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JAPANESEINDUSTRIALSTANDARDJIS G3459 PDFStainless Steel Pipeshttps://www.stindia.com

G 3459: 2004ForewordThis translation has been made based on the original Japanese IndustrialStandard revised by the Minister of Economy, Trade and Industry throughdeliberations at the Japanese Industrial Standards Committee, as the resultof proposal for revision of Japanese Industrial Standard submitted by TheJapan Iron and Steel Federation (JISF) with the draft being attached, basedon the provision of Article 12 Clause 1 of the Industrial Standardization Lawapplicable to the case of revision by the provision of Article 14. ConsequentlyJIS G 3459: 1997 is replaced with this Standard.This revision has been made based on ISO 9330-6: 1997 Welded steel tubesfor pressure purposes-Technical delivery conditions-Part 6: Longitudinallywelded austenitic stainless steel tubes and ISO 9329-4 : 1997 Seamless steeltubes for pressure purposes-Technical delivery conditions-Part 4: Austen itic stainless steels for the purposes of making it easier to compare this Stan dard with International Standards; to prepare Japanese Industrial Standardconforming with International Standards; and to propose a draft of an In ternational Standard which is based on Japanese Industrial Standard.Attention is drawn to the possibility that some parts of this Standard mayconflict with a patent right, application for a patent after opening to thepublic, utility model right or application for registration of utility model afteropening to the public which have technical properties. The relevant Minis ter and the Japanese Industrial Standards Committee are not responsiblefor identifying the patent right, application for a patent after opening to thepublic, utility model right or application for registration of utility model afteropening to the public which have the said technical properties.Date of Establishment: 1962-03-01Date of Revision: 2004-02-20Date of Public Notice in Official Gazette: 2004-02-20Investigated by: Japanese Industrial Standards CommitteeStandards BoardTechnical Committee on Iron and SteelJIS G 3459: 2004, Second English edition published in 2004-08Translated and published by: Japanese Standards Association4-1-24, Akasaka, Minato-ku, Tokyo, 107-8440 JAPANIn the event of any doubts arising as to the contents,the original JIS is to be the final authority. JSA 2004All rights reserved. Unless otherwise specified, no part of this publication may be reproduced orutilized in any form or by any means, elec tronic or mec hanic al, inc luding photoc opying andmic rofilm, without permission in writing from the publisher.Printt!d in Japanhttps://www.stindia.com

G 3459: 2004ContentsPageIntroduction .11Scope.12Normative references.13Classification and symbol .24Manufacturing method .35Chemical composition . . .36Mechanical properties.66.1Tensile strength, proof stress and elongation.66.2Flattening or guide bend resistance weld zone . .77Austenitic grain size . . . . . . . . .88Hydraulic test characteristic or non-destructive examinationcharacteristic . . . . . . . . .89Pressure resistance performance.910Leaching performance.911Dimensions, mass and dimensional tolerances.911.1 Dimensions and mass .911.2Dimensional tolerances. 1512Appearance . . . . .1513Test .1513.1Chemical analysis.1513.2Tensile test . 1613.3 Flattening test . 1613.4Guide bend test of weld zone . .1713.5 Austenitic grain size test.1713.617Hydraulic test or non-destructive examination .(i)https://www.stindia.com

G 3459: 200413.7Pressure resistance performance test. 1713.8Leaching performance test. 1814Inspection. 1814.1Inspection. 1814.2Reinspection. 1815Marking. 1816Report.Annex 1 (normative)19Special quality requirements. 23Annex 2 (informative) Comparison table between JIS and correspondingInternational Standards . . . 27https://www.stindia.com

