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Seismic Behavior of Low Yield Point Steel Plate Shear Wall

机译:低屈服点钢板剪力墙的地震行为

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The seismic resistant characteristics of low yield point (LYP) steel shear wall are examined in this reported research. In the LYP steel plate shear wall system, the LYP steel is selected for steel panel while the boundary frame is constructed by conventional structural steel. A series of experimental studies were carried out to examine the inelastic shear buckling of LYP steel plate panel under monotonic load. The effects of width-to-thickness ratio on the shear buckling of LYP steel plates were examined. Cyclic loading tests were also carried out for multistory LYP steel plate shear wall in order to examine its stiffness, strength, deformation capacity, and energy dissipation capacity. The effect of width-to-thickness ratio of steel plate and the design of beamto- column connections on the boundary frame were also examined. Excellent deformation capacities and energy dissipation capacities were obtained for all specimens tested. The LYP steel plate shear walls were able to maintain stable even have deformed to 0.06 radium of story drift angle. Based on these studies, suggestions are made for the design of LYP steel plates shear wall system.
机译:在本报告的研究中检查了低屈服点(型型型型钢)钢剪切壁的地震抗性特征。在钢板剪切墙系统中,为钢板选择钢筋,而边界框架由常规结构钢构成。进行了一系列实验研究,以检查单调载荷下型钢板面板的非弹性剪切屈曲。检查了宽度厚度比对型钢板剪切屈曲的影响。还对多晶型钢板剪切墙进行循环加载试验,以检查其刚度,强度,变形容量和能量耗散能力。还研究了钢板宽度与厚度比与边界框架上的梁柱连接的影响。为所有测试的样本获得了优异的变形能力和能量耗散能力。型钢板剪切壁能够保持稳定甚至变形为0.06镭的故事漂移角。基于这些研究,建议是为磁钢板剪切墙系统设计的。

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