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Chip formation in orthogonal cutting considering interface limiting shear stress and damage evolution based on fracture energy approach

机译:考虑界面极限剪切应力和基于破坏能量方法的损伤演化的正交切削切屑形成

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摘要

Modeling of metal cutting has proved to be particularly complex, especially for tool-chip interface. The present work is mainly aimed to investigate the limiting shear stress at this interface in the case of Titanium alloy (Ti-6Al-4V) dry cutting based on a FE-model. It was first shown that the surface limiting shear stress is linked to the contact pressure and the coefficient of friction (CoF). A relationship between CoF and the limiting shear stress was given, and the effect of the temperature on the limiting shear stress was also considered. After that, an orthogonal cutting model was developed with an improved friction model through the user subroutine VFRIC in Abaqus/Explicit software. The numerical results obtained were compared with experimental data gathered from literature and a satisfied agreement was found. Finally, the effects of cutting speed, CoF and tool-rake angle on chip morphologies were analyzed.
机译:事实证明,金属切削的建模特别复杂,尤其是对于工具-芯片接口。本工作的主要目的是研究基于FE模型的钛合金(Ti-6Al-4V)干切削在此界面处的极限剪切应力。首先表明,表面极限剪切应力与接触压力和摩擦系数(CoF)有关。给出了CoF和极限剪应力之间的关系,并考虑了温度对极限剪应力的影响。之后,通过Abaqus / Explicit软件中的用户子例程VFRIC开发了具有改进摩擦模型的正交切削模型。将获得的数值结果与从文献中收集的实验数据进行比较,并找到了满意的协议。最后,分析了切削速度,CoF和刀前角对切屑形态的影响。

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