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Development and experimental verification of self-centering shear walls with disc spring devices

机译:圆盘弹簧装置自定心剪力墙的开发与实验验证

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A new type of self-centering shear wall (SC-SW) with disc spring devices (DSDs) symmetrically installed at the foot of the wall panel is developed in this study. The SC-SWs with DSDs are designed to reduce the amount of damage to the main part of the wall and to minimize the residual displacement of the structure. To examine the seismic performance of the SC-SWs with DSDs, cyclic loading tests were conducted on two DSDs, one conventional shear wall, and two SC-SWs. The hysteretic behavior and failure process of the specimens are analyzed, and a comparison is conducted between the conventional shear wall and the SC-SWs with DSDs. Experimental results indicate that the DSDs exhibit stable mechanical behavior and excellent self-centering capability and the SC-SWs exhibit stable energy dissipation and excellent self-centering capabilities. The bearing capacity of the SC-SWs is lower than that of the conventional shear wall, whereas the residual drift ratios are significantly lower and the ductility coefficients are significantly higher for the SC-SWs than for the conventional shear wall. Furthermore, the damage of the SC-SWs with DSDs is significantly reduced and the main parts of the wall panel are well protected.
机译:在本研究中开发了一种具有对称安装在墙板脚下的圆盘弹簧装置(DSD)的新型自定心剪力墙(SC-SW)。使用DSDS的SC-SWS设计为减少墙壁的主要部分的损坏量,并最大限度地减少结构的残余位移。为了检查SC-SWS与DSD的地震性能,在两个DSD,一个常规剪切壁和两个SC-SWS上进行循环加载试验。分析样本的滞后行为和失败过程,并在传统的剪切壁和SC-SWS与DSD之间进行比较。实验结果表明,DSD表现出稳定的机械行为和优异的自定心能力,SC-SWS表现出稳定的能量耗散和优异的自定心能力。 SC-SWS的承载能力低于传统剪切壁的承载能力,而残留漂移比显着降低,并且对于传统的剪切壁,SC-SWS的延展性系数显着更高。此外,SC-SWS与DSD的损坏显着降低,墙板的主要部分受到良好的保护。

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