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Numerical Simulation of Recycled Concrete Using Convex Aggregate Model and Base Force Element Method

机译:使用凸骨料模型和基力元件法的再生混凝土数值模拟

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摘要

By using the Base Force Element Method (BFEM) on potential energy principle, a new numerical concrete model, random convex aggregate model, is presented in this paper to simulate the experiment under uniaxial compression for recycled aggregate concrete (RAC) which can also be referred to as recycled concrete. This model is considered as a heterogeneous composite which is composed of five mediums, including natural coarse aggregate, old mortar, new mortar, new interfacial transition zone (ITZ), and old ITZ. In order to simulate the damage processes of RAC, a curve damage model was adopted as the damage constitutive model and the strength theory of maximum tensile strain was used as the failure criterion in the BFEM on mesomechanics. The numerical results obtained in this paper which contained the uniaxial compressive strengths, size effects on strength, and damage processes of RAC are in agreement with experimental observations. The research works show that the random convex aggregate model and the BFEM with the curve damage model can be used for simulating the relationship between microstructure and mechanical properties of RAC.
机译:通过使用基力元件方法(BFEM)潜在的能量原理,本文提出了一种新的数值混凝土模型,随机凸形骨料模型,以模拟单轴压缩下的实验,用于再生的骨料混凝土(RAC),其也可以参考作为再生混凝土。该模型被认为是由五种培养基组成的异质复合材料,包括天然粗骨料,老砂浆,新砂浆,新的界面过渡区(ITZ)和旧ITZ。为了模拟RAC的损伤过程,采用曲线损伤模型作为损伤本构模型,最大拉伸菌株的强度理论用作媒体机械的BFEM中的故障标准。本文获得的数值结果,其中包含单轴抗压强度,对力量的尺寸效应以及RAC的损伤过程与实验观察一致。该研究工作表明,随机凸骨料模型和具有曲线损伤模型的BFEM可用于模拟RAC微观结构与机械性能之间的关系。

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