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Performance Evaluation of Portal Frame System in Low-Rise Light-Frame Wood Structures

机译:低矮轻型木结构门架系统的性能评估

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In this paper, results are presented from a testing program focused on evaluating the performance of portal frame systems. A total of nine full-scale portal frame assemblies with six different configurations were tested under monotonic and reversed cyclic loading. The portal frames were 3.66 m in length and 2.44 m in height, with a 406-mm wall segment at each end of the portal frame. From the experimental results, it was observed that the corner joint between the header and narrow braced wall segment governs the lateral load-carrying capacity and ultimate displacement of the portal frame. Installation of metal straps considerably increased the lateral load-carrying capacity of the portal frame assemblies. Straps placed directly on the lumber framing showed increased resistance compared to those installed on the oriented strand board. Portal frames with hold-downs had a greater lateral load-carrying capacity those without hold-downs. A comparison was made between portal frames and conventional braced walls used in low-rise light-frame wood buildings. The portal frames in general have lower initial stiffness than the braced walls. A portal frame with sheathing on one side only and no hold-down has an ultimate load-carrying capacity equivalent to a 2.44-m long braced wall with hold-down. A portal frame with hold-down can on average achieve a capacity similar to that of a 4.88-m long braced wall without hold-down.
机译:在本文中,将给出一个测试程序的结果,该程序专注于评估门户框架系统的性能。在单调和反向循环载荷下共测试了九个具有六种不同配置的全尺寸门框框架组件。门架的长度为3.66 m,高度为2.44 m,在门架的两端各有406 mm的壁段。从实验结果可以看出,集管和狭窄支撑壁段之间的角部连接控制着门架的侧向承载能力和最终位移。金属带的安装大大增加了门框组件的侧向承载能力。与安装在定向刨花板上的钢带相比,直接放在木材框架上的钢带显示出更高的阻力。没有压紧装置的门架具有更大的侧向承载能力。在门框和低矮轻木建筑中使用的传统支撑墙之间进行了比较。通常,门框的初始刚度低于支撑墙。仅在一侧有护套且没有压紧装置的门框,其最终承载能力相当于带有压紧装置的2.44 m长的支撑墙。具有压紧力的门框平均可实现与4.88米长无压紧支撑墙相似的承载能力。

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