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Structural strength deterioration of coastal bridge piers considering non-uniform corrosion in marine environments 被引量:4

Structural strength deterioration of coastal bridge piers considering non-uniform corrosion in marine environments
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摘要 In the aggressive marine environment over a long-term service period,coastal bridges inevitably sustain corrosion-induced damage due to high sea salt and humidity.This paper investigates the strength reduction of coastal bridges,especially focusing on the effects of non-uniform corrosion along the height of bridge piers.First,the corrosion initiation time and the degradation of reinforcement and concrete are analyzed for bridge piers in marine environments.To investigate the various damage modes of the concrete cover,a discretization method with fiber cells is used for calculating time-dependent interaction diagrams of cross-sections of the bridge piers at the atmospheric zone and the splash and tidal zone under a combination of axial force and bending moment.Second,the shear strength of these aging structures is analyzed.Numerical simulation indicates that the strength of a concrete pier experiences dramatic reduction from corrosion initiation to the spalling of the concrete cover.Strength loss in the splash and tidal zone is more significant than in the atmospheric zone when structures’service time is assumed to be the same. In the aggressive marine environment over a long-term service period,coastal bridges inevitably sustain corrosion-induced damage due to high sea salt and humidity.This paper investigates the strength reduction of coastal bridges,especially focusing on the effects of non-uniform corrosion along the height of bridge piers.First,the corrosion initiation time and the degradation of reinforcement and concrete are analyzed for bridge piers in marine environments.To investigate the various damage modes of the concrete cover,a discretization method with fiber cells is used for calculating time-dependent interaction diagrams of cross-sections of the bridge piers at the atmospheric zone and the splash and tidal zone under a combination of axial force and bending moment.Second,the shear strength of these aging structures is analyzed.Numerical simulation indicates that the strength of a concrete pier experiences dramatic reduction from corrosion initiation to the spalling of the concrete cover.Strength loss in the splash and tidal zone is more significant than in the atmospheric zone when structures’service time is assumed to be the same.
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2018年第2期429-444,共16页 地震工程与工程振动(英文刊)
基金 National Natural Science Foundation of China under Grant No.51678197 the Major State Basic Research Development Program of China(973 Program)under Grant No.2011CB013604 Fundamental Research Funds for the Central Universities of China with Grant No.HIT.BRETIV.201320
关键词 Coastal bridge strength deterioration marine environment non-uniform corrosion interaction diagram Coastal bridge strength deterioration marine environment non-uniform corrosion interaction diagram
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