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Experimental and analytical studies on peeling and spalling resistance of unidirectional FRP sheets bonded to concrete

机译:混凝土单向FRP板抗剥落性的试验与分析研究

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In this paper, the peeling and spalling resistance of unidirectional fiber reinforced polymer (FRP) sheets externally bonded to concrete surface are investigated experimentally through a series of peeling tests. A peeling load is applied on the FRP sheet by a circular rod placed into the central notch of the beam. The effects of different FRP composites, adhesives, surface treatments and strength of concrete on peeling behavior are investigated. Three different modes of debonding failure are identified: debonding within concrete surface, debonding in concrete-adhesive interface, and debonding in FRP composites-adhesive interface. It is observed that the failure pattern debonding within concrete layer yields a higher peeling load carrying capacity. Moreover, a typical failure due to the FRP rupture is also observed experimentally. Based on the experimental results, a theoretical analysis is conducted on specimens representing the peeling behavior and spalling resistance. Load carrying capacity is expressed as the function of peel angle based on geometrical analysis and equilibrium of forces between FRP sheets and the circular rod. Interfacial fracture energy is calculated analytically using membrane-peeling method. Finally, a close agreement between the predicted and the experimental results is demonstrated by means of some numerical examples
机译:本文通过一系列剥离试验,实验研究了外部粘结到混凝土表面的单向纤维增强聚合物(FRP)片材的抗剥离性和抗剥落性。通过放置在梁中央凹口中的圆棒将剥离载荷施加到FRP板上。研究了不同的FRP复合材料,粘合剂,表面处理和混凝土强度对剥离性能的影响。确定了三种不同的脱粘破坏模式:在混凝土表面内脱粘,在混凝土-胶粘剂界面中脱胶以及在FRP复合材料-胶粘剂界面中脱胶。可以看出,混凝土层内部的破坏模式剥离产生了更高的剥离承载能力。此外,还通过实验观察到由于FRP破裂而导致的典型故障。根据实验结果,对代表剥离行为和抗剥落性的试样进行了理论分析。承载能力表示为剥离角度的函数,该函数基于几何分析以及FRP板和圆棒之间的力平衡。使用膜剥离法分析计算界面断裂能。最后,通过一些数值实例证明了预测结果与实验结果之间的紧密一致性。

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