Numerical simulation of temperature field in deep penetration laser welding of 5A06 aluminum cylinder

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作者
School of Material Science and Engineering, Taiyuan University of Science and Technology, Taiyuan 030024, China [1 ]
机构
来源
China Weld Eng Ed | 2008年 / 4卷 / 74-78期
关键词
Deep penetration - Numerical models - Temperature;
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摘要
Deep penetration laser welding temperature field of 5A06 aluminum alloy canister structure was simulated using the surface-body combination heat source model by ANSYS, which was made up of Gauss surface heat source model and Gauss revolved body heat source model. Convection, radiation and conduction were all considered during the simulation process. The thermal cycle curves of the points both on the shell outer surface and in the seam thickness direction were calculated. Simulated results agreed well with the experiment results. It concluded that the surface-body combination heat source model was fit for the temperature field simulation of deep penetration laser welding of the aluminum alloy canister structure. This method was proved to be an efficient way to predict the shape and dimension of welded joint for deep penetration laser welding of the aluminum alloy canister structure.
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