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Redistribution of Residual Stress Field in the Weld Joint Due to Laser Shock Processing

机译:激光休克处理引起的焊接接头中残余应力场的再分配

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In this paper, residual stress and plastic damage in the welded joint processed by laser shock processing are investigated. Plastic damage during laser shock processing (LSP) is modeled combined with Gurson-Tvergaard-Needleman (GTN) plastic damage constitutive equations. In order to verify the FEA model, benchmark simulations are performed and verified with available experimental results. Results show that predicted residual stresses agree well with the experimental data. It is very interesting that welding tensile residual stress can be modified and changed into compressive residual stress due to laser shock processing. Simulations reveal that void volume fraction (WF) referring to ductile damage of materials is approximately constant and decaying sharply at the edge of the impact zone in radial direction. A point can be noted that the magnitude of surface void volume fraction (WF) increases with increasing power density.
机译:本文研究了激光休克处理加工的焊接接头中的残余应力和塑料损伤。激光休克处理(LSP)期间的塑料损坏采用Gurson-Tvergaard-Constleman(GTN)塑料损伤本构规模建模。为了验证FEA模型,进行基准模拟并通过可用的实验结果进行验证。结果表明,预测的残余应力与实验数据很好。非常有趣的是,由于激光休克处理,焊接拉伸残余应力可以改变并改变为压缩残余应力。仿真揭示了在径向撞击区域的边缘处的延性损伤的空隙体积分数(WF)近似恒定和衰减。可以注意到,随着功率密度的增加,表面空隙体积分数(WF)的大小增加。

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