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Infill plate interconnection effects on the structural behavior of steel plate shear walls

机译:填充板互连对钢板剪力墙结构性能的影响

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摘要

Steel plate shear walls are commonly used as structural lateral load resisting load systems in space-constrained areas. Many studies indicated that the implementation of the steel plate shear walls improves the ductility, stiffness and ultimate strength of the structure for which the interconnection of the steel infill plate with boundary members has a significant role. The typical connection of the infill shear plates to the boundary elements has a high-level fixity despite the general convenient construction procedures. In this study, the connection of the infill plates to the boundary elements are precisely investigated by establishing 57 computational models after verifying the computational modeling methodology. The structural performance of the partially connected plates with different commonly used interconnections types are evaluated and compared to the corresponding conventional fully-connected infill plate systems. It is shown that beam-only connected infill plate shear wall reduces the structural lateral load resisting capacity tangibly more than column-only connected infill plates due to limited tension field action development. In addition, by having 80% connection between infill plate with boundary elements, the lateral resisting system has at least 98.9% ultimate strength, 96.5% stiffness, 97.6% ductility and 98.6% energy dissipation capability of the steel plate shear wall with fullyconnected infill steel plate.
机译:钢板剪力墙通常用作空间受限区域中的结构侧向抗荷载系统。许多研究表明,钢板剪力墙的实施改善了结构的延展性,刚度和极限强度,对于这种结构,钢填充板与边界构件的互连起着重要作用。尽管通常方便的施工程序,但填充剪力板与边界单元的典型连接具有较高的固定性。在这项研究中,在验证计算建模方法后,通过建立57个计算模型来精确研究填充板与边界元素的连接。评估了具有不同常用互连类型的部分连接的板的结构性能,并将其与相应的常规完全连接的填充板系统进行了比较。结果表明,由于有限的拉力场作用的发展,仅与梁连接的填充板剪力墙比仅与柱连接的填充板降低了结构侧向荷载的承受能力。此外,通过使填充板与边界单元之间的连接达到80%,该横向抵抗系统具有完全连接的填充钢板的钢板剪力墙至少98.9%的极限强度,96.5%的刚度,97.6%的延展性和98.6%的耗能能力盘子。

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