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Impact Strength Analysis of Plate Panels with Welding-Induced Residual Stress and Deformation

机译:焊接残余应力与变形对平板面板的冲击强度分析

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The paper describes the simulation of impact loads applied on plate panels with welding-induced residual stresses and deformation (WSD). Numerical simulations using FEM are carried out to study the influence of welding-induced residual stresses and deformation on the impact strength of plate panels. Welding is simulated using a three dimensional thermal mechanical coupled finite element method. The welding stress and deformation are taken as the initial imperfections in the impact strength analysis and their influence on the behavior of plate panels subjected to impact loadings. The impact loadings from the three directions, the lateral direction and two in-plane directions of the plate panels are studied. Results show a certain reduction in the impact strength due to the existence of welding stress and deformation in the plate panels. It is found that the reduction of impact force is strongly influenced by the welding deformation and the impact directions in the plate panels. This reduction is more significant when the impact force is in the lateral direction.
机译:本文描述了具有焊接引起的残余应力和变形(WSD)的施加在板上的冲击载荷的仿真。利用有限元法进行了数值模拟,以研究焊接引起的残余应力和变形对板的冲击强度的影响。使用三维热机械耦合有限元方法模拟焊接。焊接应力和变形被认为是冲击强度分析中的初始缺陷,并且它们对承受冲击载荷的板的性能产生了影响。研究了板的三个方向,横向和两个平面方向的冲击载荷。结果表明,由于板中存在焊接应力和变形,冲击强度有所降低。可以发现,冲击力的降低强烈受板中焊接变形和冲击方向的影响。当冲击力在横向时,这种减小更为明显。

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