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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Numerical Modeling and Mechanism Analysis of Hybrid Heating and Shock Process for Laser-Assisted Laser Peen Forming
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Numerical Modeling and Mechanism Analysis of Hybrid Heating and Shock Process for Laser-Assisted Laser Peen Forming

机译:激光辅助激光喷烯型混合加热和冲击工艺的数值建模及机理分析

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摘要

Laser-assisted laser peen forming (LALPF) is proposed as a hybrid process to combine laser heating and laser peening to improve the bending capability of laser peen forming (LPF) effectively. To predict LALPF-induced bending deformation and mechanism of bending capability improvement, a sequentially coupled modeling approach is established by integrating three models, i.e., a thermoelastic-plastic model to predict the temperature, a dynamic model to obtain the eigenstrain of laser shock, and an eigenstrain model to predict the bending deformation. The effects of temperature, thermal stress, and thermal plastic strain of laser heating and the coupling effects on the bending deformation were investigated. The results show that the interaction of temperature and thermal stress are the dominant factors contributing to the improvement of bending capability.
机译:提出激光辅助激光喷eEEEEEN形成(LALPF)作为混合过程,以将激光加热和激光喷丸组合以有效地改善激光喷发(LPF)的弯曲能力。 为了预测LALPF诱导的弯曲变形和弯曲能力改进机制,通过整合三种模型,即热弹性塑料模型来建立依次耦合的建模方法,以预测温度,动态模型以获得激光冲击的特征 预测弯曲变形的特征模型。 研究了激光加热的温度,热应力和热塑性应变和对弯曲变形的耦合效应的影响。 结果表明,温度和热应力的相互作用是有助于提高弯曲能力的主要因素。

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