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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Modelling interfacial cracking with non-matching cohesive interface elements
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Modelling interfacial cracking with non-matching cohesive interface elements

机译:使用不匹配的粘性界面元素对界面裂纹进行建模

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摘要

Interfacial cracking occurs in many engineering problems such as delamination in composite laminates, matrix/interface debonding in fibre reinforced composites etc. Computational modelling of these interfacial cracks usually employs compatible or matching cohesive interface elements. In this paper, incompatible or non-matching cohesive interface elements are proposed for interfacial fracture mechanics problems. They allow non-matching finite element discretisations of the opposite crack faces thus lifting the constraint on the compatible discretisation of the domains sharing the interface. The formulation is based on a discontinuous Galerkin method and works with both initially elastic and rigid cohesive laws. The proposed formulation has the following advantages compared to classical interface elements: (i) non-matching discretisations of the domains and (ii) no high dummy stiffness. Two and three dimensional quasi-static fracture simulations are conducted to demonstrate the method. Our method not only simplifies the meshing process but also it requires less computational demands, compared with standard interface elements, for problems that involve materials/solids having a large mismatch in stiffnesses.
机译:界面裂纹发生在许多工程问题中,例如复合材料层压板中的分层,纤维增强复合材料中的基体/界面剥离等。这些界面裂纹的计算模型通常采用兼容或匹配的内聚界面元素。在本文中,针对界面断裂力学问题提出了不兼容或不匹配的内聚界面元素。它们允许相对裂纹面的非匹配有限元离散化,从而解除了对共享界面的畴的兼容离散化的限制。该公式基于不连续的Galerkin方法,并在初始时具有弹性和刚性内聚定律。与经典的界面元素相比,提出的公式具有以下优点:(i)域的不匹配离散化和(ii)没有较高的虚拟刚度。进行了二维和三维准静态断裂模拟以证明该方法。与标准界面元素相比,我们的方法不仅简化了网格划分过程,而且还需要较少的计算需求,以解决涉及刚度不匹配的材料/实体的问题。

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