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Design and dynamic characterization of a large-scale eddy current damper with enhanced performance for vibration control

机译:大型涡流阻尼器的设计与动态特性,具有增强性能的振动控制性能

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摘要

Eddy current dampers (ECD) are promising devices for vibration control of dynamic systems, but their application in civil structures is very limited due to a low damping density. This study describes the development and dynamic characterization of a large-scale rotary ECD with enhanced performance for structural applications. The rotary ECD consists of a conductive rotor, a stator with permanent magnets, and a set of ball screw which converts the linear motions across the damper into rotations of rotor. The torque at different rotating speeds is evaluated by using a 2-D analytical method considering the reaction magnetic field caused by eddy currents. Laboratory experiments are conducted to validate the numerical results obtained for a simple eddy current torque generator and a large-scale ECD. It is shown that the analytical model agrees with nonlinear finite-element simulations, but is higher than the test results. The large-scale rotary ECD achieves a high damping density up to 24.9 MN•s/m~4 at a low speed. Moreover, the damping force of rotary ECD is highly nonlinear and self-limiting as a function of rotating speeds; it first increases with speeds and after reaching a maximum at a critical speed it decreases for higher speeds. Numerical simulation on seismic control of a SDOF system and a 5-DOF system showed that the rotary ECD performs as well as the fluid viscous dampers having the same secant damping coefficients. Finally, effects of changing design parameters on force-speed curve are studied in details.
机译:涡流阻尼器(ECD)是用于动态系统的振动控制的有希望的装置,但由于低阻尼密度,它们在民用结构中的应用非常有限。本研究描述了大型旋转ECD的开发和动态特性,具有增强的结构应用性能。旋转ECD由导电转子,具有永磁体的定子以及一组滚珠丝杠,其将穿过阻尼器的线性运动转换成转子的旋转。通过考虑由涡流引起的反应磁场的2-D分析方法评估不同旋转速度的扭矩。进行实验室实验以验证为简单涡流扭矩发生器和大型ECD获得的数值结果。结果表明,分析模型同意非线性有限元模拟,但高于测试结果。大规模旋转ECD以低速实现高达24.9 MN•S / M〜4的高阻尼密度。此外,旋转ECD的阻尼力是高度非线性和自限制,作为旋转速度的函数;它首先随着速度的速度和临界速度达到最大值而增加,它会降低更高的速度。 SDOF系统的地震控制的数值模拟和5-DOF系统表明,旋转ECD表达以及具有相同的割割系数的流体粘性阻尼器。最后,详细研究了改变设计参数的影响力速度曲线。

著录项

  • 来源
    《Mechanical systems and signal processing》 |2020年第novaadeca期|106879.1-106879.24|共24页
  • 作者单位

    Key Laboratory for Wind and Bridge Engineering of Hunan Province Hunan University China;

    Key Laboratory for Wind and Bridge Engineering of Hunan Province Hunan University China Vibration and Shock Technology Research Center College of Civil Engineering Hunan University China;

    Key Laboratory for Wind and Bridge Engineering of Hunan Province Hunan University China Vibration and Shock Technology Research Center College of Civil Engineering Hunan University China;

    Key Laboratory for Wind and Bridge Engineering of Hunan Province Hunan University China;

    Key Laboratory for Wind and Bridge Engineering of Hunan Province Hunan University China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vibration control; Eddy current dampers; Rotary dampers; Damping density; Force-speed characteristics; Seismic control;

    机译:振动控制;涡流阻尼器;旋转阻尼器;阻尼密度;力速度特征;地震控制;

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