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首页> 外文期刊>Journal of Composites for Construction >Seismic Rehabilitation of Corner RC Beam-Column Joints Using CFRP Composites
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Seismic Rehabilitation of Corner RC Beam-Column Joints Using CFRP Composites

机译:CFRP复合材料对RC角柱节点的抗震修复

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摘要

In this paper, efficiency and effectiveness of carbon fiber reinforced polymers (CFRPs) in upgrading the shear strength and ductility of seismically deficient corner or knee reinforced concrete beam-column joints have been studied. For this purpose, four as-built corner/knee joints were constructed with no transverse reinforcement, representing extreme case of preseismic code design construction practice of joints and encompassing many existing beam-column corner joints. Out of these four as-built specimens, two specimens were used as baseline specimens (control specimens) and other two were strengthened with CFRP sheets under two different schemes (strengthened specimens). In the first scheme, CFRP sheets were epoxy bonded to joint, beams, and part of the column regions. In the second scheme, however, sheets were epoxy bonded to joint region only but they were effectively prevented against any possible debonding through mechanical anchorages. All these four subassemblages were subjected to cyclic lateral load histories to simulate loading due to earthquake and provide the equivalent of severe earthquake damage. The damaged control specimens were then repaired by filling their cracks through epoxy and externally bonding them with CFRP sheets under the same above two schemes. These repaired specimens were subjected to the similar cyclic lateral load history and their response histories were obtained. Response histories of control, repaired, and strengthened specimens were then compared. The results were compared through hysteretic loops, load-displacement envelopes, column profiles, ductility, and stiffness degradation. The comparison shows that CFRP sheets are very effective in improving shear resistance and deformation capacity of the corner beam-column joints and delaying their stiffness degradation. Shear capacities of control, repaired, and strengthened specimens were also predicted using writers' published formulation. The predicted shear capacities were in a good agreement with the experimental values.
机译:本文研究了碳纤维增强聚合物(CFRP)在提高抗震性不足的拐角或膝盖增强混凝土梁-柱节点的抗剪强度和延性方面的效率和有效性。为此目的,建造了四个不带横向加强件的竣工角/膝关节,这代表了接头抗震规范设计施工实践的极端情况,并涵盖了许多现有的梁柱角节点。在这四个竣工标本中,有两个标本用作基准标本(对照标本),另外两个标本则在两种不同方案下用CFRP板加固(加强标本)。在第一种方案中,将CFRP板环氧树脂粘合到接缝,梁和部分柱状区域。然而,在第二种方案中,片材仅通过环氧树脂粘结到接合区域,但是有效地防止了它们通过机械固定而无法脱胶。所有这四个子组合都经历了周期性的横向荷载历史,以模拟地震造成的荷载,并提供了与严重地震破坏相当的效果。然后,按照上述两种方案,通过用环氧树脂填充裂缝并用CFRP板将其外部粘合,以修复损坏的对照样品。这些修复的标本受到相似的周期性侧向荷载历史,并获得了它们的响应历史。然后比较了对照,修复和强化标本的响应历史。通过磁滞回线,载荷-位移包络线,柱形,延性和刚度下降来比较结果。比较表明,CFRP板在改善角梁-柱节点的抗剪强度和变形能力以及延缓其刚度退化方面非常有效。还使用作者发表的公式预测了控制,修复和增强标本的剪切能力。预测的剪切能力与实验值非常吻合。

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