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Microscale Simulation of Composites with Various Microstructures by Using Extended Finite Element Method (XFEM)

机译:扩展有限元方法(XFEM)对具有不同微观结构的复合材料进行微观模拟

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In recent years, freedom in design of composite microstructure has been improved because of the development of the manufacturing technology of various cross-sectional carbon fibers. Therefore, numerous candidates of composite microstructure must be considered for microscopic optimization of composite. To this end, this study develops mesh-free microscale simulation tool consisting of two kinds of computational techniques; homogenization method and extended finite element method (XFEM). For the evaluation of an effect of microstructure on the macroscopic mechanical and fracture properties, homogenization method was introduced. Additionally, the composite microstructure (i.e., fiber / matrix interface) is able to be modeled independently of the mesh by the XFEM. The proposed tool makes it possible to conduct comprehensive numerical investigation into various composite microstructures without remeshing.
机译:近年来,由于各种截面碳纤维的制造技术的发展,提高了复合组织的设计自由度。因此,复合材料的微观优化必须考虑复合材料微观结构的众多候选材料。为此,本研究开发了由两种计算技术组成的无网格微尺度仿真工具。均质化方法和扩展有限元方法(XFEM)。为了评估微观结构对宏观力学性能和断裂性能的影响,引入了均质化方法。另外,可以通过XFEM独立于网格对复合材料的微观结构(即纤维/基质界面)进行建模。所提出的工具可以对各种复合材料的微观结构进行全面的数值研究,而无需重新设计。

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