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齿轮齿条式电涡流阻尼墙有限元数值研究
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FEM Numerical Study of Eddy Current Damping-Rack and Gear Wall
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    摘要:

    提出一种新型的齿轮齿条式电涡流阻尼墙(Eddy Current Damping-Rack Wall,ECD-RGW),并对其进行了数值研究与参数分析.介绍了ECD-RGW的基本构造;通过多物理场有限元仿真软件COMSOL Multiphysics研究了ECD-RGW 的力学性能,并对5项主要设计参数进行了分析;对 ECD-RGW 减振效果进行了评估,并以黏滞阻尼器(Fluid Viscous Damper,FVD)作为对比 .研究结果表明:ECD-RGW 作为一种新型电涡流阻尼装置具有良好的力学性能;减小气隙、加装导体板背铁及增加永磁体数量可以提升ECD-RGW的阻尼性能,其中,导体板背铁的设计将 ECD-RGW 在低速下的等效阻尼系数提升到 4倍以上,导体板材料对峰值阻尼力对应的临界速度影响较大,导体板厚度会显著影响峰值阻尼力与临界速度 .此外,ECDRGW具有良好的减振效果,应用具有可行性.

    Abstract:

    A new type of Eddy Current Damping-Rack and Gear Wall (ECD-RGW) was proposed, then Finite Element Method(FEM)simulation was performed and ECD-RGW parameters were analyzed. Firstly, construction of ECD-RGW was introduced in detail. Whereafter, the mechanical performance of ECD-RGW was studied by using COMSOL Multiphysics (a multi-physical finite element simulation software), and 5 dominating design parameters were analyzed. Finally, the vibration reduction effect of ECD-RGW is evaluated, and compared with the Fluid Viscous Damper(FVD). The results show that, ECD-RGW, as a new eddy current damping device, has good mechanical behavior. Its damping performance can be significantly improved by reducing the air gap length, installing the back iron of conductive plate and increasing the number of permanent magnets, which the existence of conductor plate back iron increases the equivalent damping coefficient of ECD-RGW at low speed to more than 4 times. Furthermore, the material of the conductive plate has a great influence on the critical velocity which is corresponding to the peak damping force, and the thickness of the conductive plate influences the peak damping force and critical velocity. In addition, ECD-RGW has a good vibration reduction effect, which means its application is feasible.

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李寿英 ,霍朝煜 ,毛伟阳 ,李亚峰 ,陈政清.齿轮齿条式电涡流阻尼墙有限元数值研究[J].湖南大学学报:自然科学版,2022,49(9):100~107

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  • 在线发布日期: 2022-10-04
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