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首页> 外文期刊>Materials >Simulation and Experimental Study on Residual Stress Distribution in Titanium Alloy Treated by Laser Shock Peening with Flat-Top and Gaussian Laser Beams
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Simulation and Experimental Study on Residual Stress Distribution in Titanium Alloy Treated by Laser Shock Peening with Flat-Top and Gaussian Laser Beams

机译:平顶高斯激光束冲击喷丸处理钛合金残余应力分布的模拟与实验研究

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The residual stress introduced by laser shock peening (LSP) is one of the most important factors in improving metallic fatigue life. The shock wave pressure has considerable influence on residual stress distribution, which is affected by the distribution of laser energy. In this work, a titanium alloy is treated by LSP with flat-top and Gaussian laser beams, and the effects of spatial energy distribution on residual stress are investigated. Firstly, a 3D finite element model (FEM) is developed to predict residual stress with different spatial energy distribution, and the predicted residual stress is validated by experimental data. Secondly, three kinds of pulse energies, 3 J, 4 J and 5 J, are chosen to study the difference of residual stress introduced by flat-top and Gaussian laser beams. Lastly, the effect mechanism of spatial energy distribution on residual stress is revealed.
机译:激光冲击喷丸(LSP)引入的残余应力是改善金属疲劳寿命的最重要因素之一。冲击波压力对残余应力分布有相当大的影响,残余应力受激光能量分布的影响。在这项工作中,采用平顶和高斯激光束通过LSP对钛合金进行处理,并研究了空间能量分布对残余应力的影响。首先,建立了3D有限元模型来预测具有不同空间能量分布的残余应力,并通过实验数据验证了残余应力的有效性。其次,选择三种脉冲能量3 J,4 J和5 J来研究平顶和高斯激光束引入的残余应力的差异。最后揭示了空间能量分布对残余应力的影响机理。

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