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带倾斜平面摩擦阻尼器的自复位预制复合墙的试验与分析研究

Experimental and Analytical Investigation of Self-Centering Precast Composite Walls with Sloped Plane Friction Dampers.

作者信息

Huang Wei, Fan Zhenhui, Liu Kang, Hu Gaoxing, Miao Xinwei, Sun Yujiao, Liu Gang

机构信息

School of Civil Engineering, Xi'an University of Architecture & Technology, Xi'an 710055, China.

SCEGC NO.5 Construction Group Co., Ltd., Xi'an 710032, China.

出版信息

Materials (Basel). 2024 Mar 13;17(6):1319. doi: 10.3390/ma17061319.

Abstract

To reduce the damage to reinforced concrete shear walls in earthquakes and repair costs, a self-centering wall with sloped plane friction dampers (SPFDs) is proposed. In addition to the SPFDs, the proposed wall includes a precast composite wall, steel wall toes, and post-tensioned (PT) tendons. The steel wall toes embedded in the base of the precast wall were used to improve its strength, and the SPFDs installed in the steel toes were used to increase its energy dissipation capacity. To investigate the effect of the initial PT force and prestressing clamping force of the friction bolt on the seismic performance of the wall, quasistatic cyclic loading tests were carried out on three precast wall specimens. The damage to the self-centering walls was slight, the residual drift was small, and the energy dissipation met the specification requirements. The wall with the greater initial PT force showed higher self-centering and bearing capacity, and the wall with higher prestressing clamping forces showed greater energy dissipation capacity. Additionally, a calculation method for the bearing capacity of the precast wall, which was verified by comparison with the test results, is suggested.

摘要

为减少地震中钢筋混凝土剪力墙的损伤及修复成本,提出了一种带斜面摩擦阻尼器(SPFD)的自复位墙。除SPFD外,该自复位墙还包括预制复合墙、钢墙趾和后张(PT)筋。嵌入预制墙底部的钢墙趾用于提高其强度,安装在钢墙趾中的SPFD用于增加其耗能能力。为研究摩擦螺栓的初始PT力和预应力夹紧力对墙体抗震性能的影响,对三个预制墙试件进行了拟静力循环加载试验。自复位墙损伤轻微,残余位移小,耗能满足规范要求。初始PT力较大的墙体自复位能力和承载力较高,预应力夹紧力较高的墙体耗能能力较大。此外,还建议了一种预制墙承载力的计算方法,并通过与试验结果对比进行了验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0776/10972398/a52e28913a3f/materials-17-01319-g001.jpg

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