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Seismic response of bent caps in as-built and retrofitted reinforced concrete box-girder bridges

机译:在建和改建的钢筋混凝土箱梁桥中弯曲帽的地震响应

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Bridges are key components of infrastructure that are vulnerable to earthquakes and many are undergoing retrofit or complete replacement. Rigorous seismic design of new bridges and informed retrofit decisions are indispensable. A specific design issue that is concerned with the structural response of bent cap beams in as-built and retrofitted box-girder bridges under gravity and seismic loads is tackled in this paper. A combined experimental and computational research was undertaken in this study to investigate the bent cap capacity and effective slab width in reinforced concrete box-girder bridges for enhanced seismic capacity design approach. Two large-scale as-built and retrofitted column-bent cap-box-girder subassemblies were developed and tested using bidirectional quasi-static cyclic loading and hybrid simulation approach, respectively. In addition, detailed finite element models were calibrated and further used to complement the experimental programs. The study revisited the effective slab width code values for bent caps and concluded that the slab reinforcement within an effective width, especially in tension, should be included for accurate bent cap capacity estimation. Accordingly, recommendations are suggested for the relevant bridge seismic design codes. (C) 2015 Elsevier Ltd. All rights reserved.
机译:桥梁是基础设施的重要组成部分,容易受到地震的影响,许多桥梁正在接受翻新或完全更换。新桥的严格抗震设计和明智的改造决定是必不可少的。本文解决了一个具体的设计问题,该问题与重力和地震荷载作用下在建和改造后的箱梁桥中弯帽梁的结构响应有关。在这项研究中进行了实验和计算相结合的研究,以研究钢筋混凝土箱梁桥的抗弯承载能力和有效平板宽度,以提高抗震能力。分别使用双向准静态循环荷载和混合仿真方法开发并测试了两个大型的已建成和改建的曲折式弯矩箱形箱梁组合。此外,对详细的有限元模型进行了校准,并进一步用于补充实验程序。这项研究重新研究了弯曲帽的有效板坯宽度代码值,并得出结论,应包括有效宽度内的板坯钢筋,特别是在拉力范围内的板坯钢筋,以进行准确的弯曲帽能力估算。因此,对相关桥梁抗震设计规范提出了建议。 (C)2015 Elsevier Ltd.保留所有权利。

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