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Effect of screw distance on combined profiles cold-formed steel in increasing the compression member capacity

机译:螺钉距离对组合型材冷成型钢的影响增加压缩构件容量

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The use of cold-formed steel (CFS) as a frame in a single-story structure building system has been widely applied. However, the use of cold-formed steel for multi-story buildings is still constrained in the structure system, especially column. In the conventional structure, columns used in large dimension, height, h> 150 mm and thickness, t> 1.2 mm which makes the construction cost expensive. An innovation of cold-formed steel combine profile into one compression member unit is very interesting to study, furthermore, previous research provides information on a variety of cold-formed steel behaviors with small dimensions of height, h <150 mm and thickness, t <1mm, which can be developed into columns with greater strength. There have been a lot of research on behavior on cold-formed steel, but the study on screw optimization especially on combined profile to become compression member still need to develop. From the compression test on double profile back to back and flange to flange length, l = 300 mm and screw distance variation, 25 to 150 mm with 50 mm intervals, indicating a response similarity at screw spacing 25 mm, 50 mm and 75 mm, while the screw distance 100 mm, 125 mm and 150 mm experienced backline capacity.
机译:在单层结构建筑系统中使用冷成型钢(CFS)作为框架已被广泛应用。然而,用于多层建筑的冷成型钢仍然受到结构系统,尤其是柱子。在常规结构中,大尺寸,高度,H> 150mm和厚度,T> 1.2mm的柱子使得施工成本昂贵。冷成型钢的创新结合到一个压缩构件单元中是非常有趣的,此外,先前的研究提供了关于各种冷成型钢行为的信息,其高度小,H <150 mm和厚度,T < 1毫米,可以发展成具有更大强度的柱子。对冷成型钢的行为有很多研究,但螺丝优化的研究特别是在组合型材上成为压缩构件仍然需要开发。从双重轮廓上的压缩测试回到背部和法兰到法兰长度,L = 300 mm和螺钉距离变化,25至150 mm,间隔50 mm,表示螺钉间距为25 mm,50 mm和75 mm的响应相似性,螺钉距离100 mm,125 mm和150 mm经验的后轴容量。

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