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Unidirectional GFRP composite connections between precast concrete wall panels under simulated seismic loads

机译:模拟地震荷载下预制混凝土墙板之间的单向GFRP复合连接

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A method of connecting precast concrete walls with Glass Fiber Reinforced Polymer (GFRP) composite sheets is investigated. The method can be used either as a seismic retrofit of existing welded steel plate connections or in new construction. The specimens consisted of two precast concrete wall panels connected with either two or four layers of unidirectional GFRP composite sheets. Eight specimens were subjected to quasi-static cyclic loads to explore the effect of the following variables on the connection capacity: concrete surface preparation; application of surface pressure to the GFRP laminate; number and orientation of GFRP composite layers; and use of carbon fiber reinforced polymer (CFRP) spike anchors. The performance of the composite connection was acceptable in terms of lateral load, lateral displacement, and shear transfer capacity. Application of surface pressure during curing of the GFRP laminate and the use of CFRP spike anchors improved the lateral load and displacement capacity of the composite connection significantly. An empirical expression is proposed to determine the capacity of the composite connection.
机译:研究了用玻璃纤维增​​强复合材料板连接预制混凝土墙的方法。该方法既可以用作现有焊接钢板连接的抗震改造,也可以用于新结构。标本由两块预制混凝土墙板组成,这两块墙板连接有两层或四层单向GFRP复合板。对八个试样进行准静态循环载荷试验,以探讨以下变量对连接能力的影响:混凝土表面处理;在GFRP层压板上施加表面压力; GFRP复合层的数量和方向;以及碳纤维增强聚合物(CFRP)钉锚的使用。就横向载荷,横向位移和剪切传递能力而言,复合连接的性能是可以接受的。在GFRP层压板固化过程中施加表面压力,以及使用CFRP钉锚,可以显着改善复合连接的侧向载荷和位移能力。提出了一个经验表达式来确定复合连接的容量。

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