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Node-to-segment and node-to-surface interface finite elements for fracture mechanics

机译:断裂力学的节点到段和节点到表面的界面有限元

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The topologies of existing interface elements used to discretize cohesive cracks are such that they can be used to compute the relative displacements (displacement discontinuities) of two opposing segments (in 2D) or of two opposing facets (in 3D) belonging to the opposite crack faces and enforce the cohesive traction-separation relation. In the present work we propose a novel type of interface element for fracture mechanics sharing some analogies with the node-to-segment (in 2D) and with the node-to-surface (in 3D) contact elements. The displacement gap of a node belonging to the finite element discretization of one crack face with respect to its projected point on the opposite face is used to determine the cohesive tractions, the residual vector and its consistent linearization for an implicit solution scheme. The following advantages with respect to classical interface finite elements are demonstrated: (i) non-matching finite element discretizations of the opposite crack faces is possible; (ii) easy modeling of cohesive cracks with non-propagating crack tips; (iii) the internal rotational equilibrium of the interface element is assured. Detailed examples are provided to show the usefulness of the proposed approach in nonlinear fracture mechanics problems. (C) 2015 Elsevier B.V. All rights reserved.
机译:现有的用于离散化粘性裂纹的界面元素的拓扑结构使得它们可以用于计算属于相对裂纹面的两个相对段(2D)或两个相对面(3D)的相对位移(位移不连续性)并加强内聚的牵引分离关系。在当前的工作中,我们提出了一种新型的断裂力学接口元件,与节点到段(在2D中)和节点到表面(在3D中)接触元件共享一些类比。属于一个裂纹面的有限元离散化的节点相对于其在相反面上的投影点的位移间隙用于确定内含解方案的内聚力,残余矢量及其一致的线性化。相对于经典界面有限元,具有以下优点:(i)相对裂纹面的非匹配有限元离散化是可能的; (ii)使用非传播性裂纹尖端轻松建模粘性裂纹; (iii)确保界面元件的内部旋转平衡。提供了详细的示例,以显示所提出的方法在非线性断裂力学问题中的有用性。 (C)2015 Elsevier B.V.保留所有权利。

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