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Effect of surface characteristics of aggregates on the compressive damage of high-strength concrete based on 3D discrete element method

机译:基于3D离散元素法的高强度混凝土压缩损伤的骨料表面特征的影响

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摘要

As the main component of concrete, aggregate has an important influence on the performance of concrete. In this study, the influence of coarse aggregate content and surface characteristics on the compressive mechanical properties and the damage evolution process of high-strength concrete were studied by using a 3D discrete element method (DEM). In order to improve the reliability of simulation results of concrete, a more accurate numerical simulation method was proposed. First, clumped-particle modules from the real aggregate geometry obtained by 3D Scanning were generated and then randomly distributed in the concrete model according to the specified aggregate content. Then the Flat-Joint Model (FJM) which can represent the micro-structure characteristics of concrete more reasonably was used to define the contact mechanical characteristics between different components. Based on this, the compressive strength, number of microcracks and damage evolution process of concrete with different aggregate surface texture factor (STF) and volume ratio were analyzed. The simulation results showed that aggregate surface texture and volume ratio were closely related to the compressive strength of concrete, and both have an exponential correlation with the compressive strength. The STF and volume ratio of aggregate have a significant effect on the proportion of tensile microcracks, and the concrete with large aggregates STF has more uniform stress distribution and wider damage range. (c) 2021 Elsevier Ltd. All rights reserved.
机译:作为混凝土的主要成分,总对混凝土的性能具有重要影响。在该研究中,通过使用3D离散元件(DEM)研究了粗骨料含量和表面特性对压缩力学性能和高强度混凝土损伤进化过程的影响。为了提高混凝土仿真结果的可靠性,提出了一种更准确的数值模拟方法。首先,产生来自通过3D扫描获得的实际聚集几何形状的块粒子模块,然后根据指定的聚合内容随机分布在混凝土模型中。然后,可以更合理地代表混凝土的微结构特性的平平联合模型(FJM)来定义不同组分之间的接触机械特性。基于此,分析了不同骨料表面纹理因子(STF)和体积比的混凝土的压缩强度,微裂纹和损伤进化过程。模拟结果表明,聚集表面纹理和体积比与混凝土的抗压强度密切相关,两者都具有与抗压强度的指数相关性。总骨料的STF和体积比对拉伸微裂纹的比例具有显着影响,并且具有大聚集体STF的混凝土具有更均匀的应力分布和更宽的损伤范围。 (c)2021 elestvier有限公司保留所有权利。

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