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MODELING SCHEMES, TRANSIENCY, AND STRAIN MEASUREMENT FOR MICROSCALE LASER SHOCK PEENING

机译:微尺度激光冲击的建模方案,跨性和应变测量

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In this paper, a coupled modeling scheme, that considered the dynamic evolution of laser-induced plasma and the complete physical interaction between plasma, confined medium, coating layer and the peened metal in laser shock peeing (LSP), is compared with two decoupled modeling schemes, in which shock pressure was first determined and used as loading in subsequent FEM based stress/strain analysis. The relative merits and limitations of these schemes are evaluated in terms of their ability to describe process transiency such as shock pressure, shock velocity and dynamic de formation history, and to predict the stress/strain to be imparted into a target material. Both bulk and thin film samples of copper were studied. Model predictions were investigated together with strain measurements based on X-ray micro diffraction technique.
机译:在本文中,将考虑激光诱导的等离子体的动态演化以及等离子体,限制介质,涂层层和喷丸间金属之间的完全物理相互作用的耦合建模方案与两个去耦造型进行比较方案,首先确定冲击压力并用作随后的有限元应力/应变分析中的加载。这些方案的相对优点和局限性在其描述诸如冲击压力,冲击速度和动态DE形成历史之类的过程不足之类的能力方面进行评估,并预测要赋予靶材料的应力/应变。研究了铜的散装和薄膜样品。基于X射线微衍射技术的应变测量,研究了模型预测。

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