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Computational chemo-thermo-mechanical coupling phase-field model for complex fracture induced by early-age shrinkage and hydration heat in cement-based materials

机译:基于水泥基材料的早期收缩和水化热诱导复合骨折的计算化疗 - 热机械耦合相位模型

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In this paper, we present a new multi-physics computational framework that enables us to capture and investigate complex fracture behavior in cement-based materials at early-age. The present model consists of coupling the most important chemothermo-mechanical processes to describe temperature evolution, variation of hydration degree, and mechanical behavior. The changes of material properties are expressed as a function of the hydration degree, to capture the age effects. Fracture analysis of these processes is then accommodated by a versatile phase field model in the framework of smeared crack models, addressing the influence of cracks on hydration and thermal transfer. We additionally describe a stable and robust numerical algorithm, which aims to solve coupled problems by using a staggered scheme. The developed approach is applied to study the fracture phenomena for both homogeneous and heterogeneous concrete structures. Especially, in the second case, all microstructural heterogeneities of sand and cement matrix are explicitly accounted. Nucleation, initiation, and propagation of complex crack network are simulated in an efficient way demonstrating the potential of the proposed approach to assess the early-age defects in concrete structures and materials. (C) 2019 Elsevier B.Y. All rights reserved.
机译:在本文中,我们提出了一种新的多物理计算框架,使我们能够在早期捕获和研究基于水泥基材料的复杂骨折行为。本模型包括耦合最重要的化学热机械过程来描述温度演化,水合度变化和机械行为。材料特性的变化表达为水合度的函数,以捕获年龄效应。然后通过涂抹裂纹模型框架中的多功能相场模型来容纳这些方法的断裂分析,解决裂缝对水化和热转印的影响。我们还描述了一种稳定且稳健的数值算法,其目的是通过使用交错方案来解决耦合问题。开发方法应用于研究均匀和异质混凝土结构的裂缝现象。特别是,在第二种情况下,明确占沙子和水泥基质的所有微观结构异质性。复杂裂缝网络的成核,开始和传播以有效的方式模拟,证明了评估混凝土结构和材料中早期缺陷的潜力。 (c)2019年Elsevier B.Y.版权所有。

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