What about magnets?
The composition of the magnet is iron, cobalt, nickel and other atoms, the internal structure of its atoms is relatively special, and it has a magnetic moment. Magnets can generate magnetic fields and have the characteristics of attracting ferromagnetic substances such as iron, nickel, cobalt and other metals. Magnet type 1, shape type magnet. Block magnet, tile magnet, shaped magnet, cylindrical magnet, ring magnet, disc magnet, magnetic bar magnet, magnetic rack magnet. 2, attribute magnets. Samarium cobalt magnet, NdFeb magnet (strong magnet), ferrite magnet, aluminum nickel cobalt magnet,
On the future development direction of rare earth NdFeb magnet industry
Rare earth Ndfeb magnets play an important role in today's and future development, and here are the possible directions for the industry.
1. Performance optimization and innovation
Further improve the performance of rare earth Ndfeb magnets, including improving magnetic energy product, magnetic saturation magnetic induction intensity, etc., to meet the growing demand for high-performance applications. Through the innovation of material science and engineering technology
Types of sintered NdFeb magnets
Sintered NdFeB magnets are a type of permanent magnet made from an alloy of neodymium, iron, and boron. They are known for their exceptional magnetic properties, including high magnetic strength, high coercivity, and high energy density.
Arc magnet features
An arc magnet is a magnet with an arc magnetic field and has the following characteristics:
1. The magnetic field of the arc magnet is evenly distributed and can provide a strong magnetic field strength.
2. The magnetic field direction of the arc magnet can be adjusted according to needs, with greater flexibility.
3. The magnetic field shape of the arc magne
The benefits of sintered NdFeb magnets
Sintered Ndfeb magnet is a high-performance magnet material with the following benefits:
1. High magnetic energy product: sintered NdFeb magnets have a high magnetic energy product, which can provide a powerful magnetic force. Compared with other magnet materials, it has a higher magnetic density and can produce a stronger magnetic field.
2. High coercivity: sintered NdFeb magnet has a high coercivity, tha
Development Of Permanent Magnets
From the history of the development of Permanent Magnetic materials, at the end of nineteenth Century the use of carbon steel, magnetic energy product (BH) max (a measure of permanent magnet storage physical quantity of the magnetic energy density (1MGOe) deficiency, while the foreign high Optoma trillion) mass production of Nd-Fe-B permanent magnetic materials, magnetic energy product has reached more than 50MGOe. In this century, the remanence Br of the mate