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Structural Retrofitting of Deteriorated Concrete Lighting Poles Using FRP Sheets in Wet Layup—Field Application

机译:湿法铺设中使用FRP薄板对劣化的混凝土照明灯杆进行结构改造—现场应用

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摘要

This paper investigates the structural retrofit of deteriorated reinforced concrete lighting poles using wet layup of fiber reinforced polymer (FRP) sheets. The study comprised of four full-scale Class B damaged poles and one full-scale Class C undamaged pole. Each pole was 14,000 mm long with a base diameter of 350 mm linearly tapered to a tip diameter of 165 mm. The damaged poles were reinforced with nine No. 10 steel bars each, whereas the undamaged pole had four prestressed steel strands of 3/8 in. (9.5 mm) diameter. Four different in situ applicable repair schemes, one for each damaged pole, involving the application of E-glass or carbon FRP lateral confining wraps only (unidirectional) or coupled with additional longitudinal flexure sheets (bidirectional) were investigated. The adequacy of the retrofit works was checked through full-scale bending test of the poles in accordance with specification of the Canadian Standard Association. All four repaired poles exceeded the CSA design transverse loading requirement for Class B poles. In addition, the bidirectional E-glass and carbon FRP repaired poles exceeded the benchmark performance of the undamaged Class C pole as a percentage of the required design load with the E-glass pole exhibiting the best performance.
机译:本文研究了使用纤维增强聚合物(FRP)板的湿铺法对劣化的钢筋混凝土灯杆进行结构改造。这项研究包括四个完全损坏的B级杆和一个完全损坏的C级杆。每个磁极的长度为14,000 mm,基本直径为350 mm,线性逐渐变细到尖端直径为165 mm。损坏的杆分别用9个10号钢筋加固,而未损坏的杆则具有4个直径为3/8英寸(9.5毫米)的预应力钢绞线。研究了四种不同的现场适用修复方案,其中一种针对每个损坏的电极,仅使用E玻璃或碳纤维增强塑料横向约束包裹物(单向)或与其他纵向挠性板结合(双向)进行了研究。根据加拿大标准协会的规范,通过对立杆进行全面弯曲测试,检查了翻新工程的充分性。所有四个维修杆都超过了B类杆的CSA设计横向载荷要求。此外,双向E玻璃和碳FRP修复极超过了未损坏C类极的基准性能,占所需设计载荷的百分比,而E玻璃极表现出最佳性能。

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