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Simulation on deforming progress and stress evolution during laser shock forming with finite element method

机译:激光冲击成形过程中变形过程和应力演化的有限元模拟

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摘要

Laser shock forming (LSF) employs laser shock wave to form metal sheet, which is similar to explosive forming. Finite element method (FEM) is an effective method to better understand mechanism of LSF and select appropriate parameters to shape metal sheet accurately with LSF. In this paper, FEM analysis model is developed to simulate LSF, which includes how to determine the pressure loading, material constitutive model, and solution time. The commercial code LS-DYNA is applied to simulation. A sequence of dynamic deformation behaviors of metal sheet at the end of different periods are presented and discussed in detail, and the peculiar phenomena in dynamic deformation processing are discovered, which do not appear in the traditional forming processing. The final static deformation and residual stress are also predicted. The predicted results are accordance with the experimental data. (C) 2015 Published by Elsevier B.V.
机译:激光冲击成形(LSF)利用激光冲击波来形成金属板,这类似于爆炸成形。有限元方法(FEM)是一种有效的方法,可以更好地了解LSF的机理,并选择适当的参数以使用LSF精确地成形金属板。本文开发了有限元分析模型来模拟LSF,其中包括如何确定压力载荷,材料本构模型和求解时间。商业代码LS-DYNA用于仿真。详细介绍和讨论了金属板在不同周期结束时的一系列动态变形行为,发现了动态变形加工中的特殊现象,而这种现象在传统的成形加工中是没有的。还可以预测最终的静态变形和残余应力。预测结果与实验数据吻合。 (C)2015由Elsevier B.V.发布

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