精密工学会誌
Online ISSN : 1882-675X
Print ISSN : 0912-0289
ISSN-L : 0912-0289
原子系/連続体変換とナノスケール切削の応力ひずみ解析
稲村 豊四郎武澤 伸浩熊木 保浩
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1994 年 60 巻 4 号 p. 570-575

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A method by which to transform quantities of an atomic model to those of a continuum one, and vice versa has been proposed. The method is based on an idea that the displacement at a point in a continuum model should be a weighted mean of those of surrounding atoms in the corresponding atomic model, while stress values should have the inverse relation so as to preserve strain energy between the two models. The continuum model is then discretized by the Finite-Element Method so that matrix equations for the transformation are derived. These equations have been applied to the results of atomic-model-based simulation of nanoscale cutting to evaluate the stress and strain distributions in nanoscale cutting. The results show that the strain distribution is not very different from that of macroscale cutting but that there is almost no concentrated shear stress in the primary shear zone in nanoscale cutting.

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