A Damage Model for Concrete under Fatigue Loading
For concrete, fatigue is an essential mechanical behavior. Concrete structures subjected to fatigue loads usually experience a progressive degradation/damage process and even an abrupt failure. However, in the literature, certain essential damage behaviors are not well considered in the study of the...
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doaj-a9253536d4854e39956bf9a83807cb932020-11-25T02:33:23ZengMDPI AGApplied Sciences2076-34172019-07-01913276810.3390/app9132768app9132768A Damage Model for Concrete under Fatigue LoadingZhi Shan0Zhiwu Yu1Xiao Li2Xiaoyong Lv3Zhenyu Liao4School of Civil Engineering & National Engineering Laboratory for High Speed Railway Construction & Engineering Technology Research Center for Prefabricated Construction Industrialization of Hunan Province, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaSchool of Civil Engineering & National Engineering Laboratory for High Speed Railway Construction & Engineering Technology Research Center for Prefabricated Construction Industrialization of Hunan Province, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaSchool of Civil Engineering & National Engineering Laboratory for High Speed Railway Construction & Engineering Technology Research Center for Prefabricated Construction Industrialization of Hunan Province, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaSchool of Civil Engineering & National Engineering Laboratory for High Speed Railway Construction & Engineering Technology Research Center for Prefabricated Construction Industrialization of Hunan Province, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaSchool of Civil Engineering & National Engineering Laboratory for High Speed Railway Construction & Engineering Technology Research Center for Prefabricated Construction Industrialization of Hunan Province, Central South University, 68 South Shaoshan Road, Changsha 410075, ChinaFor concrete, fatigue is an essential mechanical behavior. Concrete structures subjected to fatigue loads usually experience a progressive degradation/damage process and even an abrupt failure. However, in the literature, certain essential damage behaviors are not well considered in the study of the mechanism for fatigue behaviors such as the development of irreversible/residual strains. In this work, a damage model with the concept of mode-II microcracks on the crack face and nearby areas contributing to the development of irreversible strains was proposed. By using the micromechanics method, a micro-cell-based damage model under multi-axial loading was introduced to understand the damage behaviors for concrete. By a thermodynamic interpretation of the damage behaviors, a novel fatigue damage variable (irreversible deformation fatigue damage variable) was defined. This variable is able to describe irreversible strains generated by both mode-II microcracks and irreversible frictional sliding. The proposed model considered both elastic and irreversible deformation fatigue damages. It is found that the prediction by the proposed model of cyclic creep, stiffness degradation and post-fatigue stress-strain relationship of concrete agrees well with experimental results.https://www.mdpi.com/2076-3417/9/13/2768concretefatiguedamage modelmode-II microcracksthermodynamics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhi Shan Zhiwu Yu Xiao Li Xiaoyong Lv Zhenyu Liao |
spellingShingle |
Zhi Shan Zhiwu Yu Xiao Li Xiaoyong Lv Zhenyu Liao A Damage Model for Concrete under Fatigue Loading Applied Sciences concrete fatigue damage model mode-II microcracks thermodynamics |
author_facet |
Zhi Shan Zhiwu Yu Xiao Li Xiaoyong Lv Zhenyu Liao |
author_sort |
Zhi Shan |
title |
A Damage Model for Concrete under Fatigue Loading |
title_short |
A Damage Model for Concrete under Fatigue Loading |
title_full |
A Damage Model for Concrete under Fatigue Loading |
title_fullStr |
A Damage Model for Concrete under Fatigue Loading |
title_full_unstemmed |
A Damage Model for Concrete under Fatigue Loading |
title_sort |
damage model for concrete under fatigue loading |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2019-07-01 |
description |
For concrete, fatigue is an essential mechanical behavior. Concrete structures subjected to fatigue loads usually experience a progressive degradation/damage process and even an abrupt failure. However, in the literature, certain essential damage behaviors are not well considered in the study of the mechanism for fatigue behaviors such as the development of irreversible/residual strains. In this work, a damage model with the concept of mode-II microcracks on the crack face and nearby areas contributing to the development of irreversible strains was proposed. By using the micromechanics method, a micro-cell-based damage model under multi-axial loading was introduced to understand the damage behaviors for concrete. By a thermodynamic interpretation of the damage behaviors, a novel fatigue damage variable (irreversible deformation fatigue damage variable) was defined. This variable is able to describe irreversible strains generated by both mode-II microcracks and irreversible frictional sliding. The proposed model considered both elastic and irreversible deformation fatigue damages. It is found that the prediction by the proposed model of cyclic creep, stiffness degradation and post-fatigue stress-strain relationship of concrete agrees well with experimental results. |
topic |
concrete fatigue damage model mode-II microcracks thermodynamics |
url |
https://www.mdpi.com/2076-3417/9/13/2768 |
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