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Experimental Study on RC Walls with Opening Strengthened by Externally Bonded CFRP

机译:外贴CFRP加固RC墙的试验研究。

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摘要

RC walls with an opening under eccentric axial loads exhibit cracks around the opening leading to a reduction in the ultimate strength of the wall. These cracks are mainly due to changes in the load path within the wall and stress concentration around the opening. Strengthening is usually required to enhance the ultimate strength of the wall, and carbon fiber-reinforced polymer (CFRP) is a suitable option for this purpose. In this paper, 18 one-third scaled RC walls with an opening were strengthened using seven distinct externally bonded (EB) CFRP layouts and were loaded up to failure under various support conditions. These walls were subjected to a uniformly distributed axial load with an eccentricity of one-sixth of the wall's thickness. Crack patterns, failure modes, ultimate strength, and typical strain measurement of CFRP-concrete interface are presented and discussed in detail. The experimental outcomes revealed that the CFRP layout enhances the ultimate strength of RC walls by 14.0%-59.7% and 3.0%-40.8% for walls under one-way and two-way actions, respectively. The efficiency of each CFRP layout is also investigated to prioritize the appropriate layouts for each specific support condition. (C) 2019 American Society of Civil Engineers.
机译:在偏心轴向载荷下具有开口的RC墙在开口周围出现裂纹,从而导致墙的极限强度降低。这些裂纹主要是由于壁内载荷路径的变化以及开口周围的应力集中所致。通常需要加强以增强墙体的极限强度,而碳纤维增强聚合物(CFRP)是实现此目的的合适选择。在本文中,使用七个不同的外部粘结(EB)CFRP布局加固了18个有开口的1/3比例钢筋混凝土墙,并在各种支撑条件下加载至破坏。这些壁承受了均匀分布的轴向载荷,其偏心距为壁厚的六分之一。提出并详细讨论了CFRP-混凝土界面的裂缝模式,破坏模式,极限强度和典型应变测量。实验结果表明,在单向和双向作用下,CFRP布局分别使钢筋混凝土墙的极限强度提高了14.0%-59.7%和3.0%-40.8%。还研究了每种CFRP布局的效率,以便为每种特定的支撑条件确定合适的布局的优先级。 (C)2019美国土木工程师学会。

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