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本文(ASTM A270 A270M-2014 Standard Specification for Seamless and Welded Austenitic and Ferritic Austenitic Stainless Steel Sanitary Tubing《卫生设施用无缝钢和焊接奥氏体不锈钢管的标准规格》.pdf)为本站会员(towelfact221)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 A270 A270M-2014 Standard Specification for Seamless and Welded Austenitic and Ferritic Austenitic Stainless Steel Sanitary Tubing《卫生设施用无缝钢和焊接奥氏体不锈钢管的标准规格》.pdf

1、Designation: A270/A270M 14Standard Specification forSeamless and Welded Austenitic and Ferritic/AusteniticStainless Steel Sanitary Tubing1This standard is issued under the fixed designation A270/A270M; the number immediately following the designation indicates the yearof original adoption or, in the

2、 case of revision, 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.This standard has been approved for use by agencies of the U.S. Department of Defense.1. Scope*1.1

3、This specification covers grades of seamless, welded,and heavily cold worked welded austenitic and ferritic/austenitic stainless steel sanitary tubing intended for use in thedairy and food industry and having special surface finishes.Pharmaceutical quality may be requested, as a supplementaryrequire

4、ment.1.2 This specification covers tubes in sizes up to andincluding 12 in. 300 mm in outside diameter.1.3 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 u

5、sed independently of the other. Combiningvalues from the two systems may result in non-conformancewith the standard.1.4 Optional supplementary requirements are provided, andwhen one or more of these are desired, each shall be so statedin the order.2. Referenced Documents2.1 ASTM Standards:2A262 Prac

6、tices for Detecting Susceptibility to IntergranularAttack in Austenitic Stainless SteelsA480/A480M Specification for General Requirements forFlat-Rolled Stainless and Heat-Resisting Steel Plate,Sheet, and StripA923 Test Methods for Detecting Detrimental IntermetallicPhase in Duplex Austenitic/Ferrit

7、ic Stainless SteelsA967 Specification for Chemical Passivation Treatments forStainless Steel PartsA1016/A1016M Specification for General Requirements forFerritic Alloy Steel, Austenitic Alloy Steel, and StainlessSteel TubesE527 Practice for Numbering Metals and Alloys in theUnified Numbering System

8、(UNS)2.2 ASME Standard:B46.1 Surface Texture (Surface Roughness, Waviness, andLay)32.3 ASME Boiler and Pressure Vessel Code:Section VIII Pressure Vessels32.4 Other Standard:SAE J1086 Practice for Numbering Metals and Alloys(UNS)43. Terminology3.1 Definitions:3.1.1 roughness average, Ra, narithmetic

9、average surfaceroughness normally reported in microinches or microns; ameasurement of surface roughness usually performed by mov-ing a stylus in a straight line along the surface, although othermethods may be used.4. Ordering Information4.1 It is the responsibility of the purchaser to specify allreq

10、uirements that are necessary for material ordered under thisspecification. Such requirements may include, but are notlimited to, the following:4.1.1 Quantity (feet, metres, or number of lengths),4.1.2 Name of material (austenitic steel tube),4.1.3 Process seamless (SML), welded (WLD), or heavilycold

11、 worked (HCW),4.1.4 Size (outside diameter and average wall thickness),4.1.5 Length (specific or random),4.1.6 Surface finish (Section 13),4.1.7 Optional requirements (product analysis, see Section9; hydrostatic or nondestructive electric test, see Section 11).1This specification is under the jurisd

12、iction of ASTM Committee A01 on Steel,Stainless Steel and Related Alloys and is the direct responsibility of SubcommitteeA01.10 on Stainless and Alloy Steel Tubular Products.Current edition approved March 1, 2014. Published March 2014. Originallyapproved in 1944. Last previous edition approved in 20

13、10 as A27010. DOI:10.1520/A0270-14.2For 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.3Available from American S

14、ociety of Mechanical Engineers (ASME), ASMEInternational Headquarters, Two Park Ave., New York, NY 10016-5990, http:/www.asme.org.4Available from Society of Automotive Engineers (SAE), 400 CommonwealthDr., Warrendale, PA 15096-0001, http:/www.sae.org.*A Summary of Changes section appears at the end

15、of this standardCopyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States14.1.8 Test report required (Certification Section of Specifi-cation A1016/A1016M),4.1.9 Specification designation,4.1.10 Special requirements, and4.2 Any supplementary re

16、quirements.5. General Requirements5.1 Material furnished under this specification shall con-form to the applicable requirements of the current edition ofSpecification A1016/A1016M, unless otherwise providedherein.6. Manufacture6.1 The tubes shall be manufactured by one of the followingprocesses:6.1.

