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Classification of magnets
Jun 25, 2018


Classification of magnets:

Permanent magnets are generally referred to.
Permanent magnets are divided into two major categories.
The first major category
Metal alloy magnets include NdFeB magnets nd2fe14b magnet), samarium Cobalt magnets, aluminum-nickel-Cobalt magnets ) iron-chromium cobalt magnets

Sintered RU-FE-B: A new type of permanent magnetic material developed since 1983, it has very high magnetic properties, widely used in a variety of permanent magnet motors, engineering machinery, electro-acoustic, electrical appliances and medical equipment.
Sintered samarium Cobalt Permanent magnet is a kind of superior permanent magnet material, that has a very high magnetic performance, but also has a strong anti-corrosion, anti-oxidation, low temperature coefficient, high Curie temperature, can be used in a higher environment, widely used in motors, sensors, detectors, radar and other High-tech fields. Aluminum-nickel cobalt is suitable for the production of complex shapes.
Light, thin, small products, widely used in instrumentation, communications, magneto-electric switches and a variety of sensors. Iron-chromium cobalt magnet is a permanent magnet transformers, alloy permanent magnet can be deformed, can be brushed (0.2-0.3mm) tube rolling and a variety of mechanical processing. A.fecrco (Fe-CR-CO) deformed permanent-magnet alloy has higher magnetism and can be compared with Alnico permanent magnet alloy, but its co content is about 50% lower than that of Alnico. B.fecrco alloy with excellent plasticity and ductility is easy to process, this is the casting of permanent magnet alloy incomparable characteristics, and the high temperature of the alloy 400 or so, is NdFeB rare earth Permanent magnet is not available. C.fecrco alloy can be made into wire, rod, tube, belt and forging material, by car, milling, planing, drilling and stamping machining, can be made into a variety of complex shapes of permanent magnet components, especially for small, long thin components show unique characteristics.
The thinnest strip can reach 0.05mm, the finest wire can be processed into 0.1mm. The magnets we speak of are generally permanent magnets.
Permanent magnets are divided into two major categories.
The first major category
Metal alloy magnets include NdFeB magnets nd2fe14b magnet), samarium Cobalt magnets , aluminum-nickel-Cobalt magnets  iron-chromium cobalt magnets
Sintered RU-FE-B: A new type of permanent magnetic material developed since 1983, it has very high magnetic properties, widely used in a variety of permanent magnet motors, engineering machinery, electro-acoustic, electrical appliances and medical equipment.
Sintered samarium Cobalt Permanent magnet is a kind of superior permanent magnet material, that has a very high magnetic performance, but also has a strong anti-corrosion, anti-oxidation, low temperature coefficient, high Curie temperature, can be used in a higher environment, widely used in motors, sensors, detectors, radar and other High-tech fields. Aluminum-nickel cobalt is suitable for the production of complex shapes.
Light, thin, small products, widely used in instrumentation, communications, magneto-electric switches and a variety of sensors. Iron-chromium cobalt magnet is a permanent magnet transformers, alloy permanent magnet can be deformed, can be brushed (0.2-0.3mm) tube rolling and a variety of mechanical processing. A.fecrco (Fe-CR-CO) deformed permanent-magnet alloy has higher magnetism and can be compared with Alnico permanent magnet alloy, but its co content is about 50% lower than that of Alnico. B.fecrco alloy with excellent plasticity and ductility is easy to process, this is the casting of permanent magnet alloy incomparable characteristics, and the high temperature of the alloy 400 or so, is NdFeB rare earth Permanent magnet is not available. C.fecrco alloy can be made into wire, rod, tube, belt and forging material, by car, milling, planing, drilling and stamping machining, can be made into a variety of complex shapes of permanent magnet components, especially for small, long thin components show unique characteristics. The thinnest strip can reach 0.05mm, the finest wire can be processed into 0.1mm.