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The rotary magnetic separator consists of pull-out magnetic tubes, which are installed in a housing with flanged ends. The assembly containing the magnetic tubes is mounted on a shaft driven by an electric motor (400 V). During separation, the magnetic tubes rotate continuously, reducing the risk of abrasive material wearing through the magnet cover tubes and also reducing the risk of poorly flowing material clogging the separator. The unit has a sandblasted surface finish (a polished finish is available at an additional cost).
The magnetic separator is fitted with square flanges. However, we can accommodate your requirements for inlet/outlet dimensions and different types of end connections.
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The magnets are enclosed in a stainless-steel housing, which protects them from damage and makes cleaning very easy, quick and convenient. The magnetic tubes are mounted on a rotating shaft driven by an electric motor. It is possible to adjust the rotation speed of the magnetic tubes according to the type and quantity of the material being separated.
The magnetic separator is fitted with very powerful NdFeB neodymium magnets with a magnetic flux density of 10.400 G (on request, we can use magnets with a magnetic flux density of more than 14.000 G!). The pull-out magnetic tube has a diameter of 30 mm and a wall thickness of approximately 0,7 mm. The unit is made entirely of stainless steel 1.4301.
Removing the captured metal contaminants is very easy. After releasing the clamps, pull the magnetic tubes out of the separator body. Then swing open the door and secure it in this position with the locking pin. Slide the collection container over the magnetic tubes. As the final step, pull the tubes together with the collection container off the magnetic cores. The captured metal contaminants fall into the collection container, leaving the magnetic separator clean.
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The pull-out rotary magnetic separator is suitable for bulk and poorly flowing mixtures, materials prone to bridging and abrasive materials. The continuous rotation of the magnetic tubes reduces both the risk of the separator becoming clogged and the risk of the cover tubes being worn through.
When selecting a separator, it is important to consider the type and quantity of the material being separated, the flowability of the mixture, the abrasiveness of the material, its tendency to bridge, the required rotation speed of the magnetic tubes, the inlet and outlet dimensions, and the type of end connection.
We will prepare a suitable design based on the material's flowability and abrasiveness, the required separation efficiency, the rotation speed of the magnetic tubes, and the dimensional requirements of the installation.
Please describe your needs as precisely as possible. We will send you a confirmation of your request and redirect you to a suitable specialist. He or she can contact you for further details at the contacts listed.
