On the correlations between different chloride transport parameters and their role in service life estimation

IF 2.7 Q2 ENGINEERING, CIVIL Sustainable and Resilient Infrastructure Pub Date : 2022-07-19 DOI:10.1080/23789689.2022.2097771
Yuvaraj Dhandapani, M. Santhanam
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引用次数: 1

Abstract

ABSTRACT In this article, the role of chloride transport parameters in the service life estimation of a reinforced concrete structure is discussed. This article also lists several qualitative and quantitative test methods used to measure resistance to ingress of chloride in concrete systems with their advantageous and critique properties. The relationship between the rapid assessment methods such as resistivity and the diffusion coefficient is put forward. A review of the ageing coefficient for different binder types is presented. The importance to characterise and account for the environmental factors such as exposure condition and ambient temperature variation is emphasised based on its impact on the chloride build-up rate. A parametric study is carried out to identify the role of different factors associated with chloride transport property in service life estimation. The prediction of chloride build-up rates for various binder composites based on analytical and numerical approaches is summarised along with relevant input parameters.
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不同氯化物传输参数之间的相关性及其在寿命估算中的作用
本文讨论了氯离子传输参数在钢筋混凝土结构使用寿命估算中的作用。本文还列出了几种用于测量混凝土系统中氯离子进入阻力的定性和定量测试方法,以及它们的优点和缺点。提出了电阻率和扩散系数等快速评价方法之间的关系。综述了不同粘结剂类型的老化系数。基于环境因素对氯化物积聚速率的影响,强调了表征和说明环境因素(如暴露条件和环境温度变化)的重要性。进行了一项参数研究,以确定与氯化物传输特性相关的不同因素在使用寿命估计中的作用。总结了基于分析和数值方法的各种粘合剂复合材料的氯化物积聚速率的预测以及相关的输入参数。
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来源期刊
CiteScore
7.60
自引率
10.20%
发文量
34
期刊介绍: Sustainable and Resilient Infrastructure is an interdisciplinary journal that focuses on the sustainable development of resilient communities. Sustainability is defined in relation to the ability of infrastructure to address the needs of the present without sacrificing the ability of future generations to meet their needs. Resilience is considered in relation to both natural hazards (like earthquakes, tsunami, hurricanes, cyclones, tornado, flooding and drought) and anthropogenic hazards (like human errors and malevolent attacks.) Resilience is taken to depend both on the performance of the built and modified natural environment and on the contextual characteristics of social, economic and political institutions. Sustainability and resilience are considered both for physical and non-physical infrastructure.
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