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High Temperature Residual Properties of Externally-Bonded FRP Systems

机译:外部粘合FRP系统的高温残余性能

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The use of externally-bonded FRP plates and sheets to strengthen existing reinforced concrete structures is now widely recognized. However, a primary concern that still discourages the use of FRPs in some cases is their assumed susceptibility to fire. While recent studies have demonstrated that the overall performance of appropriately designed and insulated FRP-strengthened reinforced concrete members is satisfactory, the specific behavior of FRP materials at high temperature and after exposure to high temperature remains largely unknown, particularly for externally-bonded FRP strengthening systems. As a first step in an effort to learn more about the high temperature properties of these systems, an initial series of tests is presented to study the high temperature residual properties of externally-bonded carbon and glass FRP systems for concrete. Axial tension tests, single-lap bond tests, thermogravimetric analysis, and differential scanning calorimetry are all used to elucidate high temperature residual performance. The potential consequences of these initial results for the fire-safe design of FRP-strengthened reinforced concrete members are discussed.
机译:现在广泛认可,使用外部粘合的FRP板和薄片以加强现有的钢筋混凝土结构。然而,在某些情况下仍然不鼓励使用FRP的主要问题是他们对火灾的易感性。虽然最近的研究表明,适当设计和绝缘的FRP - 强化钢筋混凝土构件的总体性能令人满意,富氢化物质在高温和暴露于高温后的FRP材料的特定行为仍然是未知的,特别是对于外部键合的FRP强化系统。作为努力学习更多关于这些系统的高温性质的第一步,提出了初始测试,以研究外部粘合碳和玻璃FRP系统的高温残余性能。轴向张力试验,单圈键测试,热重分析和差示扫描量热法均采用耐高温残余性能。讨论了FRP加强钢筋混凝土构件的防火设计初始结果的潜在后果。

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