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The Effect of Quench-Induced Residual Stresses on the Distortion of Machined Thin-Walled Parts

机译:淬火残余应力对机加工薄壁零件变形的影响

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摘要

In the heat treatment process, during the quenching of aluminum alloy, a high level of residual stresses is observed due to the severe thermal gradient at the surface and center of the work piece, which acts as the main source of distortion in machined parts. This article attempts to investigate the correlation between quench-induced residual stresses and the distortion of thin-walled parts during machining. The effects of polymer and uphill quenching methods in comparison with water quenching in the reduction of residual stresses are investigated on an experimental basis. By conducting the machining tests, the effects of residual stress on distortion and the effect of material removal in machining on stress redistribution are investigated. The results indicate that by adopting the polymer quenching method, the level of residual stress and distortion can be reduced significantly. According to the results, material removal in machining causes an imbalance in the compressive and tensile stresses, leading to a redistribution of the stress and distortion.
机译:在热处理过程中,在铝合金淬火过程中,由于工件表面和中心处的严重热梯度而观察到高水平的残余应力,这是加工零件变形的主要来源。本文试图研究加工过程中淬火引起的残余应力与薄壁零件变形之间的关系。在实验的基础上研究了聚合物和上坡淬火方法与水淬火相比在减少残余应力方面的效果。通过进行机械加工试验,研究了残余应力对变形的影响以及加工中材料去除对应力重新分布的影响。结果表明,采用聚合物淬火方法可以显着降低残余应力和变形水平。根据结果​​,机加工中的材料去除会导致压缩应力和拉伸应力的不平衡,从而导致应力和变形的重新分布。

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