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An augmented finite element method for modeling arbitrary discontinuities in composite materials

机译:用于复合材料中任意不连续性建模的增强有限元方法

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摘要

An augmented finite element method ("A-FEM") is presented that is a variant of the method of Hansbo and Hansbo (Comput Methods Appl Mech Eng, 193: 3523-3540, 2004), which can fully account for arbitrary discontinuities that traverse the interior of elements. Like the method of Hansbo and Hansbo, the A-FEM preserves elemental locality, because element augmentation is implemented within single elements and involves nodal information from the modified element only. The A-FEM offers the additional convenience that the augmentation is implemented via separable mathematical elements that employ standard finite element nodal interpolation only. Thus, the formulation is fully compatible with standard commercial finite element packages and can be incorporated as a user element without access to the source code. Because possible discontinuities include both elastic heterogeneity and cracks, the A-FEM is ideally suited to modeling damage evolution in structural or biological materials with complex morphology. Elements of a multi-scale approach to analyzing damage mechanisms in laminated or woven textile composites are used to validate the A-FEM and illustrate its possible uses. Key capabilities of the formulation include the use of meshes that need not conform to the surfaces of heterogeneities; the ability to apply the augmented element recursively, enabling modeling of multiple discontinuities arising on different, possibly intersecting surfaces within an element; and the ease with which cohesive zone models of nonlinear fracture can be incorporated.
机译:提出了一种增强有限元方法(“ A-FEM”),它是Hansbo和Hansbo方法的一种变体(Comput Methods Appl Mech Eng,193:3523-3540,2004),该方法可以充分考虑遍历的任意不连续性内部的元素。像Hansbo和Hansbo的方法一样,A-FEM保留元素局部性,因为元素增强是在单个元素内实现的,并且仅涉及来自修改后元素的节点信息。 A-FEM提供了额外的便利,即通过仅采用标准有限元节点插值的可分离数学元素来实现增强。因此,该公式与标准的商业有限元软件包完全兼容,并且可以作为用户元素并入,而无需访问源代码。因为可能的不连续性包括弹性异质性和裂缝,所以A-FEM非常适合于模拟具有复杂形态的结构或生物材料中的损伤演化。分析层压或机织纺织品复合材料中损坏机理的多尺度方法的元素用于验证A-FEM并说明其可能的用途。配方的关键功能包括使用不必符合异质性表面的网格;递归应用增强元素的能力,能够对在元素内不同且可能相交的表面上出现的多个不连续进行建模;并且可以轻松地合并非线性断裂的内聚区模型。

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