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Study on uplift performance of stud connector in steel-concrete composite structures

机译:钢-混凝土组合结构中双头螺栓连接器的抗拔性能研究

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摘要

The main role of studs, which act as connectors of the steel-concrete composite structures, is to ensure that the steel and the concrete work together as a whole. The studs in steel-concrete composite structures bear the shearing force in the majority of cases, but in certain locations, such as the mid-span of a simply supported composite beam, the studs bear axial uplift force. The previous studies mainly focused on the shearing performance of the stud by some experimental and theoretical effort. However, rare studies involved the uplift performance of studs. In this paper, the single stud uplift test on 10 composite specimens was performed. Meanwhile, based on the test, numerical analysis was introduced to simulate the concrete damage process due to the stud uplifted from concrete. The static ultimate bearing capacity, under which the stud connector was pulled out from the damaged reinforced concrete, is much larger than the cyclic ultimate bearing capacity, under which the weld joint between stud and steel plate fractured. According to the fatigue test results of 7 specimens, the fatigue S-N curve of the construction detail after minus 2 times standard deviation is log N = 24.011 -9.171 log Delta sigma, the fatigue strength corresponding to 2 x 10(6) cycles is 85.33 MPa.
机译:作为钢混混凝土结构连接件的螺柱的主要作用是确保钢和混凝土整体协同工作。在大多数情况下,钢混凝土组合结构中的立柱承受剪切力,但是在某些位置,例如简单支撑的组合梁的中跨,立柱承受轴向力。以前的研究主要通过一些实验和理论上的努力来研究螺柱的剪切性能。但是,很少有研究涉及螺柱的提升性能​​。在本文中,对10个复合材料样本进行了单头螺栓提升试验。同时,在试验的基础上,引入数值分析来模拟由于混凝土上钉引起的混凝土破坏过程。从损坏的钢筋混凝土中拉出双头螺栓连接器的静态极限承载力远大于双头螺栓和钢板之间的焊接接头断裂的循环极限承载力。根据7个试样的疲劳测试结果,减去2倍标准偏差后,结构细节的疲劳SN曲线为log N = 24.011 -9.171 log Delta sigma,对应于2 x 10(6)个循环的疲劳强度为85.33 MPa 。

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