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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Analytical Model for Prediction of Residual Stress in Dynamic Orthogonal Cutting Process
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Analytical Model for Prediction of Residual Stress in Dynamic Orthogonal Cutting Process

机译:动态正交切削过程中残余应力预测的分析模型

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Residual stress, characteristic of surface integrity, is a great issue in cutting process for its significant effects on fatigue life and dimension stability of the machined parts. From a practical viewpoint, residual stress is generated in a dynamic tool-part engagement process, instead of a process with nominal cutting loads. This is the challenge that we have to handle, so as to achieve better predictive methods than the previously recorded approaches in literatures which ignore the dynamic effects on residual stress. This paper presents an analytical method for the prediction of residual stress in dynamic orthogonal cutting. A mechanistic model of the dynamic orthogonal cutting is provided, considering the indentation effect of the cutting edge during the wave-on-wave cutting process. Following the calculation of plastic strains by incremental analysis in mechanical loading, analytical solution of the residual stress due to distributed plastic strains in half-plane is obtained based on inclusion theory. Without relaxation procedures, the two-dimensional (2D) distribution of residual stress in dynamic cutting process is predicted for the first time. A delicately designed dynamic orthogonal cutting experiment is realized through numerical control (NC) lathe. The periodic residual stress distribution is predicted using the proposed approach, which is then validated against the X-ray diffraction measurements.
机译:表面完整性的残余应力,特征,是切割过程中的一个很好的问题,用于对加工部件的疲劳寿命和尺寸稳定性的显着影响。从实际观点来看,在动态工具部件接合过程中产生残余应力,而不是具有标称切割载荷的过程。这是我们必须处理的挑战,从而实现比以前记录的文献方法更好的预测方法,这忽略了对残余应力的动态效应。本文介绍了动态正交切割中残余应力预测的分析方法。提供了一种动态正交切割的机械模型,考虑到波浪切割过程中的切削刃的凹口效果。通过在机械负载中的增量分析计算塑性菌株之后,基于包含理论获得了由于半平面中分布塑性菌株的残余应力的分析溶液。没有放松程序,第一次预测动态切割过程中残余应力的二维(2D)分布。通过数控(NC)车床实现了一种精细设计的动态正交切削实验。使用所提出的方法预测周期性残余应力分布,然后验证X射线衍射测量。

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