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An adaptive finite element mesh generation algorithm for microstructure of composite materials

机译:复合材料微观结构的自适应有限元网生成算法

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According to the feature of particulate composite microstructure, an adaptive finite element mesh generation algorithm was developed for the multi-particle packing structure. Based on the force equilibrium method, mesh was compared to a truss structure with inner force; the distances between nodes to particles, particles to particles and curvature were adopted to build the mesh size function. The summation of force on nodes was calculated by the mesh size function and the force-length function. Then, the location of nodes was updated by iteration until the structure was equilibrium, and the adaptive mesh was formed. At last, adaptive meshes of two microstructures with different type particles were given. The result shows the algorithm captures geometrical and mechanical feature of the structure well, is simple and efficient to perform.
机译:根据颗粒式复合微结构的特征,为多颗粒填充结构开发了一种自适应有限元网格生成算法。 基于力平衡方法,将网格与内部力的桁架结构进行比较; 采用节点与颗粒的距离,颗粒和曲率颗粒之间的距离来构建网格尺寸函数。 节点上的力求和由网格尺寸函数和力长度函数计算。 然后,通过迭代更新节点的位置,直到结构平衡,并且形成自适应网格。 最后,给出了两个微结构的自适应网,给出了不同型颗粒的微观结构。 结果表明该算法井井用力效果拍摄了结构的几何和机械特征,简单且有效地进行。

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