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Behavior of shear connectors in composite column of cold-formed steel with lipped C-channel assembled with ferro-cement jacket

机译:剪切形连接件在带C型槽和铁灰水泥套的冷弯型钢复合柱中的行为

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The use of cold-formed steel (CFS) is very popular in the construction of steel truss system. The research in CFS is also getting more attention in wall panel and column structure. However, an assemblage of CFS with lipped C-channel section into a column alone does not provide significant increase in the compression capacity. Therefore, the purpose of this research study was to enhance the compressive capacity of composite column of CFS with lipped C-channel assembled with ferro-cement jacket by means of shear connectors. Tests were carried out to evaluate the behavior of shear connectors of the proposed composite column assembled together as precast member. Eight push-out test specimens of CFS with lipped C-channel sections assembled with ferro-cement jacket were prepared and tested. In addition, three types of shear connectors namely, bolts (10 mm and 12 mm in diameters), bar angle bolts (10 mm in diameter), and self-drilling screw (6.3 mm in diameter x 12 mm long) were evaluated. Their behavior was analyzed in terms of load slip relationship and failure mode. The results and discussion are presented by varying the number of wire meshes used and types of installed shear connector. The results showed that as the number of layers of wire mesh and the diameter of bolts increased the ultimate load carrying capacity of composite section also increased. The tested results show that the shear connector with 12 mm diameter bolt showed the highest shear capacity. The behavior of shear connectors was also simulated by finite element modeling (FEM) and when compared with the experimental results, they showed a close agreement. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在钢桁架系统的建设中,冷弯型钢(CFS)的使用非常普遍。 CFS的研究也越来越受到墙板和立柱结构的关注。但是,仅将具有C形通道横截面的CFS组装到色谱柱中并不能显着提高压缩能力。因此,本研究的目的是通过剪力连接件来增强带铁水泥套的唇形C型槽CFS复合柱的抗压能力。进行了测试以评估作为预制构件组装在一起的拟议复合柱的剪切连接器的性能。制备并测试了八个带有C型嘴唇的CFS推出的CFS推出试样,这些C形截面与铁水泥护套组装在一起。另外,评估了三种类型的剪切连接器,即螺栓(直径10毫米和12毫米),直角螺栓(直径10毫米)和自钻螺钉(直径6.3毫米x 12毫米长)。根据载荷滑移关系和破坏模式分析了它们的行为。通过改变所用丝网的数量和安装的剪切连接器的类型来呈现结果和讨论。结果表明,随着丝网层数的增加和螺栓直径的增加,复合截面的极限承载力也随之增大。测试结果表明,直径为12 mm的螺栓的剪切连接器显示出最高的剪切能力。剪切连接器的行为也通过有限元建模(FEM)进行了模拟,与实验结果相比,它们显示出紧密的一致性。 (C)2015 Elsevier Ltd.保留所有权利。

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