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Modeling and analysis of factors of size effect in micro-cutting: The tool geometry and the depth of cutting

机译:微切割尺寸效应因素的建模与分析:工具几何和切割深度

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Based on the finite element approach and the strain gradient (SG) theory, this paper produced a study on factors of size effect and minimum cutting thickness phenomenon in the micro-cutting process. Mechanisms of micro-cutting focusing on its characteristics that include size effect, tool edge radius and minimum cutting thickness has been studied. A new constitutive relationship based on SG theory is formulated to model the size effect of material properties at micro-scale. The new constitutive was implanted into the FEM, and size effect was investigated. From the result of simulation, it is indicated that size effect in micro-cutting could be well formulated by SG theory. The curve of material properties is approached to curve of JC with the depth cutting increased; when the rake angle is increased, the size effect is more obvious. The tool edge radius has a significant influence on the size effect. Result show that the cause of the minimum chip thickness is the tool edge radius.
机译:基于有限元方法和应变梯度(SG)理论,本文提出了微切工艺规模效应和最小切割厚度现象的研究。研究了微切关注其特性,包括尺寸效应,工具边缘半径和最小切割厚度的特性。基于SG理论的新构成关系被配制成模拟微尺度材料特性的尺寸效应。将新的本构体植入有限元,并研究了尺寸效应。从模拟结果中,表明微型切割中的尺寸效应可以通过SG理论良好地制定。材料特性的曲线接近JC的曲线,深度切割增加;当耙角增加时,尺寸效果更加明显。刀具边缘半径对尺寸效果产生了重大影响。结果表明,最小芯片厚度的原因是刀具边缘半径。

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