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首页> 外文期刊>Composites: mechanics, computations, applications >NEW METHODS FOR BONDING FRP STRIPS ONTO MASONRY STRUCTURES: EXPERIMENTAL RESULTS AND ANALYTICAL EVALUATIONS
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NEW METHODS FOR BONDING FRP STRIPS ONTO MASONRY STRUCTURES: EXPERIMENTAL RESULTS AND ANALYTICAL EVALUATIONS

机译:将FRP条带粘结到砌体结构上的新方法:实验结果和分析评估

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摘要

The paper presents and analyzes the results of an experimental research on masonry walls tested first in unreinforced condition and then in FRP reinforced condition. The specimens were three real-scale perforated brick walls. The experimentation consisted in collapse testings under increasing lateral load and constant vertical load. The reinforced condition consisted in strengthening the masonry walls with Carbon Fiber-Reinforced-Polymeric strips bonded onto the masonry surface. The CFRP reinforcement was applied by using three different techniques. The first technique involved epoxy bonding of strips (common application). The second technique involved the bonding of strips with epoxy resin and strengthening the bond with studs (FRP studs embedded into the masonry and connected with the strips). The third technique consisted in the epoxy bonding of strips under vacuum (i.e., using a special vacuum-packed system to push the resin into the masonry as deep as possible). This research aimed at investigating the differences in the structural behaviors of tested perforated masonry walls due to these three different CFRP application techniques. Actually, the experimental results prove that the application technique influences both the load-carrying capacity and the ultimate horizontal displacement of the perforated tested masonry walls. The comparison between the experimental results and code provisions showed that, as regards the debonding of CFRP strips, the latter underestimate the former excessively.
机译:本文介绍并分析了先在非增强状态下然后在FRP增强状态下测试的砌体墙的实验研究结果。标本是三个真实比例的多孔砖墙。实验包括在增加的侧向载荷和恒定的垂直载荷下的坍塌试验。加固条件包括用粘结在砖石表面的碳纤维增强聚合物条加固砖石墙。通过使用三种不同的技术来应用CFRP加固。第一项技术涉及条带的环氧粘合(常见应用)。第二种技术涉及将条带与环氧树脂粘合,并加强与双头螺栓(嵌在砖石中并与双头带相连的FRP双头螺栓)之间的粘合。第三种技术是在真空下对条带进行环氧树脂粘结(即,使用特殊的真空包装系统将树脂尽可能深地推入砖石中)。这项研究旨在调查由于这三种不同的CFRP应用技术而导致的测试多孔砖砌墙的结构性能差异。实际上,实验结果证明,该应用技术既影响了承载能力,也影响了多孔砖砌体墙体的极限水平位移。实验结果与规范规定之间的比较表明,就CFRP胶条的脱胶而言,后者过低地估计了前者。

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