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Seismic performance of concrete structures exposed to corrosion: case studies of low-rise precast buildings

预制混凝土 结构工程 铰链 低层 延展性(地球科学) 地震荷载 塑性铰链 结构体系 地震分析 工程类 弯矩 剪力墙 抗震结构 材料科学 蠕动 复合材料
作者
Fabio Biondini,Alessandro Palermo,Giandomenico Toniolo
出处
期刊:Structure and Infrastructure Engineering [Taylor & Francis]
卷期号:7 (1-2): 109-119 被引量:42
标识
DOI:10.1080/15732471003588437
摘要

Abstract The structural members of precast one-storey or low-rise multi-storey concrete frames for industrial or commercial buildings are often directly exposed to the environment without any protection. The aim of this paper is to investigate the seismic performance of this type of structure considering the material degradation induced by the diffusive attack of aggressive agents, like sulphate and chloride, that may lead to deterioration of concrete and corrosion of reinforcement. The time-variant structural performance of the critical cross-sections of the columns, where plastic hinges are expected to occur during a seismic event, is investigated in terms of bending moment versus curvature relationships. Push-over and push-pull cyclic analyses are then carried out over the structural lifetime to assess the global structural performance in terms of base shear forces and displacement ductility. In this way, even though the lifetime evolution of the dynamic behaviour under ground motion is not captured, it can be shown how the hierarchy of member strengths, and hence the energy-dissipating failure mode claimed for a capacity design of the structure, can be affected by the time-evolution of damage. The proposed procedure is applied to investigate the lifetime seismic performance of one-storey and three-storey frame structures. The results show a significant reduction of both base shear strength and displacement ductility over the structural lifetime and highlight the importance of a lifetime approach to seismic assessment and design of concrete structures. Keywords: concrete structuresprecast buildingsseismic responseaggressive agentsstructural damagelifetime performance Acknowledgements This study has been supported by Research funds PRIN2005 (prot. 2005082490) from the Italian Ministry of University and Research, and by the National Research Project RELUIS funded by the Department of Civil Protection.

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