JAPANESE INDUSTRIAL STANDARDCl) JIS G 3459:2004Stainless steel pipesIntroduction In this revision, the addition of steel grades which have usage trackrecords for hot water piping,. the review to make the table of dimensions and massof welded steel pipes agree with the actual condition, the modification of the valueof chemical component P to be in a conformity with JIS G 4304 and JIS G 4305and the alteration of number of specimens for the hydraulic test and non-destruc tive examination were made.This Japanese Industrial Standard has been prepared based on each first editionof ISO 9330-6 Welded steel tubes for pressure purposes-Technical delivery condi tions-Part 6 : Longitudinally welded austenitic stainless steel tubes and ISO 9329-4Seamless steel tubes for pressure purposes-Technical delivery conditions-Part 4 :Austenitic stainless steels published in 1997 with modifying some technical contents.Portions sidelined or underlined with dots are the matters modified from the originalInternational Standards.The list of modification with its explanation is given in annex 2 (informative).1 Scope This Standard specifies the stainless steel pipes (hereafter referred toas "pipes") used for the piping for corrosion resistance, low temperature service, hightemperature service, etc. emarks 1 The purchaser may designate. in addition. to the items. specified inthis text, by prior agreement with the manufacturer, part or all ofthe items in the special quality requirements specified in annex 1(normative).2The International Standard corresponding to this Standard is as fol lows.In addition, symbols which denote the degree of correspondencein the contents between the relevant International Standard and JISare IDT (identical), MOD (modified), and NEQ (not equivalent) ac cording to ISO/IEC Guide 21.ISO 9330-6: 1997 Welded steel tubes for pressure purposes-Tech nical delivery conditions-Part 6 : Longitudinallywelded austenitic stainless steel tubes (MOD)ISO 9329-4 : 1997 Seamless steel tubes for pressure purposes-Tech-nical delivery conditions-Part 4 : Austenitic stain less steels (MOD)2 Normative references The standards listed in attached table 1 contain provi sions which, through reference in this Standard, constitute provisions of this Stan dard. If the indication of the year of publication is given to these referred standards,only the edition of the indicated year constitutes the provision of this Standard butthe revision and amendment made thereafter do not apply. The normative refer ences without the indication of the year of coming into effect apply only to the mostrecent edition (including amendments).https://www.stindia.com

3 Classification and symbol Pipes shall be classified into 31---- grades and their.tablesymbols shall be as given inlTable 1ClassificationAusteniticpipesRemarks:Symbol ofgradeSymbol of grade and heat treatmentSolutiontreatmentocClassificationSymbol ofgradeSolution treatment CSUS321TP920 min., rapid coolingSUS321HTPCold-finished 1 095 min,rapid coolingSUS304TP1 010 min.,rapid coolingSUS304HTP1040 min.,rapid coolingSUS304LTP1 010 min.,rapid coolingSUS309TP1 030 min.,rapid coolingSUS347TP980 min., rapid coolingSUS309STP1 030 min.,rapid coolingSUS347HTPCold-finished 1095 min,rapid coolingSUS310TP1 030 min.,rapid coolingSUS310STP1 030 min ,rapid coolingSUS315J1TP1 010 min.,rapid coolingSUS315J2TP1 010 min.,rapid coolingSUS316TP1010 min ,rapid coolingSUS31 6HTP1 040 min.,rapid coolingSUS316LTPAusteniticpipesHot-finished 1 050 min,rapid coolingHot-finished 1 050 min,rapid coolingSUS329J1TP950 min., rapid coolingSUS329J3LTP950 min., rapid coolingSUS32 9J4LTP950 min , rapid coolingSUS405TPAnnealing 700 min.,air cooling or slow cooling1 010 min.,rapid coolingSUS409LTPAnnealing 700 min.,air cooling or slow coolingSUS316TiTP920 min.,rapid coolingSUS430TPAnnealing 700 min.,air cooling or slow coolingSUS317TP1010 min.,rapid coolingSUS430 LXTPAnnealing 700 min.,air cooling or slow coolingSUS317LTP1 010 min.,rapid coolingSUS430J1L TPAnnealing 720 min.,air cooling or slow coolingSUS836LTP1030 min.,rapid coolingSUS436LTPAnnealing 720 min.,air cooling or slow coolingSUS890L TP1030 min.,rapid coolingSUS444TPAnnealing 700 min-,air cooling or slow coolingAusteniticferriticpipesFerriticpipesFor the pipes of SUS321TP, SUS316TiTP and SUS347TP, stabilizing treatmentmay be specified. In this case, the temperature of heat treatment shall be from850 C to 930 C.https://www.stindia.com

