Brief: Discover the Eddy Current Non Ferrous Metal Separator, designed for efficient aluminium recycling. This advanced machine uses high-speed rotating magnets to separate non-ferrous metals like aluminium and copper from mixed waste, ensuring precision and durability for long-term operation.
Related Product Features:
Precision Engineering: High-speed rotor operation up to 3000 RPM with minimal vibration for efficient metal separation.
Powerful Eddy Currents: Generates a magnetic field of up to 3000 Gauss for precise separation of non-ferrous metals.
Durable and Efficient: Advanced system accurately separates metals like aluminium, copper, and zinc from various waste materials.
Automated Control: Fully automated system reduces operator error and ensures optimal performance with minimal downtime.
Environmental Friendly: Enclosed design reduces dust emissions, maintaining a clean and sustainable working environment.
Customizable Models: Available in various sizes (X600 to X1800) to meet different operational requirements.
Stable Magnetic Source: Uses high-strength permanent magnet Nd-Fe-B for lasting magnetic properties and effective sorting.
Triple Bearing Protection: Sealed bearings with coolant cooling and thermal protection for extended service life.
Ερωτήσεις:
What types of metals can the Eddy Current Separator machine separate?
The machine efficiently separates non-ferrous metals such as aluminium, copper, and zinc from mixed waste materials.
How does the Eddy Current Separator work?
The separator uses a high-speed rotating magnet to induce eddy currents in non-ferrous metals, creating a repulsive force that separates them from other materials.
What are the maintenance requirements for the Eddy Current Separator?
The separator requires virtually no maintenance, thanks to its durable design and automated control system, ensuring long-term stable operation.
Can the machine be customized for specific needs?
Yes, the machine is available in various models (X600 to X1800) and can be customized according to different operational requirements.