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首页> 外文期刊>Journal of magnetism and magnetic materials >Experimental error analysis of measuring the magnetic self-levitation force experienced by a permanent magnet suspended in magnetic fluid with a nonmagnetic rod
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Experimental error analysis of measuring the magnetic self-levitation force experienced by a permanent magnet suspended in magnetic fluid with a nonmagnetic rod

机译:用非磁性棒测量悬浮在磁性流体中的永磁体承受的磁自重力的实验误差分析

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摘要

The self-levitation of permanent magnet in magnetic fluid has been widely used in sensors, actuators, dampers, bearings, and lubrication in micromechanical systems. In this paper, the magnetic self-levitation force (MSLF) experienced by a permanent immersed in magnetic fluid is studied, and the formula for calculating the MSLF is derived. To measure MSLF experimentally, a nonmagnetic rod is used to connect the magnet and dynamometer. The experimental error caused by the nonmagnetic rod is studied theoretically, and nonmagnetic Cu rods with different radii are used in the experiments to verify the theoretical analysis. With nonmagnetic Cu rod sticking on the top surface of the magnet, the experimental error caused by the nonmagnetic rod is negligible when the magnet moves down from center of the container. However, the experimental error can't be ignored when the magnet moves up. In addition, the simulation results are in good agreement with the experimental results when the magnet moves down.
机译:永磁体在磁流体中的自悬浮已广泛用于传感器,执行器,阻尼器,轴承以及微机械系统中的润滑。本文研究了永久性浸没在磁流体中的磁自悬浮力(MSLF),并推导了计算MSLF的公式。为了通过实验测量MSLF,使用非磁性棒连接磁体和测力计。对非磁性棒引起的实验误差进行了理论研究,并以不同半径的非磁性铜棒进行了实验验证。当非磁性Cu棒粘在磁铁的顶面上时,当磁铁从容器中心向下移动时,由非磁性棒引起的实验误差可以忽略不计。但是,当磁体向上移动时,实验误差不能忽略。此外,当磁体向下移动时,仿真结果与实验结果非常吻合。

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