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Numerical Studies on Damage Behavior of Recycled Aggregate Concrete Based on a 3D Model

机译:基于3D模型的再生骨料混凝土破坏行为的数值研究

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摘要

This paper develops a 3D base force element method (BFEM) based on the potential energy principle. According to the BFEM, the stiffness matrix and node displacement of any eight-node hexahedral element are derived as a uniform expression. Moreover, this expression is explicitly expressed without a Gaussian integral. A 3D random numerical model of recycled aggregate concrete (RAC) is established. The randomness of aggregate was obtained by using the Monte Carlo random method. The effects of the recycled aggregate substitution and adhered mortar percentage on the elastic modulus and compressive strength are explored under uniaxial compression loading. In addition, the failure pattern is also studied. The obtained data show that the 3D BFEM is an efficient method to explore the failure mechanism of heterogeneous materials. The 3D random RAC model is feasible for characterizing the mesostructure of RAC. Both the substitution of recycled aggregate and the percentage of adhering mortar have a non-negligible influence on the mechanical properties of RAC. As the weak points in the specimen, the old interfacial transition zone (ITZ) and adhered mortar are the major factors that lead to the weakened properties of RAC. The first crack always appears in these weak zones, and then, due to the increase and transfer of stress, approximately two-to-three continuous cracks are formed in the 45°direction of the specimen.
机译:本文基于势能原理开发了一种3D基本力元方法(BFEM)。根据BFEM,可以将任意八节点六面体单元的刚度矩阵和节点位移导出为均匀表达式。而且,该表达被明确地表达而没有高斯积分。建立了再生骨料混凝土(RAC)的3D随机数值模型。聚集体的随机性是使用蒙特卡洛随机方法获得的。在单轴压缩载荷下探讨了再生骨料替代量和粘结砂浆百分比对弹性模量和抗压强度的影响。此外,还研究了故障模式。所得数据表明,3D BFEM是探索异质材料破坏机理的有效方法。 3D随机RAC模型对于表征RAC的介观结构是可行的。再生骨料的替代和粘结砂浆的百分比对RAC的机械性能都具有不可忽略的影响。作为试样的弱点,旧的界面过渡区(ITZ)和粘结的砂浆是导致RAC性能下降的主要因素。第一个裂纹总是出现在这些薄弱区域,然后,由于应力的增加和传递,在试样的45°方向上形成了大约2-3个连续裂纹。

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