Liu Xiaoxiao, Zhang Wenbin, Sun Peng, Liu Ming
School of Civil Engineering and Architecture, Xi'an University of Technology, Xi'an 710048, China.
Infrastructure Department, Northwestern Polytechnical University, Xi'an 710129, China.
Materials (Basel). 2022 Jul 19;15(14):5020. doi: 10.3390/ma15145020.
Recent studies highlighted the importance of the combined effects of prestress loss and corrosion deterioration for concrete girder bridge structures when the effect of damage on the performance level is estimated. The multi-deterioration mechanisms connected with chloride erosion include the cross-sectional area loss of longitudinal bars and stirrups, the reduction in the ductility, the decrease in the strength of steels and the strength loss of concrete in RC columns. For the corroded RC columns and corroded elastomeric bridge bearings, analytical models of the material degradation phenomena were employed for performing the probabilistic seismic performance analysis, which could obtain the system seismic fragility of aging bridges by considering the failure functionality of multiple correlated components (e.g., columns, bearings). The combined effects of prestress loss and cracking were also considered when developing time-dependent system seismic fragility functions. Here, a typical multi-span reinforced concrete girder bridge was used as a case study for studying the time-variant seismic performance. The results revealed the importance of the joint effects of the multi-deterioration mechanisms when modeling the time-dependent seismic fragility of aging bridge systems, as well as the significance of considering the combined effects of prestress loss and cracking.
最近的研究强调了在评估损伤对性能水平的影响时,预应力损失和腐蚀劣化的综合作用对混凝土梁桥结构的重要性。与氯离子侵蚀相关的多重劣化机制包括纵筋和箍筋的截面积损失、延性降低、钢材强度下降以及钢筋混凝土柱中混凝土的强度损失。对于锈蚀的钢筋混凝土柱和锈蚀的板式橡胶桥梁支座,采用材料退化现象的分析模型进行概率地震性能分析,通过考虑多个相关构件(如柱、支座)的失效功能,可以得到老化桥梁的系统地震易损性。在建立时变系统地震易损性函数时,还考虑了预应力损失和开裂的综合作用。在此,以一座典型的多跨钢筋混凝土梁桥为例,研究其随时间变化的地震性能。结果揭示了在对老化桥梁系统的时变地震易损性进行建模时,多重劣化机制联合作用的重要性,以及考虑预应力损失和开裂综合作用的意义。