首页> 外文会议>Case Histories and Use of FRP for Prestressing Applications >Durability of Concrete Beams Prestressed with CFRP Bars
【24h】

Durability of Concrete Beams Prestressed with CFRP Bars

机译:用CFRP栏预应力混凝土梁的耐久性

获取原文

摘要

The need for sustainable structures is the driving force for the growing international interest in using advanced materials such as fiber reinforced polymer (FRP) materials for civil infrastructure applications. To date, FRP materials have not realized their full potential within the construction industry. One of the contributing factors is the limited information regarding their long-term performance. In particular, since the service life of a civil engineering structure is typically 50 to 100 years, knowledge of the long-term durability of FRPs is of prime importance. The research work presented in this paper is the result of a research collaboration between North Carolina State University and the University of Cambridge. The research investigates the durability of concrete beams prestressed with CFRP bars and compares the results with those of companion beams prestressed with steel wires. A total of 15 beams have been constructed and tested under different mechanical and environmental conditions. The parameters included in the program were the level of sustained stress in the bars and wires (55 and 70 percent of the ultimate bar or wire strength), the environmental exposure condition (air exposure and continuous exposure to 15 percent by mass salt water spray at 54 °C temperature), the length of time under sustained load (9 and 18 months) and the method of testing (with or without application of cyclical loading prior to static testing to failure). The experimental program illustrates that CFRP prestressed concrete beams exhibit comparable ultimate strength and fatigue strength properties in comparison to equivalent steel prestressed concrete beams. Furthermore, test results show that the beams prestressed with steel wires did not survive the environmental exposure over 12 months whereas the beams prestressed with CFRP bars survived up to the end of the 18 month long extreme environmental exposure, indicating the excellent durability of CFRP in the marine environment. Provided that provision is made for the lack of CFRP ductility in comparison to steel, the research undertaken has indicated that CFRP prestressed concrete is a durable, appropriate option when designing structures for use in offshore environments.
机译:对可持续结构的需求是利用用于民用基础设施应用的纤维增强聚合物(FRP)材料等先进材料的国际兴趣的推动力。迄今为止,FRP材料没有意识到其在建筑业内的全部潜力。其中一个贡献因素是有关其长期绩效的有限信息。特别是,由于土木工程结构的使用寿命通常为50至100年,因此了解FRP的长期耐久性是最重要的。本文提出的研究工作是北卡罗来纳州立大学与剑桥大学之间的研究合作的结果。该研究调查了用CFRP棒预应力的混凝土梁的耐久性,并将结果与​​钢丝预应力预应力的伴侣梁进行比较。在不同的机械和环境条件下,共有15个光束已经构建和测试。该程序中包括的参数是杆和电线持续压力的水平(55和70%的最终杆或电线强度),环境暴露条件(空气暴露和持续暴露于15%的大众盐水喷雾54°C温度),在持续负载(9和18个月)下的时间长度和测试方法(在静态测试之前,有或不施加循环加载)。实验程序说明CFRP预应力混凝土梁与等同的钢预应力混凝土梁相比表现出相当的极限强度和疲劳强度特性。此外,测试结果表明,用钢丝预应力的光束没有在12个月内生存,而用CFRP酒吧预应力的光束仍然在18个月的极端环境暴露结束时,表明CFRP的优异耐久性海洋环境。倘若规定,相较于钢缺乏延展性CFRP制成,开展的研究表明,CFRP预应力混凝土结构设计用于近海环境中使用时,是一个持久的,相应的选项。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号