• PD 6484:1979

    Current The latest, up-to-date edition.

    Commentary on corrosion at bimetallic contacts and its alleviation

    Available format(s):  Hardcopy, PDF

    Language(s):  English

    Published date:  30-03-1979

    Publisher:  British Standards Institution

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

    Foreword
    Cooperating organizations
    Section one. General
    1 Scope
    2 Conditions affecting corrosion at bimetallic
        contacts
    3 Prevention of bimetallic corrosion
    Section two. Tables
    4 Tabulated data on the behaviour of bimetallic
        couples
    Tables
    1 Additional corrosion of aluminium and aluminium
        alloys resulting from contact with other metals or
        carbon
    2 Additional corrosion of aluminium bronzes and
        silicon bronzes resulting from contact with other
        metals or carbon
    3 Additional corrosion of brasses including high
        tensile (HT) brasses (manganese bronze) resulting
        from contact with other metals or carbon
    4 Additional corrosion of cadmium resulting from
        contact with other metals or carbon
    5 Additional corrosion of cast irons resulting from
        contact with other other metals or carbon
    6 Additional corrosion of cast iron (austenitic)
        resulting from contact with other metals or carbon
    7 Additional corrosion of chromium resulting from
        contact with other metals or carbon
    8 Additional corrosion of copper resulting from
        contact with other metals or carbon
    9 Additional corrosion of cupro-nickels resulting from
        contact with other metals or carbon
    10 Additional corrosion of gunmetals, phosphor bronzes
        and tin bronzes resulting from contact with other
        metals or carbon
    11 Additional corrosion of lead resulting from contact
        with other metals or carbon
    12 Additional corrosion of magnesium and magnesium
        alloys resulting from contact with other metals or
        carbon
    13 Additional corrosion of nickel resulting from
        contact with other metals or carbon
    14 Additional corrosion of nickel-copper alloys
        resulting from contact with other metals or carbon
    15 Additional corrosion of nickel-chromium-iron alloys
        resulting from contact with other metals or carbon
    16 Additional corrosion of nickel-chromium-molybdenum
        alloys resulting from contact with other metals or
        carbon
    17 Additional corrosion of nickel silvers resulting
        from contact with other metals or carbon
    18 Additional corrosion of soft solders resulting from
        contact with other metals or carbon
    19 Additional corrosion of stainless steel (austenitic,
        with approximately 18% chromium) resulting from
        contact with other metals or carbon
    20 Additional corrosion of stainless steel
        (martensitic, with approximately 13% chromium)
        resulting from contact with other metals or carbon
    21 Additional corrosion of steels (carbon and low
        alloy) resulting from contact with other metals or
        carbon
    22 Additional corrosion of tin resulting from contact
        with other metals or carbon
    23 Additional corrosion of zinc and zinc base alloys
        resulting from contact with other metals or carbon

    Abstract - (Show below) - (Hide below)

    Guidance on the avoidance of situations in which corrosion may arise from bimetallic contacts between different metals and alloys. Discusses the environmental conditions which may lead to such corrosion and gives advice on its alleviation. Annotated tables give the likely behaviour of various couples in five different environments.

    Scope - (Show below) - (Hide below)

    This document gives guidance to designers, to help them to avoid situations in which corrosion may arise from the interaction of different metals and alloys at bimetallic contacts.

    It comprises two sections. Section 1 gives details of conditions affecting corrosion at bimetallic contacts and methods of alleviating it, and section 2 consists of annotated tables indicating the degree of additional corrosion likely to occur at bimetallic contacts exposed to atmospheric and aqueous environments.

    The document does not deal with other environments, such as those encountered in chemical engineering, where the effects may be different, and it does not refer to situations where contact between certain metals, even below their melting point, may lead to some interpenetration and consequential embrittlement.

    The metals and alloys are identified in the tables by their generally accepted descriptions, but it will be appreciated that many variations in composition and condition are found in practice. For further information on the behaviour of particular alloys, reference should be made to the appropriate development association, trade association, manufacturer or supplier. In the case of defence stores, further information may be obtained from the appropriate branch of the Ministry of Defence.

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

    Committee ISENFE/8
    Development Note Supersedes 69/4244 DC. (08/2005) Reviewed and confirmed by BSI, December 2011. (11/2011)
    Document Type Standard
    Publisher British Standards Institution
    Status Current

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