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Frictional Stress Derived on Interface Between Work and Tool Materials on Quasi-Dislocation Model for Cutting Simulations

机译:切削模拟拟错位模型上工件与刀具材料之间界面的摩擦应力

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There growing demand for a new FEM cutting simulation method capable of dealing with the peculiar friction phenomena that occur on the interface between work and tool materials. In this report, we first seek a theoretical formula for quasi-dislocation motions as a model to explain the phenomena that occur on the interface between the work and tool materials by applying the dislocation theory. Next, we present our method for deriving the frictional stress on a tool face from quantum mechanical calculations based on the above-mentioned model. It uses the molecular orbital method, which can only conduct static calculations, to obtain the shear stress under high strain velocities. As one of its features, it does not use complicated experiments and the first-principle molecular dynamic calculations that is high costs.
机译:越来越需要一种新的FEM切削模拟方法,该方法能够处理在工件和工具材料之间的界面上发生的特殊摩擦现象。在本报告中,我们首先寻求准位错运动的理论公式作为模型,以通过应用位错理论来解释在工件和工具材料之间的界面上发生的现象。接下来,我们介绍根据上述模型从量子力学计算得出工具面上的摩擦应力的方法。它使用只能进行静态计算的分子轨道方法来获得高应变速度下的剪切应力。作为它的特点之一,它不使用复杂的实验,也不用高成本的第一性原理进行分子动力学计算。

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