Modeling of transport phenomena and solidification cracking in laser spot bead-on-plate welding of AA6063-T6 alloy. Part I—the mathematical model

Author:

Liu Jiangwei,Rao Zhenghua,Liao Shengming,Wang Pei-Chung

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference54 articles.

1. Mazumder J (1990) Laser–beam welding. In: ASM handbook, Volume 6, welding, brazing, and soldering. ASM international, pp 262–269

2. Kawahito Y, Mizutani M, Katayama S (2007) Elucidation of high–power fiber laser welding phenomena of stainless steel and effect of factors on weld geometry. J Phys D Appl Phys 40:5854–5859

3. Pastor M, Zhao H, Martukanitz RP, DebRoy T (1999) Porosity, underfill and magnesium lose during continuous wave Nd: YAG laser welding of thin plates of aluminum alloys 5182 and 5754. Weld J 78:207s–216s

4. Zhao H, White DR, DebRoy T (1999) Current issues and problems in laser welding of automotive aluminum alloys. Int Mater Rev 44:238–266

5. Kou S (2003) Solidification and liquation cracking issues in welding. JOM 55:37–42

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