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首页> 外文期刊>International Journal of Solids and Structures >Grain boundary response of aluminum bicrystal under micro scale laser shock peening
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Grain boundary response of aluminum bicrystal under micro scale laser shock peening

机译:微尺度激光冲击强化下铝双晶的晶界响应

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Micro scale laser shock peening (mu LSP) is a process in which compressive residual stresses are induced in a material surface to improve fatigue life and wear resistance under cyclic loading. Since the diameter of the laser spot used during the process is the same order of magnitude as grain size, the effects of anisotropy and heterogeneity have to be explicitly taken into account in any model of the process. In this study experimental and numerical studies have been performed in order to investigate the response of an aluminum bicrystal under laser shock peening. The grain boundary is shocked to investigate heterogeneity, and single crystals are shocked to study the effect of anisotropy in the absence of heterogeneity. The orientations of the crystals in the bicrystal as well as the reference single crystals have been chosen such that an approximate plane strain condition is achieved. A finite element model which accounts for the anisotropy, heterogeneity and inertia has also been developed based on single crystal micromechanics. Simulation results are compared with experimental findings. The potential benefit of mu LSP as a surface treatment for improvement of fatigue life is also discussed. (C) 2009 Elsevier Ltd. All rights reserved.
机译:微型激光冲击喷丸(mu LSP)是一种过程,其中在材料表面产生压缩残余应力,以改善循环载荷下的疲劳寿命和耐磨性。由于在该过程中使用的激光光斑的直径与晶粒大小在数量级上相同,因此在任何过程模型中都必须明确考虑各向异性和异质性的影响。在这项研究中,进行了实验和数值研究,以研究铝双晶在激光冲击喷丸下的响应。震惊晶界以研究异质性,并震惊单晶以研究在不存在异质性的情况下各向异性的影响。选择双晶中的晶体以及参考单晶中的晶体的取向,以便获得近似的平面应变条件。基于单晶微力学,还建立了一个解释各向异性,异质性和惯性的有限元模型。仿真结果与实验结果进行了比较。还讨论了将mu LSP作为表面处理剂以改善疲劳寿命的潜在好处。 (C)2009 Elsevier Ltd.保留所有权利。

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