3G 3459: 20044 Manufacturing method The manufacturing method of pipes shall be as fol lows:a)Pipes shall be manufactured by a seamless process, an automatic arc weldingprocess, a laser welding process, or an electric resistance welding process.b)The pipes shall be subjected to the solution treatment or annealing specified intable 1 and then pickled or similarly treated. However, heat treatments notspecified in table 1 shall be made as agreed upon between the purchaser andthe manufacturer.c)When required by the purchaser, the pipes may be fabricated to the bevelledend( 1).Note ( 1) Unless otherwise specified, the shape of the bevelled end shall be asshown in figure 1.t : 22 mm max. in thicknessFigure 1Shape of bevelled end5 Chemical composition Pipes shall be tested in accordance with 13.1 and thecast analysis shall be as given in table 2.https://www.stindia.com

Table 2 Chemical compositionUnit: %CSiMnpsNiCrSUS304TP0.08 max.1.00 max.2.00max.0.045 max.0.030 max.8.00 to 11.0018.00 to 20.00SUS304HTP0.04 to 0.100.75 max.2.00 max.0.040 max.0.030 max.8.00 to 11.00SUS304LTP0.030 max.1.00 max.2.00 max.0.045max.0.030max.SUS309TP0.15 max.1.00 max.2.00 max.0.040 max.SUS309STP0.08 max.1.00 max.2.00max.SUS310TP0.15 max.1.50 max.SUS310STP0.08 max.SUS315J1TPSymbol of gradeMoOthers18.00 to 20.00--9.00 to 13.0018.00 to 20.00--0.030 max.12.00 to 15.0022.00 to 24.00--0.045 max.0.030 max.12.00 to 15.0022.00 to 24.00--2.00 max.0.040 max.0.030 max.19.00 to 22.0024.00 to 26.00--1.50max.2.00 max.0.045 max.0.030 max.19.00 to 22.0024.00 to 26.00--0.08 max.0.50 to 2.502.00max.0.045 max.0.030 max.8.50 to 11.5017.00 to 20.500.50 to 1.50Cu 0.50 to 3.50SUS315J2TP0.08 max.2.50 to 4.002.00max.0.045max.0.030 max.11.00 to 14.0017.00 to 20.500.50 to 1.50Cu 0.50 to 3.50SUS316TP0.08 max.1.00max.2.00 max.0.045 max.0.030 max.10.00 to 14.0016.00 to 18.002.00 to 3.00-SUS316HTP0.04 to 0.100.75max.2.00max.0.030max.0.030 max.11.00 to 14.0016.00 to 18.002.00 to 3.00-SUS316LTP0.030max.1.00 max.2.00max.0.045 max.0.030 max.12.00 to 16.0016.00 to 18.002.00 to 3.00-SUS316TiTP0.08 max.1.00max.2.00max.0.045max.0.030 max.10.00 to 14.0016.00 to 18.002.00 to 3.00SUS317TP0.08 max.1.00max.2.00 max.0.045max.0.030 max.11.00 to 15.0018.00 to 20.003.00 to 4.00-SUS317LTP0.030 max.1.00max.2.00 max.0.045 max.0.030 max.11.00 to 15.0018.00 to 20.003.00 to 4.00-SUS836LTP0.030 max.1.00 max.2.00 max.0.045 max.0.030 max.24.00 to 26.0019.00 to 24.005.00 to 7.00N 0.25 max.SUS890LTP0.020max.1.00 max.2.00 max.0.045 max.0.030 max.23.00 to 28.0019.00 to 23.00Cul.00 to 2.00SUS321TP0.08 max.1.00max.2.00 max.0.045 max.0.030 max.9.00 to 13.0017.00 to 19.004.00 to 5.00-17.00 to 20.00-Ti 4XC % to 0.6017.00 to 19.00-Nb 10xc % min.Nb 8XC % to 1.00SUS321HTPSUS347TP0.04 to 0.100.08 max.0.75 max.1.00 max.2.00max.2.00max.0.030 max.0.045 max.0.030 max.0.030max.9.00 to 13.009.00 to 13.00Ti 5 x C % min.Ti 5XC % min.SUS347HTP0.04 to 0.101.00 max.2.00 max.0.030 max.0.030 max.9.00 to 13.0017.00 to 20.00-SUS329J1TP0.08 max.1.00 max.1.50 max.0.040 max.0.030 max.3.00 to 6.0023.00 to 28.001.00 to 3.00SUS329J3LTP0.030 max.1.00 max.1.50 max.0.040 max.0.030 max.4.50 to 6.5021.00 to 24.002.50 to 3.50N 0.08 to 0.20SUS329J4LTP0.030 max.1.00 max.1.50 max.0.040 max.0.030 max.5.50 to 7.5024.00 to 26.002.50 to 3.50N 0.08 to 0.30https://www.stindia.com-

