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Numerical Simulation of Dynamic Mechanical Properties of Concrete under Uniaxial Compression

机译:混凝土单轴压缩动力力学特性的数值模拟

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摘要

Based on the base force element method (BFEM), the dynamic mechanical behavior of concrete under uniaxial compression loading at different strain rates is investigated. The concrete can be considered as a three-phase composite material composed of aggregate, cement mortar, and interfacial transition zone (ITZ) on the meso-level. A two-dimensional random aggregate model is generated by the Monte Carlo method. A multi-linear two-dimensional damage model is applied to describe the damage properties of each phase in the concrete. The strain-softening behavior, strain-rate effect, and failure patterns of the concrete are studied. The numerical results find that the peaks of compressive stress and compressive strain of concrete show the rate-sensitivity in various degrees under different strain rates. The calculated results of the dynamic enhancement factors are in a good agreement with the formula given by the Comité Euro-International du Béton (CEB) and other experimental results. The failure diagram of the specimen clearly describes the compressive failure process of the concrete specimen. This failure’s characteristics are similar to the experimental results.
机译:基于基本力元法(BFEM),研究了混凝土在不同应变率下单轴压缩载荷下的动态力学行为。可以将混凝土视为由中层的骨料,水泥砂浆和界面过渡区(ITZ)组成的三相复合材料。通过蒙特卡洛方法生成二维随机聚集模型。应用多线性二维损伤模型描述混凝土各相的损伤特性。研究了混凝土的应变软化行为,应变速率效应和破坏模式。数值结果表明,在不同应变速率下,混凝土的压应力和压应变峰值表现出不同程度的速率敏感性。动态增强因子的计算结果与欧洲国际商会(CEB)给出的公式以及其他实验结果非常吻合。试样的破坏图清楚地描述了混凝土试样的压缩破坏过程。此故障的特征与实验结果相似。

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