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A concurrent multiscale approach for modeling recycled aggregate concrete

机译:一种模拟再生骨料混凝土的同时多尺度方法

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The use of recycled concrete aggregates in new concrete is an alternative that can provide economical and environmental benefits. However, the influence of the inert particles on the mechanical behavior of concrete needs to be better understood. To provide a comprehensive simulator to predict the failure mechanism of this material taking into account its heterogeneity in mesoscale, a mesh fragmentation technique composed of interface solid finite elements equipped with a tensile damage model is employed. To minimize computational costs, a concurrent multiscale strategy based on the use of coupling finite elements to connect the macro and mesoscale regions is adopted. In mesoscale, the different phases of the recycled aggregate concrete (RAC) are explicitly represented, consisting of: (i) new mortar matrix; (ii) recycled aggregate composed of old matrix and crushed rock (natural aggregate); and (iii) interfacial transition zones in between all of them. For the regions where cracks are not expected, homogenized elastic parameters are assumed for the RAC. Three-point bending beams experimentally tested by Casuccio et al. [4] are numerically analyzed for concrete with compressive strength targets of 18, 37 and 48 MPa. These concrete beams were produced with coarse aggregates derived from natural crushed stone and another two coming from recycled concrete with high and normal strengths. The numerical results obtained show that the concurrent multiscale model is able to represent the tensile failure mechanism of the RAC, taking into account explicitly the effects of the recycled components on crack patterns and structural predictions. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在新混凝土中使用再生混凝土聚集体是一种可以提供经济和环境效益的替代方案。然而,需要更好地理解惰性颗粒对混凝土机械行为的影响。为了提供全面的模拟器,以预测这种材料的失效机制考虑了其在Messcle中的异质性,采用了由配备有拉伸损伤模型的接口固体有限元组成的网状碎片技术。为了最大限度地减少计算成本,采用基于使用耦合有限元来连接宏观和Mesoscale区域的并发多尺度策略。在Mesoscale中,循环骨料混凝土(RAC)的不同阶段明确表示,包括:(i)新的迫击炮基质; (ii)由旧矩阵和碎石(天然骨料)组成的再生骨料; (iii)所有这些之间的界面过渡区。对于未预期裂缝的区域,假设RAC的均质弹性参数。由Casucio等人实验测试的三点弯曲梁。用于用18,37和48MPa的压缩强度靶标进行数值分析混凝土。这些混凝土梁由粗碎石衍生自天然碎石的粗聚集体,另外两个具有高和正常优点的再循环混凝土。获得的数值结果表明,并发多尺度模型能够代表RAC的拉伸失效机制,考虑到再循环组分对裂纹模式和结构预测的影响。 (c)2020 elestvier有限公司保留所有权利。

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