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首页> 外文期刊>Engineering Fracture Mechanics >Strain energy release rate calculation for a moving delamination front of arbitrary shape based on the virtual crack closure technique. Part I: Formulation and validation
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Strain energy release rate calculation for a moving delamination front of arbitrary shape based on the virtual crack closure technique. Part I: Formulation and validation

机译:基于虚拟裂纹闭合技术的任意形状的运动分层前沿的应变能释放率计算。第一部分:配方和验证

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摘要

This paper proposes a simple, efficient algorithm to trace a moving delamination front with an arbitrary and changing shape so that delamination growth can be analyzed by using stationary meshes. Based on the algorithm, a delamination front can be defined by two vectors that pass through any point on the front. The normal vector and the tangent vector for the local coordinate system can then be obtained based on the two delamination front vectors. An important feature of this approach is that it does not require the use of meshes that are orthogonal to the delaminations front. Therefore, the approach avoids adaptive re-meshing techniques that may create a large computational burden in delamination growth analysis. An interface element that can trace the instantaneous delamination front, determine the local coordinate system, approximate strain energy release rate components and apply fracture mechanics criteria has been developed and implemented into ABAQUS~R with its user-defined element (UEL) feature. In this Part I of a two-part paper, the approach and its implementation are described and validated by comparison to results from existing cases having analytical solutions or other established FEA predictions.
机译:本文提出了一种简单有效的算法来跟踪具有任意变化形状的移动分层前沿,以便可以通过使用固定网格来分析分层增长。基于该算法,可以通过穿过该前沿上任何点的两个矢量来定义分层前沿。然后可以基于两个分层前向矢量获得局部坐标系的法线矢量和切线矢量。这种方法的一个重要特征是它不需要使用与分层前面正交的网格。因此,该方法避免了可能在分层增长分析中产生较大计算负担的自适应重新网格化技术。可以跟踪瞬时分层前沿,确定局部坐标系,近似应变能释放速率分量并应用断裂力学准则的界面元素已经开发出来,并通过其用户定义元素(UEL)功能实现到ABAQUS〜R中。在由两部分组成的论文的第一部分中,通过与具有分析解决方案或其他已建立的FEA预测的现有案例的结果进行比较,对方法及其实现进行了描述和验证。

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