-1.500.70-1.20.N06985 remainderA21.0-23.56.0-8.018.0-21.0 1.5max0.015max1.0max5.0max1.0max. 0.04 0.03 . 1.5-2.50.50maxN06030 remainderA28.0-31.54.0-6.013.0-17.0 1.5-4.00.03max0.8 5.0max1

38、.5max. 0.04 0.02 . 1.0-2.40.30-1.50Ni-Fe-Cr-MoAlloysN08320 25.0-27.0 21.0-23.04.0-6.0remainder . 0.05max1.0 . 2.5max. 0.04 0.03 4xCmin. .Ni-Cr-Mo-FeAlloyN06002 remainderA20.5-23.08.0-10.017.0-20.0 0.20-1.00.05-0.151.0 0.5-2.51.0max. 0.04 0.03 . . .Ni-Fe-Cr-CoAlloyR30556 19.0-22.5 21.0-23.02.5-4.0rem

39、ainder 2.0-3.50.05-0.150.20-0.8016.0-21.00.50-2.00. 0.04 0.015 . . . 0.10-0.500.001-0.100.005-0.100.10-0.300.02max0.30max0.3-1.25Ni-Cr-W-MoAlloyN06230 remainderA20.0-24.01.0-3.03.0 max 13.0-15.00.05-0.150.25-0.755.0max0.30-1.00. 0.03 0.015 . . . 0.50max. 0.005-0.050. 0.015max. .B619103TABLE 1 Contin

40、uedComposition Limits, %Ni Cr Mo Fe W C SimaxCo Mn V PmaxSmaxTi Cu Cb(Nb)+TaAl Zr La N B Cb(Nb)Ta Ni+MoMgLow C-Ni-Cr-Mo AlloyN06058 balance 20.0-23.019.0-21.01.5 max 0.3max0.010max0.10max0.3max0.50max0.015 0.010 . 0.50max. 0.40max0.02-0.15N06059 balance 22.0-24.015.0-16.51.5 max . 0.010max0.010 0.3m

41、ax0.5max. 0.015 0.010 . 0.50max. 0.1-0.4. . . . . . .Low C-Ni-Cr-Mo-CuAlloyN06200 remainderA22.0-24.015.0-17.03.0 max . 0.010max0.08 2.0max0.50max. 0.025 0.010 . 1.3-1.9. 0.50maxLow-C-Ni-Mo-Cr AlloyN10362 remainderA13.8-15.621.5-23.01.25 max . 0.010max0.08 . 0.60max. 0.025 0.010 . . . 0.50max. . . .

42、 . . . .Low C-Ni-Fe-Cr-Mo-Cu AlloyN08031 30.0-32.0 26.0-28.06.0-7.0balance . 0.015max0.3 . 2.0max. 0.020 0.010 . 1.0-1.4. . . . 0.15-0.25. . .Low C-Ni-Cr-Mo-WAlloyN06686 remainderA19.0-23.015.0-17.05.0 max 3.0-4.40.010max0.08 . 0.75max. 0.04 0.02 0.02-0.25. . . . . . . . .Ni-Co-Cr-SiAlloyN12160 rema

43、inderA26.0-30.01.0max3.5 max 1.0max0.15max2.4-3.027.0-33.01.5max. 0.030 0.015 0.20-0.80. . . . . . . 1.0max. . .Cr-Ni-Fe-NAlloyR20033 30.0-33.0 31.0-35.00.50-2.0balance . 0.015max0.050 . 2.0max. 0.02 0.01 . 0.3-1.20. . . . 0.35-0.60. . . . .Low C-Ni-Mo-Cr-TaAlloyN06210 remainderA18.0-20.018.0-20.01.

44、0 max . 0.015max0.08 1.0max0.5 0.35max0.02 0.02 . . . . . . . 1.5-2.2AThe composition of the remainder shall be determined arithmetically by difference.B619104TABLE 2 Dimensions of Welded PipeNOTE 1The following table is a partial reprint of Table 1 of ANSI B36.19.NOTE 2The decimal thickness listed

45、for the respective pipe sizes represents their nominal or average wall dimensions.NominalPipe Size,Outside DiameterNominal Wall ThicknessSchedule 5SASchedule 10SASchedule 40S Schedule 80Sin. in. mm in. mm in. mm in. mm in. mm18 0.405 10.29 . . 0.049 1.24 0.068 1.7314 0.540 13.72 . . 0.065 1.65 0.088

46、 2.2438 0.675 17.15 . . 0.065 1.65 0.091 2.3112 0.840 21.34 0.065 1.65 0.083 2.11 0.109 2.7734 1.050 26.67 0.065 1.65 0.083 2.11 0.113 2.871.0 1.315 33.41 0.065 1.65 0.109 2.77 0.133 3.38114 1.660 42.16 0.065 1.65 0.109 2.77 0.140 3.56112 1.900 48.26 0.065 1.65 0.109 2.77 0.145 3.682 2.375 60.33 0.0

47、65 1.65 0.109 2.77 0.154 3.91 0.218 5.54212 2.875 73.03 0.083 2.11 0.120 3.05 0.203 5.16 0.276 7.013 3.500 88.90 0.083 2.11 0.120 3.05 0.216 5.33312 4.000 101.60 0.083 2.11 0.120 3.05 0.226 5.744 4.500 114.30 0.083 2.11 0.120 3.05 0.237 6.025 5.563 141.30 0.109 2.77 0.134 3.40 0.258 6.556 6.625 168.

48、28 0.109 2.77 0.134 3.40 0.280 7.118 8.625 219.18 0.109 2.77 0.148 3.76 0.322 8.18ASchedules 5S and 10S wall thicknesses do not permit threading in accordance with ANSI B2.1-1960.B619 105TABLE 4 Permissible Variations in Outside DiameterNominalPipe Size, in.Permissible Variation in Outside DiameterA

49、in. mm18 + 0.002 0.006 + 0.05 0.1514 + 0.003 0.008 + 0.08 0.2038 + 0.004 0.008 + 0.08 0.2012 + 0.004 0.010 + 0.10 0.2534 + 0.005 0.012 + 0.13 0.301 + 0.005 0.012 + 0.13 0.30114 + 0.005 0.012 + 0.13 0.30112 + 0.008 0.015 + 0.20 0.382 + 0.010 0.016 + 0.25 0.41212 + 0.010 0.016 + 0.25 0.413 + 0.012 0.018 + 0.30 0.46312 + 0.012 0.018 + 0.30 0.464 + 0.014 0.020 + 0.36 0.515 + 0.063 0.031 + 1.60 0.796 + 0.063 0.031 + 1.60 0.798 + 0.063 0.031 + 1.60 0.79AThe permissible variations in the above table apply to indi

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