17、1 Seamless (SML) tubes shall be made by a process thatdoes not involve welding at any stage.6.1.2 Welded (WLD) tubes shall be made using an auto-mated welding process with no addition of filler metal duringthe welding process.6.1.3 Heavily cold worked (HCW) tubes shall be made byapplying cold workin

18、g of not less than 35 % reduction ofthickness of both wall and weld to a welded tube prior to thefinal anneal. No filler shall be used in making the weld. Priorto cold working, the weld shall be 100 % radiographicallyinspected in accordance with the requirements ofASME Boilerand Pressure Vessel Code

19、 Section VIII, Division 1, latestrevision, Paragraph UW 51.6.2 At the manufacturers option, tubing may be furnishedeither hot finished or cold finished.7. Heat Treatment7.1 All material shall be furnished in the heat-treatedcondition. The heat treatment procedure, except for S31803,S32003, S32205, S

20、32750, N08926 and N08367, shall consistof heating the material to a minimum temperature of 1900 F1040 C and quenching in water or rapid cooling by othermeans.7.2 N08926 shall be heat-treated to a minimum temperatureof 2010 F 1100 C followed by quenching in water orrapidly cooling by other means. UNS

21、 N08367 should besolution annealed from 2025 F 1110 C minimum followedby rapid quenching.7.3 S31803 and S32205 shall be heat-treated in a tempera-ture range of 1870 F 1020 C to 2010 F 1100 C followedby quenching in water or rapidly cooling by other means.7.4 S32750 shall be heat-treated in a tempera

22、ture range of1880 F 1025 C to 2060 F 1125 C followed byquenching in water or rapidly cooling by other means.7.5 S32003 shall be heat-treated in a temperature range of1850 F 1010 C to 2010 F 1100 C.8. Chemical Composition8.1 An analysis of either one length of flat-rolled stock orone tube shall be ma

23、de for each heat. The chemical composi-tion thus determined shall conform to the requirements given inTable 1.9. Product Analysis9.1 When requested by the purchaser, product analysistolerance in Specification A480/A480M shall apply. The prod-uct analysis tolerance is not applicable to the carbon con

24、tent formaterial with a specified maximum carbon of 0.04 % or less.9.2 If the original test for product analysis fails, retests oftwo additional lengths of flat-rolled stock or tubes shall bemade. Both retests for the elements in question shall meet therequirements of the specification; otherwise al

25、l remainingmaterial in the heat or lot shall be rejected or, at the option ofthe producer, each length of flat-rolled stock or tube may beindividually tested for acceptance. Lengths of flat rolled stockor tubes that do not meet the requirements of the specificationshall be rejected.10. Mechanical Te

26、sts Required10.1 Reverse Flattening TestFor welded tubes, one re-verse flattening test shall be made on a specimen from each1500 ft 450 m of finished tubing.11. Hydrostatic or Nondestructive Electric Test11.1 Each tube shall be subjected to the nondestructiveelectric test or the hydrostatic test. Th

27、e type of test to be usedshall be at the option of the manufacturer, unless otherwisespecified in the purchase order.12. Permissible Variations in Dimensions12.1 The following variations in dimensions shall apply:12.1.1 For tubes with a specified wall thickness of 0.049 in.1.24 mm and greater, varia

28、tions in outside diameter fromthose specified shall not exceed the amount prescribed in Table2. For tubes with a specified wall thickness less than 0.049 in.1.24 mm, the diameter tolerances shall be a matter foragreement by the manufacturer and the purchaser.12.1.2 When tubing 4 in. 100 mm outside d

29、iameter isordered, additional ovality may be required for thin walltubing. Thin wall tubing applies when the specified wall is lessthan 0.150 in. 3.8 mm. When thin wall tubing is ordered, themaximum and minimum outside diameter at any cross sectionshall deviate from the specified outside diameter by

30、 no morethan twice the permissible variation in outside diameter givenin Table 2; however, the mean diameter at that cross sectionmust still be within the given permissible variation.12.1.3 The wall thickness at any point shall not vary morethan 12.5 %, from the specified wall thickness.12.1.4 Varia

31、tions in length shall meet the requirements inTable 2 except when the Pharmaceutical Quality Tubing(Supplementary Requirement S2) is specified.13. Surface Finishes13.1 The following surface finishes may be specified:13.1.1 Mill FinishA finish without additional polishing oroperations intended to smo

32、oth the surface.13.1.2 Mechanically Polished Surface FinishThe pur-chaser may specify one of the following finish numbers for amechanically polished surface:A270/A270M 142TABLE1ChemicalRequirementsElementGradeTP304TP304L.TP316TP316L.UNSDesignationAS30400S30403S31254S31600S31603N08926N08367S31803S322

33、05S32750S32003Composition,%Carbon,max0.080.035B0.0200.080.035B0.0200.0300.0300.0300.0300.030maxManganese, max2.002.001.002.002.002.002.002.002.001.202.00maxPhosphorus, max0.0450.0450.0300.0450.0450.0300.0400.0300.0300.0350.030Sulfur,max0.0300.0300.0100.0300.0300.0100.0300.0200.0200.0200.020maxSilico

34、n,max1.001.000.801.001.000.501.001.001.000.801.00maxNickel8.011.08.012.017.518.510.014.010.014.024.026.023.525.54.56.54.56.56.08.03.04.0Chromium18.020.018.020.019.520.516.018.016.018.019.021.020.022.021.023.022.023.024.026.019.522.5Molybdenum.6.06.52.003.002.003.006.07.06.07.02.53.53.03.53.05.01.52.

