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首页> 外文期刊>Latin American Journal of Solids and Structures >Design and Damping Analysis of a New Eddy Current Damper for Aerospace Applications
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Design and Damping Analysis of a New Eddy Current Damper for Aerospace Applications

机译:新型航空航天用涡流阻尼器的设计与阻尼分析

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In order to reduce the structural vibrations of a mechanical system used in aerospace, a new sketch of eddy current damper (ECD), consisting of one cylindrical permanent magnet, two ring-shape copper plates, one axial transmission shaft and electromagnetic shield, is proposed. Three dimensional (3D) electromagnetic transient analysis on damping performance of the proposed damper is conducted by ANSYS to determine the dimensions of the designed damper. And a series of damping tests for the damper subjected to sinusoid excitations with amplitudes of around 0.1 and 1 mm are respectively carried out under frequencies ranging from 1 to 50 Hz. The experimental results validate that the 3D transient analysis method with ANSYS is effective to guide the design of ECDs. Moreover, it is found that the proposed ECD has high damping, which is significantly superior to the one-plate ECD with the same structure and dimensions.
机译:为了减少用于航空航天的机械系统的结构振动,提出了一种新的涡流阻尼器(ECD)草图,该涡流阻尼器由一个圆柱形永磁体,两个环形铜板,一个轴向传动轴和电磁屏蔽组成。 。通过ANSYS对所提出的阻尼器的阻尼性能进行三维(3D)电磁瞬态分析,以确定所设计阻尼器的尺寸。并分别在1至50 Hz的频率范围内,对阻尼器进行了一系列正弦激励,幅度约为0.1和1 mm的阻尼测试。实验结果证明,ANSYS的3D瞬态分析方法可有效指导ECD的设计。此外,发现所提出的ECD具有高阻尼,这显着优于具有相同结构和尺寸的单板ECD。

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