ASTM B700-1997(2002) Standard Specification for Electrodeposited Coatings of Silver for Engineering Use《工程用银电沉积覆层标准试验方法》.pdf
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1、Designation: B 700 97 (Reapproved 2002)Standard Specification forElectrodeposited Coatings of Silver for Engineering Use1This standard is issued under the fixed designation B 700; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the
2、 year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This specification covers requirements for electrodepos-ited coatings of silver used for engineering purpose
3、s that maybe mat, bright, or semibright and are not less than 98 % silverpurity.1.2 Coatings of silver covered by this specification areusually employed for solderable surfaces, electrical contactcharacteristics, high electrical and thermal conductivity, ther-mocompression bonding, wear resistance o
4、f load-bearing sur-faces, and spectral reflectivity.1.3 In the Appendixes important characteristics of elec-trodeposited silver coatings are briefly described which mustbe considered when used in engineering applications, namelyelectrical conductivity (see Appendix X1), silver migration(see Appendix
5、 X2), thickness (see Appendix X3), hardness (seeAppendix X4), and atmospheric tarnish (see Appendix X5).1.4 The following hazards caveat pertains only to the testmethods section of this specification: This standard does notpurport to address the safety concerns, if any, associated withits use. It is
6、 the responsibility of the user of this standard toestablish appropriate safety and health practices and deter-mine the applicability of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:B 183 Practice for Preparation of Low-Carbon Steel forElectroplating2B 242 Practice f
7、or Preparation of High-Carbon Steel forElectroplating2B 252 Guide for Preparation of Zinc Alloy Die Castings forElectroplating Conversion Coatings2B 253 Guide for Preparation of Aluminum Alloys for Elec-troplating2B 254 Practice for Preparation of and Electroplating onStainless Steel2B 281 Practice
8、for Preparation of Copper and Copper-BaseAlloys for Electroplating and Conversion Coatings2B 322 Practice for Cleaning Metals Prior to Electroplating2B 343 Practice for Preparation of Nickel for Electroplatingwith Nickel2B 374 Terminology Relating to Electroplating2B 481 Practice for Preparation of
9、Titanium and TitaniumAlloys for Electroplating2B 482 Practice for Preparation of Tungsten and TungstenAlloys for Electroplating2B 487 Test Method for Measurement of Metal and OxideCoating Thicknesses by Microscopical Examination of aCross Section2B 499 Test Method for Measurement of Coating Thick-ne
10、sses by the Magnetic Method: Nonmagnetic Coatings onMagnetic Basis Metals2B 504 Test Method for Measurement of Thickness of Me-tallic Coatings by the Coulometric Method2B 507 Practice for Design of Articles to be Electroplated onRacks2B 542 Terminology Relating to Electrical Contacts andTheir Use3B
11、567 Test Method for Measurement of Coating Thicknessby the Beta Backscatter Method2B 568 Test Method for Measurement of Coating Thicknessby X-Ray Spectrometry2B 571 Test Methods for Adhesion of Metallic Coatings2B 578 Test Method for Microhardness of ElectroplatedCoatings2B 579 Specification for Ele
12、ctrodeposited Coatings of Tin-Lead Alloy (Solder Plate)2B 602 Test Method for Attribute Sampling of Metallic andInorganic Coatings2B 678 Test Method for Solderability of Metallic-CoatedProducts2B 697 Guide for Selection of Sampling Plans for Inspectionof Electrodeposited Metallic and Inorganic Coati
13、ngs2B 762 Method of Variables Sampling of Metallic and Inor-ganic Coatings2B 849 Specification for Pre-treatments of Iron or Steel forReducing the Risk of Hydrogen Embrittlement2B 850 Guide for Post-Coating Treatments of Steel for Re-ducing the Risk of Hydrogen Embrittlement2D 3951 Practice for Comm
14、ercial Packaging41This specification is under the jurisdiction of ASTM Committee B08 onMetallic and Inorganic Coatings and is the direct responsibility of SubcommitteeB08.08.02 on Precious Metal Coatings.Current edition approved May 10, 1997. Published February 1998. Originallypublished as B 700 81.
15、 Last previous edition B 700 90.2Annual Book of ASTM Standards, Vol 02.05.3Annual Book of ASTM Standards, Vol 02.04.4Annual Book of ASTM Standards, Vol 15.09.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.E 1004 Practice for Determi
16、ning Electrical ConductivityUsing the Electromagnetic (Eddy-Current) Method5F 519 Test Method for Mechanical Hydrogen Embrittle-ment Evaluation of Plating Processes and Service Environ-ments63. Terminology3.1 DefinitionsMany of the terms used in this specifica-tion are defined in Terminologies B 374
17、 or B 542.3.2 Definitions of Terms Specific to This Standard:3.2.1 rack-platingan electrodeposition process in whicharticles to be coated are mounted on racks or other fixturesduring the process.3.2.2 significant surfacessurfaces that are normally vis-ible, directly or by reflection, or that are ess
18、ential to theserviceability or function of the article or which can be thesource of corrosion products or tarnish films that interfere withthe function or desirable appearances of the article. Whennecessary, the significant surfaces shall be indicated on thedrawings of the parts, or by the provision
19、s of suitably markedsamples.3.2.2.1 DiscussionVariation in the coating thickness frompoint-to-point on a coated article is an inherent characteristic ofelectroplating processes. Therefore, the coating thickness willhave to exceed the specified value at some points on thesignificant surfaces to ensur
20、e that the thickness equals orexceeds the specified value at all points. The average coatingthickness on the article usually will be greater than thatspecified; how much greater is largely determined by the shapeof the article (see Practice B 507) and the characteristics of theelectroplating process
21、. Additionally, the average coating thick-ness on an article will vary from article to article within aproduction lot. If all the articles in a production lot are to meetthe thickness requirement, the average coating thickness of aproduction lot as a whole will be greater than the averagenecessary t
22、o ensure that a single article meets requirements.3.2.3 strike or flasha thin, typically less than 0.25-m (10-in.) metallic coating layer between metallic coatings toimprove adhesion.3.2.4 underplatingan application of a metallic coatinglayer between the basis metal or substrate and the topmostmetal
23、lic coating or coatings (see 6.3.4).4. Classification4.1 Electrodeposited coatings of silver shall be classified forType based on minimum purity, Grade whether bright,semibright, or mat, Class if supplementary surface treatment isapplied, and thickness in micrometers.4.2 PuritySpecify by Type as fol
24、lows:Type 199.9 % minType 299.0 % minType 398.0 % minNOTE 1Metallic or organic brighteners used for grain refinement maybe present in the electrodeposit so long as they do not interfere with thestated function of the coating and are acceptable to the purchaser (seeAppendix X1).4.3 Surface Appearance
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