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Deformation analysis of micro-sized material using strain gradient plasticity
- Byon, SM;
- Lee, Y
WEB OF SCIENCE
4SCOPUS
4초록
To reflect the size effect of material (1 similar to 15 mu m) during plastic deformation of polycrystalline copper, a constitutive equation which includes the strain gradient plasticity theory and intrinsic material length model is coupled with the finite element analysis and applied to plane strain deformation problem. The method of least square has been used to calculate the strain gradient at each element during deformation and the effect of distributed force on the strain gradient is investigated as well. It shows when material size is less than the intrinsic material length (1.54 mu m), its deformation behavior is quite different compared with that computed from the conventional plasticity. The generation of strain gradient is greatly suppressed, but it appears again as the material size increases. Results also reveal that the strain gradient leads to deformation hardening. The distributed force plays a role to amplify the strain gradient distribution.
키워드
- 제목
- Deformation analysis of micro-sized material using strain gradient plasticity
- 저자
- Byon, SM; Lee, Y
- 발행일
- 2006-05
- 유형
- Article
- 권
- 20
- 호
- 5
- 페이지
- 621 ~ 633
- 언어
- ENG
- 출판사
- KOREAN SOC MECHANICAL ENGINEERS
- 발행국가
- 대한민국
- 분량
- 13 페이지
- ISSN
- E 1976-3824
P 1738-494X