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A discrete element model of concrete for cyclic loading

机译:循环荷载混凝土的离散元模型

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摘要

This paper takes advantage of the discrete element method to develop a model of concrete for cyclic simulations. For this purpose, a micro-mechanical damage model that also allows stress-reversals is formulated for inter-particle bonds. Moreover, a multi-phase implementation of the discrete element method is developed and used for two distinct reasons. First, to characterize aggregate and mortar particles separately. Second, to allow the effect of the interfacial transition zone to be taken into account. A strict validation approach is taken in this work, whereby the developed model is only calibrated against monotonic stress-strain curves and then evaluated for its performance under cyclic loading. Simulation results are constantly compared against experimental values. These comparisons illustrate the capability of the model to predict cyclic properties of concrete. Progression of damage is discussed in terms of numerical variables and also through the visualization of force chains and crack propagation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文利用离散元方法开发了用于循环仿真的混凝土模型。为此,针对微粒间键合建立了一个微机械损伤模型,该模型也允许逆转应力。此外,出于两个不同的原因,开发并使用了离散元素方法的多阶段实现。首先,分别表征骨料和砂浆颗粒。第二,考虑到界面过渡区的影响。在这项工作中采用了严格的验证方法,即仅针对单调应力-应变曲线对开发的模型进行校准,然后评估其在循环载荷下的性能。不断将仿真结果与实验值进行比较。这些比较说明了该模型预测混凝土循环特性的能力。通过数值变量以及通过力链和裂纹扩展的可视化来讨论损伤的进展。 (C)2017 Elsevier Ltd.保留所有权利。

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