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Simulation-based optimization of laser shock peening process for improved bending fatigue life of Ti-6Al-2Sn-4Zr-2Mo alloy

机译:基于模拟的激光冲击强化工艺优化,以改善Ti-6Al-2Sn-4Zr-2Mo合金的弯曲疲劳寿命

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摘要

Laser shock peening (LSP) induced residual stresses significantly affect the high cycle fatigue behavior of certain metals and alloys. Residual stress distribution is a function of various laser parameters (energy, laser pulse width, and spot diameter), the geometry, the material and the laser shot sequencing. Considering the wide range of parameters involved in the LSP process, a numerical approach based on 3D nonlinear finite element method has been employed to explore the relation between the processing parameters and the residual stress distribution. This methodology is applied to a thin coupon of Ti-6Al-2Sn-4Zr-2Mo (Ti-6242) alloy, with a view towards establishing conditions for obtaining through-thickness compressive residual stresses and hence improved bending fatigue life. Material response at very high strain rates in the LSP process is effectively represented using the modified Zerilli-Armstrong material model. The numerical approach is verified by comparison with the experimental results. Effects of laser parameters and laser shot sequencing on final residual stress distribution are studied by performing full scale simulations of LSP patches constituting a large number of laser shots. Based on simulation studies, optimal set of parameters is obtained that produces through thickness compression, which leads to a substantial improvement in bending fatigue life. Fatigue testing results support the recommendations made based on simulation results.
机译:激光冲击喷丸(LSP)引起的残余应力会显着影响某些金属和合金的高周疲劳行为。残余应力分布是各种激光参数(能量,激光脉冲宽度和光斑直径),几何形状,材料和激光发射顺序的函数。考虑到LSP过程中涉及的参数范围很广,已采用基于3D非线性有限元方法的数值方法来探索加工参数与残余应力分布之间的关系。将该方法应用于Ti-6Al-2Sn-4Zr-2Mo(Ti-6242)合金的薄试样,以期建立获得全厚度压缩残余应力并因此改善弯曲疲劳寿命的条件。使用改进的Zerilli-Armstrong材料模型可以有效地表示LSP过程中非常高应变速率下的材料响应。通过与实验结果的比较验证了数值方法。通过对构成大量激光发射的LSP斑块进行全面模拟,研究了激光参数和激光发射顺序对最终残余应力分布的影响。根据仿真研究,获得了通过厚度压缩产生的最佳参数集,从而极大地改善了弯曲疲劳寿命。疲劳测试结果支持基于仿真结果提出的建议。

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