Wu Fangwen, Liu Shuo, Xue Chengfeng, Yang Kangkang, Feng Yanpeng, Zhang Hao
School of Highway, Chang'an University, Xi'an 710064, China.
School of Civil Engineering, Xijing University, Xi'an 710123, China.
Materials (Basel). 2021 Jun 17;14(12):3345. doi: 10.3390/ma14123345.
Perfobond rib (PBL) shear connectors, made up of the perforated steel plates with the penetrating rebars passing through the holes, are extensively adopted in steel-concrete composite structures for their excellent performance. The adequate understanding of mechanical properties for PBL connectors is of great significance for their reasonable design. In this study, a push out experiment, including 12 specimens with the parameters of concrete strength, diameter of penetrating rebars and the number of holes on perforated steel plate, was performed to explore the mechanical behavior of PBL connectors with steel fiber high strength concrete (SFHSC). The experimental results showed that the shear capacity of the PBL connectors increased with the increase in concrete strength, diameter of the penetrating rebars and the number of holes. Furthermore, a general prediction formula for the shear capacity of PBL connectors was developed, which considers the shear contribution of concrete dowels, concrete end-bearing, interfacial bonding between the perforated steel plates and concrete and the penetrating rebars as well as the enhancement effect of steel fibers. The prediction results of the equation are in good agreement with the experimental data and could provide a reference for the design of PBL connectors.
穿孔板条(PBL)抗剪连接件由带孔钢板和穿过孔的贯穿钢筋组成,因其优异的性能而被广泛应用于钢-混凝土组合结构中。充分了解PBL连接件的力学性能对其合理设计具有重要意义。在本研究中,进行了一项推出试验,包括12个试件,研究了混凝土强度、贯穿钢筋直径和带孔钢板上的孔数等参数对钢纤维高强混凝土(SFHSC)中PBL连接件力学性能的影响。试验结果表明,PBL连接件的抗剪承载力随着混凝土强度、贯穿钢筋直径和孔数的增加而提高。此外,还建立了考虑混凝土销栓抗剪、混凝土端承力、穿孔钢板与混凝土及贯穿钢筋之间的界面粘结力以及钢纤维增强作用的PBL连接件抗剪承载力通用预测公式。该公式的预测结果与试验数据吻合良好,可为PBL连接件的设计提供参考。