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  • ASTM A 358/A358M : 2015 : REDLINE

    Superseded A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.
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    Standard Specification for Electric-Fusion-Welded Austenitic Chromium-Nickel Stainless Steel Pipe for High-Temperature Service and General Applications

    Available format(s):  PDF

    Superseded date:  23-01-2020

    Language(s):  English

    Published date:  01-09-2015

    Publisher:  American Society for Testing and Materials

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    Abstract - (Show below) - (Hide below)

    CONTAINED IN VOL. 01.01, 2017 Defines electric-fusion-welded austenitic chromium-nickel stainless steel pipe suitable for corrosive or high-temperature service, or both, or for general applications.

    Scope - (Show below) - (Hide below)

    1.1This specification2 covers electric-fusion-welded austenitic chromium-nickel stainless steel pipe suitable for corrosive or high-temperature service, or both, or for general applications.

    Note 1:The dimensionless designator NPS (nominal pipe size) has been substituted in this standard for such traditional terms as “nominal diameter,” “size,” and “nominal size.”

    1.2This specification covers the grades of alloy and stainless steel listed in Table 1. The selection of the proper grade and requirements for heat treatment shall be at the discretion of the purchaser, dependent on the service conditions to be encountered.

    (A)New designation established in accordance with Practice E527 and SAE J1086.
    (B)Choice of American Welding Society specification depends on the welding process used.
    (C)Minimum carbon content of the filler metal shall be 0.040 mass %.
    (D)In previous editions, S30600 was incorrectly shown as S01815.
    (E)Common name, not a trademark, widely used, not associated with any one producer.
    (F)These filler metals have a high nickel content and, therefore, lower creep strength than the parent metal at temperatures exceeding about 1470 °F [800 °C], and its resistance to sulphurous media is inferior in certain cases.

    1.3Five classes of pipe are covered as follows:

    1.3.1Class 1—Pipe shall be double welded by processes employing filler metal in all passes and shall be completely radiographed.

    1.3.2Class 2—Pipe shall be double welded by processes employing filler metal in all passes. No radiography is required.

    1.3.3Class 3—Pipe shall be single welded by processes employing filler metal in all passes and shall be completely radiographed.

    1.3.4Class 4—Same as Class 3 except that the weld pass exposed to the inside pipe surface may be made without the addition of filler metal (see 6.2.2.1 and 6.2.2.2).

    1.3.5Class 5—Pipe shall be double welded by processes employing filler metal in all passes and shall be spot radiographed.

    1.4Supplementary requirements covering provisions ranging from additional testing to formalized procedures for manufacturing practice are provided. Supplementary Requirements S1 through S6 are included as options to be specified when desired.

    1.5The values stated in either inch-pound units or SI units are to be regarded separately as standard. Within the text, the SI units are shown in brackets. The values stated in each system may not be exact equivalents; therefore, each system shall be used independently of the other. Combining values from the two systems may result in nonconformance with the specification. The inch-pound units shall apply unless the “M” designation of this specification is specified in the order.

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    Committee A 01
    Development Note Supersedes ASTM A 358. (04/2008)
    Document Type Redline
    Publisher American Society for Testing and Materials
    Status Superseded
    Superseded By

    Standards Referenced By This Book - (Show below) - (Hide below)

    AWS G2.3M/G2.3 : 2012 GUIDE FOR THE JOINING OF SOLID SOLUTION AUSTENITIC STAINLESS STEELS
    UNI EN ISO 13628-15 : 2011 PETROLEUM AND NATURAL GAS INDUSTRIES - DESIGN AND OPERATION OF SUBSEA PRODUCTION SYSTEMS - PART 15: SUBSEA STRUCTURES AND MANIFOLDS
    BS EN ISO 13628-15:2011 (published 2011-09) Petroleum and natural gas industries. Design and operation of subsea production systems Subsea structures and manifolds
    N287.2-17 Material requirements for concrete containment structures for nuclear power plants
    API 574 : 2016 INSPECTION PRACTICES FOR PIPING SYSTEM COMPONENTS
    API 17P : 2013 DESIGN AND OPERATION OF SUBSEA PRODUCTION SYSTEMS - SUBSEA STRUCTURES AND MANIFOLDS
    ASME B31.3:2016 PROCESS PIPING
    AWWA C220 : 2017 STAINLESS-STEEL PIPE, 1/2 IN. (13 MM) AND LARGER
    NBR NM-198 : 2000 TUBOS COM COSTURA DE ACO INOXIDAVEL AUSTENITICO SEM RECOZIMENTO
    ASME B31.3 SPANISH : 2010 PROCESS PIPING
    I.S. EN ISO 13628-15:2011 PETROLEUM AND NATURAL GAS INDUSTRIES - DESIGN AND OPERATION OF SUBSEA PRODUCTION SYSTEMS - PART 15: SUBSEA STRUCTURES AND MANIFOLDS (ISO 13628-15:2011)
    API 620 REDLINE : 2008 DESIGN AND CONSTRUCTION OF LARGE, WELDED, LOW-PRESSURE STORAGE TANKS
    ASME B31.1 : 2016 POWER PIPING
    ASME B16.34 : 2017 VALVES - FLANGED, THREADED, AND WELDING END
    ASTM A 999/A999M : 2018 : REDLINE Standard Specification for General Requirements for Alloy and Stainless Steel Pipe
    ASTM A 778/A778M : 2016 : REDLINE Standard Specification for Welded, Unannealed Austenitic Stainless Steel Tubular Products
    API 650 : 2013 WELDED TANKS FOR OIL STORAGE
    MSS SP 119 : 2010 FACTORY-MADE WROUGHT BELLED END PIPE FITTINGS FOR SOCKET-WELDING
    API 650 CHINESE : 2013 WELDED TANKS FOR OIL STORAGE
    API 650 : 2013+ADD 3 : 2018 WELDED TANKS FOR OIL STORAGE
    ISO 13628-15:2011 Petroleum and natural gas industries Design and operation of subsea production systems Part 15: Subsea structures and manifolds
    ASME B31.5 : 2016 REFRIGERATION PIPING AND HEAT TRANSFER COMPONENTS
    EN ISO 13628-15 : 2011 PETROLEUM AND NATURAL GAS INDUSTRIES - DESIGN AND OPERATION OF SUBSEA PRODUCTION SYSTEMS - PART 15: SUBSEA STRUCTURES AND MANIFOLDS (ISO 13628-15:2011)

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