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Experimental and numerical study of the parameters controlling the behavior of double-lap connections of steel plates bolted to hybrid FRP strips

机译:控制用螺栓固定在FRP混合板上的双搭接连接行为的参数的实验和数值研究

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Fiber-reinforced polymers (FRP) are increasingly being used in strengthening existing structures. The bonding technique for strengthening steel structures was found to be associated with the brittle failure of the adhesive. In 2012, researchers validated the use of bolted hybrid FRP (HFRP) in strengthening steel beams. The current study aims to investigate a wide spectrum of test parameters to compile a reliable database on the interfacial behavior of bolted HFRP-steel connections. An extensive experimental program was carried out on forty-two double-lap HFRP-steel bolted connections under tensile loading. Test parameters included the number of washers, clamping torque, diameter of hole, and spacing of bolts. Results recommend snug-tight bolts to be installed in standard size holes with the use of two washers per bolt. Experimental measurements are utilized to develop a multi-linear load-slip model that can be integrated in finite-element models to facilitate the analysis of this particular type of connection.
机译:纤维增强聚合物(FRP)越来越多地用于增强现有结构。发现用于加强钢结构的粘结技术与粘合剂的脆性破坏有关。在2012年,研究人员验证了在钢梁加固中使用螺栓混合FRP(HFRP)。当前的研究旨在调查广泛的测试参数,以建立关于HFRP螺栓连接的界面行为的可靠数据库。在拉力载荷下,对42个双圈HFRP-钢螺栓连接进行了广泛的实验程序。测试参数包括垫圈的数量,夹紧扭矩,孔的直径和螺栓的间距。结果建议将紧紧的螺栓安装在标准尺寸的孔中,每个螺栓使用两个垫圈。利用实验测量来开发多线性负载滑移模型,该模型可以集成到有限元模型中,以便于分析这种特殊类型的连接。

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