Electric Vibration Motor
How to adjust the speed of the vibrating motor during operation?
Changing the Power Frequency
Principle: The power frequency is directly proportional to the motor speed; by changing the frequency, the speed can be adjusted.
Implementation Method: Use a variable frequency drive (VFD), which first converts the fixed-frequency AC power into DC power, then inverts it into adjustable-frequency AC power to supply the vibration motor. For example, in vibration screening operations, different particle sizes of materials require different screening speeds. The VFD can adjust the power frequency to regulate the vibration motor speed, meeting the screening requirements.
Adjusting the Number of Magnetic Poles
Principle: By changing the connection method of the stator windings, the number of magnetic poles can be altered. For example, changing the stator winding from series to parallel halves the number of magnetic poles, which doubles the speed.
Implementation Method: During the motor design and manufacturing process, multiple taps are incorporated. The winding connections can be switched externally to adjust the number of magnetic poles. However, this method requires the motor to be shut down during operation, and the number of magnetic poles can only be changed in multiples, which limits the range of speed adjustments. This approach is typically used for specific speed requirements where frequent adjustments are not necessary.

Outstanding Performance
Flexible Vibration Force Adjustment: The vibration force can be adjusted by altering the eccentric block, allowing for on-demand adjustments when screening different materials to ensure optimal results.
Stable Output: The vibration force remains consistent and stable during operation, with minimal fluctuations even during long-term use, ensuring smooth vibrations of the equipment.
Fast Start and Stop: The motor reaches the rated speed quickly to generate vibration force, enabling fast start-up of the equipment; during shutdown, it stops smoothly, reducing impact and extending the service life.
Ingenious Design
Compact Structure: The design consists of basic components such as the motor, eccentric block, and end cover, without complex transmission systems, reducing costs and the risk of failure.












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Different angles of excitation force |
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| Adjustable eccentric block rotation angle |
0° | 60° | 90° | 120° |
| Excitation force | F | 0.86F | 0.707F | 0.5F |














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