A Micromechanical-Based Semi-Empirical Model for Predicting the Compressive Strength Degradation of Concrete under External Sulfate Attack

Author:

Li Shagang12,Yu Xiaotong12,Yang Shanyin12,Wang Hongxiang12,Chen Da123

Affiliation:

1. Key Laboratory of Ministry of Education for Coastal Disaster and Protection, Hohai University, Nanjing 210098, China

2. College of Harbour, Coastal and Offshore Engineering, Hohai University, Nanjing 210098, China

3. Yangtze Institute for Conservation and Development, Hohai University, Nanjing 210098, China

Abstract

As one of the most harmful ions in the environment, sulfate could cause the deformation and material deterioration of concrete structures. Models that accurately describe the whole chemo–transport–mechanical process of an external sulfate attack (ESA) require substantial computational work and contain complex parameters. This paper proposes a semi-empirical model based on micromechanical theory for predicting the compressive strength degradation of concrete under an ESA with basic properties of the undamaged material and limited computational effort. A simplified exponential function is developed for the total amount of the invading sulfate, and a second-order equation governs the chemical reaction. A micromechanical model is implemented to solve the mechanical response caused by an ESA. The model is able to describe the compressive stress–strain behavior of concrete subject to uniaxial loading in good agreement with the experimental results. For the case of a sulfate-attacked material, the relationship between compressive strength and expansion is calculated and validated by the test results. Finally, the deterioration process of compressive strength is predicted with the test results of deformation.

Funder

Natural Science Foundation of Jiangsu Province

Jiangsu Provincial Key Research and Development Program

Outstanding Postdoctoral Research Program of Jiangsu Province

China Scholarship Council

Publisher

MDPI AG

Subject

General Materials Science

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