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Static behaviour of multi-row stud shear connectors in high- strength concrete

机译:高强度混凝土中多排螺柱剪切连接器的静态性能

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In regions of high shear forces in composite bridges, headed stud shear connectors need to be arranged with a small spacing in order to satisfy the design requirement of resisting the high interface shear force present at this location. Despite this, studies related to groups of headed studs are somewhat rare. This paper presents an investigation of the static behaviour of grouped stud shear connectors in high-strength concrete. Descriptions are given of five push-out test specimens with different arrangements of the studs that were fabricated and tested, and the failure modes, load-slip response, ultimate load capacities and related slip values that were obtained are reported. It is found that the load-slip equation given by some researchers based on a single stud shear connector in normal strength concrete do not apply to grouped stud shear connectors in high-strength concrete, and an algebraic load-slip expression is proposed based on the test results. Comparisons between the test results and the formulae provided by some national codes show that the equations for the ultimate capacity provided in these codes are conservative when used for connectors in high-strength concrete. A reduction coefficient is proposed to take into account the effect of the studs being in a group.
机译:在复合桥的高剪切力区域中,有头双头螺栓剪切连接器需要以较小的间距布置,以满足满足抵抗在此位置出现的高界面剪切力的设计要求。尽管如此,有关头螺栓组的研究还是很少的。本文对成组的高强混凝土螺栓剪切连接器的静态性能进行了研究。给出了五个已制造和测试的具有不同螺柱排列方式的推出试件的说明,并报告了所获得的破坏模式,载荷滑动响应,极限载荷能力和相关的滑动值。结果发现,一些研究人员基于普通强度混凝土中的单螺柱剪力连接器给出的荷载滑移方程不适用于高强度混凝土中的成组螺柱剪力连接器,并基于该公式提出了代数荷载滑移表达式。检测结果。测试结果与某些国家法规提供的公式之间的比较表明,这些法规中提供的极限承载力方程用于高强度混凝土中的连接器时比较保守。考虑到双头螺栓在一组中的影响,建议采用减小系数。

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