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GFRP hollow column to built-up beam adhesive connection: Mechanical behaviour under quasi-static, cyclic and fatigue loading

机译:GFRP空心柱与组合式梁胶连接:准静态,周期性和疲劳载荷下的机械性能

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摘要

A new adhesive beam-column connection is tested which possess the highest strength and stiffness compared to any other similar adhesive or bolted connection tested in the past. A square GFRP hollow section, acing as a column, was connected to a built-up beam made of two GFRP U-profiles by means of either epoxy or steel bolts. The beam-column assembly formed an L-shaped frame which was tested by applying a point load at the beam free end while the column was fixed at its base. Five bolted and five adhesive replicate connections were subjected to quasi-static loading up to failure. Another three adhesive connections were subjected to 400, 800 or 1200 cycles of loading and unloading with the maximum load being equal to 0.50 P-u,P-avg, where P-u,P-avg is the average static strength of the replicate adhesive specimens. M the end of the cyclic loading, the latter specimens were loaded quasi-statically to failure. Finally, another two adhesive connections were subjected to fatigue type loading. They were successively subjected to at least 196 cycles of loading and unloading with the load amplitude being 0.50 P-u,P-avg in the first 60 cycles, 0.75 P(u,avg )in the next 60 cycles, 0.85 P-u,P-avg in the following 60 cycles and 0.95 P-u,P-avg after the 180th cycle. The test results show that the proposed adhesive connection can achieve on average 82% higher strength and 380% higher rotational stiffness than the companion bolted connection. Furthermore, the above cyclic loading has negligible effect on either the strength or the stiffness of the connection. Finally, the connection can sustain the foregoing fatigue load up to almost 180 cycles without significant damage but it will not be able to withstand the full 60 cycles of the load with 0.95 P-u,P-avg amplitude. The current results demonstrate the superior strength and stiffness of the new adhesive connection compared to a similar bolted connection.
机译:与过去测试过的任何其他类似粘合剂或螺栓连接相比,该新型粘合剂梁-柱连接具有最高的强度和刚度。方形的GFRP中空截面(作为圆柱体)通过环氧树脂或钢螺栓连接到由两个GFRP U型材制成的组合梁上。梁柱组件形成一个L形的框架,该框架通过在将梁固定在其底部时对梁的自由端施加点载荷进行测试。对五个螺栓连接和五个胶粘剂重复连接进行了准静态加载,直至失效。另外三个粘合剂连接经受了400、800或1200个加载和卸载循环,最大载荷等于0.50 P-u,P-avg,其中P-u,P-avg是复制的粘合样品的平均静态强度。在循环加载结束时,后一个样本被准静态加载至破坏。最后,对另外两个粘合剂连接进行疲劳型加载。它们连续经历了至少196个加载和卸载循环,在前60个循环中的载荷振幅为0.50 Pu,P-avg,在随后60个循环中的载荷振幅为0.75 P(u,avg),在60个循环中为0.85 Pu,P-avg随后的60个周期和第180个周期后的0.95 Pu,P-avg。测试结果表明,与配对的螺栓连接相比,拟议的胶粘连接平均可实现高82%的强度和380%的旋转刚度。此外,上述循环载荷对连接的强度或刚度的影响可忽略不计。最终,该连接可以承受上述疲劳载荷直至近180个循环,而不会造成重大损坏,但是它将无法承受0.95 P-u,P-avg振幅的整个60个循环的载荷。目前的结果表明,与类似的螺栓连接相比,新型粘合连接具有出色的强度和刚度。

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