Strain-Based damage model for ductile tearing simulation under combined tensile and shear modes

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초록

This paper proposes a strain -based damage model to simulate ductile tearing under combined tensile and shear modes. For tensile mode, the multiaxial fracture strain model depending only on the stress triaxiality is used, determined by analysing smooth bar tensile test and fracture toughness test data. For shear mode, a simple constant fracture strain model is used, determined by analysing smooth bar torsion test and torsion fracture test using a deep surface cracked cylinder specimen. The proposed damage model is applied to simulate circumferential surface cracked pipe made of SUS 304 under combined bending and torsion. Comparison with full-scale surface cracked pipe test data suggests that the use of the combined tensile and shear damage model with the linear interaction rule gives good and conservative prediction results.

키워드

Circumferential surface cracked pipe; Combined bending and torsion; Ductile tearing simulation; Multi -axial fracture strain model; Finite element analysis; TORSION FRACTURE EXPERIMENTS; GURSON MODEL; RUPTURE; PREDICTION; CRITERIA; FAILURE; CRACKS
제목
Strain-Based damage model for ductile tearing simulation under combined tensile and shear modes
저자
Park, Eui-Kyun; Hwang, Jin-Ha; Kim, Yun-Jae; Kumagai, Tomohisa
DOI
10.1016/j.engfracmech.2024.110122
발행일
2024-06-05
유형
Article
저널명
Engineering Fracture Mechanics
권
303