Experimental Mechanical Properties and Numerical Simulation of C80 Concrete with Different Contents of Stone Powder

材料科学 计算机模拟 抗压强度 碎石 极限抗拉强度 骨料(复合) 一致性(知识库) 灰浆 复合材料 色散(光学) 机械 数学 几何学 光学 物理
作者
Hongmei Wu,Kai Liu,Fang Yang,Bo Shen,Kejian Ma,Jiyang Zhang,Bo Liu
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:15 (9): 3282-3282 被引量:2
标识
DOI:10.3390/ma15093282
摘要

In this paper, we show the influence of stone powder content on the mechanical properties of concrete by experiments and numerical simulations. In numerical simulation, this paper proposed a method whereby the stone powder in the numerical simulation of concrete is considered by the mechanical performances of mortar with the stone powder. The results of numerical models established based on inclusion theory and random aggregate distribution were basically consistent with the experiment, which indicated that the simulation method of concrete under different stone powder was feasible. In the range of stone powder content from 0% to 15%, the model based on inclusion theory is very close to the experimental results, and the model based on 2D random aggregate distribution is closer to the experimental value once the stone powder content is 7%. The research showed that with increased stone powder, cubic compressive strength had greater dispersion between the simulation and the experiment; axial compressive and split tensile strength reached the best levels at 5%. The best stone powder content was 5% for C80 high-strength concrete by comprehensively considering concrete's consistency and its mechanical properties.
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