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首页> 外文期刊>Journal of structural engineering >Ductility and Energy Dissipation Capacity of Shear-Dominated Steel Plate Walls
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Ductility and Energy Dissipation Capacity of Shear-Dominated Steel Plate Walls

机译:剪切为主的钢板墙的延性和耗能能力

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摘要

An experimental study was performed to investigate the potential maximum ductility and energy dissipation capacity of steel plate walls with thin infill plates. Three specimens of a three-story steel plate wall were tested. A concentrically braced frame (CBF) and a moment-resisting frame (MRF) were also tested for comparison. To maximize the ductility and energy dissipation capacity of the steel plate walls, ductile details were used. The test parameters were the aspect ratio of the infill plate and the shear strength of the column. The steel plate walls exhibited much better ductility and energy dissipation capacity as compared to the CBF and MRF. This result indicates that unlike conventional reinforced concrete walls and CBFs, shear-dominated steel plate walls with thin infill plates possess excellent ductility capacity as well as high strength and stiffness. Based on the results of previous studies and the present study, the variations in the ductility and the energy dissipation capacity of the steel plate walls according to the design parameters were investigated.
机译:进行了一项实验研究,以研究具有薄填充板的钢板墙的潜在最大延展性和能量耗散能力。测试了三层钢板墙的三个样本。还测试了同心支撑框架(CBF)和抗力矩框架(MRF)进行比较。为了使钢板壁的延展性和能量消散能力最大化,我们使用了延展性细节。测试参数为填充板的长宽比和柱的抗剪强度。与CBF和MRF相比,钢板墙具有更好的延展性和能量消散能力。该结果表明,与传统的钢筋混凝土墙和CBF不同,具有薄填充板的以剪切力为主的钢板墙具有出色的延展性以及高强度和刚度。基于以往研究和本研究的结果,研究了根据设计参数对钢板壁的延性和能量消散能力的变化。

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