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Micromechanical modelling of deformation and fracture of hydrating cement paste using X-ray computed tomography characterisation

机译:X射线计算机断层扫描表征水化水泥浆变形和断裂的微力学模型

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摘要

Cement paste is the basic but most complex component in cement composites, which are the dominant construction material in the world. Understanding and predicting elastic properties and fracture of hydrating cement paste are challenging tasks due to its complex microstructure, but important for durability assessments and life extension decisions. A recently proposed microstructure-informed site-bond model with elastic-brittle spring bundles is developed further to predict the evolution of elastic properties and fracture behaviour of cement paste. It is based on microstructural characteristics of hydrating cement paste obtained from X-ray computed microtomography (micro-CT) with a spatial resolution of 0.5 mu m/voxel. Volume fraction and size distribution of anhydrous cement grains are used to determine the model length scale and pore-less elasticity. Porosity and pore size distribution are used for tuning elastic and failure properties of individual bonds. The fracture process is simulated by consecutive removal of bonds subjected to surface energy based failure criterion. The stress strain response and elastic properties of hardened cement pastes with curing ages of 1, 7 and 28 days are obtained. The simulated Young's modulus and deformation response prior to peak stress agree very well with the experimental data. The proposed model provides an effective tool to evaluate time evolution of elastic properties and to simulate the initiation, propagation, coalescence and localisation of micro-cracks. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:水泥浆是水泥复合材料中最基本但最复杂的组分,是世界上主要的建筑材料。由于其复杂的微观结构,了解和预测水合水泥浆的弹性特性和断裂是一项艰巨的任务,但对于耐久性评估和寿命延长决策至关重要。建立了最近提出的具有弹性脆性弹簧束的微结构信息定点粘结模型,以进一步预测水泥浆的弹性性能和断裂行为。它基于从X射线计算机显微断层照相术(micro-CT)获得的水合水泥浆的微观结构特征,其空间分辨率为0.5μm /体素。无水水泥颗粒的体积分数和尺寸分布用于确定模型的长度尺度和无孔弹性。孔隙率和孔径分布用于调整单个键的弹性和破坏特性。通过连续移除基于表面能失效准则的键来模拟断裂过程。获得了固化时间分别为1、7和28天的硬化水泥浆的应力应变响应和弹性​​特性。在峰值应力之前模拟的杨氏模量和变形响应与实验数据非常吻合。所提出的模型提供了一个有效的工具,可以评估弹性特性的时间演化,并模拟微裂纹的萌生,传播,合并和局部化。 (C)2015作者。由Elsevier Ltd.发布

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