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A user programmed cohesive zone finite element for ANSYS Mechanical

机译:用于ANSYS机械的用户编程的凝聚区有限元

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A cohesive finite element implemented as a user programmable feature (UPF) in ANSYS Mechanical is presented. Non-standard post-processing capabilities compared to current available cohesive elements in commercial finite element software packages have been defined and implemented. A description of the element formulation and the post processing options are provided. Simulation studies are presented which serves to verify the implementation and compare the performance to ANSYS INTER205 cohesive element. The results show that the implemented element performs better in terms of ability to converge to a solution and requires fewer iterations to converge in the incremental Newton-Raphson solution procedure used. Additionally, a sensitivity study about the typical remedy to obtain convergent solutions having coarse meshes by lowering the onset traction is conducted. The study brings new insight to the effect of lowering the onset traction and recommendations of practical usage in case of coarse meshes are outlined. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了作为ANSYS机械中的用户可编程特征(UPF)实现的凝聚力有限元。非标准后处理能力与商业有限元软件包中的当前可用的粘性元素相比,并实现了并实施。提供了元素配方的描述和后处理选项。提出了仿真研究,用于验证实现并将性能与ANSYS INT205粘性元素进行比较。结果表明,在汇聚到解决方案的能力方面,所实现的元件更好地执行,并且需要较少的迭代来收敛于所用的增量牛顿-Raphson解决方案过程。另外,对典型补救的敏感性研究进行了通过降低开始牵引力通过降低发病牵引而获得具有粗网孔的收敛溶液。该研究提出了新的洞察,对降低开始牵引的影响和在粗糙网格中概述的实际使用建议。 (c)2017 Elsevier Ltd.保留所有权利。

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