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Multidimensional coupling: A variationally consistent approach to fiber-reinforced materials

机译:多维耦合:对纤维增强材料的分分态度

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摘要

A novel mathematical model for fiber-reinforced materials is proposed. It is based on a 1-dimensional beam model for the thin fiber structures, a flexible and general 3-dimensional elasticity model for the matrix and an overlapping domain decomposition approach. From a computational point of view, this is motivated by the fact that matrix and fibers can be easily meshed independently. Our main interest is in fiber-reinforced polymers where the Young modulus is quite different. Thus the modeling error from the overlapping approach is of no significance. The coupling conditions acknowledge both, the forces and the moments of the beam model and transfer them to the background material. A suitable static condensation procedure is applied to remove the beam balance equations. The condensed system then forms our starting point for a numerical approximation in terms of isogeometric analysis. The choice of our discrete basis functions of higher regularity is motivated by the fact, that as a result of the static condensation, we obtain second gradient terms in fiber direction. Eventually, a series of benchmark tests demonstrate the flexibility and robustness of the proposed methodology. As a proof-of-concept, we show that our new model is able to capture bending, torsion and shear dominated situations. (C) 2021 Elsevier B.V. All rights reserved.
机译:提出了一种新的纤维增强材料数学模型。它基于用于薄光纤结构的1维光束模型,矩阵的柔性和一般的三维弹性模型和重叠域分解方法。从计算的角度来看,这是由于矩阵和纤维可以容易地独立地啮合。我们的主要兴趣是在玻璃纤维增​​强聚合物中,幼年模量是完全不同的。因此,来自重叠方法的建模误差是没有意义的。耦合条件确认光束模型的力量和时刻并将其转移到背景材料上。应用合适的静电冷凝过程来移除光束平衡方程。然后,凝聚系统在异常分析方面形成了对数值近似的起点。我们的离散基本函数的选择具有更高规律性的动机,即由于静态缩合,我们在纤维方向上获得了第二梯度术语。最终,一系列基准测试证明了所提出的方法的灵活性和鲁棒性。作为概念验证,我们表明我们的新模型能够捕获弯曲,扭转和剪切主导的情况。 (c)2021 elestvier b.v.保留所有权利。

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