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Experimental Study on a Novel Shear Connection System for FRP-Concrete Hybrid Bridge Girder

机译:FRP-混凝土混合桥梁新型剪力连接系统的试验研究

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摘要

The study presents experimental results of an investigation on a novel shear connection system for hybrid bridge girders composed of laminated composite beams and concrete slabs. The special connector comprised of a steel plate and welded bolts is attached to beam’s top flange by adhesive bonding and with a preset torque of nuts. The study’s purpose is to check ductility, safety, reliability and robustness of the shear connection before its implementation in the first Polish composite bridge. Three static push-out tests and fatigue test were performed to evaluate the shear connection behavior under static and cyclic loading. The load–slip curves, shear capacity, fatigue strength and failure mechanisms of the novel shear connectors are discussed. The high-slip modulus indicates that the connectors can very efficiently promote the composite action. The ultimate resistance and the fatigue strength obtained from the test was about 12% and 66% higher than the characteristic resistance and the fatigue strength of common headed studs, according to Eurocode 4, respectively. An estimated global safety factor of 3.67 showed the high safety, reliability and robustness of the novel connection system. The study discusses the structural performance of the proposed connection system, demonstrating its technical suitability.
机译:这项研究提出了一种研究的试验结果,该研究研究了一种由叠合的复合梁和混凝土板组成的混合桥梁大梁的新型剪力连接系统。由钢板和焊接螺栓组成的特殊连接器通过粘合剂结合并以预设的螺母扭矩固定在横梁的顶部法兰上。这项研究的目的是检查剪切连接的延性,安全性,可靠性和坚固性,然后再在第一座波兰复合材料桥中实施剪切连接。进行了三个静态推出试验和疲劳测试,以评估在静态和循环载荷下的剪切连接行为。讨论了新型剪切连接器的载荷-滑动曲线,剪切能力,疲劳强度和破坏机理。高滑模量表明连接器可以非常有效地促进复合作用。根据欧洲规范4,从测试中获得的极限阻力和疲劳强度分别比普通带头螺柱的特性阻力和疲劳强度高12%和66%。估计的全球安全系数为3.67,表明该新型连接系统具有很高的安全性,可靠性和鲁棒性。该研究讨论了所提出的连接系统的结构性能,证明了其技术适用性。

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