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SHEAR STRESS REDUCTION TREATMENT AROUND THE END OF PRESTRESSED FIBER REINFORCED POLYMER SHEETS

机译:预应力纤维增强聚合物板末端剪切应力减少处理

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Prestressing the FRP materials before bonding them to the structural surfaces has been proved to enhance the serviceability of the structures to be strengthened as well as the maximum load carrying capacity. But due to the highly concentrated stresses at the ends of FRP sheets after releasing the prestressing and due to the limited shear strength of concrete to transfer these stresses, debonding failure may occur unless special precautions are taken into consideration. In the current study, an innovative method using a soft layer around the FRP cutoff points is introduced. In this method the concrete cover around the FRP cutoff points is cut and replaced with epoxy putty having low stiffness accompanied with creation of a narrow notch in the concrete cover. A parametric study based on numerical simulation is carried out to optimize the thickness and the stiffness of the soft layer as well as the thickness of the adhesive layer. Based on this study, it is concluded that (1) Increasing the thickness of the adhesive layer is beneficial in relieving shear stresses in the interfacial layer; (2) using soft layer method is highly effective in relieving stress concentrations near FRP termination points; (3) using low-stiffness ep-oxy putty improves the efficiency of the soft layer method; (4) applying a soft layer outside the area of high stress concentration has a marginal enhancement effect on shear stresses.
机译:预应力在将它们粘接到结构表面之前的FRP材料已经证明,提高了要加强的结构的可用性以及最大载荷承载能力。但是由于在释放预应力之后的FRP板末端的高度浓缩应力并且由于混凝土的剪切强度有限,以转移这些应力,除非考虑特殊预防措施,否则可能会发生脱粘失效。在目前的研究中,介绍了使用围绕FRP截止点周围的软层的创新方法。在该方法中围绕FRP截止点的混凝土保护层是切割和用具有低刚度伴随创建在混凝土盖板的窄切口的环氧油灰取代。进行了基于数值模拟的参数研究,以优化软层的厚度和刚度以及粘合剂层的厚度。基于该研究,得出结论:(1)增加粘合剂层的厚度是有益的,在界面层中释放剪切应力; (2)使用软层法高效地缓解FRP终端附近的应力浓度; (3)使用低刚度EP-Oxy Putty提高了软层法的效率; (4)在高应力浓度范围内施加软层对剪切应力产生边缘增强效果。

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