Non-Ferrous Metal Separation for High-Throughput Applications

The SGM DIS Model is a high-performance Eddy Current Separator (ECS) designed for efficient removal of non-ferrous metal contaminants. Built with a concentric rotor design, it ensures maximum exposure of material to the magnetic field, enhancing metal separation efficiency.

Equipped with large neodymium permanent magnet blocks and operating at 3,000 RPM, the DIS Model delivers exceptional non-ferrous separation performance, making it an essential solution for municipal solid waste and wood waste recycling.

Key Features & Benefits

  • Concentric rotor design for optimized metal exposure to the magnetic field
  • High-speed rotor (3,000 RPM) for superior metal contaminant removal
  • Latest-generation neodymium permanent magnets for enhanced performance
  • Electronic emergency fast-breaking system for increased safety
  • Easy access design for simplified maintenance and servicing

How It Works:

The DIS Model utilizes a high-speed rotating magnetic field to induce eddy currents in non-ferrous metals, repelling them from other materials and allowing for efficient separation.

  • Non-ferrous metals (such as aluminum, copper, and brass) are repelled and ejected into a dedicated collection area.
  • Non-metallic materials (such as plastics, wood, and glass) continue their natural trajectory, ensuring clean separation.

To maximize separation efficiency, it is recommended to pre-sort ferrous materials using a crossbelt magnet (DNP) before feeding material into the DIS Eddy Current Separator.

Customizable Options

The SGM DIS Model offers several optional features to enhance efficiency and durability:

  • Brush cleaning system for continuous belt maintenance
  • Ceramic shell for fiberglass drum to extend equipment lifespan
  • Air knife belt cleaning system for improved material flow
  • Vibrating feeder for uniform material distribution
  • DNP Crossbelt Magnet integration for pre-removal of ferrous metals

Available Models 

SGM Magnetics offers multiple DIS models tailored to different throughput capacities and material types.

Typical applications

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