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Experimental and Numerical Studies on Post-Fracture Behavior of Simply Supported Composite Twin Ⅰ-Girder Bridges

机译:简支双Ⅰ型双箱梁桥断裂后行为的试验与数值研究。

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This study was carried out to investigate the post-fracture behavior of the composite twin I-girder bridge systems. One intact specimen and one damage specimen with fracture at mid-span section were tested under static load test. By comparing the pre- and post-fracture behavior, significant reduction of system stiffness and load carrying capacity are observed. Nevertheless, composite twin I-girder bridge system will not collapse under dead load and be able to carry sufficient live load which qualifies the bridge as a redundant system in fracture condition. Meanwhile, by using finite element method with nonlinear analyses, fracture at different sections are analyzed. Results proved that the fracture of whole web and bottom flange at mid-span section is the most fracture critical location comparing to fracture at other locations. In addition, by comparing the performance of one girder and twin-girder models, the adjacent girder can be concluded as an essential component that ensures the safety of the composite twin I-girder bridge system in fracture condition.
机译:进行这项研究以研究复合双工字梁系统的断裂后行为。在静载荷试验下测试了一个完整的试样和一个在中跨段断裂的损坏试样。通过比较断裂前和断裂后的行为,可以观察到系统刚度和承载能力的显着降低。尽管如此,复合双工I形梁桥系统在恒载下不会坍塌,并且能够承受足够的活载,这使得该桥在断裂条件下成为冗余系统。同时,采用有限元方法进行非线性分析,分析了不同断面的断裂情况。结果证明,与其他位置的断裂相比,中跨段的整个腹板和底部翼缘的断裂是最关键的断裂位置。此外,通过比较一个大梁和一个双梁模型的性能,可以得出相邻大梁是确保复合双工I形梁桥系统在断裂条件下安全的重要组成部分。

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