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首页> 外文期刊>Journal of Mechanical Engineering >Effect of Initial Residual Stress and Machining-Induced Residual Stress on the Deformation of Aluminium Alloy Plate
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Effect of Initial Residual Stress and Machining-Induced Residual Stress on the Deformation of Aluminium Alloy Plate

机译:初始残余应力和加工残余应力对铝合金板变形的影响

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摘要

During the machining of aerospace thin-walled components, a large amount material is removed, and machining-induced residual stress is induced in the boundary layer of the work piece, which results in deformation of the components. In this study, the effects of material initial residual stress and machining-induced residual stress on the deformation of aluminium alloy plate are studied. A theoretical model of the plate is analysed first, and the experiments of the milling deformation under different initial residual stress conditions are performed. The results show that the machining-induced residual stress is the primary factor of distortion. The coupling action of compressive initial residual stress and machining-induced residual stress increase the plate deformation, and the coupling action of tensile initial residual stress and machining-induced residual stress decrease the plate deformation. The finite element simulation results are compared with experimental results and found to be in good agreement
机译:在航空航天薄壁部件的机加工过程中,会去除大量材料,并且在工件的边界层中会引起机加工引起的残余应力,从而导致部件变形。在这项研究中,研究了材料初始残余应力和加工引起的残余应力对铝合金板变形的影响。首先分析了板的理论模型,并进行了不同初始残余应力条件下的铣削变形实验。结果表明,加工引起的残余应力是变形的主要因素。压缩初始残余应力和加工引起的残余应力的耦合作用增加了板的变形,而拉伸初始残余应力和加工引起的残余应力的耦合作用减小了板的变形。有限元模拟结果与实验结果进行比较,发现吻合良好

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