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An approach of tool-chip friction coefficient estimate for the simulation of machining residual stress

机译:加工剩余应力模拟工具芯片摩擦系数估计的方法

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The tool-chip friction coefficient influences the simulation result of the residual stresses distribution seriously when Finite element software is used to simulate. This paper presents a new tool-chip friction coefficient estimate approach. Frist, a new mathematical model of cutting forces, the cutting speed, feed amount and the tool-chip friction coefficient was established in this paper based on the simulation results of Advant Edge, and then the tool-chip friction coefficient was reversed when the cutting forces are measured. Comparing the simulation residual stress distribution of the friction coefficient in calculation, average coulomb friction coefficient, the default friction coefficient with experimental resu it turns out the distribution of residual stresses in the friction coefficient of calculation approaches to experimental result.
机译:工具芯片摩擦系数会影响有限元软件模拟时认真对待残余应力分布的仿真结果。本文提出了一种新的工具芯片摩擦系数估计方法。在本文的基础上,基于Advant Edge的仿真结果,在本文中建立了一种新的切割力,切割速度,进料量和工具芯片摩擦系数的新数学模型,然后在切割时逆转工具芯片摩擦系数测量力。比较计算摩擦系数的模拟残余应力分布,平均库仑摩擦系数,实验结果的默认摩擦系数;事实证明,在实验结果的计算方法中的摩擦系数中,事实证明了残余应力的分布。

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