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Experimental Evaluation of Longitudinal Seismic Performance of Bridge Restrainers at In-Span Hinges

机译:跨度铰链桥约束器纵向抗震性能的实验评估

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摘要

A specimen consisting of two box girder reinforced concrete blocks representing the adjacent spans of a reference bridge at an in-span hinge was constructed and tested under incrementally increasing input excitation to investigate the impact between adjacent bridge spans at in-span hinges, to evaluate the efficacy of restrainers in reducing relative displacements across the hinges, and to examine the effects of restrainer stiffness and gap on the response of the hinge-restrainer system. Cable restrainers were used to connect the two blocks, the number and gap of which were varied during the experiments. The experimental results indicated that impacts between the adjacent frames produce acceleration levels significantly higher than what is typically assumed in design. In all the restrained system cases, restrainers were capable of reducing hinge relative displacements and preventing span unseating. However, restrainer yielding occurred under strong input motions, especially when the restrainer gap was set to zero.
机译:构造了一个标本,该标本由两个箱形梁钢筋混凝土砌块组成,分别代表跨度铰链处参考桥的相邻跨度,并在递增的输入激励下进行了测试,以研究跨度铰链处相邻桥跨度之间的影响,以评估跨度。限制器在减少整个铰链上的相对位移方面的有效性,以及检查限制器的刚度和间隙对铰链约束系统响应的影响。电缆限制器用于连接两个模块,在实验过程中其数量和间隙有所不同。实验结果表明,相邻框架之间的碰撞产生的加速度水平明显高于设计中通常假定的水平。在所有受约束的系统情况下,约束器都能够减少铰链的相对位移并防止跨度不稳。但是,在强烈的输入运动下会发生约束屈服,特别是当约束间隙设置为零时。

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