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Mixed-dimensional modeling of structures with thin coatings using rotation-free elements

机译:使用旋转元件的薄涂层结构的混合尺寸建模

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This paper describes a new mixed-dimensional finite element model for structures that consist of thick substrates with thin coatings. For such structures, the difference in length scale between the substrate and the coating often makes meshing problematic, leading to severe solution inefficiencies for conventional finite element techniques. In the new approach presented here, rotation-free beam elements are used to model the thin coating, and solid elements to model the substrate. The new model employs a unique transition element to couple the rotation-free beam elements to biquadratic quadrilateral elements without using additional constraint equations. The 10-node transition element is created by modifying the shape functions of a biquadratic quadrilateral element to ensure that the displacement field on the coated surface is consistent with the displacement field of an overlaid rotation-free beam element. Convergence studies of thin-coated structures with both straight and curved geometries show excellent accuracy while using orders of magnitude fewer degrees of freedom than a conventional finite element model using only solid elements. Hence the new model enables efficient analysis of complicated coated structures. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文描述了一种新的混合尺寸有限元模型,其结构包括具有薄涂层的厚基板。对于这种结构,基板和涂层之间的长度级别差异通常使啮合成问题,导致常规有限元技术的严重溶液低效率。在这里呈现的新方法中,旋转的梁元件用于模拟薄涂层,以及为模拟基板的固体元件。新模型采用唯一的过渡元件,将旋转的波束元件耦合到比亚坦四边形元件而不使用额外的约束方程。通过修改双向四边形元件的形状函数来创建10节点转换元件,以确保涂覆表面上的位移场与无重叠旋转梁元件的位移场一致。具有直线和弯曲几何形状的薄涂层结构的收敛研究表明了优异的精度,同时使用较小的自由度比传统的有限元模型使用较小的自由度。因此,新模型可以高效地分析复杂涂层结构。 (c)2020 elestvier有限公司保留所有权利。

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