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首页> 外文期刊>Journal of Materials Processing Technology >Determination of work material flow stress and friction for FEA of machining using orthogonal cutting tests
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Determination of work material flow stress and friction for FEA of machining using orthogonal cutting tests

机译:用正交切削试验确定加工有限元分析中的工作材料流动应力和摩擦

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摘要

Finite element analysis based techniques are available to simulate cutting processes and offer several advantages including prediction of tool forces, distribution of stresses and temperatures, estimation of tool wear and residual stresses on machined surfaces, optimization of cutting tool geometry and cutting conditions. However, work material flow stress and friction characteristics at cutting regimes are not always available. This paper utilizes a metal cutting model developed by Oxley and presents an improved methodology to characterize work material low stress and friction at primary and secondary deformation zones around the cutting edge by utilizing orthogonal cutting tests. In this paper, Johnson-Cook (JC) constitutive work flow stress model is used to characterize work flow stress in deformation zones. The friction model is based on estimation of the normal stress distribution over the rake face. The stress distribution over the tool rake face can either directly be entered in FEA software or used in determining a coefficient of the friction at the tool-chip interface. The methodology is practical and estimates the unknowns of both the work material constitutive model and the friction model over the rake face.
机译:基于有限元分析的技术可用于模拟切削过程,并具有多种优势,包括预测工具力,应力和温度分布,估计工具磨损和机械加工表面上的残余应力,优化切削工具的几何形状和切削条件。但是,切削状态下的工作材料流动应力和摩擦特性并非始终可用。本文利用由Oxley开发的金属切削模型,提出了一种改进的方法,以利用正交切削试验来表征切削刃周围的一次和二次变形区的工作材料低应力和低摩擦。本文使用Johnson-Cook(JC)本构工作流应力模型来表征变形区的工作流应力。摩擦模型基于前刀面上法向应力分布的估计。刀具前刀面上的应力分布可以直接输入到FEA软件中,也可以用于确定刀具-切屑界面处的摩擦系数。该方法是实用的,并且可以估算前刀面上的工作材料本构模型和摩擦模型的未知数。

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