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Experimental study on the interfacial shear stress of RC beams strengthened with prestressed BFRP rod

机译:预应力BFRP加固RC梁的界面剪应力试验研究。

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On the strengthening of concrete structures by externally bonding prestressed BFRP (basalt fiber reinforced polymer) rod, the release of the prestress may cause an interfacial shear stress concentrated at the prestressed BFRP ends which may cause BFRP prematurely debonding. In order to avoid this problem, the shear stress caused by BFRP prestress should not exceed the interfacial adhesive strength. In this study, the mechanical properties of the adhesive interface at the ends of the BFRP rod which is bonded to the concrete beams are evaluated by experimental studies considering different test methods such as the stretch adhesion test at both ends (double pull-pull test) and prestressed import test (single push-push test). Based on the existing research results, a modified formula is derived to predict the interfacial shear stresses, BFRP stresses and maximum achievable prestress level. The accuracy and validity of the proposed theoretical formula are confirmed by the experimental results. Moreover, an effective method of decreasing the interfacial shear stress is proposed for avoiding the possible premature failure near the BFRP ends caused by the shear stress concentration.
机译:在通过外部粘结预应力BFRP(玄武岩纤维增强聚合物)杆加固混凝土结构时,预应力的释放可能会导致界面剪切应力集中在预应力BFRP端部,从而可能导致BFRP提前脱胶。为了避免此问题,由BFRP预应力引起的剪切应力不应超过界面粘合强度。在这项研究中,通过考虑不同测试方法(例如两端的拉伸粘合力测试(双拉力测试))的实验研究,评估了结合到混凝土梁上的BFRP杆端部的粘合界面的机械性能。和预应力导入测试(单推测试)。在现有研究成果的基础上,推导了修正公式,以预测界面剪切应力,BFRP应力和最大可达到的预应力水平。实验结果证实了所提出理论公式的准确性和有效性。此外,提出了一种减小界面剪切应力的有效方法,以避免由于剪切应力集中而在BFRP端部附近引起的过早破坏。

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