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Numerical modeling crack propagation of sheet metal forming based on stress state parameters using XFEM method

机译:基于应力状态参数的薄板成形裂纹扩展数值模拟

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摘要

A microcosmic view field model containing a single micro-crack with different angles (0°, 45° and 90°) is investigated using the eXtended Finite Element Method (XFEM). Peak principal stress criterion is used in calculations for description of the crack propagation based on the experimental data concerning strength and fracture mechanics parameters. The stress state parameters are applied to explore the crack propagation conditions under various loading modes. The features of crack growth and fracture in different stress states are simulated, and the relations of crack grow directions and modes with the stress state parameters are discussed. The results show that the stress triaxiality is closely related with the crack propagation, and the higher the value, the easier the crack grow, while the crack would tend to close when the value is negative. The soft coefficient can reflect the situation of the failure mode, the crack mainly is mode I if the value is less than one and the crack is mostly mode II if the value is more than one. The Lode parameter reflects the strain states in mechanism and the deformation energy ratio can precisely reflects the influence degree of stress states on crack propagation. The results from these analyses on crack propagation are in good agreement with the experimental ones, and from micro-view point are reasonable for sheet metal forming.
机译:使用扩展有限元方法(XFEM)研究了包含不同角度(0°,45°和90°)的单个微裂纹的微观视野模型。基于有关强度和断裂力学参数的实验数据,峰值主应力准则用于计算裂纹扩展。应用应力状态参数来探索各种载荷模式下的裂纹扩展条件。模拟了不同应力状态下的裂纹扩展和断裂特征,讨论了裂纹扩展方向和方式与应力状态参数的关系。结果表明,应力三轴性与裂纹扩展密切相关,其值越高,裂纹越容易生长,而当该值为负值时,裂纹倾向于闭合。软系数可以反映故障模式的情况,如果该值小于1,则裂纹主要是模式I,如果值大于1,则裂纹主要是模式II。 Lode参数反映了机构中的应变状态,变形能比可以准确反映应力状态对裂纹扩展的影响程度。这些裂纹扩展分析的结果与实验结果吻合良好,从微观的角度来看,这种方法对于钣金成形是合理的。

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