產品橫幅

Products

  • Neodymium iron boron
    PRODUCT
    Neodymium iron boron
    Neodymium iron boron (NdFeB) magnets are currently the most powerful magnets. They are produced by powder pressing, sintering, and processing. Because the finished product is prone to oxidation, it requires surface coating treatment, which can be achieved through various methods such as zinc plating, color zinc plating, nickel plating, gold plating, electroless nickel plating, Pyrelin plating, and epoxy resin plating.

    NdFeB permanent magnets possess high remanence, high coercivity, high energy product, and high performance, and are easily processed into various sizes, making them wi
  • Bonded NdFeB (MQ)
    PRODUCT
    Bonded NdFeB (MQ)
    Bonded NdFeB magnets are primarily made by mixing NdFeB alloy powder with epoxy resin and then pressing it. They possess the following characteristics:
    1. High magnetic properties: Magnetic properties fall between those of sintered NdFeB magnets and ferrite magnets, exhibiting good consistency and stability.
    2. High dimensional accuracy and high shape freedom: Product shape and dimensions are guaranteed by molds, allowing direct molding into free shapes such as rings, tiles, and blocks, without the need for sintering or post-machining.
    3. Excellent corrosion resistance: After electrophoreti
  • Injection molded magnets
    PRODUCT
    Injection molded magnets
    Injection-molded magnets (referred to as plastic magnets) are bonded magnets produced by mixing thermoplastic resin and magnetic powder into granules and then using injection molding.
  • Samarium Cobalt
    PRODUCT
    Samarium Cobalt
    Samarium cobalt is a rare-earth magnet. It is a magnetic tool material made by mixing samarium, cobalt and other rare-earth metallic materials, melting them into an alloy, and then crushing, pressing and sintering it. It has a high magnetic energy product, an extremely low temperature coefficient, and a maximum operating temperature of up to 350℃. It is not limited to negative temperatures. When the operating temperature is above 180℃, its maximum magnetic energy product (BHmax), coercivity, temperature stability and chemical stability all exceed those of neodymium iron boron permanent
  • iron oxide
    PRODUCT
    iron oxide
    Iron oxide is produced using powder metallurgy and can be divided into two types: anisotropic and isotropic. Isotropic sintered iron oxide permanent magnets can be magnetized in different directions, offering greater freedom, but their magnetic properties are weaker. Anisotropic sintered iron oxide permanent magnets, on the other hand, are produced with a fixed axial or radial orientation. Once oriented, the magnet can only be magnetized in the predetermined direction and cannot be changed. However, they possess relatively stronger magnetic properties and higher magnet retention, making them t
  • AlNiCo
    PRODUCT
    AlNiCo
    Permanent magnets made of Alnico (AlNiCo) are iron alloys containing aluminum (Al), nickel (Ni), cobalt (Co), and small amounts of other magnetically enhancing components in addition to iron.
    Alnico alloys exhibit high coercivity and a high Curie temperature. They are hard yet brittle, making them impossible to cold work; therefore, they must be manufactured using casting or sintering processes.
  • Permanent magnet coupling
    PRODUCT
    Permanent magnet coupling
    Magnetic drive couplings are non-contact couplings, typically consisting of two magnets, inner and outer, separated by an insulating cover. The inner magnet connects to the driven component, while the outer magnet connects to the power component.
    Besides the buffering and vibration-absorbing functions of elastic couplings, the most significant feature of magnetic drive couplings is their departure from traditional coupling structures. Employing a novel magnetic coupling principle, they enable the transmission of force and torque between the driving and driven shafts without direct contact, an
  • Linear motor magnet
    PRODUCT
    Linear motor magnet
    Permanent magnet synchronous linear motors are widely used in precision transmission systems due to their superior performance. The permanent magnets in linear motors are typically modular, with each module capable of being increased in number and length as needed.
    We can supply linear motor magnet assemblies in various sizes from 1 inch to 30 inches. Our main products are U-shaped and flat linear motor assemblies.
  • Permanent magnet rotor
    PRODUCT
    Permanent magnet rotor
    Due to the superior magnetic properties of rare-earth permanent magnet materials, they can establish a strong permanent magnetic field without external energy after magnetization. Rare-earth permanent magnet motors, used to replace the electrically excited magnetic field of traditional motors, are not only highly efficient but also simple in structure, reliable in operation, and small in size and light in weight. They can achieve performance levels unmatched by traditional electrically excited motors (such as ultra-high efficiency, ultra-high speed, and ultra-high response speed), and