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Longitudinal seismic response of concrete substructure-to-steel superstructure integral bridge connections.

机译:混凝土下部结构到钢上部结构整体式桥梁连接的纵向地震响应。

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摘要

A research program consisting of both experimental testing and force transfer modeling was conducted at the University of California in San Diego (UCSD) to characterize the behavior of a bridge design detail that integrates a steel superstructure with a concrete substructure using a concrete bent cap. When an integral bridge is subjected to a longitudinal seismic event, a moment is imposed on the girders that must be transferred to the column. This moment is transferred through torsional action in the bent cap. Because the bent cap is a designated capacity protected component, it must remain essentially elastic during the force transfer. Therefore, the research objective was to establish a behavior profile of the bent cap connection to define limit states. Clear definition of the entire behavior was needed to ensure that the proposed design recommendations placed the bent cap performance in the elastic range for a given seismic event.; The effect of two design parameters on the bent cap torsional behavior and moment capacity was investigated in a series of four component tests, with the most promising detail to be validated in a final system test. The two parameters investigated were (1) bent cap reinforcement (post-tensioned versus conventionally reinforced), and (2) girder web configuration inside the bent cap (with or without bearing stiffeners). The specimens with post-tensioned bent caps exhibited less crack dilation during the initial loading stages than the specimens with conventionally reinforced bent caps. The specimens with girder web bearing stiffeners reached maximum capacities approximately 25% higher than the specimens without girder web stiffeners.; The component test results lead to the recommended design for the system test of stiffened steel girders integrated with a post-tensioned bent cap. The system test demonstrated that the bent cap could be designed to perform essentially elastically while the column developed an inelastic mechanism.; Based on the experimental findings and force transfer models, design guidelines for an integral bridge were developed. The procedure for determining the bent cap torsional strength for a given earthquake, as well as recommended limits, is outlined in a design example.
机译:加利福尼亚大学圣地亚哥分校(UCSD)进行了一项由实验测试和力传递模型组成的研究计划,以表征桥梁设计细节的行为,该设计细节将钢上部结构与混凝土下部结构结合在一起,并使用混凝土弯曲帽。当一体式桥梁承受纵向地震事件时,必须在梁上施加一个力矩,该力矩必须传递到柱上。此力矩通过弯曲帽中的扭力传递。因为弯曲的盖是指定的容量保护部件,所以在力传递期间它必须保持基本弹性。因此,研究目标是建立弯曲帽连接的行为曲线以定义极限状态。需要对整个行为进行清晰定义,以确保所提出的设计建议将给定地震事件下的弯曲帽性能置于弹性范围内。在一系列的四个组件测试中研究了两个设计参数对弯曲帽扭转性能和弯矩承载力的影响,最有希望的细节将在最终系统测试中得到验证。研究的两个参数是(1)弯曲帽盖加固(后张紧与常规加固),以及(2)弯曲帽盖内的腹板腹板配置(带有或不带有轴承加强筋)。具有后张紧的弯曲帽的样品在初始加载阶段的裂纹扩展小于具有传统增强的弯曲帽的样品。带有梁腹板加劲肋的试样的最大承载能力比没有梁腹板加劲肋的试样高约25%。组件测试结果导致建议对带有后张紧弯帽的加劲钢梁进行系统测试的推荐设计。系统测试表明,在色谱柱发展出非弹性机制的同时,弯曲帽可以设计成基本具有弹性。根据实验结果和力传递模型,制定了整体桥的设计指南。设计示例中概述了确定给定地震的弯曲帽抗扭强度的程序以及建议的极限。

著录项

  • 作者

    Patty, Jill Kathleen.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 374 p.
  • 总页数 374
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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