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Seismic Performance of Bridge Column-Pile-Shaft Pin Connections for Application in Accelerated Bridge Construction.

机译:在加速桥梁施工中应用的桥梁柱-桩-轴销连接的抗震性能。

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摘要

Bridges with integral superstructures are common in high-seismic regions. The superstructure and substructure are connected using rigid connections in these bridges. However, hinge or "pin" connections may be used to connect columns to pile-shafts to reduce the overall force demand in the integral bridges, leading to smaller and more economical foundations. Additionally, prefabrication of structural elements facilitates accelerated bridge construction (ABC), which could improve the quality and economy of project compared to cast-in-place (CIP).;The primary objectives of this research were to investigate the seismic performance of three types of bridge bent connections: (1) pipe-pin connections at column-pile shaft joints for CIP and precast constructions (2) rebar-pin connections at column-pile shaft joint for CIP and precast constructions, and (3) pocket connections to develop rigid joints between precast columns and precast pier caps. This research was comprised of experimental and analytical studies.;The experimental portion of the study was conducted on a shake table at the Earthquake Engineering Laboratory at the University of Nevada, Reno including two 1/3.75 scale, two-column bents subjected to seismic loadings. The cap beam in each bent was precast and connected to the columns using pocket details. The pin connections were used to connect the columns to pedestals, which simulated the pile-shafts. The column-pedestal joints were formed using pipe-pins in one bent and rebar-pin in the other bent. The available details of pin connections were modified for utilizing in the bents because the tensile force transfer mechanism and pile-shaft failure modes had not been accounted for in the current practices. A proposed ABC method for pin connections was investigated by constructing one column in each bent as a precast shell filled with self-consolidating concrete (SCC), whereas the other column was CIP. Furthermore, engineered cementitious composite (ECC) was incorporated in one column plastic hinge region of each bent to explore the effects of ECC on the seismic performance of the columns. The shake table experiments confirmed that the proposed design methods meet the safety and performance requirements of the codes under seismic loadings.;The analytical studies consisted of: (1) simple stick models for the pin connections that were developed for the bents as design tools, (2) nonlinear finite element (FE) models for the pin connections in OpenSEES that can be utilized for global analysis of bridges with pin connections, and (3) elaborate nonlinear FE models of the bent with pipe-pins using ABAQUS to investigate the microscopic performance and interactions of the components. The analytical models were evaluated based on their correlation with experimental data and were subsequently used in focused parametric studies to address the gaps in the experimental results and provide more insight into the pin behavior under various conditions. Lastly, design procedures and detailing recommendations for column-pile-shaft connections using pipe-pins and rebar-pins were developed and proposed based on the results of the experimental and analytical parametric studies.
机译:具有上部结构整体的桥梁在高地震地区很常见。上部结构和下部结构在这些桥中使用刚性连接进行连接。但是,可以使用铰链或“销”连接将立柱连接到桩身,以减少整体桥中的总力需求,从而产生更小,更经济的基础。此外,结构构件的预制有利于加速桥梁建设(ABC),与现浇(CIP)相比,可以提高项目的质量和经济性。该研究的主要目的是研究三种类型的地震性能。桥弯连接的方式:(1)用于CIP和预制结构的柱桩轴连接处的管脚连接(2)用于CIP和预制结构的柱桩轴连接处的钢筋-脚连接,以及(3)用于开发的袋式连接预制柱和预制墩盖之间的刚性接头。这项研究包括实验研究和分析研究。研究的实验部分是在内华达大学里诺分校地震工程实验室的振动台上进行的,包括两个承受地震载荷的1 / 3.75规模,两列弯曲。预制每个弯曲处的顶梁,并使用口袋细节将其连接到立柱。销钉连接用于将立柱连接到基座,基座模拟桩身。柱基节点是在一个折弯处使用管销形成的,而在另一个折弯处使用钢筋销形成的。引脚连接的可用详细信息已修改,可用于折弯,因为在当前实践中并未考虑拉力传递机制和桩身破坏模式。通过将每个弯头的一列构造为填充有自固结混凝土(SCC)的预制壳体,研究了一种建议的ABC销连接方法。此外,将工程胶结复合材料(ECC)结合到每个弯头的一个柱塑料铰链区域中,以探索ECC对柱抗震性能的影响。振动台实验证实了所提出的设计方法在地震荷载下满足规范的安全性和性能要求。分析研究包括:(1)为弯头开发的简单销钉连接销模型,作为设计工具, (2)用于OpenSEES中销连接的非线性有限元(FE)模型,可用于具有销连接的桥梁的全局分析,以及(3)使用ABAQUS细化带有管销的弯头的非线性有限元模型,以研究微观组件的性能和交互。分析模型基于与实验数据的相关性进行了评估,随后用于重点参数研究中,以解决实验结果中的空白,并提供有关各种条件下引脚行为的更多信息。最后,根据实验和分析参数研究的结果,开发并提出了使用管销和钢筋销的立柱-桩-轴连接的设计程序和详细建议。

著录项

  • 作者

    Mehraein, Mehrdad.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 780 p.
  • 总页数 780
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:51

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