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Experimental Study on Low Cyclic Loading Tests of Steel Plate Shear Walls with Multilayer Slits

机译:多层狭缝钢板剪力墙低循环荷载试验研究

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摘要

A new type of earthquake-resisting element that consists of a steel plate shear wall with slits is introduced. The infill steel plate is divided into a series of vertical flexural links with vertical links. The steel plate shear walls absorb energy by means of in-plane bending deformation of the flexural links and the energy dissipation capacity of the plastic hinges formed at both ends of the flexural links when under lateral loads. In this paper, finite element analysis and experimental studies at low cyclic loadings were conducted on specimens with steel plate shear walls with multilayer slits. The effects caused by varied slit pattern in terms of slit design parameters on lateral stiffness, ultimate bearing capacity and hysteretic behavior of the shear walls were analyzed. Results showed that the failure mode of steel plate shear walls with a single-layer slit was more likely to be out-of-plane buckling of the flexural links. As a result, the lateral stiffness and the ultimate bearing capacity were relatively lower when the precondition of the total height of the vertical slits remained the same. Differently, the failure mode of steel plate shear walls with multilayer slits was prone to global buckling of the infill steel plates; more obvious tensile fields provided evidence to the fact of higher lateral stiffness and excellent ultimate bearing capacity. It was also concluded that multilayer specimens exhibited better energy dissipation capacity compared with single-layer plate shear walls.
机译:介绍了一种新型的抗震元件,它由带有缝隙的钢板剪力墙组成。填充钢板分为带有垂直链节的一系列垂直弯曲链节。钢板剪力墙通过挠性连接件的面内弯曲变形以及在承受侧向载荷时在挠性连接件的两端形成的塑料铰链的能量吸收能力来吸收能量。在本文中,对带有多层裂缝的钢板剪力墙的标本进行了低循环载荷的有限元分析和实验研究。分析了缝隙设计参数变化引起的缝隙图案对剪力墙的侧向刚度,极限承载力和滞后行为的影响。结果表明,具有单层缝隙的钢板剪力墙的破坏模式更可能是挠性链环的平面外屈曲。结果,当竖直缝的总高度的前提保持不变时,横向刚度和极限承载力相对较低。不同的是,带多层缝的钢板剪力墙的破坏模式容易使填充钢板整体屈曲。更明显的拉伸场为更高的横向刚度和出色的极限承载力提供了证据。还得出结论,与单层板剪力墙相比,多层试件具有更好的能量消散能力。

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