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Experimental investigation on behavior of FRP-strengthened RC beams subjected to combined twisting-bending moments

机译:FRP加强RC光束对组合扭曲弯矩的实验研究

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摘要

Even small torsional moments can produce significant stress in beams and alter the behavior of the entire structure. Although many studies on the torsional behavior of reinforced concrete (RC) beams strengthened with fiber-reinforced polymer (FRP) sheets, there are still some uncertainties regarding the behavior of these beams under combined torsional-bending loads. In practice, torsional and bending loads usually occur together, and it is widely believed that the effects of these loads interact and interfere with each other. This study investigated the torsional and bending behavior of FRP-strengthened RC beams under pure torsion and combined torsionbending. For this investigation, 8 half-scale RC beam specimens divided into two groups of 4 with lengths of 1300 mm and 2300 mm were subjected to pure torsion and combined torsion-bending loads, respectively. In each group, three specimens were strengthened with the sheets of carbon fiber-reinforced polymer (CFRP) with three different configurations, and one beam was left unchanged to serve as the control specimen. Finally, specimens of the two groups were analyzed and compared in terms of cracking torsional strength, ultimate torsional strength, cracking twist angle, and ultimate twist angle.
机译:即使是小扭转时刻也会在光束中产生显着的应力,并改变整个结构的行为。虽然许多关于用纤维增强聚合物(FRP)片增强的钢筋混凝土(RC)光束的扭转行为的研究,但是关于这些梁在组合扭转负载下的这些梁的行为仍有一些不确定性。在实践中,扭转和弯曲载荷通常一起发生,并且普遍认为这些负载的效果相互作用并相互干扰。本研究研究了FRP加强的RC梁在纯扭转和组合围绕下弯曲的扭转和弯曲行为。对于该研究,将8个半级RC光束样本分成两组,长度为1300 mm和2300mm,分别进行纯扭转和组合扭转载荷。在每组中,用具有三种不同的构造的碳纤维增强聚合物(CFRP)的碳纤维增强聚合物(CFRP)加强了三种试样,并且一个梁保持不变以用作对照样品。最后,在裂缝扭转强度,最终扭转强度,裂纹扭角和最终扭转角度方面进行分析并比较两组标本。

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