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A rigid-inclusion model for fiber-reinforced composites by fast multipole hybrid boundary node method

机译:纤维增强复合材料刚性夹杂物的快速多极混合边界节点法

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摘要

A hybrid boundary node method for mechanical analysis of fiber-reinforced composites based on a rigid-inclusion model is proposed. Numerical simulation for fiber-reinforced composites usually demands extremely large and expensive computer resources. In a fiber-reinforced composite, the fibers have much higher values of stiffness compared with the matrix. In this case, the fibers can be considered as rigid ones and it can significantly reduce the computational scale for the analysis. In fact, the matrix is the only elastic domain which needs to be modeled in the proposed modeling, while the fibers are treated as rigid inclusions with only six rigid-body displacements. The fast multipole method is coupled with the rigid model to further reduce the computational time for large scale computation. Numerical examples demonstrate the efficiency of the proposed approach.
机译:提出了一种基于刚体包裹体模型的纤维增强复合材料力学分析的混合边界节点方法。纤维增强复合材料的数值模拟通常需要极大且昂贵的计算机资源。在纤维增强的复合材料中,与基质相比,纤维的刚度值高得多。在这种情况下,可以将纤维视为刚性纤维,并且可以大大减少分析的计算规模。实际上,在提出的模型中,矩阵是唯一需要建模的弹性域,而纤维仅被视为具有六个刚体位移的刚体夹杂物。快速多极点方法与刚性模型相结合,可以进一步减少大规模计算的计算时间。数值算例表明了该方法的有效性。

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