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Fire endurance and residual strength of insulated concrete beams strengthened with near surface mounted reinforcement

机译:近地面加固钢筋混凝土梁的耐火极限和剩余强度

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摘要

The comparatively weak performance of fiber-reinforced polymer (FRP) strengthened members under fire exposure is a primary factor hindering the application of FRP strengthening in buildings in which fire risk is not negligible. As part of a larger ongoing study investigating the behavior of FRP strengthening systems under fire exposure, an investigation was set up to examine and document the performance of six full-scale near-surface mounted (NSM) FRP-reinforced concrete beams exposed to 1h of fire. All the specimens were preloaded to the service load of the strengthened member. Tests results indicated that, if appropriately insulated, the NSM FRP-strengthened beams can achieve a satisfactory fire endurance of 1h as per fire resistance test specifications. Moreover, this paper also presents a study on the residual performance of fire-tested beams. Results of this study suggest that if the insulation system is able to maintain the adhesive temperature at relatively low value ( for the beam configuration in this test program), the FRP concrete bond degradation under fire is limited, and the FRP-strengthened beam can retain a large part (up to 92% in this test program) of its original strength.
机译:纤维增强聚合物(FRP)增强构件在火灾下的相对较弱的性能是阻碍FRP增强在火灾风险不可忽略的建筑物中应用的主要因素。作为一项较大的正在进行的研究的一部分,该研究旨在研究FRP增强系统在火灾下的性能,该研究旨在检查和记录暴露于1h的六根全尺寸近表面安装(NSM)FRP增强混凝土梁的性能。火。将所有试样预加载到加固构件的使用荷载上。测试结果表明,按照耐火性测试规范,如果适当绝缘,NSM FRP加强梁可以达到令人满意的1h耐火性。此外,本文还对耐火梁的残余性能进行了研究。这项研究的结果表明,如果绝缘系统能够将粘合温度保持在相对较低的温度下(针对该测试程序中的梁配置),则可以限制FRP混凝土在火灾下的粘结降解,并且可以保留FRP加固梁其原始强度的很大一部分(在此测试程序中高达92%)。

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