材料科学
纤维混凝土
结构工程
极限抗拉强度
有限元法
复合材料
断裂(地质)
抗压强度
剪切(地质)
纤维
压力(语言学)
工程类
语言学
哲学
作者
Youyou Zhang,Haohui Xin,José A.F.O. Correia
标识
DOI:10.1016/j.engfailanal.2020.105076
摘要
The development of numerical simulation for Ultra-high-performance concrete (UHPC) and Ultra-high-performance fiber-reinforced concretes (UHPFRC) is fundamental for the design and construction of related structures. The simplified engineering stress-strain relationship and the input values are necessary in the finite element modeling. Four-linear curves and modified Kent–Park model were proposed to describe the engineering tensile and compressive stress-strain relationship, respectively. An attempt was made to simulate the fracture of UHPC and UHPFRC using concrete damaged plasticity model and element deletion strategies. The predicted tensile and compressive behaviors of UHPC and UHPFRC were successfully validated by the test results in the literature. For a better understanding of the mechanical behavior of UHPC and UHPFRC exposed to biaxial loadings, mixed-mode crack propagation simulation on the double-notched specimens exposed to combined shear-tensile and shear-compressive forces was discussed.
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