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Experimental Investigation on Lateral Performance of Timber-Steel Hybrid Shear Wall Systems

机译:钢木混合剪力墙系统侧向性能试验研究

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This paper presents the results of an experimental study on the lateral performance of timber-steel hybrid shear wall systems. Such systems are composed of steel moment-resisting frames and infill wood-frame shear walls. Monotonic and reversed cyclic tests of two full-scale timber-steel hybrid structures were conducted. There were three timber-steel hybrid shear wall systems in each structure. The lateral stiffness, lateral load capacities and hysteretic characteristics of the timber-steel hybrid shear wall systems with single- and double-sheathed infill wood-frame shear walls were investigated. The load sharing effect between the timber and the steel subsystems was studied. The test results showed that the installation of the infill wood-frame shear wall produced a significant increase in the initial lateral stiffness of the bare steel moment-resisting frame. The infill wood-frame shear walls were very effective in the initial stages of loading and absorbed a substantial part of the lateral load. However, once damage developed in the infill wood-frame shear walls, the lateral load was essentially resisted by the steel moment-resisting frames.
机译:本文介绍了对木材-钢混合剪力墙系统的侧向性能进行实验研究的结果。这种系统由抗弯钢框架和填充木框架剪力墙组成。对两个完整的木钢混合结构进行了单调和反向循环测试。每个结构中有三个木钢混合剪力墙系统。研究了具有单护套和双护套填充木结构剪力墙的木钢混合剪力墙系统的侧向刚度,侧向承载能力和滞后特性。研究了木材和钢子系统之间的负荷分担效应。测试结果表明,安装填充木框架剪力墙后,裸钢抗弯框架的初始侧向刚度大大提高。填充木结构剪力墙在荷载初期非常有效,并吸收了很大一部分侧向荷载。但是,一旦在填充式木结构剪力墙中出现损坏,则钢制的抗弯框架便会基本上抵抗侧向载荷。

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