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Study on residual stress of laser shock processing based on numerical simulation and orthogonal experimental design

机译:基于数值模拟和正交试验设计的激光冲击加工残余应力研究

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摘要

Laser shock processing (LSP) is a competitive alternative surface enhancement process. Shock pressure with high magnitude and short duration induced by LSP is one key parameter to induce a residual stress field in the material. Finite element method (FEM) simulation based on the orthogonal experimental design is adopted to analyse the interaction of different shock pressure profiles with the material. It can give a relatively accurate description of the effect of shock pressure profile on the residual stress field induced in the material with a representative coverage of all parameters by less calculation cost. The analysis results show that laser shock conditions should be selected carefully to ensure a favourable shock pressure to obtain an optimised residual stress field. The simulation on the overlapping laser shock is also presented and indicates that it is an effective method to settle the residual stress drop on the top surface and can obtain a much more favourable residual compressive stress field to enhance the fatigue resistance of the material.
机译:激光冲击处理(LSP)是一种有竞争力的替代性表面增强工艺。 LSP引起的高强度,短持续时间的冲击压力是在材料中产生残余应力场的关键参数。采用基于正交试验设计的有限元模拟,分析了不同冲击压力分布与材料的相互作用。它可以用较少的计算成本,以所有参数的代表性覆盖率,相对准确地描述冲击压力曲线对材料中引起的残余应力场的影响。分析结果表明,应仔细选择激光冲击条件,以确保有利的冲击压力以获得最佳的残余应力场。还给出了对重叠激光冲击的仿真,表明该方法是解决残余应力降在顶面上的有效方法,并且可以获得更有利的残余压应力场,从而增强了材料的抗疲劳性。

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