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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Locking-free interface failure modeling by a cohesive discontinuous Galerkin method for matching and nonmatching meshes
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Locking-free interface failure modeling by a cohesive discontinuous Galerkin method for matching and nonmatching meshes

机译:通过粘性不连续的Galerkin方法进行无锁无连续匹配和非匹配网格的无锁界面故障建模

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摘要

In this work, modeling of brittle failure of the interface for a linear elastic material is presented. The idea is to integrate a novel extrinsic cohesive zone model into the incomplete interior penalty Galerkin variant of the discontinuous Galerkin (DG) method. As a result, the initial stiffness in the prefailure regime is omitted without having to remesh the crack path during the crack propagation. The interface model is used in combination with different discretization techniques, including matching and nonmatching meshes. This is possible due to the DG method's weak continuity constraint. Moreover, the locking problem in the bulk is cured by the application of a reduced Gaussian integration scheme on the boundary terms. The performance of the new cohesive discontinuous Galerkin elements with different integration schemes is compared with one of the standard intrinsic cohesive models. Due to the elimination of locking, crack initiation at the interface can be realistically displayed.
机译:在这项工作中,提出了用于线性弹性材料的界面的脆性破坏的建模。该思想是将一个新型外在凝聚区模型整合到不连续的Galerkin(DG)方法的不完全内部惩罚Galerkin变体中。结果,省略了预付制度中的初始刚度,而不必在裂纹传播期间回忆裂缝路径。接口模型与不同的离散化技术组合使用,包括匹配和非匹配网格。由于DG方法的弱连续性约束,这是可能的。此外,批量中的锁定问题通过在边界术语上应用降低的高斯集成方案来治愈。将具有不同集成方案的新型粘性不连续的Galerkin元件的性能与标准内在凝聚模型之一进行比较。由于消除锁定,可以真实地显示接口的裂纹启动。

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