非均质SFRCC的拉伸损伤破坏数值分析

NUMERICAL ANALYSIS OF TENSILE FAILURE OF HETEROGENEOUS SFRCC

  • 摘要: 钢纤维增强水泥基复合材料(SFRCC)中材料的非均质性及钢纤维空间分布会使SFRCC的力学性能产生较大差异。该文基于参数化语言和Weibull分布密度函数,建立由钢纤维、水泥砂浆基体及界面过渡区构成的非均质SFRCC数值模型,对不同均质度和钢纤维平均方向效应系数下SFRCC试件单轴拉伸破坏过程进行模拟。结果表明:增大SFRCC的均质度显著提升其单轴拉伸强度,并且当钢纤维平均方向效应系数增大时,二者共同发挥叠加增强效果;均质度的提高使SFRCC强度增长,但同时脆性性能提升,韧性性能降低,钢纤维平均方向效应系数的增大会减弱均质度提高对SFRCC的不利影响。研究成果进一步揭示了在均质度与平均方向效应系数二者共同作用下SFRCC的拉伸损伤破坏机理。

     

    Abstract: The material heterogeneity and the spatial distribution of steel fibers in Steel Fiber-Reinforced Cementitious Composites (SFRCC) can significantly impact the mechanical properties of SFRCC. Based on parameterized language and the Weibull distribution density function, this study established a heterogeneous SFRCC numerical model composed of steel fibers, of cement mortar matrix, and of interface transition zones, and simulated the uniaxial tensile failure process of SFRCC specimens under different degrees of heterogeneity and the average orientation coefficients of steel fibers. The results show that: the incremental homogeneity markedly enhances the uniaxial tensile strength of SFRCC, and exerts a superimposed reinforcement effect with one growth average orientation coefficient. The incremental homogeneity enhances the strength of SFRCC, improves brittleness, and reduces toughness. The growth average orientation coefficient will weaken the adverse effects of the incremental homogeneity on SFRCC. The research results further reveal the tensile damage failure mechanism of SFRCC under the combined influence of the homogeneity and average orientation coefficient.

     

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