Table 2(concluded)Unit: %CSiMnpsSUS405TP0.08 max.1.00max.1.00max.0.040max.0.030 max.SUS409LTP0.030 max.l.00max.1.00max.0.040max.0.030max.SUS430TP0.12 max.0.75 max.1.00max.0.040 max.0.030max.SUS430LXTP0.030 max.0.75max.1.00max.0.040 max.0.030 max.SUS430J1LTP0.025 max.1.00max.1.00max.0.040max.0.030max.Symbol of gradeNi--CrMoOthers11.50 to 14.50-Al 0.10 to 0.30-Ti or Nb 0.10 to 1.0010.50 to 11.7516.00 to 18.0016.00 to 19.0016.00 to 20.00-Ti 6 x C % to 0. 75-N 0.025 max.Nb 8X(C % N %)to 0.80SUS436LTP0.025max.1.00 max.1.00max.0.040max.0.030max.-Cu 0.30 to 0.8016.00 to 19.000.75 to 1.25N 0.025 max.Ti, Nb, Zr or theircombinationSUS444TP0.025 max.1.00 max.1.00max.0.040max.0.030max.-8X(C % N %) to 0.8017 .00 to 20.001.75 to 2.50N 0.025 max.Ti, Nb, Zr or theircombination8X(C % N %) to 0.80Remarks 1 Even when a product analysis is required by the purchaser, the chemical composition given in table 2 shall be applied. How ever, the carbon content for SUS304LTP, SUS316LTP, SUS317LTP, SUS836LTP, SUS329J3LTP, SUS329J4LTP, SUS409LTPand SUS430LXTP shall be 0.035 % or under. The carbon content for SUS430JlLTP, SUS436LTP and SUS444TP shall be 0.030 %or under. The carbon content for SUS890LTP shall be 0.025 % or under.2 To SUS329J1TP, SUS329J3LTP, SUS329J4LTP and SUS430J1LTP, alloying elements other than those given in table 2 maybe added, if necessary.3 SUS405TP, SUS430TP, SUS430LXTP, SUS430J1LTP, SUS436LTP and SUS444TP may contain Ni 0.60 % or under.https://www.stindia.com

