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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Finite element simulation and experimental investigation on the residual stress-related monolithic component deformation
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Finite element simulation and experimental investigation on the residual stress-related monolithic component deformation

机译:残余应力相关整体零件变形的有限元模拟与实验研究

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摘要

The principal influence factors on the monolithic component deformation were investigated by finite element simulation simulation and experiment. Initial residual stress of the blank, machining-induced residual stress, and coupling action of these two effect factors were considered. To study the effect of blank initial residual stress on component deformation, chemical milling was used to remove the machining-induced residual stress on the machined surface of the components. The research results show that the initial residual stress in the blank was the main factor of deformation for three-frame monolithic beam, and the coupling action of the initial residual stress and machining-induced residual stresses aggravated the deformation. The deformation caused by machining residual stress accounted for about 10 % of the total deformation of the component, and the deformation caused by the blank initial residual stress accounted for 90 % of the total deformation of the component. The finite element simulation results were compared with experimental results and found to be in good agreement.
机译:通过有限元模拟和实验研究了影响整体零件变形的主要因素。考虑了毛坯的初始残余应力,加工引起的残余应力以及这两个影响因素的耦合作用。为了研究毛坯初始残余应力对零件变形的影响,使用化学铣削去除了零件在加工表面上由加工引起的残余应力。研究结果表明,毛坯中的初始残余应力是三框架整体梁变形的主要因素,初始残余应力与加工引起的残余应力的耦合作用加剧了变形。由机加工残余应力引起的变形约占部件总变形的10%,由坯料初始残余应力引起的变形约占部件总变形的90%。将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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