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  • BS 3074(1989) : 1989

    Withdrawn A Withdrawn Standard is one, which is removed from sale, and its unique number can no longer be used. The Standard can be withdrawn and not replaced, or it can be withdrawn and replaced by a Standard with a different number.
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    SPECIFICATION FOR NICKEL AND NICKEL ALLOYS: SEAMLESS TUBE

    Available format(s):  Hardcopy, PDF

    Withdrawn date:  01-07-2014

    Language(s):  English

    Published date:  01-01-1989

    Publisher:  British Standards Institution

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    Table of Contents - (Show below) - (Hide below)

    Foreword
    Committees responsible
    Specification
    Section one. General requirements
    1 Scope
    2 Definitions
    3 Information to be supplied by the purchaser
    4 Freedom from defects
    5 Chemical analysis
    6 Dimensional tolerances
    7 Selection of samples for mechanical tests
    8 Tests
    9 Marking
    Section two. Specific requirements
    10 NA 11 nickel
    11 NA 12 low carbon nickel
    12 NA 13 nickel copper alloy
    13 NA 14 nickel chromium iron alloy
    14 NA 15 and NA 15(H) nickel iron chromium alloy
    15 NA 16 nickel iron chromium molybdenum copper alloy
    16 NA 17 nickel iron chromium silicon alloy
    17 NA 18 nickel copper aluminium alloy
    18 NA 21 nickel chromium molybdenum niobium alloy
    Appendices
    A Information to be supplied by the purchaser
    B Heat treatment of NA 18 nickel copper aluminium
        alloy
    C Minimum proof stress properties of cold worked and
        annealed tube at elevated temperatures
    D Minimum proof stress properties of hot worked and
        annealed tube at elevated temperatures
    E Cross-references between the alloy designations in
        this standard and those given in the Unified
        Numbering System (UNS)
    Tables
    1 Tolerances on diameter and wall thickness of cold
        worked tube for materials NA 11, NA 12, NA 13, and
        NA 18
    2 Tolerances on diameter and wall thickness of cold
        worked tube for materials NA 14, NA 15, NA 15(H),
        NA 16, NA 17 and NA 21
    3 Tolerances on diameter and wall thickness of hot
        worked tube
    4 Tolerances on length
    5 Chemical composition of NA 11 nickel
    6 Tensile properties of NA 11 nickel
    7 Fibre stress values for NA 11 nickel
    8 Chemical composition for NA 12 low carbon nickel
    9 Tensile properties of NA 12 low carbon nickel
    10 Fibre stress values for NA 12 low carbon nickel
    11 Chemical composition of NA 13 nickel copper alloy
    12 Tensile properties of NA 13 nickel copper alloy
    13 Fibre stress values for NA 13 nickel copper alloy
    14 Chemical composition of NA 14 nickel chromium iron
        alloy
    15 Tensile properties of NA 14 nickel chromium iron
        alloy
    16 Fibre stress values for NA 14 nickel chromium iron
        alloy
    17 Chemical composition of NA 15 and NA 15(H) nickel
        iron chromium alloy
    18 Tensile properties of NA 15 and NA 15(H) nickel iron
        chromium alloy
    19 Fibre stress values for NA 15 and NA 15(H) nickel
        iron chromium alloy
    20 Chemical composition of NA 16 nickel iron chromium
        molybdenum copper alloy
    21 Tensile properties of NA 16 nickel iron chromium
        molybdenum copper alloy
    22 Fibre stress values for NA 16 nickel iron chromium
        molybdenum copper alloy
    23 Chemical composition of NA 17 nickel iron chromium
        silicon alloy
    24 Chemical composition of NA 18 nickel copper
        aluminium alloy
    26 Fibre stress values for NA 18 nickel copper
        aluminium alloy
    27 Chemical composition of NA 21 nickel chromium
        molybdenum niobium alloy
    28 Tensile properties of NA 21 nickel chromium
        molybdenum niobium alloy
    29 Fibres stress values for NA 21 nickel chromium
        molybdenum niobium alloy
    30 Minimum proof stress properties of cold worked and
        annealed tube at elevated temperatures
    31 Minimum proof stress properties of hot worked and
        annealed tube at elevated temperatures
    32 Cross-references between the alloy designations in
        this standard and the UNS designations

    Abstract - (Show below) - (Hide below)

    Describes requirements for nickel and nickel alloy seamless tubes in the cold worked condition for outside diameters over 6 mm up to and including 115 mm and in the hot worked condition for outside diameters over 60 mm up to and including 250 mm. Covers definitions, information to be supplied by the purchaser, freedom from defects, chemical analysis, dimensional tolerances, selection of samples for mechanical tests, tests and marking. Includes specific requirements for alloys, appendices and tables.

