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Magnetic clamping


Magnetic Clamping Technology

Similar to the vacuum clamping technology (max 1kg / cm²), the magnetic clamping technique depends on physical laws, but in the magnetic clamping technolgy the factor holding force is about 15 times higher. (approx. 15kg / cm²)

In the milling of medium and large workpieces, the square pole magnetic clamping technology has proven to be one of the most common clamping technologies worldwide.

Extremely short set-up times, low-vibration and interference contour-free clamping speak for your application from precision mechanics to shipbuilding.


Features of our magnetic chucks:

Pole dimension 50x50mm
Holding force> 350kg per pole
no deformation due to electro-permanent technology
Tension-free clamping with movable pole extensions, no residual magnetism, controlled magnetic discharge prevents magnetization of the tool
Workpieces larger than the magnetic table machinable
fast and safe clamping of uneven workpieces
same holding force in all directions by square pole technology


We are glad to advise you and are also available for on-site tests! After consultation, the magnetic chucks can also be tested for a certain time.

  • Magnetic clamping
  • Magnetic clamping
  • Magnetic clamping
  • Magnetic clamping
  • Magnetic clamping

Magnetic chucks square pole technology

Workpieces are optimally accessible with electro-permanent magnetic chucks and can be machined in 5-axis machining in one clamping operation.

A magnetic workpiece is placed, the magnetic clamping plate is activated by power via the control unit, and within a few seconds, the permanent magnet ensures a permanently secure hold, without requiring a steady supply of energy. On machine tools using square-pole technology, it is possible to save between 30 and 50% of the set-up times.

Pole extensions can be used to further reduce non-productive time when converting to a new range of workpieces. If required, the pole extensions can be screwed by hand onto the magnetic clamping plate in seconds and automatically adapt to the workpiece contour via an integrated spring mechanism.