INTERN TMS 4103-2009 Decorative Chromium Plating On Aluminum《铝材装饰镀铬》.pdf
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1、This document is restricted and may not be sent outside Navistar, Inc. or reproduced without permission from Corporate Technical Standards. Suppliers are required to assume all patent liability. 2009 by Navistar, Inc. OCTOBER 2009 Page 1 of 8 NAVISTAR, INC. TMS (TRUCK MATERIAL SPECIFICATION) NUMBER:
2、 TMS- 4103 srr TITLE: Decorative Chromium Plating On Aluminum CURRENT REV No.: 0910 DATE: October 2009 WRITTEN/EDITED BY: Materials Engineering APPROVED BY: Materials Engineering SUPERSEDES: Rev 0806 June 2008 PRINTED COPIES OF THIS DOCUMENT MUST BE VERIFIED FOR CURRENT REVISION This specification m
3、ay involve hazardous materials, equipment, and procedures. This specification does not purport to address all of the safety issues associated with its use. The user is responsible to consult appropriate safety and health practices and to determine the applicability of regulatory limits prior to use.
4、 Change Notice: Revised Table 1, Sections 4.2.2.1 and 4.2.3; added section 4.2.5. Reference: File 30-13E Keywords: Chromium Plating, Chrome Plating, Aluminum 1.0 APPLICATION This specification covers bright decorative, corrosion resistant, electroplated coatings of copper, nickel, and chromium suita
5、ble for use on aluminum substrates, including SPF (superplastic formed) aluminum. These coatings are used in exterior applications exposed to severe service conditions including scratching, denting, and abrasion, such as bumpers and grilles. 2.0 SCOPE This specification covers base metal requirement
6、s, plating appearance, thickness and electrochemical potential requirements, corrosion resistance, adhesion, qualification, source approval and quality control, and shipping and handling requirements. 2.1 Restricted Chemical Substances Effective January 1, 2007, all product supplied to the requireme
7、nts of this specification must comply with the requirements of the CEMS B-50 specification. 3.0 REFERENCE DOCUMENTS Unless otherwise specified the latest issue of all referenced standards shall apply. The following Specifications, Standards, and Regulations are referenced in this specification. Qual
8、ity System Standard ISO 9001 or TS-16949 CFR Title 29, Part 1910 ASTM B 487 NAVISTAR Manufacturing Std. MS-D-13 ASTM B 368 ASTM B 504 NAVISTAR Engineering Design Std A-16 ASTM B 456 ASTM B 571 NAVISTAR CEMS B-50 ASTM B 490 ASTM B 764 4.0 REQUIREMENTS 4.1 Base Metal Requirements The principal supplie
9、r is responsible for procuring the aluminum base metal of the specified composition and with an appropriate surface quality suitable to provide the required surface finish, luster and corrosion resistance of the plated part. Copyright Navistar International Corporation Provided by IHS under license
10、with INTERNNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NUMBER: TMS-4103 TITLE: Decorative Chromium Plating On Aluminum REVISION: 0910 This document is restricted and may not be sent outside Navistar, Inc. or reproduced without permission from Corporate Technica
11、l Standards. Suppliers are required to assume all patent liability. 2009 by Navistar, Inc. OCTOBER 2009 Page 2 of 8 4.1.1 Base Metal Processing Finishing of the base metal may be performed before or after forming. Significant surfaces (i.e., Class A)* on the formed part shall be free of stretch mark
12、s, die marks, nicks, scratches or other defects affecting the appearance of the plated parts. Buffing of the final chromium plating is not permitted. * Engineering may designate the significant (Class A) surfaces on the engineering drawing and may also specify on the drawing check points (C points)
13、for specific evaluation of the plating thickness. Unless otherwise specified, significant surfaces are those surfaces directly visible or visible by reflection when the finished part is assembled on the truck and/or those surfaces which can be a source of corrosion products which are visible either
14、directly or by reflection. 4.2 Plating Requirements 4.2.1 Appearance Plated parts shall exhibit a bright and uniformly reflective finish. The plating shall be smooth and free of stains, pin holes, buffing and polishing lines or other defects affecting the plated appearance or the ability of the plat
15、ing to pass required corrosion tests. The appearance of production parts shall match color and finish of the master samples as agreed upon between the NAVISTAR Plant Quality Control Department and the supplier. Chrome plated aluminum bumpers must meet the acceptance criteria described in Table 2. 4.
16、2.1.1 Field service experience has indicated that some trivalent chromium plating systems produce a plated surface susceptible to premature tarnishing. Use of trivalent chromium is not permitted unless supplier has sufficient field data to demonstrate the capability of their trivalent chromium syste
17、m. 4.2.2 Thickness - ASTM B 487 and ASTM B 764 Requirements for minimum plating thickness are described in Table 1. Plating thickness may be determined by the microscopic method of ASTM B 487 or the electrochemical method of ASTM B 764. In the event of conflict, the microscopic method shall be the r
18、eferee method. TABLE 1. PLATING THICKNESS MINIMUM THICKNESS ON SIGNIFICANT SURFACES (1) TYPE OF CHROME* Copper* Semi-Bright Nickel High Sulfur Ni layer* Bright Nickel Total Nickel Chrome* m inch m inch m inch m inch m inch m inch Microporous Hexavalent 15 .0006 25 .0010 2 .00008 12 .0005 40 .0016 0.
19、25 .00001 Conventional Hexavalent 10 .0004 36 .0014 - - 18 .0007 54 .0021 0.25 .00001 * Microporous chrome deposited from hexavalent chrome electrolytes is the preferred type of chrome deposit. * Copper may be substituted by nickel strike. There is no minimum Ni strike thickness requirement as long
20、as plating adhesion and appearance are not compromised and minimum Total Ni thickness requirement is met. * Microporous chrome deposits may be plated on either “Duplex” (semi-bright + bright nickel) or “Triple-Layer” nickel deposits. Triple layer deposits incorporate a high sulfur (0.15 mass % S) in
21、termediate nickel layer. Duplex deposits do not. * A maximum of 0.5 m (.00002 inch) thickness is recommended to prevent bridging of the non-conducting particles used to produce microporous chrome. (1) The minimum thicknesses shown in Table 1 apply to specified check points (C-points) or, in the abse
22、nce of indicated check points, apply to all significant surfaces. Copyright Navistar International Corporation Provided by IHS under license with INTERNNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-NUMBER: TMS-4103 TITLE: Decorative Chromium Plating On Aluminum R
23、EVISION: 0910 This document is restricted and may not be sent outside Navistar, Inc. or reproduced without permission from Corporate Technical Standards. Suppliers are required to assume all patent liability. 2009 by Navistar, Inc. OCTOBER 2009 Page 3 of 8 4.2.2.1 When double layer nickel is used, t
24、he semi-bright nickel thickness shall be no less than 60% of total nickel thickness, and the combined thickness of the bright nickel and special nickel layer added to provide discontinuities in chrome shall be no less than 20% of total nickel thickness. When triple layer nickel is used, the semi-bri
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