材料
Online ISSN : 1880-7488
Print ISSN : 0514-5163
ISSN-L : 0514-5163
論文
2次均質化法を用いた多結晶体の平面ひずみ圧縮変形における不均一変形の解析評価
阪本 真士大塚 貴之内田 真
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2019 年 68 巻 11 号 p. 839-844

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A second-order homogenization method, in which strain gradient in macroscopic region is considered, has been proposed to evaluate the size effect on the macroscopic deformation. In this study, plane strain compression of a polycrystalline material is numerically investigated using an FE-based second-order homogenization method, and effects of size of macrostructure and friction on macroscopic non-uniform deformation is discussed. In the simulation of plane strain compression, the friction between an anvil and a specimen causes non-uniform deformation on the macroscopic region and the size of the specimen affects the compressive force and the macroscopic distribution of strain when the friction force works. The results find that under deformation with the strain gradient caused by the friction the compressive force becomes larger and the macroscopic distribution of strain becomes more inhomogeneous as the size of the specimen becomes larger. These size effects on the macroscopic region are related to deformation in microstructure that depends on the strain gradient in the macrostructure.

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© 2019 日本材料学会
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