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Development of a novel deformation-amplified shape memory alloy-friction damper for mitigating seismic responses of RC frame buildings

机译:一种新型变形扩增形状记忆合金摩擦阻尼器,用于减轻RC框架建筑物的地震反应

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摘要

Super-elastic shape memory alloys (SMAs) are widely used to mitigate seismic responses of engineering structures because of their self-centring and energy dissipation characteristics. However, the energy dissipation capacity of SMAs is limited when compared to other displacement-dependent dampers. In this paper, a novel deformation-amplified SMA-friction damper (DASMAFD) is proposed to control the seismic responses of reinforced concrete (RC) frame buildings. In this damper, a lever system is employed to amplify the deformation that is transferred from the structure to the SMA wires, and a friction adjusting system is adopted to adjust the friction force in the damper. Hence, the proposed novel system is advantageous due to the excellent self-centring capacity of SMAs and the high damping capacity of the friction adjusting system. To demonstrate the effectiveness of the proposed system, the design and mechanism of the device are presented in detail, the self-centring and damping capacity of the damper are investigated through experimental studies, and the influences of deformation amplification ratio (DAR) and friction ratio (FR) on the self-centring and hysteresis characteristics of the damper are systematically examined. The damper is then applied to control the seismic responses of a 10-storey RC frame building, and numerical simulations are performed to examine the control effectiveness of the proposed system. The calculated responses of the building controlled by a conventional SMA damper are compared with those of a SMA-friction damper. Furthermore, parametric studies are performed to examine the effects of key parameters of the damper, namely DAR and FR, on the seismic responses of the building. Numerical results indicate that DASMAFD exhibits the most evident control effectiveness when compared to other dampers.
机译:超弹性形状记忆合金(SMA)广泛用于减轻工程结构的地震响应,因为它们的自定心和能量耗散特性。然而,与其他位移依赖的阻尼器相比,SMA的能量耗散能力有限。本文提出了一种新型变形扩增的SMA摩擦阻尼器(DSAMAFD)以控制钢筋混凝土(RC)框架建筑物的地震响应。在该阻尼器中,采用杠杆系统来放大从结构转移到SMA线的变形,并且采用摩擦调节系统来调节阻尼器中的摩擦力。因此,所提出的新颖系统是有利的,由于SMA的优异的自定心能力和摩擦调节系统的高阻尼能力。为了证明所提出的系统的有效性,通过实验研究,研究了阻尼器的自定心和阻尼能力,以及变形放大比(DAR)和摩擦比的影响,对阻尼器的自定心和阻尼能力进行了研究(FR)在自定心和阻尼器的滞后特征上系统地检查。然后施加阻尼器以控制10层级RC帧建筑物的地震响应,并且执行数值模拟以检查所提出的系统的控制效果。将由传统SMA阻尼器控制的建筑物的计算响应与SMA摩擦阻尼器的结构进行了比较。此外,进行参数研究以检查阻尼器,即DAR和FR的关键参数的影响,即建筑物的地震反应。数值结果表明,与其他阻尼器相比,DASMAFD表现出最明显的控制效果。

著录项

  • 来源
    《Engineering Structures》 |2020年第1期|110751.1-110751.19|共19页
  • 作者单位

    Henan Polytech Univ Sch Civil Engn Jiaozuo 454000 Henan Peoples R China;

    Curtin Univ Ctr Infrastruct Monitoring & Protect Kent St Bentley WA 6102 Australia;

    Curtin Univ Ctr Infrastruct Monitoring & Protect Kent St Bentley WA 6102 Australia;

    Henan Polytech Univ Sch Civil Engn Jiaozuo 454000 Henan Peoples R China;

    Henan Polytech Univ Sch Civil Engn Jiaozuo 454000 Henan Peoples R China;

    Changsha Univ Sci & Technol Sch Civil Engn Changsha 410114 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    DASMAFD; Deformation amplification; Self-centring; RC frame building; Seismic responses; Parametric study;

    机译:DASMAFD;变形扩增;自定心;RC框架建筑;地震反应;参数研究;

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