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Experimental Study on Axial Compression Behavior on Circular Timber Columns Strengthened with CFRP Strips and Near-Surface Mounted Steel Bars

机译:CFRP条带和近表面钢筋强化圆形木柱轴向压缩行为的实验研究

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摘要

To investigate the working mechanism and reinforcement effectiveness of the ancient timber columns strengthened with carbon fiber reinforced polymer (CFRP) strips and near-surface mounted steel bars, in this paper, 42 timber columns have been tested under axial compression, which considered the arrangement modes of CFRP strips, number of near-surface mounted steel bars, and different strengthening ways as the main influencing factors. Based on the test results, failure modes of specimens and materials were analyzed, compressive bearing capacity and ultimate deformation of each specimen were obtained, and load-displacement curves of timber columns were diagramed. Moreover, the load-strain curves of specimens were obtained through the data collected using an extensometer, and the deformation compatibility performance of three different materials was evaluated according to the strain comparison. The test results indicate that the wrapped CFRP strips way and near-surface mounted method can work together to mutually boost the reinforcement effectiveness. The proposed composite reinforcement method can significantly improve the bearing capacity and deformation performance of timber columns. Moreover, the increase in the number of CFRP strips and steel bars generates a marked enhancement in timber columns' compression performance. The load-strain curves of timber, steel bars, and CFRP strips are in good agreement, and the percentage differences of three different materials' strains are almost lower than 20%, illustrating that three types of materials have acceptable deformation compatibility performance. (C) 2021 American Society of Civil Engineers.
机译:为了研究碳纤维增强聚合物(CFRP)条和近表面安装钢筋加强的古代木材柱的工作机制和增强效果,本文在轴向压缩下测试了42个木柱,其考虑了布置模式CFRP条带,近表面安装钢筋的数量,以及不同的强化方式作为主要影响因素。基于测试结果,分析了试样和材料的失效模式,获得了每个样品的压缩承载力和最终变形,图示了木柱的负载 - 位移曲线。此外,通过使用引伸仪收集的数据获得样品的负荷应变曲线,并根据应变比较评价三种不同材料的变形相容性性能。测试结果表明,包裹的CFRP条带方式和近表面安装方法可以一起使用,相互推动增强效果。所提出的复合增强方法可以显着提高木材柱的承载力和变形性能。此外,CFRP条带和钢筋的数量的增加产生了木柱压缩性能的显着增强。木材,钢筋和CFRP条带的负荷 - 应变曲线非常一致,三种不同材料的菌株的百分比差异几乎低于20%,说明三种类型的材料具有可接受的变形兼容性性能。 (c)2021年美国土木工程师协会。

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