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Transient numerical models of metal cutting using the Johnson-Cook's rupture criterion

机译:使用Johnson-Cook断裂准则的金属切削瞬态数值模型

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This paper presents two-dimensional and three-dimensional transient numerical models of metal cutting. The simulations concern the study of the unsteady process of chip formation. These finite element models take into account dynamic effects, thermo-mechanical coupling with a rupture criterion and contact with friction. The yield stress takes into account the strain, the strain rate and the temperature in order to reflect realistic behavior in metal cutting. The rupture criterion adopted in the models presented here allows the definition of advanced simulations of the tool's penetration into the workpiece and of chip formation. The originality of such a criterion is that it is applied on all the workpiece and enables complex tool trajectories. Stress and temperature distributions, chip formation and tool forces are shown at different stages of the cutting process.
机译:本文提出了金属切削的二维和三维瞬态数值模型。模拟涉及对切屑形成的不稳定过程的研究。这些有限元模型考虑了动力效应,具有破裂准则的热力耦合以及与摩擦的接触。屈服应力考虑了应变,应变率和温度,以反映金属切削中的实际行为。此处介绍的模型中采用的破裂准则允许定义高级模拟,以模拟刀具穿透工件和切屑的形成。这种标准的独创性在于它适用于所有工件,并能实现复杂的刀具轨迹。在切削过程的不同阶段显示了应力和温度分布,切屑形成和工具力。

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