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Numerical prediction of slant fracture with continuum damage mechanics

机译:连续断裂力学的斜断面数值预测

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摘要

Ductile specimens always exhibit an inclined fracture surface with an angle relative to the loading axis. This paper reports a numerical study on the cup-cone fracture mode in round bar tensile tests and the slant fracture in plane-strain specimens based on continuum damage mechanics. A combined implicit-explicit numerical scheme is first developed within ABAQUS through user defined material subroutines, in which the implicit solver: Standard, and the explicit solver: Explicit, are sequentially used to predict one single damage/fracture process. It is demonstrated that this numerical approach is able to significantly reduce computational cost for the simulation of fracture tests under quasi-static or low-rate loading. Comparison with various tensile tests on 2024-T351 aluminum alloy is made showing good correlations in terms of the load-displacement response and the fracture patterns. However, some differences exist in the prediction of the critical displacement to fracture.
机译:延性试样总是呈现出相对于加载轴成一定角度的倾斜断裂面。本文基于连续损伤机理,对圆棒拉伸试验中的杯锥断裂模式和平面应变试样的倾斜断裂进行了数值研究。首先通过用户定义的材料子例程在ABAQUS中开发了组合的隐式-显式数值方案,其中隐式求解器:Standard和显式求解器:Explicit依次用于预测单个损坏/断裂过程。证明了这种数值方法能够显着降低准静态或低速载荷下的断裂试验模拟的计算成本。与2024-T351铝合金的各种拉伸试验进行了比较,显示了在载荷-位移响应和断裂模式方面的良好相关性。但是,在断裂临界位移的预测中存在一些差异。

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