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Finite element analysis of the influence of tool edge radius on size effect in orthogonal micro-cutting process

机译:正交微切削过程中刀刃半径对尺寸效应影响的有限元分析

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摘要

The size effect in metal cutting is evident in the nonlinear scaling phenomenon observed in the specific cutting energy with decrease in uncut chip thickness. It has been argued by many researchers that this scaling phenomenon is caused mainly by the cutting tool edge radius, which purportedly affects the micro-cutting process by altering the effective rake angle, enhancing the plowing effect or introducing an indenting force component. However, the phenomenological reasons why the tool edge radius causes size effect and the relationship between the tool edge radius and the characteristic length scale associated with the size effect in micro-cutting has not been sufficiently clarified. In this paper, a strain gradient plasticity-based finite element model of orthogonal micro-cutting of Al5083-H116 alloy developed recently is used to examine fundamentally the influence of tool edge radius on size effect. The applicability of two length scales-tool edge radius and the material length scale l in strain gradient plasticity-are also examined via analysis of data available in the literature.
机译:金属切削中的尺寸效应在特定的切削能中随未切削切屑厚度的减小而观察到的非线性结垢现象中很明显。许多研究人员认为,这种结垢现象主要是由切削刃的半径引起的,据称这是通过改变有效前角,增强耕作效果或引入压入力分量而影响微切削过程的。但是,刀具边缘半径引起尺寸效应的现象学原因以及在微切削中刀具边缘半径与与尺寸效应相关的特征长度尺度之间的关系尚未得到充分阐明。本文利用最近建立的基于应变梯度可塑性的正交各向异性Al5083-H116合金显微切削有限元模型,从根本上检验了刀刃半径对尺寸效应的影响。通过分析文献中可获得的数据,还检验了两个长度尺度-工具边缘半径和材料长度尺度l在应变梯度可塑性中的适用性。

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