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On the Selection of Johnson-cook Constitutive Model Parameters for Ti-6Al-4V Using Three Types of Numerical Models of Orthogonal Cutting

机译:利用三种正交切削数值模型选择Ti-6Al-4 V的Johnson-cook本构模型参数

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Johnson-Cook constitutive model is still the most used model in metal cutting simulation, although several drawbacks reported in the literature. A high number of Johnson-Cook model parameters can be found in the literature for the same work material. One question that may arise is “What is the most suitable set of Johnson-Cook model parameters for a given material?”. The present paper puts in evidence some issues related with the selection of these parameters from the literature. In this contribution, two sets of Johnson-Cook model parameters for Ti-6A-4 V are evaluated, using three types of metal cutting models. These models are based on three different formulations: Lagrangian, Arbitrary Eulerian-Lagrangian (ALE) and Couple Lagrangian-Eulerian (CEL). This evaluation is based on the comparison between measured and predicted chip geometry, chip compression ratio, forces, plastic deformation and temperature distributions.
机译:尽管在文献中报道了一些缺点,但Johnson-Cook本构模型仍然是金属切削仿真中使用最多的模型。对于相同的工作材料,可以在文献中找到大量的Johnson-Cook模型参数。可能出现的一个问题是“对于给定的材料,最合适的Johnson-Cook模型参数集是什么?”。本文提出了一些与文献中这些参数的选择有关的问题的证据。在此贡献中,使用三种类型的金属切削模型评估了Ti-6A-4 V的两组Johnson-Cook模型参数。这些模型基于三种不同的公式:拉格朗日,任意欧拉-拉格朗日(ALE)和情侣拉格朗日-欧拉(CEL)。该评估基于测得的和预测的切屑几何形状,切屑压缩比,力,塑性变形和温度分布之间的比较。

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