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Development of Pre-stressed CFRP Fatigue Retrofits for Common Steel Bridge Connections.

机译:普通钢桥连接的预应力CFRP疲劳改造的开发。

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摘要

Aging or deterioration of the nation's bridge infrastructure is a significant issue that requires attention. Causes for much of this deterioration can be attributed to two main factors, 1) corrosion, and 2) metallic fatigue, both of which work together to reduce the strength and serviceability of bridge components over time. In many instances, strengthening of bridge components using localized retrofits offers an economical and fast solution for increasing the longevity of existing steel bridges; however, such retrofits must be resilient to further corrosion and fatigue damage. In this study, a localized retrofit is developed using pre-stressed Carbon Fiber Reinforced Polymer (CFRP) strips to strengthen fatigue sensitive details within existing steel bridges. Four stringer/multi-girder steel bridges are considered with varying construction types are analyzed using 3D finite element modeling techniques. Critical fatigue regions are identified for each bridge based on the stress history resulting from the passage of an HS 20-44 design truck.;Pre-stress forces required to shift the steel component stress range from a state of finite to infinite fatigue life are determined using the Goodman constant life criterion. Results of the analyses showed that connection details near cross-frame configurations within skewed bridge geometries are more susceptible to fatigue damage than bridges with non-skewed geometries due to distortion induced fatigue in longitudinal girders during loading. Additionally, the developed retrofit successfully reduced the mean stress of a diaphragm connection detail during a laboratory test, indicating that the pre-stressed CFRP retrofit is capable of improving the fatigue performance of structural details. Equations and pre-stressing forces required for the CFRP retrofit are developed for several truck load levels (allowing consideration of increased truck traffic weights).
机译:国家桥梁基础设施的老化或恶化是一个重要的问题,需要引起重视。造成这种劣化的主要原因可归结为两个主要因素:1)腐蚀和2)金属疲劳,两者共同作用,随着时间的推移降低了桥梁部件的强度和使用寿命。在许多情况下,使用局部改造来加固桥梁组件可为提高现有钢桥的使用寿命提供经济,快速的解决方案。但是,这种改型必须能够抵抗进一步的腐蚀和疲劳破坏。在这项研究中,使用预应力碳纤维增强聚合物(CFRP)条开发了局部改造,以增强现有钢桥中对疲劳敏感的细节。使用3D有限元建模技术分析了具有不同构造类型的四根桁/多梁钢桥。根据HS 20-44设计卡车通过时产生的应力历史记录确定每座桥梁的关键疲劳区域;确定将钢部件应力范围从有限疲劳寿命转变为无限疲劳寿命所需的预应力使用古德曼不变寿命准则。分析结果表明,斜交桥几何形状内跨框架构型附近的连接细节比无斜交几何形状的桥更容易受到疲劳破坏,这是由于在加载过程中纵向梁的变形引起的疲劳。此外,开发的改造成功地降低了实验室测试期间隔膜连接细节的平均应力,表明预应力CFRP改造能够改善结构细节的疲劳性能。 CFRP翻新所需的方程式和预应力是针对几种卡车负载水平开发的(允许考虑增加卡车的交通重量)。

著录项

  • 作者

    Pough, Korey.;

  • 作者单位

    University of Arkansas.;

  • 授予单位 University of Arkansas.;
  • 学科 Civil engineering.
  • 学位 M.S.C.E.
  • 年度 2015
  • 页码 71 p.
  • 总页数 71
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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