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DUCTILE FRACTURE MODELING OF DH36 GRADE STEELS

机译:DH36钢的韧性断裂建模

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摘要

A Hosford-Coulomb type ductile fracture surface was developed for DH36 grade steels. The fracture experiments reported in the literature, which consist of tests with notched tensile specimens, tensile specimens with a central hole, shear specimen and disc specimens for punch specimens, were utilized in a detailed finite element analysis of each experiment to evaluate the evolution of local stress and strain fields and identify plasticity and fracture response of DH36. The developed plasticity model consists of a von Mises yield surface, an associated flow rule and a combined Swift-Voce type isotropic hardening rule. The loading paths to fracture initiation were determined in terms of stress triaxiality and normalized Lode angle parameter histories. Finally, the Hosford-Coulomb fracture surface was calibrated using the finite element analysis results and adapting a linear damage accumulation law.
机译:针对DH36级钢开发了Hosford-Coulomb型延性断裂表面。文献中报道的断裂实验由带缺口的拉伸试样,带有中心孔的拉伸试样,剪切试样和用于冲头试样的盘状试样组成的试验组成,用于每个实验的详细有限元分析,以评估局部的演化应力和应变场,并确定DH36的可塑性和断裂响应。开发的可塑性模型由冯·米塞斯屈服面,相关的流动规则和组合的Swift-Voce型各向同性硬化规则组成。根据应力三轴性和规范化的洛德角参数历史确定了开始断裂的载荷路径。最后,使用有限元分析结果并采用线性损伤累积定律对Hosford-Coulomb断裂面进行了校准。

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