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Investigation and verification on seismic behavior of precast concrete frame piers used in real bridge structures: Experimental and numerical study

机译:实际桥梁结构中预制混凝土框架墩的抗震性能研究与验证:试验与数值研究

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摘要

In this study, quasi-static cyclic test was conducted for three 1/3-scale specimens of different precast concrete frame pier structure systems of an urban viaduct in Shanghai, China. Various connection deployment strategies were utilized for the specimens, in order to verify these precast concrete frame piers used in the real structure. Two of the specimens were of the same cap beam design, while the third one was with tie beam. The two frame piers with cap beam had the same column-footing connection (grouted splice sleeve coupler), but the column cap connections were grouted splice sleeve coupler and grouted corrugated duct connection, respectively. The frame pier with cast-in-place tie beam, however, only kept the grouted splice sleeve coupler for column-footing connection. The cyclic test results showed similar seismic behavior of the two specimens with cap beam, whereas the specimen with tie beam exhibited less energy dissipation capacity. This indicated that the seismic performance differences among the specimens are mainly caused by different structure systems, and the two types of the connections behave similarly with little damage. Finite element models that were optimized by considering joint region behavior and bond-slip phenomena showed good agreement with the test results.
机译:在这项研究中,对中国城市高架桥的不同预制混凝土框架墩结构系统的三个1/3比例的标本进行了准静态循环试验。为了验证这些实际结构中使用的预制混凝土框架墩,对标本采用了各种连接展开策略。其中两个标本采用相同的帽梁设计,而第三个标本采用系杆梁。带帽梁的两个框架墩具有相同的立柱基础连接(注浆接头套管耦合器),但柱帽连接分别为注浆接头套管耦合器和注浆波纹管连接。但是,带有现浇拉紧梁的框架墩只保留了注浆的接头套管耦合器以用于立柱连接。循环试验结果表明,两个带帽梁的试样的地震行为相似,而带横梁的试样的能量耗散能力较小。这表明标本之间的抗震性能差异主要是由不同的结构体系引起的,并且两种类型的连接行为相似,几乎没有损坏。通过考虑接头区域行为和粘结滑移现象进行优化的有限元模型显示出与测试结果良好的一致性。

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