Experimental and numerical modeling of chloride diffusivity in hardened cement concrete considering the aggregate shapes and exposure-duration effects

This paper presents an experimental and numerical model describing the effects of the aggregate shapes and exposure duration of chloride diffusion into cement-based materials. A simple chloride diffusion test was performed on a concrete specimen composed of a mixture of cement mortar with crushed gr...

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Main Authors: Wu Jie, Jean-Baptiste Mawulé Dassekpo, Chengyong Wan, Xiaoxiong Zha
Format: Article
Language:English
Published: Elsevier 2017-01-01
Series:Results in Physics
Online Access:http://www.sciencedirect.com/science/article/pii/S2211379717303753
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spelling doaj-7a42d2fac4664e81a4da29ff34d2c7332020-11-25T01:19:29ZengElsevierResults in Physics2211-37972017-01-01714271432Experimental and numerical modeling of chloride diffusivity in hardened cement concrete considering the aggregate shapes and exposure-duration effectsWu Jie0Jean-Baptiste Mawulé Dassekpo1Chengyong Wan2Xiaoxiong Zha3Department of Civil and Environmental Engineering, Hubei Polytechnic University, ChinaDepartment of Civil and Environmental Engineering, Shenzhen Graduate School, Harbin Institute of Technology, 518055, ChinaDepartment of Civil and Environmental Engineering, Shenzhen Graduate School, Harbin Institute of Technology, 518055, ChinaDepartment of Civil and Environmental Engineering, Shenzhen Graduate School, Harbin Institute of Technology, 518055, China; Corresponding author.This paper presents an experimental and numerical model describing the effects of the aggregate shapes and exposure duration of chloride diffusion into cement-based materials. A simple chloride diffusion test was performed on a concrete specimen composed of a mixture of cement mortar with crushed granites and round gravels. A simulation was done and the numerical model developed was applied to the matrix at the meso-scale level and the chloride diffusivity was investigated at 30, 60, and 90 days. The experimental and simulation results showed that the aggregate shape and the exposure duration of chloride diffusing into concrete are of high significance. It was indicated that the model with crushed granite presents a good resistance against chloride ingress, while the model with rounded gravels shows some sensitivity to the chloride penetration. It was also found out that when the time dependence of the diffusion coefficient is not taken into account, the diffusion rate will be overestimated. The meso-scale model developed in this study also provides a new method applied in the analysis of the chloride and water transport that causes damage to concrete considering the particle inclusion and the diffusion duration. Keywords: Meso-scale modeling, Chloride diffusivity, Concrete, Effects of aggregates shape and exposure duration, FEMhttp://www.sciencedirect.com/science/article/pii/S2211379717303753
collection DOAJ
language English
format Article
sources DOAJ
author Wu Jie
Jean-Baptiste Mawulé Dassekpo
Chengyong Wan
Xiaoxiong Zha
spellingShingle Wu Jie
Jean-Baptiste Mawulé Dassekpo
Chengyong Wan
Xiaoxiong Zha
Experimental and numerical modeling of chloride diffusivity in hardened cement concrete considering the aggregate shapes and exposure-duration effects
Results in Physics
author_facet Wu Jie
Jean-Baptiste Mawulé Dassekpo
Chengyong Wan
Xiaoxiong Zha
author_sort Wu Jie
title Experimental and numerical modeling of chloride diffusivity in hardened cement concrete considering the aggregate shapes and exposure-duration effects
title_short Experimental and numerical modeling of chloride diffusivity in hardened cement concrete considering the aggregate shapes and exposure-duration effects
title_full Experimental and numerical modeling of chloride diffusivity in hardened cement concrete considering the aggregate shapes and exposure-duration effects
title_fullStr Experimental and numerical modeling of chloride diffusivity in hardened cement concrete considering the aggregate shapes and exposure-duration effects
title_full_unstemmed Experimental and numerical modeling of chloride diffusivity in hardened cement concrete considering the aggregate shapes and exposure-duration effects
title_sort experimental and numerical modeling of chloride diffusivity in hardened cement concrete considering the aggregate shapes and exposure-duration effects
publisher Elsevier
series Results in Physics
issn 2211-3797
publishDate 2017-01-01
description This paper presents an experimental and numerical model describing the effects of the aggregate shapes and exposure duration of chloride diffusion into cement-based materials. A simple chloride diffusion test was performed on a concrete specimen composed of a mixture of cement mortar with crushed granites and round gravels. A simulation was done and the numerical model developed was applied to the matrix at the meso-scale level and the chloride diffusivity was investigated at 30, 60, and 90 days. The experimental and simulation results showed that the aggregate shape and the exposure duration of chloride diffusing into concrete are of high significance. It was indicated that the model with crushed granite presents a good resistance against chloride ingress, while the model with rounded gravels shows some sensitivity to the chloride penetration. It was also found out that when the time dependence of the diffusion coefficient is not taken into account, the diffusion rate will be overestimated. The meso-scale model developed in this study also provides a new method applied in the analysis of the chloride and water transport that causes damage to concrete considering the particle inclusion and the diffusion duration. Keywords: Meso-scale modeling, Chloride diffusivity, Concrete, Effects of aggregates shape and exposure duration, FEM
url http://www.sciencedirect.com/science/article/pii/S2211379717303753
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AT jeanbaptistemawuledassekpo experimentalandnumericalmodelingofchloridediffusivityinhardenedcementconcreteconsideringtheaggregateshapesandexposuredurationeffects
AT chengyongwan experimentalandnumericalmodelingofchloridediffusivityinhardenedcementconcreteconsideringtheaggregateshapesandexposuredurationeffects
AT xiaoxiongzha experimentalandnumericalmodelingofchloridediffusivityinhardenedcementconcreteconsideringtheaggregateshapesandexposuredurationeffects
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