The use of composite systems comprising of concrete and hot-rolled steel (HRS) sections is well established as observed by extensive rules and requirements for their design as prescribed in current design codes. There is, however, few technical information available about the use of composite systems that incorporates the use of light gauge steel sections, despite the potentials of the system in residential and light industrial constructions. Therefore, this study investigates the strength capacity of bolted shear connectors with cold-formed steel (CFS) section integrated as composite beam in self-compacting concrete. In this paper, four composite beam specimens of dimensions (4500 mm x 1500 mm x 75 mm) with bolted shear connectors of M12 and M14 of grade 8.8 installed on the upper flanges of the coupled back-to-back CFS I-section with longitudinal spacing’s of 250 mm and 300 mm centers and spaced 75 mm laterally were fabricated, cast and tested to failure using four-point bending test. Shear connector size and the longitudinal spacing were the varied parameters, and their influence was investigated on the ultimate load and ultimate moment capacities. The results showed that, the ultimate load and ultimate moment capacities were both influenced remarkably by the studied parameters. However, results of theoretical analysis, revealed good agreement between the experimental and the theoretical results. This shows that, the plastic analysis results for the ultimate moment capacity of the composite beams can be estimated efficiently by using the constitutive laws as prescribed by Eurocodes.
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机译:根据现行设计规范中有关其设计的广泛规则和要求,可以很好地确定由混凝土和热轧钢(HRS)型材组成的复合系统的使用。然而,尽管该系统在住宅和轻工业建筑中具有潜力,但是几乎没有关于使用轻型钢型材的复合系统的技术信息。因此,本研究研究了在自密实混凝土中,作为复合梁的冷弯型钢(CFS)型截面螺栓连接的剪切连接器的强度能力。本文将四个尺寸为(4500 mm x 1500 mm x 75 mm)的复合梁样本安装在耦合的背对背CFS I型截面的上法兰上,并用8.8级的M12和M14螺栓剪切连接器进行安装制作了250毫米和300毫米中心间距,横向间隔为75毫米的间距,并进行了铸造,并使用四点弯曲测试对其进行了破坏测试。剪切连接器的尺寸和纵向间距是变化的参数,并研究了它们对极限载荷和极限力矩能力的影响。结果表明,所研究的参数对极限载荷和极限弯矩承载力都有显着影响。然而,理论分析的结果表明实验和理论结果之间有很好的一致性。这表明,通过使用欧洲规范规定的本构定律,可以有效地估算出复合梁的极限弯矩承载力的塑性分析结果。
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