Formation of magnetic force of suspended permanent magnet separator- RCYD
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Formation of magnetic force of suspended permanent magnet separator

A suspended permanent magnet separator is a device capable of forming a relatively high magnetic force. The strong magnet materials in the iron remover are mostly composed of molecules, and the molecules are composed of a large number of atoms, including atoms and electrons. Inside the atom, the electron is constantly spinning and rotating around the nucleus. Both movements of electrons form magnetism. However, in most of the materials, the direction of electron motion is different and irregular, and the magnetic effects of the suspended permanent magnet separator cancel each other out. Therefore, most substances do not exhibit magnetism under normal conditions.
Magnetic principle of strong magnets for suspended permanent magnet separators. Ferromagnetic substances such as iron, cobalt, nickel or ferrite differ, and the internal electron rotation can spontaneously align together in a small range, spontaneously forming a magnetized region, which is called magnetic Domain. After the ferromagnetic substances are magnetized, the magnetic domains inside are arranged in a very neat and uniform direction, and the magnetic properties are strengthened to form a strong magnet.
The magnet attracting process of the strong magnet of the suspended permanent magnet separator is the magnetization process of the iron block. After the magnetization, the iron block and the strong magnet will have suction between different polarities, and the iron block will be firmly separated from the suspended permanent magnet. The strong magnet of the iron is ‘sticky’ together. In other words, the strong magnet of the suspended permanent magnet separator has magnetic properties.

Suspended permanent magnet