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External Anchorage Failure and Tendon Pull-out Tests on Bridge Piers

机译:外部锚固故障和桥接桥接的肌腱拉出测试

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Post-tensioning tendons in segmental bridge construction are often only anchored within the deviator and pier segments. The effectiveness of the post-tensioning (PT) system is therefore dependent on proper functioning of the anchorages. On August 28, 2000 a routine inspection of the Mid-Bay Bridge (Okaloosa County, Florida) revealed corrosion in numerous PT tendons. Moreover, one of the 19-strand tendons was completely slacked, with later inspection revealing a corrosion-induced failure at the pier anchor location. Anchorage failure caused all PT force to transfer to the steel duct located within the pier segment that in turn slipped and caused the tendon to go completely slack. After the application of PT force, the anchorage assembly and steel pipes that house the tendon are filled with grout. These short grouted regions could, in the event of anchorage failure, provide a secondary anchorage mechanism preventing the scenario mentioned above from occurring. This paper presents the results of a full-scale experimental investigation on anchorage tendon pull-out. The study focuses on the length required to develop the in-service PT force within the pier segment grouted steel tube assembly. Seven, twelve, and nineteen 0.6" diameter strand tendons with various development lengths were considered. Recommendations for pier section pipe detailing and design will be discussed.
机译:分段桥梁结构中的张紧肌腱通常仅在偏差和码头段内锚定。因此,张紧后张紧(PT)系统的有效性取决于锚固的正常运行。 2000年8月28日,海湾桥(Okaloosa县,佛罗里达州)的常规检查揭示了许多PT筋的腐蚀。此外,通过后来检查完全储存了19层筋肌腱中的一种,揭示了墩锚定位的腐蚀引起的故障。锚地故障导致所有PT力转移到位于码头段内的钢管内,又滑动并导致肌腱完全松弛。在PT力的应用之后,锚固组件和钢管的钢管装满灌浆。在锚固故障的情况下,这些短灌浆区域可以提供辅助锚固机制,防止上述情况发生。本文介绍了对锚固腱拉出的全规模实验研究的结果。该研究侧重于在墩段灌浆钢管组件中开发役PT力所需的长度。考虑了具有各种开发长度的七,十二和九十九个“0.6”直径的股线筋。将讨论码头部分管道细节和设计的建议。

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