6 Mechanical properties6.1 Tensile strength, proof stress and elongation Pipes shall be tested in ac cordance with 13.2 and their tensile strength, proof stress, and elongation shall beas given in table 3.Table 3Symbol TPSUS329J3L ssN/mm2N/mm2520 min.520 min.480 min.520 min.520 min.520 min.520 min.520 min.520 min.520 min.520 min.480 min.520min.520 min.480 min.520 min.490 min.520 min.520 min.520 min.520 min.590 min.620 min.620 min.410 min.360 min.410 min.360 min.390 min.410 min.410 min.205 min.205 min.175 min.205 min.205min.205 min.205 min.205 min.205 min.205min.205 min.175 min.205 min.205 min.175 min.205 min.215min.205 min.205 min.205 min.205 min.390min.450 min.450 min.205 min.175min.245 min.175 min.205 min.245 min.245min.Mechanical propertiesElongation %No. 11 test piece No. 5 test pieceNo. 12 test pieceLongitudinaldirection35 min.35 min.35 min.35min.35 min.'35 min.35 min.35 min.35 min.35 min.35 min.35 min.35 min.35 min.35 min.35 min.35 min.35 min.35 min.35min.35min.18 min.18min.18 min.20 min.20min.20min.20 min.20min.20 min.20min.Transversedirection25 min.25 min.25 min.25 min.25 min.25 min.25 min.25min.25min.25min.25min.25 min.25min.25min.25 min.25 min.25 min.25 min.25 min.25min.25 min.13min.13 min.13 min.14min.14min.14min.14min.14 min.14 min.14min.No. 4 test .30min.30min.30min.30min.30min.30 min.30 min.30 min.30min.30min.30 min.30min.30min.30 min.30 min.30 min.30 min.30min.30 min.30 min.14 min.14min.14min.16 min.16min.16 min.16min.16min.16 min.16min.22min.22min.22 min.22min.22min.22 min.22min.22 min.22min.22 min.22 min.22min.22min.22min.22min.22 min.22 min.22min.22min.22min.22min.10min.10 min.lOmin.11 min.11min.11 min.11 min.11 min.11 min.11 min.Remarks 1 When a tensile test is carried out with No. 12 or No. 5 test piece for pipes of un der 8 mm in wall thickness, the minimum elongation shall be calculated by sub tracting 1.5 % from the elongation given in table 3 for each decrease of 1 mm from8 mm in wall thickness, and rounded off to integers in accordance with Rule A ofJIS Z 8401. Examples of calculation are given in Informative table 1.https://www.stindia.com

7G 3459: 20042 The elongation given in table 3 shall not be applied to pipes of under 40 mm inoutside diameter. However, the value of elongation shall be recorded.3 In the case where a tensile test piece is taken from automatic arc welded pipes,laser welded pipes, or electric resistance welded pipes, No. 12 or No. 5 test pieceshall be taken from the portion having no welded seams.Informative Table 1ClassificationCalculation examples of elongation for No. 12(longitudinal) and No. 5 (transverse) test piecesfor pipes of under 8 mm in wall thicknessShape of testpieceFerritic pipes6.2OverOverOver5mm7mm 6mmup toto and up toexcl.and incl. and incl.8mm 7mm6mmOver4mmup toand incl.5mmOver3 mmup toand incl.4mmOver2mmup toand incl.3 mmOver1 mmup toand incl.2 mm35343230292826No. 5 test piece25242220191816No. 12 test piece1816151412109No. 5 test piece1312108764No. 12 test piece20181716141211No. 5 test piece14121110865Austenitic pipes No. 12 test pieceAusteniticferritic pipesElongation for each wall thickness division r;,,Flattening or guide bend resistance weld zone6.2.1 Flattening Pipes shall be tested in accordance with 13.3 and the resultsshall be free from flaws and cracks on the wall of pipes. In this case, the distancebetween the two platens shall be calculated according to the following formula: (l e)tHte Dwhere,H: distance between platens (mm)t: wall thickness of pipe (mm)D : outside diameter of pipe (mm)e: constant which differs according to the grade ofpipe, 0.09 for austenitic pipes, 0.07 for austenitic ferritic pipes and ferritic pipes6.2.2 Guide bend resistance of weld zone For welded pipes 200A or over, theguide bend resistance of weld zone may be teste

JAPANESE INDUSTRIAL STANDARD JIS G3459 PDF https://www.stindia.com. G 3459: 2004 Foreword This translation has been made based on the original Japanese Industrial Standard revised by the Minister of Economy, Trade and Industry through deliberations at the Japanese Industrial Standards Committee, as the result of proposal for revision of Japanese Industrial Standard submitted by The Japan Iron .

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