Neodymium magnets, also known as NdFeB magnets, are composed of neodymium (Nd), iron (Fe), and boron (B) in a tetragonal crystalline structure. Renowned for their exceptional strength, they are one of the most widely used rare-earth magnets.

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Alnico Magnets

AlNiCo permanent magnet materials can be divided into two categories according to the manufacturing process: cast AlNiCo series and powder sintered AlNiCo series. They are more heat-resistant than NdFeB permanent magnets, and are widely used, with a maximum temperature resistance of 650 degrees.

Bonded Pressed NdFeB Magnets

Bonded NdFeB magnets excel in high-performance, precision applications, offering unparalleled flexibility, cost-efficiency, and magnetic strength. Their adaptability to complex shapes and reliable thermal stability ensures they remain a critical component across diverse industries.

Ferrite Magnets

Ferrite magnets are hard and brittle, with low magnetic energy. However, they are not easy to demagnetize or corrode, and the production process is simple and the price is low.

Injection Molded Ferrite Magnets

Injection molded ferrite magnets are manufactured by mixing ferrite magnetic powder with resin materials such as PA6, PA12, PA66, or PPS. The mixture is then shaped through injection molding.

Sintered Ferrite Magnets

Sintered ferrite magnets are divided into isotropic and anisotropic magnets according to the orientation of magnetic crystals. They are the most widely used magnets due to their low price and moderate magnetic properties.

Neodymium Magnets

Neodymium Iron Boron (NdFeB), also known as Rare Earth Iron magnets are mainly comprised of iron, neodymium, boron and other trace elements is the strongest permanent magnets currently produced and has excellent magnetic properties, which allow this third generation magnetic material to be compact in size over traditional permanent magnets.

Samarium Cobalt Magnet

Samarium cobalt permanent magnets mainly include 1:5 type and 2:17 type. In addition to products made of general materials, our company also has LT series products made of materials that have minimal effect on changes in magnetic properties due to temperature (-0.008%/℃: 20~200℃). The 2:17 type samarium cobalt permanent magnet can also adjust the coercive force according to the capacity of the magnetizer.