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Behavior of Steel-Sheathed Shear Walls Subjected to Seismic and Fire Loads

机译:钢套剪力墙在地震和火荷载作用下的行为

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摘要

A series of tests was conducted on six 2.7 m × 3.7 m shear wall specimens consisting of cold-formed steel framing sheathed on one side with sheet steel adhered to gypsum board and on the opposite side with plain gypsum board. The specimens were subjected to various sequences of simulated seismic shear deformation and fire exposure to study the influence of multi-hazard interactions on the lateral load resistance of the walls. The test program was designed to complement a parallel effort at the University of California, San Diego to investigate a six-story building subjected to earthquakes and fires. The test results reported here indicate that the fire exposure caused a shift in the failure mode of the walls from local buckling of the sheet steel in cases without fire exposure, to global buckling of the sheet steel with an accompanying 35 % reduction in lateral load capacity after the wall had been exposed to fire. This behavior appears to be predictable, which is encouraging from the standpoint of residual lateral load capacity under these severe multi-hazard actions.
机译:在六个2.7 m×3.7 m剪力墙试样上进行了一系列测试,这些试样由冷弯的钢框架组成,该钢框架的一侧用钢板覆盖石膏板,另一侧用普通石膏板覆盖。对标本进行了一系列模拟地震剪切变形和火灾暴露的研究,以研究多灾种相互作用对墙体的侧向承载力的影响。该测试程序旨在补充加利福尼亚大学圣地亚哥分校的并行工作,以调查遭受地震和火灾的六层楼房。此处报告的测试结果表明,火灾暴露导致壁的破坏模式从无火灾的情况下的钢板局部屈曲转变为钢板的整体屈曲,同时横向载荷能力降低了35%墙暴露于火后。这种行为似乎是可预测的,从这些严重的多重危险行为下的残余侧向载荷能力的角度来看,这令人鼓舞。

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