35、0NitrogenC.0.180.22.0.150.250.180.250.080.200.140.200.240.320.140.20Copper.0.501.00.0.501.50.75max.0.50maxANewdesignationestablishedinaccordancewithPracticeE527andSAEJ1086.BForsmalldiameterorthinwallsorboth,wheremanydrawingpassesarerequired,acarbonmaximumof0.040%isnecessaryingradesTP304LandTP316L.Sm

36、alloutsidediametertubesaredefinedasthoselessthan0.500in.12mminoutsidediameterandlightwalltubesasthoselessthan0.049in.1.24mminaveragewallthickness(0.044in.1.12mminminimumwallthickness).CThemethodofanalysisfornitrogenshallbeamatterofagreementbetweenthepurchaserandmanufacturer.A270/A270M 14313.1.2.1 Fi

37、nish No. 80A ground finish produced by pol-ishing a tube with an abrasive media impregnated with No. 80grit.13.1.2.2 Finish No. 120A ground finish produced bypolishing a tube with an abrasive media impregnated with No.120 grit.13.1.2.3 Finish No. 180A ground finish produced bypolishing a tube with a

38、n abrasive media impregnated with No.180 grit.13.1.2.4 Finish No. 240A ground finish produced bypolishing a tube with an abrasive media impregnated with No.240 grit.13.1.2.5 Other mechanically polished finishes may beagreed upon between the purchaser and manufacturer.13.1.3 Electropolished FinishA b

39、right reflective finishproduced by electropolishing. The manufacturer may use otherpolishing operations prior to electropolishing.13.1.4 Maximum Roughness Average (Ra) Surface FinishThe customer may specify a maximum Ra on the insidesurface, outside surface, or both. The measurement of surfaceroughn

40、ess shall be in accordance with ASME B46.1.13.1.4.1 When no agreement is made regarding Ra mea-surement of longitudinally polished tube, disputes shall beresolved using measurements made in accordance with ASMEB46.1.13.2 The manufacturer shall select a manufacturing methodto produce the specified fi

41、nish. The operations may or may notinclude polishing.13.2.1 The purchaser may specify the polishing type foreither the inside surface, outside surface or both for the finaldesired effect.13.2.1.1 Longitudinally Polished FinishIt is usually per-formed on the inside surface only.13.2.1.2 Circumferenti

42、al (Rotary) Polished FinishThiscan be performed on either the inside surface, outside surface,or both.13.2.1.3 When the surface is finished by circumferentialmechanical polishing, the Ra measurement shall be measuredin the longitudinal direction. Roughness measurement of alongitudinal mechanical pol

43、ished surface shall be a matter ofagreement between the manufacturer and the purchaser.13.3 Acceptance criteria for minor surface imperfectionsshall be a matter for agreement by the manufacturer and thepurchaser.13.4 Combinations of the above finishes for internal andexternal surfaces may be specifi

44、ed. When tubes are polishedonly on one surface, the other surface may be the regular millfinish.14. Product Marking14.1 In addition to the marking prescribed in SpecificationA1016/A1016M and specified in the order, the marking shallinclude whether the tubing is seamless (SML), welded (WLD),or heavil

45、y cold worked (HCW), and the surface finish.15. Packaging15.1 Unless otherwise specified in the order, all tubing shallbe protected for shipment by bundling, paper or burlapwrapping, or boxing at the discretion of the manufacturer.16. Keywords16.1 austenitic stainless steel; duplex stainless steel;

46、ferritic/austenitic stainless steel; heavily cold worked tube; seamlesssteel tube; stainless steel tube; steel tube; welded steel tubeTABLE 2 Permissible Variations in DimensionsSize, OutsideDiameter,in. mmPermissible Variations in OutsideDiameter, in. mmPermissible Variations in CutLength, in. mmAO

47、ver Under Over Under1.000 25 and under 0.005 0.13 0.005 0.1318 3 0Over 1 25 to 2 50 0.008 0.20 0.008 0.2018 3 0Over 2 50 to 3 75 0.010 0.25 0.010 0.2518 3 0Over 3 75 to 4 100 0.015 0.38 0.015 0.3818 3 0Over 4 100 to 512 140, excl 0.015 0.38 0.015 0.38316 5 0512 140 to 8 200, excl 0.030 0.75 0.030 0.

48、75316 5 08 200 to 12 300 0.050 1.25 0.050 1.25316 5 0AThe cut tolerances do not apply to Pharmaceuitical Tubing in S2 (see paragraph S2.7).A270/A270M 144SUPPLEMENTARY REQUIREMENTSThe following supplementary requirements shall apply only when specified by the purchaser in theinquiry, contract, or ord

49、er.S1. Intergranular Corrosion TestS1.1 When specified on the order, intergranular corrosiontests shall be performed by the manufacturer on specimensrepresentative of the as-shipped condition. Tubes shall becapable of passing corrosion tests in the as-shipped condition.Tests shall be performed in accordance with Practice E ofPractices A262 for aus

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