评估导电管内永久磁铁运动产生的阻尼

B. Suciu
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引用次数: 0

摘要

本研究提出了一种评估永磁体在导电管道内运动所产生的电磁阻尼效应的方法。计算阻尼系数既不需要磁体的剩余磁通密度,也不需要管道的导电率,而只需要磁体高度、管道长度和磁体在管内的下落时间。因此,我们在不同厚度的铜管上测试了残余磁通密度接近但直径和高度不同的圆柱形钕磁铁。通过测量每种磁体-管道组合的下落时间,计算出相应的阻尼系数,并阐明了各种几何参数对阻尼系数的影响。磁体和管道之间的间隙被认为是描述这种阻尼现象的关键。
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Evaluation of the Damping Produced by the Motion of a Permanent Magnet inside of a Conductive Pipe
In this study, a method to evaluate the electro-magnetic damping effect produced by the movement of a permanent magnet inside of a conductive pipe, is proposed. Neither the residual flux density of the magnet, nor the electric conductivity of the pipe is required, but instead, only the magnet height, the pipe length, and the falling time of the magnet inside the tube, are necessary to compute the damping coefficient. Accordingly, cylindrical neodymium magnets of close residual flux densities, but various diameters and heights, are tested against copper pipes of various thicknesses. Using the falling time measured for each magnet-pipe combination, the corresponding damping coefficient is computed, and the influence of various geometrical parameters on the damping coefficient is clarified. Clearance between the magnet and pipe is identified as essential to describe this damping phenomenon.
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