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首页> 外文期刊>Applied Surface Science >Tensile properties, residual stress distribution and grain arrangement as a function of sheet thickness of Mg-Al-Mn alloy subjected to two-sided and simultaneous LSP impacts
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Tensile properties, residual stress distribution and grain arrangement as a function of sheet thickness of Mg-Al-Mn alloy subjected to two-sided and simultaneous LSP impacts

机译:Mg-Al-Mn合金同时受到LSP双向冲击的拉伸性能,残余应力分布和晶粒排列

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摘要

Two-sided and simultaneous laser shock peening impacts is considered as a novel surface treatment technology for the turbine blade and thin-walled component. In this paper, tensile properties of Mg-Al-Mn alloy specimens with different sheet thickness under two kinds of laser shock peening strategies were investigated, and an overlapping three-dimension axisymmetric numerical model was developed to analyze the effects of sheet thickness on residual stress distributions. Meanwhile, special attentions were paid to the in-depth microstructural evolution as a function of sheet thickness. Results showed that sheet thickness had an important influence on the tensile properties of Mg-Al-Mn alloy, and the generated residual stress distribution and grain arrangement were two important factors. The corresponding influence mechanism of sheet thickness on the tensile properties of Mg-Al-Mn alloy was also presented, and the optimal thickness of Mg-Al-Mn alloy sheet may be 4 mm or more. (C) 2016 Elsevier B.V. All rights reserved.
机译:双面同时进行激光冲击喷丸处理是涡轮叶片和薄壁部件的一种新型表面处理技术。本文研究了两种激光冲击喷丸策略下不同板厚的Mg-Al-Mn合金试样的拉伸性能,建立了重叠的三维轴对称数值模型,分析了板厚对残余应力的影响。分布。同时,要特别注意深度显微组织演变与板厚的关系。结果表明,板厚对Mg-Al-Mn合金的拉伸性能有重要影响,产生的残余应力分布和晶粒排列是两个重要因素。还提出了相应的板厚对Mg-Al-Mn合金拉伸性能的影响机理,Mg-Al-Mn合金板的最佳厚度可以为4mm以上。 (C)2016 Elsevier B.V.保留所有权利。

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