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首页> 外文期刊>European Journal of Environmental and Civil Engineering >Shear strengthening of RC deep beams with sprayed fibre-reinforced polymer composites (SFRP) and anchoring systems: part 1. Experimental study
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Shear strengthening of RC deep beams with sprayed fibre-reinforced polymer composites (SFRP) and anchoring systems: part 1. Experimental study

机译:喷涂纤维增强聚合物复合材料(SFRP)和锚固系统对RC深梁的抗剪加固:第1部分。实验研究

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This paper presents an experimental study on externally bonded sprayed fibre reinforced polymers (shortly as SFRP) RC deep beams to investigate the efficiency of SFRP in shear strengthening. Based on the experimental results, reinforced concrete deep beams strengthened by SFRP composites may fail by debonding of SFRP from the beam surface. To avoid such failures, various forms of anchoring systems have been proposed and tested to evaluate their performances in preventing the delamination of SFRP from concrete surface. A series of three-point loading tests was conducted on SFRP strengthened deep beams. The research parameters included SFRP material (glass and carbon), thickness, configuration, i.e. SFRP applied onto two or three sides, compressive strength of concrete and types of anchoring systems. Proposed anchoring systems (Through Bolts, Mechanical Expansion Bolts and Epoxy Chemical Bolts) were found to be effective to prevent the delamination of SFRP. Test results indicated that SFRP was capable of enhancing the ultimate load and deflection of RC deep beams provided that adequate anchoring system is installed. The performance of SFRP strengthening depends on several key variables such as SFRP material, thickness, strengthening configuration, strength of concrete, type of anchoring system and length of the anchor bolt.
机译:本文介绍了外粘结喷涂纤维增强聚合物(简称SFRP)RC深梁的实验研究,以研究SFRP在抗剪加固中的效率。根据实验结果,由SFRP复合材料增强的钢筋混凝土深梁可能会由于SFRP从梁表面脱粘而失效。为了避免此类故障,已提出并测试了各种形式的锚固系统,以评估其在防止SFRP从混凝土表面分层方面的性能。在SFRP加固的深梁上进行了一系列的三点荷载测试。研究参数包括SFRP材料(玻璃和碳),厚度,构型,即应用于两面或三面的SFRP,混凝土的抗压强度和锚固系统的类型。发现建议的锚固系统(通螺栓,机械膨胀螺栓和环氧化学螺栓)可有效防止SFRP分层。测试结果表明,只要安装了足够的锚固系统,SFRP就能增强RC深梁的极限荷载和挠度。 SFRP加固的性能取决于几个关键变量,例如SFRP材料,厚度,加固构造,混凝土强度,锚固系统类型和地脚螺栓长度。

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