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首页> 外文期刊>Lasers in engineering >Massive Laser Shock Peening of an Aluminium Alloy and the Effects of Overlapping Rate on Residual Stress Relaxation when Under Cyclic Loading
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Massive Laser Shock Peening of an Aluminium Alloy and the Effects of Overlapping Rate on Residual Stress Relaxation when Under Cyclic Loading

机译:铝合金的巨大激光冲击,以及重叠率在循环载荷下重叠率对残余应力松弛的影响

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摘要

To investigate the effects of overlapping rate on the residual stress relaxation following laser shock peening (LSP) of LY2 Al-alloy, a three-dimensional (3-D) finite element analysis (FEA) model using ABAQUS software is developed to simulate the residual stress relaxation under three kinds of applied cyclic loadings. Special attention is paid to the residual stress relaxation process of the LY2 Al-alloy sheet with different overlapping rates. Results show that residual stress relaxation is strongly dependent of overlapping rate of massive laser shock peening treatment, and the fluctuation rate decreases with increasing overlapping rate. For all overlapping rates, the most drastic relaxation exists at a depth of 0.40 mm away from the top surface. With the overlapping rate being greater than 50%, the surface residual stress exhibits a better uniformity, and a maximum of in-depth residual stress after relaxation remains unchanged for a given cyclic loading. In addition, the influence mechanism of overlapping rate on stress relaxation after the first cycle is revealed.
机译:为了研究Ly2 Al合金的激光冲击喷丸(LSP)后重叠率对残余应力松弛的影响,开发了使用ABAQUS软件的三维(3-D)有限元分析(FEA)模型来模拟残差三种施加的循环载荷下应力松弛。具有不同重叠速率的Ly2 Al合金板的残余应力弛豫过程特别注意。结果表明,残余应力松弛强烈依赖于大规模激光冲击治疗的重叠速率,并且波动率随着重叠率的增加而降低。对于所有重叠速率,距离顶表面的深度为0.40mm的深度。通过重叠率大于50%,表面残余应力表现出更好的均匀性,并且在放松后的最大深入的残余应力对于给定的循环载荷保持不变。此外,揭示了第一循环后重叠率对应力松弛的影响机理。

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