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Boundary-element parallel-computing algorithm for the microstructural analysis of general composites

机译:通用复合材料微观结构分析的边界元并行计算算法

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摘要

A standard continuum-mechanics-based 3D boundary-element (BE) algorithm has been devised to the microstructural modeling of complex heterogeneous solids such as general composites. In the particular applications of this paper, the mechanical properties of carbon-nanotube-reinforced composites are estimated from three-dimensional representative volume elements (RVEs). The shell-like thin-walled carbon nanotubes (CNTs) are also simulated with 3D BE models, and a generic subregion-by-subregion (SBS) algorithm makes the microstructural description of the CNT-polymer systems possible. In fact, based on this algorithm, a general scalable BE parallel code is proposed. Square and hexagonal fiber-packing patterns are considered to simulate the 3D composite microstructures.
机译:一种标准的基于连续力学的3D边界元(BE)算法已被设计用于复杂异质固体(如一般复合材料)的微观结构建模。在本文的特殊应用中,碳纳米管增强复合材料的力学性能是根据三维代表性体积元素(RVE)估算的。壳状的薄壁碳纳米管(CNT)也使用3D BE模型进行了模拟,通用的逐区域(SBS)算法使对CNT-聚合物系统的微观结构描述成为可能。实际上,基于该算法,提出了通用的可扩展BE并行代码。考虑正方形和六角形纤维堆积图案来模拟3D复合材料的微观结构。

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