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首页> 外文期刊>Journal of Composites for Construction >Behavior of Bond-Critical Regions Wrapped with Fiber-Reinforced Polymer Sheets in Normal and High-Strength Concrete
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Behavior of Bond-Critical Regions Wrapped with Fiber-Reinforced Polymer Sheets in Normal and High-Strength Concrete

机译:普通和高强度混凝土中纤维增强聚合物薄板包裹的粘结关键区域的行为

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摘要

This paper reports on the third phase of a multiphase study undertaken at the American University of Beirut (AUB) to examine the effect of fiber-reinforced polymer (FRP) sheets in confining tension lap splice regions in reinforced concrete beams. Results of the first two phases showed that glass and carbon fiber-reinforced polymer (GFRP and CFRP) sheets were effective in increasing the bond strength and improving the ductility of the mode of failure of tension lap splices in high-strength concrete (HSC) beams with nominal concrete strength of 70 MPa. The experimental results of the two phases were used to propose a new FRP confinement parameter, K_(tr,f), that accounts for the bond strength contribution of FRP sheets wrapping tension lap splice regions in HSC beams. In this third phase of the AUB study, the trend of the results of phases 1 and 2 and the validity of the analytical model proposed were verified if normal-strength concrete (NSC) is used instead of HSC. Seven beams with nominal concrete strength of 27.58 MPa (4 ksi) were tested in positive bending. Each beam was designed with a tension lap splice in a constant moment region in the midspan of the beam. The main test variables were the configuration (1 strip, 2 strips, or a continuous strip) and the number of layers (1 layer or 2 layers) of the CFRP sheets wrapping the splice region. The test results demonstrated that CFRP sheets were effective in enhancing the bond strength and ductility of failure mode of tension lap splices in NSC in a very similar way to HSC. In addition, the FRP confinement index proposed earlier for HSC was proven to be valid in the case of NSC.
机译:本文报告了在贝鲁特美国大学(AUB)进行的一项多阶段研究的第三阶段,该研究旨在研究纤维增强聚合物(FRP)片材对钢筋混凝土梁的搭接搭接区域的约束作用。前两个阶段的结果表明,玻璃纤维板和碳纤维增强聚合物板(GFRP和CFRP)在增加粘结强度和提高高强度混凝土(HSC)梁中拉伸搭接接头破坏模式的延展性方面有效。标称混凝土强度为70 MPa。这两个阶段的实验结果被用来提出一个新的FRP约束参数K_(tr,f),该参数解释了FSC片材在HSC梁中包裹张力搭接区的粘结强度贡献。在AUB研究的第三阶段,如果使用普通强度混凝土(NSC)代替HSC,则验证了阶段1和阶段2的结果趋势以及所提出的分析模型的有效性。在正弯曲中测试了七个标称混凝土强度为27.58 MPa(4 ksi)的梁。每个横梁在横梁中跨的恒定弯矩区域设计有张力搭接。主要测试变量是配置(1条,2条或连续条)和包裹拼接区域的CFRP板的层数(1层或2层)。测试结果表明,CFRP片材可以以与HSC非常相似的方式有效地增强NSC中拉伸搭接接头的破坏模式的粘结强度和延展性。另外,先前针对HSC提出的FRP约束指数在NSC情况下被证明是有效的。

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