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THREE-DIMENSIONAL DYNAMIC FINITE ELEMENT ANALYSIS OF MULTIPLE LASER SHOCK PEENING PROCESSES

机译:多层激光震击过程的三维动态有限元分析

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摘要

Laser shock peening (LSP) is an innovative surface treatment technique successfully applied to improving fatigue performance of metallic materials. The fatigue strength and fatigue life of the laser peened material can be significantly improved by deep compressive residual stresses being introduced into the material. The compressive residual stress distribution along the depth of the material is attributed to a high amplitude stress wave induced by a high energy laser pulse. The present paper describes a finite element method for simulating the residual stress distribution in a metal alloy 35CD4 50 HRC steel in single and multiple LSP processes. The process used a three-dimensional dynamic finite element model impacted by a square laser spot. The predicted results for single LSP were well correlated with the available experimental data. Meanwhile, the effects of multiple LSP processes, pressure magnitude and duration, and laser spot sizes on the compressive stress field in the metal alloy were evaluated for the purpose of optimising the process.
机译:激光冲击喷丸(LSP)是一种创新的表面处理技术,已成功应用于改善金属材料的疲劳性能。激光喷丸材料的疲劳强度和疲劳寿命可以通过将深压缩残余应力引入材料中而得到显着改善。沿材料深度的压缩残余应力分布归因于高能激光脉冲引起的高振幅应力波。本文描述了一种有限元方法,用于模拟单次和多次LSP工艺的金属合金35CD4 50 HRC钢中的残余应力分布。该过程使用了受方形激光光斑影响的三维动态有限元模型。单个LSP的预测结果与可用的实验数据高度相关。同时,为了优化工艺,评估了多个LSP工艺,压力大小和持续时间以及激光光斑大小对金属合金压缩应力场的影响。

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