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Push-out test on the one end welded corrugated-strip connectors in steel-concrete-steel sandwich structure

机译:钢混凝土钢三明治结构中一端焊接波纹带连接器的推出试验

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摘要

Current form of Corrugated-strip connectors are not popular due to the fact that the two ends of this form need to be welded to steel face plates. To overcome this difficulty, a new system is proposed in this work. In this system, bi-directional corrugated-strip connectors are used in pairs, and only one of their ends is welded to the steel face plates on each side. The other end is embedded in the concrete core. To assemble the system, common welding devices are required, and welding process can be performed in the construction sites. By performing the Push-out test under static loading, the authors experimentally assess the effects of geometric parameters on ductility, failure modes and the ultimate shear strength of the aforesaid connectors. For this purpose, sixteen experimental samples are prepared and investigated. For fifteen of these samples, one end of the shear connectors is welded to steel face plates, and the other end is embedded in the concrete. Another experimental sample is prepared in which both ends are welded to the steel face plates. According to the achieved results, several relations are proposed for predicting the ultimate shear strength and load vs. interlayer slip (load-slip) behavior of corrugated-strip connectors. Moreover, these formulas are compared with those of the well-known codes and standards. Accordingly, it is concluded that the authors' relations are more reliable.
机译:由于这种形式的两端需要焊接到钢面板的事实,瓦楞纸带连接器的当前形式不流行。为了克服这种困难,在这项工作中提出了一种新系统。在该系统中,双向波纹带连接器成对使用,并且它们的一个端部仅焊接到每侧的钢面板上。另一端嵌入混凝土芯中。为了组装系统,需要公共焊接装置,并且可以在施工地点进行焊接过程。通过在静态负载下进行推出测试,作者通过实验评估几何参数对上述连接器的延展性,故障模式和极限剪切强度的影响。为此目的,制备和研究了16种实验样品。对于这些样品的十五个,剪切连接器的一端焊接到钢面板上,另一端嵌入混凝土中。制备另一个实验样品,其中两端焊接到钢面板上。根据达到的结果,提出了几种关系,用于预测瓦楞条连接器的最终剪切强度和载荷与载荷比(负载滑移)行为。此外,将这些公式与众所周知的码和标准的比较进行比较。因此,得出结论,作者的关系更加可靠。

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