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基于细观有限元PVA-ECC材料基本力学性能研究

Basic Mechanical Properties of Finite Element PVA-ECC Materials

  • 摘要: 工程水泥基复合材料被认为是一种由有机纤维和砂浆组成的两相复合材料,利用Python编程实现了二维线状纤维在基体中的随机投放与生成算法,结合ABAQUS有限元软件,建立了PVA-ECC材料的细观有限元模型,并考虑了纤维与基体之间粘结滑移,模拟了ECC试件在拉、压受力状态下的力学性能,通过与试验结果进行比较验证,分析了PVA-ECC材料的性能及内部损伤,从而探明了工程水泥基复合材料在拉、压状态下的受力性能以及破坏的全过程,为纤维混凝土的细观有限元模型研究提供借鉴。

     

    Abstract: Engineered cement matrix composite is considered a two-phase composite composed of organic fibers and mortar. The random release and generation algorithm of 2 D linear fibers in the matrix is realized using Python programming, and then a thin view finite element model of PVA-ECC materials is developed. We consider the bond slip between the fiber and the matrix to simulate the mechanical properties of the ECC specimens in the pull and compression state. The results of the numerical analysis are compared with the test results. The properties and internal damage of PVA-ECC material were analyzed, and the stress properties and damage process of the pull and pressure state were studied. This paper provides reference for the finite element model of fiber concrete.

     

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