大学生园地

磁铁在无限大薄导体板上方低速运动的磁阻尼探究

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  • 1. 北京师范大学 物理学系,北京  100875;2. 北京师范大学 天文系,北京  100875
韩润泽(2001—),男,回族,河南省驻马店市人,北京师范大学物理学系2019级本科生.

收稿日期: 2022-06-24

  修回日期: 2022-08-17

  网络出版日期: 2023-05-04

Research on magnetic damping of magnet moving at low speed  above infinite thin conductor plate

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  • 1. Department of Physics, Beijing Normal University, Beijing 100875, China; 
    2. Department of Astronomy, Beijing Normal University, Beijing 100875, China

Received date: 2022-06-24

  Revised date: 2022-08-17

  Online published: 2023-05-04

摘要

本文基于麦克斯韦涡流镜像理论,定量计算了在无限大薄导体板上方低速运动的磁铁所受阻力的表达式,其正比于运动速度、磁矩的平方和导体板厚度,并以磁铁离导体板距离的4次方关系减小. 用改进单摆法构建了磁单摆-铝箔系统进行实验,控制其他变量不变,改变磁铁离铝箔的最小距离并进行多次实验,发现理论与实验符合较好.

本文引用格式

韩润泽, 陈稼洲, 张婷, 陈可鉴, 李京祺, 傅莉, 景鹏飞 . 磁铁在无限大薄导体板上方低速运动的磁阻尼探究[J]. 大学物理, 2023 , 42(3) : 50 . DOI: 10.16854/j.cnki.1000-0712.220320

Abstract

Based on Maxwell, s eddy current mirror image theory, the resistance expression of magnet moving at low speed above an infinite thin conductor plate is quantitatively calculated. It is found that the resistance is proportional to the moving speed, the square of magnetic moment, the thickness of conductor plate, and decreases with the fourth power of the distance between magnet and conductor plate. The magnetic pendulum-aluminum foil system is constructed by improving pendulum experiment with other variables keeping unchanged. The minimum distance between the magnet and the aluminum foil is changed for several times. The results obtained from the theory and the experiment are in good agreement.

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