ASTM B 689 : 1997
Superseded
A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.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 Electroplated Engineering Nickel Coatings
Hardcopy , PDF
11-11-2014
English
01-01-1997
CONTAINED IN VOL. 02.05, 2017 Defines the requirements for electroplated nickel coatings applied to metal products for engineering applications, for example, for use as a buildup for mismachined or worn parts, for electronic applications, including as underplates in contacts or interconnections, and in certain joining applications.
Committee |
B 08
|
DocumentType |
Standard
|
Pages |
7
|
ProductNote |
Reconfirmed 1997
|
PublisherName |
American Society for Testing and Materials
|
Status |
Superseded
|
SupersededBy |
1.1 This specification covers the requirements for electroplated nickel coatings applied to metal products for engineering applications.
1.2 Electroplating of nickel for engineering applications (Note 1) requires technical considerations significantly different from decorative applications because the following functional properties are important:
1.2.1 Hardness, strength, and ductility,
1.2.2 Wear resistance,
1.2.3 Load bearing characteristics,
1.2.4 Corrosion resistance,
1.2.5 Heat scaling resistance,
1.2.6 Fretting resistance, and
1.2.7 Fatigue resistance.
Note 1-Functional electroplated nickel coatings usually contain about 99% nickel, and are most frequently electrodeposited from a Watts nickel bath or a nickel sulfamate bath. Typical mechanical properties of nickel electroplated from these baths, and the combined effect of bath operation and solution composition variables on the mechanical properties of the electrodeposit are given in Practice B503. When electroplated nickel is required to have higher hardnesses, greater wear resistance, certain residual stress values and certain leveling characteristics, sulfur and other substances are incorporated in the nickel deposit through the use of certain addition agents in the electroplating solution. For the effect of such additives, see Section 4 and Annex A3. Cobalt salts are sometimes added to the plating solution to produce harder nickel alloy deposits.1.3 The following hazards caveat pertains only to the Test Methods section, Section 7, of this specification: This standard does not purport to address the safety problems associated with its use. It is the responsibility of the user of this standard to establish appropriate safety and health practices and determine the applicability of regulatory limitations prior to use.
ASTM B 818 : 2003 : R2018 | Standard Specification for Cobalt-Chromium-Nickel-Molybdenum-Tungsten Alloy<brk/>(UNS R31233) Plate, Sheet and Strip |
ASTM B 343 : 1992 : REV A : R2004 : EDT 1 | Standard Practice for Preparation of Nickel for Electroplating with Nickel |
ASTM B 507 : 2014 : REDLINE | Standard Practice for Design of Articles to Be Electroplated on Racks |
MIL S 13165 : C | SHOT PEENING OF METAL PARTS |
ASTM B 849 : 2002 | Standard Specification for Pre-Treatments of Iron or Steel for Reducing Risk of Hydrogen Embrittlement |
ASTM B 765 : 2003 : R2018 | Standard Guide for Selection of Porosity and Gross Defect Tests for Electrodeposits and Related Metallic Coatings |
MIL-R-81841 Base Document:1972 | ROTARY FLAP PEENING OF METAL PARTS |
ASTM B 480 : 1988 | GUIDE FOR PREPARATION OF MAGNESIUM AND MAGNESIUM ALLOYS FOR ELECTROPLATING |
ASTM B 818 : 2003 : R2018 | Standard Specification for Cobalt-Chromium-Nickel-Molybdenum-Tungsten Alloy<brk/>(UNS R31233) Plate, Sheet and Strip |
ASTM B 832 : 1993 : R2018 | Standard Guide for Electroforming with Nickel and Copper |
ASTM B 320 : 1960 : R2019 | Standard Practice for Preparation of Iron Castings for Electroplating |
MIL-W-81840 Base Document:1972 | WHEEL, PEENING, ROTARY FLAP |
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