DIN EN ISO 27874-2009 Metallic and other inorganic coatings - Electrodeposited gold and gold alloy coatings for electrical electronic and engineering purposes - Specification and t.pdf
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1、January 2009DEUTSCHE NORM English price group 14No part of this standard may be reproduced without prior permission ofDIN Deutsches Institut fr Normung e. V., Berlin. Beuth Verlag GmbH, 10772 Berlin, Germany,has the exclusive right of sale for German Standards (DIN-Normen).ICS 25.220.40!$UQ b) the s
2、ignificant surface of the article, indicated, for example, as dimensioned areas on drawings or by the provision of suitably marked samples; c) the nature, condition and finish of the basis metal if they are likely to affect the serviceability and/or the appearance of the coating (see Clause 1); d) t
3、he position on the surface of any unavoidable defects, such as rack marks (see 6.2); e) the finish required, for example bright, dull or another type, preferably accompanied by approved samples of the finish (see 6.2); f) the method of porosity testing to be used and the permitted number and locatio
4、n of acceptable pores (see 6.4); g) the tensile strength of the part and the requirements for any heat treatment prior to, or after, electroplating (see 6.7 and 6.8); h) sampling methods, acceptance levels and any other inspection requirements if different from those specified in ISO 4519 (see Claus
5、e 7); i) the requirements for coating thickness, including positions of measurement as indicated on dimensioned drawings (see 6.3); j) the requirements for adhesion testing (see 6.9). 4.2 Additional information The following additional information may be required and, if so, shall be specified by th
6、e purchaser in writing, for example in the contract or purchase order, or on drawings: a) the composition of the coating and details of intentional alloying elements and undesirable impurities (see 6.6); b) any special cleaning procedures to be used; c) any special requirements for undercoats (see 6
7、.15 and Annex A); d) any requirements for the composition and thickness of each layer in double or multilayer coatings (see Clause 3); e) the electrical properties of the coating and the methods of test to be used (see 6.10); f) the microhardness of the coating and the test method to be used (see 6.
8、11); g) any requirements for solderability and the test method to be used (see 6.12); h) any requirements for wear resistance and the test method to be used (see 6.13); i) the ductility of the coating and the method of test to be used (see 6.14); 7 DIN EN ISO 27874:2009-01 EN ISO 27874:2008 (E) j) a
9、ny requirements for the freedom from surface contamination of the finished articles (see 6.16); k) the agreed mean density of a gold alloy coating if the thickness measurement method requires a density correction (see Annex B); l) any requirements for accelerated-corrosion testing (see 6.5); m) any
10、other requirements, such as a residual-salts test, (see 6.16). 5 Designation 5.1 General The designation shall appear on engineering drawings, in the purchase order, in the contract or in the detailed product specification. The designation specifies, in the following order, the basis metal, the spec
11、ific alloy (optional), stress relief requirements, the type(s) and thickness(s) of undercoats (when present), the thickness and composition of the gold or gold alloy coating or coatings (when double or multilayer coatings are specified), and supplementary treatments such as heat treatment to reduce
12、susceptibility to hydrogen embrittlement. 5.2 Designation specifications The designation shall comprise the following: a) the term, “electrodeposited coating”; b) the number of this International Standard (ISO 27874); c) a hyphen; d) the chemical symbol of the basis metal (see 5.3); e) a solidus (/)
13、; f) if appropriate, the chemical symbol for an undercoat metal followed, if necessary, by a number giving the thickness of the undercoat in micrometres (see 6.15 and Annex A); g) a solidus (/); h) the chemical symbol for gold, Au, or the standard designation for a gold alloy, including the symbol o
14、f the alloying element and a figure in parentheses giving the mean content of that element expressed as a mass fraction in percent to one decimal place; i) a number giving the minimum local thickness requirement for the gold or gold alloy coating in micrometres; j) for double and multilayer gold coa
15、tings, repeat h) and i), followed by a solidus (/), for each subsequent gold or gold alloy coating required. 5.3 Designating the basis material The basis material shall be designated by its chemical symbol or the chemical symbol of its principal constituent if an alloy, for example: Fe for iron and
16、steel; Zn for zinc alloys; 8 DIN EN ISO 27874:2009-01 EN ISO 27874:2008 (E) Cu for copper and copper alloys; Al for aluminium and aluminium alloys. In the case of non-metallic materials, the letters NM shall be used. A specific alloy shall be identified by its standard designation, for example its U
17、NS number or the local, national, equivalent placed between the symbols . For example, Fe is the UNS designation for a particular high-strength steel (see Reference 5 in the Bibliography). 5.4 Designation of heat treatment requirements The heat treatment requirements shall be in brackets and designa
18、ted as follows: a) the letters SR for stress relief heat treatment prior to electroplating, the letters ER for hydrogen embrittlement relief heat treatment after electroplating, and the letters HT for heat treatment for other purposes; b) in parentheses, the minimum temperature, in C; c) the duratio
19、n of the heat treatment in hours, for example SR(210)1 designates stress relief heat treatment at 210 C for 1 h. When heat treatment prior to or after electrodeposition is specified, the requirements shall be included in the designation as shown in the examples (see 5.5). The structure and compositi
20、on of gold and gold alloy coatings may be modified and the coating properties substantially altered by heat treatment. Designers should be aware of these effects before specifying gold coatings on high-tensile-strength basis material. 5.5 Examples A pure gold coating, Au, with a minimum thickness of
21、 5 m on nickel-electroplated steel, Fe/Ni, will have the following designation: Electrodeposited coating ISO 27874 Fe/Ni/Au5 An alloy coating containing 98,0 % gold and 2 % silver, AuAg(2,0), with a minimum thickness of 5 m on a zinc alloy, Zn, with copper and nickel undercoats will have the followi
22、ng designation: Electrodeposited coating ISO 27874 Zn/Cu/Ni/AuAg(2,0)5 An alloy coating containing 99,5 % gold and 0,2 % nickel, AuNi(0,2), with a minimum thickness of 0,5 m deposited over a pure-gold coating, Au, with a minimum thickness of 1 m on a Cu alloy will have the following designation: Ele
23、ctrodeposited coating ISO 27874 Cu/Au1/AuNi(0,2)0,5 A pure-gold coating with a minimum thickness of 5 m, Au5, deposited over a copper undercoat that is 5 m thick, Cu5, on a steel that has an ultimate tensile strength of 1 200 MPa and is heat-treated prior to electroplating for stress relief at 200 C
24、 for 3 h, SR(200)3, and after electroplating to reduce the risk of hydrogen embrittlement at 190 C for 12 h, ER(190)12, will have the following designation: Electrodeposited coating ISO 27874 Fe/SR(200)3/Cu5/Au5ER(190)12 The designation describes the heat treatment and electroplating steps in the or
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