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Automatic statistical volume element modeling based on the unified topology model

机译:基于统一拓扑模型的自动统计卷元素建模

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Needs for new particle based heterogeneous materials as led to the development of many Statistical Volume Element (SVE) modeling schemes tailored to specific shapes of particles or meshing procedures. To generalize the numerical analysis of particle filled SVEs, a modeling methodology based on the Unified Topology Model (UTM) is proposed. Using the concept of Boundary Representation (BRep) and a modified Random Sequential Adsorption (RSA) algorithm, the geometry of a Statistical Volume Element (SVE) can be generated automatically with any shape of particles. Using an integration of Computer-Aided Design (CAD) and mesh tools, a mesh size map is constructed with the objective of minimizing the number of mesh elements while preserving quality of the discretization. The SVE is meshed using proven CAD model meshing algorithms for a robust and reliable result. Simulation and post processing are carried out automatically, without any user interaction. To illustrate the potential of this new method, a short glass fiber / epoxy matrix composite is modeled with spherical and elongated cylindrical particles. (C) 2019 Published by Elsevier Ltd.
机译:对于新的粒子的异质材料需要导致发展到许多统计体积元件(SVE)建模方案的发展,该方案对粒子或啮合程序的特定形状量身定制。为了概括粒子填充SVER的数值分析,提出了一种基于统一拓扑模型(UTM)的建模方法。使用边界表示的概念(BREP)和修改的随机顺序吸附(RSA)算法,可以使用任何形状自动生成统计容量元素(SVE)的几何形状。使用计算机辅助设计(CAD)和网格工具的集成,构造网格尺寸图的目的是最小化网格元素的数量,同时保持离散化的质量。使用经过验证的CAD模型网格化算法对SVE进行网格,以实现稳健且可靠的结果。模拟和后处理自动执行,无需任何用户交互。为了说明这种新方法的潜力,短玻璃纤维/环氧基质复合材料用球形和细长的圆柱形颗粒进行建模。 (c)2019年由elestvier有限公司出版

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