NAVISTAR TMS 9562-2012 Quality Requirements For Laser Welded Parts.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. 2012 by Navistar, Inc. DECEMBER 2012 Page 1 of 5 NAVISTAR, INC. TMS (TRUCK MATERIAL SPECIFICATION) NUMBER
2、: TMS-9562 TITLE: Quality Requirements For Laser Welded Parts CURRENT REV. No.: 1212 DATE: December 2012 WRITTEN/EDITED BY: Materials Engineering APPROVED BY: Materials Engineering SUPERSEDES: N/A PRINTED COPIES OF THIS DOCUMENT MUST BE VERIFIED FOR CURRENT REVISION This specification may involve ha
3、zardous 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. Change Notic
4、e: NEW Keywords: Welding, laser welding, sheet metal welding, tailor welded blanks. 1.0 APPLICATION This specification covers the quality requirements for laser welding used in fabricating truck parts, bodies, and other truck components made from uncoated low carbon or high-strength steel grades (CE
5、MS A-6 Part I), galvanized steel (CEMS A-6 Part II), stainless steel per CEMS A-37, and aluminum alloys per CEMS C-10. Laser welding may generally be considered for parts having material thicknesses in the range of 0.6 to 3.5 mm. A laser weld is expected to be at least as strong as the parent materi
6、al. 2.0 SCOPE This specification establishes quality requirements and defines test procedures used to assess quality and performance of laser welded parts. 2.1 Restricted Chemical Substances Effective January 1, 2007, all product supplied to the requirements of this specification must comply with th
7、e 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 standards, specifications and regulations are referenced in this specification. 4.0 GENERAL REQUIREMENTS 4.1 Base Metal 4.1.1 Unc
8、oated Metal The type of uncoated metals covered in this spec would include: Quality System Standard ISO 9001 or TS-16949 NAVISTAR CEMS A-6, Part I NAVISTAR Manufacturing Standard MS-D-13 NAVISTAR CEMS A-6, Part II CFR Title 29, Part 1910 NAVISTAR CEMS A-37 NAVISTAR CEMS B-50 NAVISTAR CEMS C-10 AWS A
9、2.4 AWS C7.2M 2NUMBER: TMS-9562 TITLE: Quality Requirements For Laser Welded Parts REVISION: DECEMBER 2012 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
10、. 2012 by Navistar, Inc. DECEMBER 2012 Page 2 of 5 1) low carbon steel (Grade 1 per CEMS A-6, Part I) 2) structural steel (SS) (Grade 6, Types 205SS-380SS, per CEMS A-6, Part I) 3) high-strength low-alloy (HSLA) steel (Grade 6, Types 275X-550X per CEMS A-6, Part I) 4) stainless steel per CEMS A-37 5
11、) aluminum alloys per CEMS C-10 4.1.2 Metallic Coated Steel Carbon steel sheet to be laser welded may also be coated, on one or both sides, with zinc or zinc alloy coating (Grade 1GALV or Grade 6GALV) or aluminum (Grade 1A) per CEMS A-6, Part II. 4.2 Weld Requirements The type of welds required and
12、weld joint location will be specified on the engineering drawing using standard welding symbols per American Welding Society AWS A2.4. In addition, LBW (laser beam weld) will be placed in the weld symbol tail to indicate that laser welding is required. 4.2.1 Types of Joints 4.2.1.1 Butt Joint The bu
13、tt joint is a joint between two members lying approximately in the same plane, as shown below. Most laser welded butt joints are prepared as square groove welds (see weld symbol below). Example of butt joint: Square groove weld symbol: 4.2.1.2 Other Joints Other joints which are sometimes joined usi
14、ng laser welding include the T-joint and lap joint. The choice of weld symbols for these types of joints would depend on the desired weld requirements. See AWS A2.4 for weld symbols to use. 4.2.1.2.1 T-Joint A T-joint is the joint between two members located approximately at right angles to each oth
15、er to form a “T” (see below). Refer to AWS C7.2M, Figure 7.11, for common T-joint configurations related to laser welding. Example of T-joint: 4.2.1.2.2 Lap Joint A lap joint is a joint between two overlapping members as shown in the figure below. Refer to AWS C7.2M, Figure 7.12, for common lap join
16、t configurations related to laser welding. The applicable weld symbol would be shown on the engineering drawing, depending on the type of lap joint weld required. 3NUMBER: TMS-9562 TITLE: Quality Requirements For Laser Welded Parts REVISION: DECEMBER 2012 This document is restricted and may not be s
17、ent outside Navistar, Inc. or reproduced without permission from Corporate Technical Standards. Suppliers are required to assume all patent liability. 2012 by Navistar, Inc. DECEMBER 2012 Page 3 of 5 Example of Lap Joint: 4.4 Pre-Weld Surface Condition The cleanliness and flatness of mating parts is
18、 a key factor in successful laser welding. The development of satisfactory interface contact of the mating parts, using production fixturing, requires clean conforming surfaces. The surfaces of parts to be welded should be free of contaminants that adversely affect weld quality, such as white or red
19、 rust, heavy scale, dirt, contaminated drawing oils, and drawing compounds hardened with age. Improper cleaning procedures are commonly found to be the cause of weld defects. 4.5 Weld Quality Two quality levels are defined for laser welds: 1) Class A laser welded joints with specific requirements fo
20、r strength, reliability, or safety. 2) Class B laser welded joints having non-critical requirements for strength, reliability, or safety. Applies to all welds not designated as Class A. Refer to Table I for allowable weld defects for both Class A and Class B welds. The required weld class for a give
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