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Behavior and design for component and system of cold-formed steel roof trusses

机译:冷弯型钢屋架的行为与设计

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The experimental investigation of the behavior of cold formed steel (CFS) roof trusses does not offer a prior knowledge about either which member will fail first or the capacity of the whole truss. This research aims to investigate the overall behavior of CFS roof trusses using finite element analysis and to predict the failure location in the truss assembly and its cause by calculating the demand to capacity (D/C) ratios using Direct Strength Method (DSM) for each component of the truss and compare it with finite element results. Twelve trusses were examined under the same gravity load and boundary conditions to study the effect of span, the truss web pattern, and the cross section type of truss members on the ultimate strength of the truss.Results revealed that for longer spans, Fink truss configuration is better than Howe truss. The member with the maximum D/C ratio will be the first member to fail in FEA, so engineer can use D/C components' ratio instead of FEA to predict the first member to fail, the cause of failure, and truss capacity. The results of D/C ratio values showed that each truss was designed with high efficient critical components and highly variable D/C ratios, which increase the probability of producing an alternative load path to the loads that are carried by the failed truss members. The reliability of truss system is much greater than the reliability of any component as the truss system's D/C ratio calculated from FEA is always less than the maximum component's D/C ratio from the design.
机译:对冷弯型钢(CFS)屋顶桁架的性能进行的实验研究没有提供有关哪个构件最先失效或整个桁架容量的先验知识。这项研究旨在使用有限元分析方法研究CFS屋架的整体性能,并通过使用直接强度法(DSM)计算需求与容量(D / C)的比率来预测桁架组件中的失效位置及其原因。桁架的构件,并将其与有限元结果进行比较。在相同的重力载荷和边界条件下检查了十二个桁架,以研究跨度,桁架腹板样式以及桁架构件的横截面类型对桁架极限强度的影响。结果表明,对于更长的跨度,Fink桁架构型比豪桁架好。具有最大D / C比的成员将成为FEA中第一个失效的成员,因此工程师可以使用D / C组件的比率代替FEA来预测第一个失效的成员,失效原因和桁架容量。 D / C比值的结果表明,每个桁架的设计都具有高效的关键构件和高度可变的D / C比,这增加了为发生故障的桁架构件承载的载荷产生替代载荷路径的可能性。桁架系统的可靠性远高于任何组件的可靠性,因为通过FEA计算得出的桁架系统的D / C比始终小于设计中最大组件的D / C比。

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