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Energy-based numerical modeling of the strain rate effect on fracture toughness of SA508 Gr. 1a
- Nam, Hyun-Suk;
- Kim, Yun-Jae;
- Kim, Jin-Weon;
- Kim, Jong-Sung
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7초록
This article presents an energy-based method to simulate ductile tearing under dynamic loading conditions. The strain rate-dependent material properties are characterized by the Johnson-Cook-type model. The damage model is defined based on the multi-axial fracture strain energy concept. The proposed damage model is applied to simulate the fracture toughness test of SA508 Gr. 1a under four different test speeds. Simulated results show a good overall agreement with the experimental results.
키워드
Ductile fracture; high strain rate condition; finite element damage analysis; multi-axial fracture strain energy locus; strain rate effect; DUCTILE TEARING SIMULATION; CRACK-GROWTH; PIPE TEST; FAILURE; STEELS; BARS
- 제목
- Energy-based numerical modeling of the strain rate effect on fracture toughness of SA508 Gr. 1a
- 저자
- Nam, Hyun-Suk; Kim, Yun-Jae; Kim, Jin-Weon; Kim, Jong-Sung
- 발행일
- 2017-04
- 유형
- Article
- 권
- 52
- 호
- 3
- 페이지
- 177 ~ 189