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Influence of shear key performance on the fatigue life of adjacent beam bridges.

机译:剪力键性能对相邻梁桥疲劳寿命的影响。

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摘要

Adjacent beam bridges, such as box beams and hollow core bridges have been one of the most popular forms of precast prestressed bridges in the past. Recently, an awareness of major durability problems has led owners to make improvements to the old standards or move away from the system completely. These issues usually stem from the breakdown of the shear key which provides continuity between adjacent members. This research focuses on determining the best improvements that will reduce durability issues and increase the bridge's service life.A review of previous research performed on adjacent beam bridges is performed, focusing on shear key design and post-tensioning requirements. State Departments of Transportation were also surveyed on their past use of this bridge type and the observed performance of their standard details. Conclusions were gathered concerning the changes in shear key design, post-tensioning and overlay requirements to determine what design methods had the most impact on bridge performance.A fatigue study modeling the standard hollow core bridge sections used in South Carolina was performed using Monte Carlo simulations with Latin Hypercube sampling. This study was used to determine the influence of average annual daily traffic (AADT), corrosive environment and shear key degradation on the service life of an adjacent beam bridge. Most physical and material properties of the simulated bridge were treated as random variables. The program only considered heavy truck loads as damage inducers.The fatigue study found that shear key performance, AADT and the corrosive environment of the bridge all have significant effect on the service life of a structure. It was found that if a shear key performed well enough to perfectly emulate a cast-in-place slab, the hollow core detail could be considered for use on roads with up to 50,000 AADT.
机译:过去,诸如箱形梁和空心桥等相邻的梁桥已成为最受欢迎的预制预应力桥形式之一。最近,人们意识到主要的耐用性问题,导致车主对旧标准进行了改进或完全脱离了系统。这些问题通常源于剪切键的损坏,该剪切键在相邻构件之间提供了连续性。这项研究的重点是确定将减少耐用性问题并延长桥梁使用寿命的最佳改进方法。对相邻梁桥的先前研究进行了回顾,重点是剪力键设计和后张拉力要求。还对国家交通运输部的这种桥梁类型的过去使用情况及其标准细节的观察性能进行了调查。得出了有关剪力键设计,后张拉力和覆盖要求的变化的结论,以确定哪种设计方法对桥梁性能的影响最大。使用蒙特卡洛模拟进行了对南卡罗来纳州标准空心桥截面的疲劳研究与拉丁文Hypercube采样。这项研究被用来确定平均年交通量(AADT),腐蚀环境和剪切键退化对相邻梁桥使用寿命的影响。模拟桥梁的大多数物理和材料特性均视为随机变量。该程序仅将重型卡车负载作为损坏的诱因。疲劳研究发现,剪切关键性能,AADT和桥梁的腐蚀环境都对结构的使用寿命产生重大影响。结果发现,如果剪切键的性能足以完美模拟现浇板,则可以考虑将空心细节用于具有50,000 AADT的道路。

著录项

  • 作者

    Roberts, Sara Elise.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2010
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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