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Predictive model of grinding residual stress for linear guideway considering straightening history

机译:考虑矫直史的线性导轨磨削残余应力的预测模型

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摘要

Application of linear guideway has been widely developed for its high position accuracy, movement efficiency and easy installation. The surface finishing of linear guideway by grinding process following straightening process is essential by reason of the requirement of surface roughness and movement precision. A prediction model of grinding residual stress considering initial residual stress generated by straightening process is established in this paper. Firstly, the longitudinal stress distribution of linear guideway during straightening process and a numerical method for calculating the straightening stroke are presented considering the stress-inheriting behavior. Then, an analytical model is proposed to predict the residual stress caused by grinding process with the initial stress generated by straightening process. The theoretical and finite element analysis results show that the residual surface stresses are tensile under the grinding conditions applied in this paper. Both the results obtained by theoretical and experiment results indicated that the compressive residual stress due to straightening process leads to compressive residual stress after grinding. Therefore, the initial residual stress of former process should be taken into account when studying the residual stress of linear guideway induced by grinding process.
机译:线性导轨的应用已被广泛开发,以实现其高位置精度,移动效率和易于安装。通过表面粗糙度和运动精度的要求,通过研磨过程进行线性导轨的表面精加工是必不可少的。本文建立了考虑通过矫直过程产生的初始残余应力的研磨残余应力的预测模型。首先,考虑到应力继承行为,呈现了矫直过程期间线性导轨的纵向应力分布和用于计算矫直行程的数值方法。然后,提出了一种分析模型来预测通过矫直过程产生的初始应力的研磨过程引起的残余应力。理论和有限元分析结果表明,在本文中施加的研磨条件下,残留表面应力是拉伸的。通过理论和实验结果获得的结果表明,由于矫直过程引起的压缩残余应力导致研磨后的压缩残余应力。因此,在研究研磨过程诱导的线性导轨的残余应力时,应考虑以前过程的初始残余应力。

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