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Experimental Study on System Reliability of Cold-Formed Steel Roof Trusses

机译:冷弯型钢屋盖桁架系统可靠性的试验研究

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This paper presents a research project aimed at advancing the treatment of cold-formed steel (CFS) structural reliability in roof trusses. Structural design today relies almost exclusively on component-level design, so structural safety is assured by limiting the probability of failure of individual components. Reliability of the entire system is typically not assessed, so in a worst-case scenario the system reliability may be less than the component reliability, or in a best-case scenario the system reliability may be much greater than the component reliability. A roof truss itself, is a subsystem with several possible failure modes that are being studied in this test program. These trusses are constructed of CFS members that nest with one another at the truss nodes and are connected by drilling fasteners through the mated surfaces, as well as having steel sheathing fastened to the top chords for lateral bracing. Presented in this paper is a series of full-scale static tests on single cold-formed steel roof trusses with a unique experimental setup. The test specimens were carefully monitored to address multiple failure modes: buckling of the top chord, buckling of the truss webs, and any connection failures. This paper includes the experimental results, the computed system reliability of the trusses as well as their relationship between the components reliability.
机译:本文提出了一项旨在促进屋顶桁架中冷弯型钢(CFS)结构可靠性的处理的研究项目。今天的结构设计几乎完全依赖于组件级设计,因此,通过限制单个组件的故障概率来确保结构安全。通常不评估整个系统的可靠性,因此,在最坏的情况下,系统可靠性可能小于组件的可靠性,或者在最坏的情况下,系统可靠性可能远大于组件的可靠性。屋顶桁架本身​​是一个子系统,具有多种可能的故障模式,正在本测试程序中进行研究。这些桁架由CFS构件构成,它们在桁架节点处相互嵌套,并通过钻孔紧固件穿过配对表面进行连接,并且钢护套固定在顶部弦杆上以进行侧向支撑。本文介绍了一系列在单个冷弯型钢屋架上进行的全面静态测试,并采用了独特的实验装置。仔细监控测试样本以解决多种失效模式:上弦屈曲,桁架腹板屈曲以及任何连接失效。本文包括实验结果,计算得出的桁架系统可靠性以及它们之间构件可靠性之间的关系。

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