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Analytical development and experimental validation of a structural-fuse bridge pier concept.

机译:结构保险丝桥墩概念的分析开发和实验验证。

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摘要

In this research, a structural fuse concept is proposed in which structural steel elements are added to a bridge bent to increase its strength and stiffness, and also designed to sustain the seismic demand and dissipate all the seismic energy through hysteretic behavior of the fuses, while keeping the gravity-resisting structural elements of the bridge bent elastic.A parametric study to investigate the effect of adding structural fuses to a RC bridge bent is first conducted. Trends in behavior as a function of key parameters defining the proposed structural fuse system are presented, followed by a proposed systematic design procedure.Then, an experimental program is developed for two large-scale twin-column segmental bridge bent specimens in an accelerated bridge construction application, having a series of structural fuses between the columns, and subjected to quasi-static cyclic tests to investigate the effect of adding these fuses on the total behavior of the system compared to the bare bents behavior.The experimental work is then followed by analytical work to replicate the experimental results obtained and to assess the adequacy of the design recommendations as well as the effectiveness of adding structural fuses to bridge bents for seismic energy dissipation, providing an insight into the general behavior of the structural fuse system.Two types of structural fuses are used in this second phase of work and implemented in this research one is a newly proposed Buckling Restrained Braces (BRBs) concept for short length applications. The other is a special Steel Plate Shear Link (SPSL), which is a steel plate restrained against lateral buckling and designed and detailed to dissipate energy through shear yielding. Equations are developed to determine some critical design parameters of the SPSLs.Uniaxial cyclic tests are then performed on the individual BRBs that have been used as structural fuses in the large specimens, as the axial force resisted by each individual BRB could not be measured during the bridge pier tests. Also quasi-static cyclic testing is performed on individual SPSLs to investigate the behavior of these newly proposed links having different dimensions and lateral restraining conditions.
机译:在这项研究中,提出了一种结构保险丝的概念,其中将结构钢元件添加到弯曲的桥梁中以增加其强度和刚度,并且还旨在通过保险丝的滞后行为来维持地震需求并消散所有地震能量,而首先进行了参数研究,以研究向RC桥弯添加结构保险丝的效果。提出了行为趋势,该趋势是定义拟议的结构熔断器系统的关键参数的函数,然后提出了拟议的系统设计程序。然后,针对加速桥梁建设中的两个大型双柱分段桥梁弯曲标本开发了一个实验程序应用程序,在列之间具有一系列结构性的保险丝,并经过准静态循环测试以研究与裸露弯曲行为相比,添加这些保险丝对系统总体性能的影响。然后进行实验工作,然后进行分析进行工作以复制获得的实验结果并评估设计建议的适当性,以及在桥梁弯道上增加结构熔断器以降低地震能量的有效性,从而深入了解结构熔断器系统的一般性能。保险丝用于第二阶段的工作,并在本研究中实施适用于短长度应用的roposed屈曲约束括号(BRB)概念。另一个是特殊的钢板剪力链接(SPSL),它是一种可防止侧向屈曲的钢板,其设计和详细设计可通过剪切屈服来耗散能量。开发方程式来确定SPSL的一些关键设计参数,然后对在大样本中用作结构熔断器的单个BRB进行单轴循环测试,因为在测量过程中无法测量每个单个BRB抵抗的轴向力。桥墩测试。还对单个SPSL进行了准静态循环测试,以研究这些新提议的具有不同尺寸和横向约束条件的链节的行为。

著录项

  • 作者

    El-Bahey, Samer.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 458 p.
  • 总页数 458
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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