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Lifting magnets and magnetic lifting beams enable the handling of loads made of ferromagnetic materials, such as sheets, steel blocks, logs, steel profiles and rods, slabs, billets, coils of sheet metal, etc. They are used in metallurgical operations, in metallurgical material warehouses or in companies that deal with metallurgical material processing.

Thanks to the use of lifting magnets and magnetic traverses, there are significant time savings when handling metallurgical material, increased safety and better use of the storage area.

In most cases, lifting magnets are used to lift and transport loads. However, there are also solutions for turning loads by 90°, especially sheets and profiles.

Electropermanent magnets offer 95% energy savings and higher safety compared to traditional electromagnets.

They only require power during the MAGNETIZATION and DEMAGNETIZATION phases, otherwise they operate without power. The technology includes an electro permanent magnetic circuit with alternating N/S poles on a checkerboard principle in a magnetically neutral frame. Each pole contains a steel core surrounded by fixed polarity (neodymium) magnets. Beneath the steel core is a reversible polarity magnet (AlNiCo) surrounded by an electric coil. A short current pulse through the coil allows the magnetic field to move in and out of the system.

Advantages of electropermant load magnets:

  • Increased safety - electro permanent lifting magnets provide a safe and reliable lifting solution, minimizing the risk of accidents and ensuring the safety of the operator and surrounding personnel
  • Increased productivity - electro permanent lifting magnets enable fast and efficient material handling, reduce downtime and increase productivity in various industries
  • Easy operation - electro permanent lifting magnets are controlled either from the control panel on the magnet or traverse, or by radio control
  • Versatility - these load magnets are highly versatile and can be used for a range of loads - steel sheets, blocks, profiles, pipes, sheet metal and even irregularly shaped objects
  • Low energy consumption - electropermanent lifting magnets consume energy only during the magnetization and demagnetization phase, resulting in significant energy savings of up to 95% compared to traditional electromagnets.
  • No power required during operation - once the load is lifted, electro permanent lifting magnets do not require continuous power, reducing dependence on electrical connections and allowing for greater mobility.
  • Low maintenance requirements - electro permanent lifting magnets have minimal maintenance requirements, resulting in cost savings and longer uptime for lifting operations.
  • Controllable power - thanks to the ability to control the strength of the magnetic field, this is a suitable solution even for handling loads with a small thickness

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