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Experimental study of static behaviour of stud shear connectors

机译:钉剪连接器静态性能的实验研究

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摘要

An experimental program involving the test of 25 push-out specimens was conducted to study the behaviour and strength of shear studs in the application of composite bridge decks and to assess the detailing requirement specified in the code practice. Testing parameters included reinforcement mesh position, presence of stud head, and stud height. An alternative type of shear studs, referred to as adjustable studs, was also studied and its capacity was compared with conventional studs. Results showed that the position of reinforcement mesh affected the specimen failure mode and ultimate load. Comparing with the cases where the mesh was placed either flush with the stud head or above the stud, the maximum ultimate load was reached and the failure was by stud shear-off when the mesh intercepted the studs. Shear studs with heads resulted in a higher ultimate load in specimens than unheaded shear studs. In the comparison between conventional and adjustable shear studs, while they shared similar failure modes, adjustable studs showed on average lower load capacity than their conventional counterparts. For all specimens studied, only specimens with reinforcement mesh satisfying the detailing requirement were able to attain the code specified strength.
机译:进行了一个涉及25个推出试件的试验的试验程序,以研究复合桥面板在应用中抗剪栓钉的性能和强度,并评估规范中规定的详细要求。测试参数包括钢筋网位置,螺柱头的存在和螺柱高度。还研究了另一种类型的剪力螺柱,称为可调节螺柱,并将其能力与常规螺柱进行了比较。结果表明,钢筋网的位置会影响试样的破坏模式和极限荷载。与将网孔放置在与柱头齐平或位于柱头上方的情况相比,可以达到最大极限载荷,并且当网孔拦截柱头时,会因柱头剪切而导致破坏。带头的抗剪钉比无头的抗剪钉产生更高的极限载荷。在常规剪力钉和可调节剪力钉之间的比较中,尽管它们共享相似的破坏模式,但可调剪力钉的平均承载能力比传统剪力钉低。对于所有研究的标本,只有具有满足详细要求的钢筋网的标本才能达到规范规定的强度。

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