登录

Eddy currents can produce significant drag on motion, called magnetic damping. For instance, when a metallic pendulum bob swings between the poles of a strong magnet, significant drag acts on the bob as it enters and leaves the field, quickly damping the motion.

If, however, the bob is a slotted metal plate, the magnet produces a much smaller effect. When a slotted metal plate enters the field, an emf is induced by the change in flux; however, it is less effective because the slots limit the size of the current loops. Moreover, adjacent loops have currents in opposite directions, and their effects cancel. When an insulating material is used, the eddy current is extremely small, so magnetic damping on insulators is negligible. If eddy currents are to be avoided in conductors, they must be slotted or constructed of thin layers of conducting material separated by insulating sheets.

Magnetic damping is used in sensitive laboratory balances. To have maximum sensitivity and accuracy, the balance must be as friction-free as possible. If it is friction-free, it oscillates for a very long time. Magnetic damping is a simple and ideal solution. With magnetic damping, the drag is proportional to the speed and becomes zero at zero velocity. Thus, the oscillations are quickly damped, after which the damping force disappears, allowing the balance to be very sensitive. In most balances, magnetic damping is accomplished with a conducting disc that rotates in a fixed field.

Tags
Magnetic DampingEddy CurrentsDrag On MotionMetallic PendulumSlotted Metal PlateEmf InductionChange In FluxCurrent LoopsInsulating MaterialsLaboratory BalancesFriction free OscillationSensitivity And AccuracyDamping Force

来自章节 30:

article

Now Playing

30.19 : Magnetic Damping

Electromagnetic Induction

356 Views

article

30.1 : 感应

Electromagnetic Induction

3.7K Views

article

30.2 : 法拉第定律

Electromagnetic Induction

3.7K Views

article

30.3 : 楞次定律

Electromagnetic Induction

3.3K Views

article

30.4 : 运动电动势

Electromagnetic Induction

3.0K Views

article

30.5 : 法拉第磁盘 Dynamo

Electromagnetic Induction

1.9K Views

article

30.6 : 感应电场

Electromagnetic Induction

3.4K Views

article

30.7 : 感应电场:应用

Electromagnetic Induction

1.4K Views

article

30.8 : 涡流

Electromagnetic Induction

1.4K Views

article

30.9 : 位移电流

Electromagnetic Induction

2.7K Views

article

30.10 : 位移电流的意义

Electromagnetic Induction

4.2K Views

article

30.11 : 电磁场

Electromagnetic Induction

2.0K Views

article

30.12 : 麦克斯韦电磁方程

Electromagnetic Induction

2.9K Views

article

30.13 : 麦克斯韦方程组中的对称性

Electromagnetic Induction

3.1K Views

article

30.14 : Ampere-Maxwell 定律:解决问题

Electromagnetic Induction

438 Views

See More

JoVE Logo

政策

使用条款

隐私

科研

教育

关于 JoVE

版权所属 © 2025 MyJoVE 公司版权所有,本公司不涉及任何医疗业务和医疗服务。