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Simulation of Stable Crack Growth for Welded Joints Including Strength Mismatching 被引量:1

Simulation of Stable Crack Growth for Welded Joints Including Strength Mismatching
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摘要 A 3-D computational method to simulate stable growth of a macroscopic crack under model condition is described in this paper. The Gurson-Tvergaard plasticity model for voided materials describes the damage process. Fixed-sized, computational cell elements (containing voids) defined over a thin layer at the crack plane simulate the ductile crack extension. Outside of this layer, the material remains undamaged by the void growth, follows the conventional J2 flow theory. The micromechanics parameters controlling crack growth are D, the thickness of computational cell layer and f(0), the initial void porosity. Calibration of these parameters proceeds through analyses of ductile tearing to match R-curve obtained from testing of deep notch bend specimens for welded joints. The effect of the strength mismatching on ductile crack growth for welded joints is simulated also. A 3-D computational method to simulate stable growth of a macroscopic crack under model condition is described in this paper. The Gurson-Tvergaard plasticity model for voided materials describes the damage process. Fixed-sized, computational cell elements (containing voids) defined over a thin layer at the crack plane simulate the ductile crack extension. Outside of this layer, the material remains undamaged by the void growth, follows the conventional J2 flow theory. The micromechanics parameters controlling crack growth are D, the thickness of computational cell layer and f(0), the initial void porosity. Calibration of these parameters proceeds through analyses of ductile tearing to match R-curve obtained from testing of deep notch bend specimens for welded joints. The effect of the strength mismatching on ductile crack growth for welded joints is simulated also.
机构地区 Tianjin Univ Osaka Univ
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1999年第6期567-570,共4页 材料科学技术(英文版)
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  • 9Hongyang JING, Lianyong XU, Lixing HUO and Yufeng ZHANGSchool of Materials Science and Engineering, Tianjin University, Tianjin 300072, China.Evaluation on Fracture Toughness at Dynamic Loading for Welded Joint Based on the Local Approach[J].Journal of Materials Science & Technology,2004,20(1):113-117. 被引量:2

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