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Generalized crack closure analysis for elements with arbitrarily-placed side nodes and consistent nodal forces

机译:侧节点任意放置且节点力一致的单元的广义裂纹闭合分析

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A new approach was developed for the evaluation of energy release rate by the virtual crack closure technique in quadratic and linear elements. The generalized method allows arbitrary placement of the side nodes for quadratic elements and thus includes both standard elements, with mid-side nodes, and singularity elements, with quarter-point nodes, as special cases of one general equation. It also accounts for traction-loaded cracks. The new derivation revealed that the proper nodal forces needed for crack closure calculations should be the newly-defined "nodal edge forces," rather than the global or element forces from standard finite element analysis results. A method is derived for calculating nodal edge forces from global forces. These new forces affect energy release rate calculations for singularity elements and for problems with traction-loaded cracks. Several sample calculations show that the new approach gives improved accuracy.
机译:开发了一种新的方法,用于通过二次和线性元素中的虚拟裂纹闭合技术评估能量释放速率。通用方法允许将二次节点的边节点任意放置,因此作为一个通用方程式的特例,既包括具有中边节点的标准元素,也包括具有四点点节点的奇异元素。它也说明了牵引载荷裂缝。新的推导表明,裂纹闭合计算所需的适当节点力应该是新定义的“节点边缘力”,而不是标准有限元分析结果中的整体力或元素力。推导了一种根据整体力计算节点边缘力的方法。这些新力影响奇异元素和牵引载荷裂纹问题的能量释放率计算。几个样本计算表明,新方法可以提高准确性。

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