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Virtual testing of composites: Imposing periodic boundary conditions on general finite element meshes

机译:复合材料的虚拟测试:在常规有限元网格上施加周期性边界条件

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Predicting the effective thermo-mechanical response of heterogeneous materials such as composites, using virtual testing techniques, requires imposing periodic boundary conditions on geometric domains. However, classic methods of imposing periodic boundary conditions require identical finite element mesh constructions on corresponding regions of geometric domains. This type of mesh construction is infeasible for heterogeneous materials with complex architecture such as textile composites where arbitrary mesh constructions are commonplace. This paper discusses interpolation technique for imposing periodic boundary conditions to arbitrary finite element mesh constructions (i.e. identical or nonidentical meshes on corresponding regions of geometric domains), for predicting the effective properties of complex heterogeneous materials, using a through-thickness angle interlock textile composite as a test case. Furthermore, it espouses the implementation of the proposed periodic boundary condition enforcement technique in commercial finite element solvers. Benchmark virtual tests on identical and nonidentical meshes demonstrate the high fidelity of the proposed periodic boundary condition enforcement technique, in comparison to the conventional technique of imposing periodic boundary condition and experimental data. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用虚拟测试技术预测异质材料(例如复合材料)的有效热机械响应,需要在几何域上施加周期性边界条件。但是,强加周期性边界条件的经典方法需要在几何域的相应区域上使用相同的有限元网格构造。这种类型的网孔结构对于具有复杂结构的异质材料(例如纺织复合材料)是不可行的,在纺织复合材料中,任意网孔结构都很常见。本文讨论了一种插值技术,该方法通过将整个厚度的角度互锁织物复合材料用作任意有限元网格结构(即,在几何域的相应区域上的相同或不同网格)来施加周期性边界条件,从而预测复杂非均质材料的有效特性。一个测试用例。此外,它支持在商业有限元求解器中实施所提出的周期性边界条件实施技术。与施加周期性边界条件和实验数据的常规技术相比,在相同和不同网格上进行的基准虚拟测试证明了所提出的周期性边界条件实施技术的高保真度。 (C)2016 Elsevier Ltd.保留所有权利。

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