    General Product Information - (Show below) - (Hide below)

    Committee NFE/10
    Development Note Inactive for the new design. (12/2002) Supersedes 87/44650 DC and BS 3074(1983). (07/2005) Reviewed and confirmed by BSI, May 2009. (04/2009)
    Document Type Standard
    Publisher British Standards Institution
    Status Withdrawn
    Supersedes

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

    BS 6501-1(1991) : 1991 FLEXIBLE METALLIC HOSE ASSEMBLIES - SPECIFICATION FOR CORRUGATED HOSE ASSEMBLIES
    BS 3351:1971 SPECIFICATION FOR PIPING SYSTEMS FOR PETROLEUM REFINERIES AND PETROCHEMICAL PLANTS
    BS 375(1993) : 1993 SPECIFICATION FOR REFINED NICKEL
    BS 6283-2(1991) : 1991 SAFETY AND CONTROL DEVICES FOR USE IN HOT WATER SYSTEMS - SPECIFICATIONS FOR TEMPERATURE RELIEF VALVES FOR PRESSURES FROM 1 BAR TO 10 BAR
    BS PD5500(2003) : 2003 SPECIFICATION FOR UNFIRED FUSION WELDED PRESSURE VESSELS
    BS 7351(1990) : 1990 SPECIFICATION FOR METAL-SHEATHED HEATING ELEMENTS FOR INDUSTRIAL USE
    BS PD5500(2000) : 2000 SPECIFICATION FOR UNFIRED FUSION WELDED PRESSURE VESSELS
    BS PD5500(2018) : 2018 SPECIFICATION FOR UNFIRED FUSION WELDED PRESSURE VESSELS
    ISO 4126-2:2003 Safety devices for protection against excessive pressure Part 2: Bursting disc safety devices
    BS PD5500(2006) : 2006 SPECIFICATION FOR UNFIRED FUSION WELDED PRESSURE VESSELS
    BS PD5500(2009) : 2009 SPECIFICATION FOR UNFIRED FUSION WELDED PRESSURE VESSELS
    BS PD5500(2015) : 2015 SPECIFICATION FOR UNFIRED FUSION WELDED PRESSURE VESSELS
    BS PD5500(2012) : 2012 SPECIFICATION FOR UNFIRED FUSION WELDED PRESSURE VESSELS
    I.S. EN ISO 4126-2:2003 SAFETY DEVICES FOR PROTECTION AGAINST EXCESSIVE PRESSURE - PART 2: BURSTING DISC SAFETY DEVICES
    BS EN ISO 4126-2:2003 SAFETY DEVICES FOR PROTECTION AGAINST EXCESSIVE PRESSURE - PART 2: BURSTING DISC SAFETY DEVICES
    UNI EN ISO 4126-2 : 2003 SAFETY DEVICES FOR PROTECTION AGAINST EXCESSIVE PRESSURE - BURSTING DISC SAFETY DEVICES
    EN ISO 4126-2:2003/AC:2006 SAFETY DEVICES FOR PROTECTION AGAINST EXCESSIVE PRESSURE - PART 2: BURSTING DISC SAFETY DEVICES
    BS 375:1993 SPECIFICATION FOR REFINED NICKEL

    Standards Referencing This Book - (Show below) - (Hide below)

    BS 3889-2A(1986) : 1986 METHODS FOR NON-DESTRUCTIVE TESTING OF PIPES AND TUBES - AUTOMATIC EDDY CURRENT TESTING OF WROUGHT STEEL TUBES
    BS 3688-1(1963) : 1963 METHODS FOR MECHANICAL TESTING OF METALS AT ELEVATED TEMPERATURES - PART 1: TENSILE TESTING
    BS 5383(1986) : 1986 SPECIFICATION FOR MATERIAL IDENTIFICATION OF STEEL NICKEL ALLOY AND TITANIUM ALLOY TUBES BY CONTINUOUS CHARACTER MARKING AND COLOUR CODING OF STEEL TUBES
    BS 18(1987) : 1987 METHOD FOR TENSILE TESTING OF METALS (INCLUDING AEROSPACE MATERIALS)
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