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An Evaluation of Different Damage Models when Simulating the Cutting Process Using FEM

机译:有限元模拟切削过程中不同损伤模型的评估

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The current study compares two damage modeling approaches in metal cutting finite element simulations; the Johnson-Cook shear failure model and the progressive damage model. The first assumes sudden failure when the set criterion is met; however, the second relies on two criteria; one for damage initiation and another for damage evolution. Simulations were performed on AISI 1045 steel, and different process parameters (forces, chip thickness, temperatures and plastic strain) were compared. Also, dry orthogonal cutting tests were performed and cutting forces and chip thickness were compared to the predicted values. The current results showed better predictions when damage evolution was considered.
机译:当前的研究比较了金属切削有限元模拟中的两种损伤建模方法。 Johnson-Cook剪切破坏模型和渐进破坏模型。第一个假设是在满足设置标准时突然发生故障。但是,第二个依赖两个标准;一个用于损伤引发,另一个用于损伤演化。在AISI 1045钢上进行了仿真,并比较了不同的工艺参数(力,切屑厚度,温度和塑性应变)。另外,进行干正交切削试验,并将切削力和切屑厚度与预测值进行比较。当考虑损害发展时,当前结果显示出更好的预测。

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