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Accurate numerical modeling of residual stress fields induced by laser shock peening

机译:激光冲击喷丸引起的残余应力场的精确数值模拟

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To improve the accuracy of numerical simulation of laser shock peening, a novel model is developed to predict residual stress distribution. An optical beam measurement system, a white light confocal displacement sensor, and other sensors are used to measure the laser shock peening parameters. Based on actual parameters, the model of shock wave pressure spatial distribution is established. Effects of key parameters, viz., overlapping rate and laser beam quality on residual stress distribution are analyzed by the proposed model. The influence mechanism of laser beam quality on residual stress hole is analyzed. Compared with conventional models, it is found that the proposed model has higher precision to predict residual stress distribution. The processing efficiency and strengthening effect can be improved by optimizing the overlapping rate and laser beam quality. The edge gradient of shock wave pressure reduces the intensity of the release wave convergence at the center, which can improve the uniformity of residual stress distribution. The proposed model can not only improve the accuracy of numerical simulation, but also provide guidance for optimizing the laser beam quality.
机译:为了提高激光冲击喷丸数值模拟的准确性,开发了一种新模型来预测残余应力分布。光束测量系统,白光共焦位移传感器和其他传感器用于测量激光冲击强化参数。根据实际参数,建立了冲击波压力空间分布模型。该模型分析了关键参数,即重叠率和激光束质量对残余应力分布的影响。分析了激光束质量对残余应力孔的影响机理。与传统模型相比,发现该模型具有更高的预测残余应力分布的精度。通过优化重叠率和激光束质量,可以提高加工效率和增强效果。冲击波压力的边缘梯度减小了中心处释放波收敛的强度,从而可以提高残余应力分布的均匀性。该模型不仅可以提高数值模拟的准确性,而且可以为优化激光束质量提供指导。

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