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Experimental Investigation on Wide-span Cold-formed Steel Roof Truss System

机译:宽跨度冷成型钢桁架系统的实验研究

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The needs of environmental conservation and speed development in construction industry today have forced the search for better technologies in structural roof truss construction. Cold-formed section is a better choice for roof truss system in sustainable design with several advantages e. g. reduce cutting down of trees, speedy in construction, stronger, lighter and flexible in erection. However the stability issues occurred when wide-span roof truss is implemented with thin-walled cold-formed steel member. A full scale testing for a 25 meter wide-span roof truss system was carried out at Universiti Teknologi Malaysia to study the structural performance. The overall span of the truss is 25m in length with the height of 4.7m and the width of 1.2 m, built up by cold-formed steel channel sections of 150 mm and 74 mm in depth. Uniform loads were placed on the top and bottom chords of the truss using cement bags. The roof truss deformed at a total load of 63.77 kN or 52.7% of the designed load. Failure modes of the truss system were being observed and discussed for further improvement of the truss design.
机译:施工行业环境保护和速度发展的需求迫使迫切搜寻结构屋顶桁架建设中的更好技术。冷成型部分是可持续设计屋​​顶桁架系统的更好选择,具有几个优点e。 G。减少树木的削减,在勃起的施工中快速,更快,更轻,灵活。然而,当宽跨度屋顶桁架用薄壁冷成型钢构件实施时发生稳定性问题。在马来西亚大学的Teknologi Malaysia提供了25米宽跨度屋顶桁架系统的全面测试,以研究结构性能。桁架的整体跨度的长度为25米,高度为4.7米,宽度为1.2米,由150 mm和74mm的冷形成钢通道部分建立在深度。使用水泥袋放置均匀的载荷在桁架的顶部和底部和底部和底部和底部。屋顶桁架以63.77kN的总负载变形,或者设计负载的52.7%。观察桁架系统的失效模式,以进一步改进桁架设计。

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