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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >FEM mesh-dependence in cutting process simulations
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FEM mesh-dependence in cutting process simulations

机译:有限元网格在切割过程模拟中的依赖性

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摘要

The process simulations based on FEM techniques have been investigated for many years, some fundamental problems are still unsolved, e.g. the element size effect on the computational results. In present contribution, orthogonal cutting simulations of AISI4340 steel are considered. The major concerns are accuracy of computational results, influence of element size and effects of damage model in accommodating modeling of failure phenomenon for cutting process simulations. Numerical simulations are verified with the measured values of cutting force by considering certain case of influencing cutting parameters combination taken from literature. Element size is treated to be the most influencing constituent in the cutting process simulations. The chip morphology is related to the adiabatic assumption considered in the process simulation, the feed value and the element size. The simulation results are presented by neglecting temperature effects to show the influence of failure criterion based on plastic displacement of the numerical results. Though the chip morphology and shear band formation are most sensitive to the element size, the cutting force of process simulations is hardly influenced. The formation of saw-tooth chip in the present simulations is the result of adiabatic shear band at the tool tip and propagating towards the chip’s outer surface. The present work confirms that the effect of element size on computational results is reduced significantly if the failure criterion in the process simulation is controlled by a characteristic element length considered from the progressive damage model.
机译:基于FEM技术的过程模拟已经研究了很多年,但一些基本问题仍未解决,例如元素大小对计算结果的影响。在目前的贡献中,考虑了AISI4340钢的正交切削模拟。主要关注点是计算结果的准确性,元素大小的影响以及损坏模型在适应切削过程模拟的故障现象建模中的影响。通过考虑影响文献中切削参数组合的某些情况,用切削力的测量值验证了数值模拟。在切削过程模拟中,元素大小被认为是影响最大的组成部分。切屑的形态与工艺模拟中考虑的绝热假设,进料值和元素尺寸有关。通过忽略温度效应来给出仿真结果,以基于数值结果的塑性位移来显示破坏准则的影响。尽管切屑的形态和剪切带的形成对元素尺寸最敏感,但几乎不影响工艺模拟的切削力。在当前的模拟中,锯齿形切屑的形成是刀尖处绝热剪切带向切屑外表面传播的结果。当前的工作证实,如果过程模拟中的失效标准由从渐进式损伤模型考虑的特征元素长度控制,则元素尺寸对计算结果的影响将大大降低。

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