上海大学学报(自然科学版) ›› 2023, Vol. 29 ›› Issue (4): 745-757.doi: 10.12066/j.issn.1007-2861.2366

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双层锥形非粘结隔震支座力学模型及地震响应分析 

郝瑞康, 何文福, 张 强, 陈睦锋    

  1. 上海大学 力学与工程科学学院, 上海 200444
  • 收稿日期:2021-09-15 出版日期:2023-08-30 发布日期:2023-09-01
  • 通讯作者: 张 强 (1988—), 男, 实验师, 研究方向为工程结构减隔震.
  • 基金资助:
    国家自然科学基金项目 (52078287); 广西重点研发计划项目 (桂科 AB19259011)

Mechanical model and seismic response analysis of a double-layer conical unbonded base isolation bearing 

HAO Ruikang, HE Wenfu, ZHANG Qiang, CHEN Mufeng    

  1. School of Mechanics and Engineering Science, Shanghai University, Shanghai 200444, China
  • Received:2021-09-15 Online:2023-08-30 Published:2023-09-01

摘要:

针对广大高烈度地区村镇房屋抗震能力不足的问题, 提出了一种适用于低层及多层房 屋抗震的具有较好的减震限位及简单实用特征的双层锥形非粘结隔震支座. 首先, 对双层锥形 非粘结隔震支座变形理论进行了分析, 得到支座的 3 阶力学性能特征和恢复力模型; 其次, 通 过单层锥形隔震支座静力试验结果和有限元模型结果对比, 验证了数值分析模型可靠性; 进一 步基于支座数值模型研究了橡胶材料厚度、支座倾斜角度、竖向压应力及水平位移等主要参 数, 对双层锥形隔震支座的力学性能及耗能能力的影响规律, 结果表明橡胶材料厚度越大支座 耗能越强, 倾斜角度越大支座的第 3 阶刚度越大; 最后通过对双层锥形隔震结构进行结构响应 分析, 结果表明采用双层锥形隔震支座的结构具有较好的减震效果. 

关键词: 锥形隔震支座, 非粘结, 力学性能, 有限元模拟 

Abstract:

To solve the insufficient seismic capacity of rural houses in high intensity areas, a double-layer conical non-bonded isolation bearing that has a good damping limit and simple and practical characteristics is proposed for seismic resistance of low-rise and multistorey buildings. Through the analysis of the deformation of the double-layer conical unbonded isolation bearing, third-order mechanical properties and the restoring force model of the bearing are obtained. The reliability of the numerical analysis model is verified by comparing the results of the static test of the single-layer conical non-bonded isolation bearing and those of a finite element model. Based on the numerical model of the bearing, the influence of the main parameters, such as the thickness of rubber material, inclination angle of the bearing, vertical compressive stress and horizontal displacement on the mechanical properties and energy dissipation capacity of the double conical isolation bearing, is further investigated. The results show that an increase in the thickness of the rubber material leads to a higher energy dissipation of the bearing. Furthermore, the increase in inclination angle results in a higher third-order stiffness of the bearing. Finally, based on the structural response analysis of the double conical non-bonded isolation structure, the structure composed of the double conical non-bonded isolation bearing has good damping effect. 

Key words: conical isolation bearing, unbonded, mechanical property, ?nite element simulation 

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