Introduction
Permanent Magnetic Separator Conveyor Belt Permanent Magnetic Separator Conveyor Belt is a device for removing ferromagnetic impurities from conveyed materials. It is widely used in mining, industrial production, recycling and other fields, and can effectively protect downstream equipment from ferromagnetic impurities while ensuring product quality.
Parameter

Product Components
1. Permanent Magnet System: Utilizes rare-earth neodymium iron boron (NdFeB) material with high coercivity and high remanence, generating a stable and strong magnetic field without an external power source.
2. Iron Unloading Conveyor Belt: Typically made of wear-resistant rubber or stainless steel scraper type, equipped with scrapers, idlers, drive rollers, etc., to achieve automatic iron unloading.
3. Support Frame: Mostly made of stainless steel or S235 steel structure, possessing dustproof, waterproof, and corrosion-resistant properties, suitable for harsh working conditions.
4. Drive System: Standard configuration includes a geared motor, with a power range of 1.5kW–7.5kW, customized according to belt width and load.
Detail



Advantages
1. Continuous operation: fully automatic removal as material flows.
2. No power supply required: permanent magnets = lower operating costs and higher reliability.
3. Efficient: effectively removes large pieces of tramp metal and fine ferrous particles.
4. Deep load capacity: able to extract metal from thicker material layers than some plate magnetic separators.
5. Self-cleaning: automatically releases captured metal without manual intervention.
6. Protection: protects downstream equipment (crushers, grinders, extruders) from expensive damage.
Application scenarios
1. Mining: remove ferromagnetic impurities from ores.
2. Recycling industry: separate ferromagnetic metals from waste.
3. Food processing: ensure that metal impurities in food production are effectively removed.
Maintenance points
1. Regular cleaning: remove impurities on the belt surface and magnet gap to avoid accumulation that affects the magnetic field effect.
2. Magnet detection: detect the magnetism of the magnet every year. If the demagnetization exceeds 10%, it needs to be replaced in time.
3. Belt maintenance: check the belt wear and replace the aging or damaged belt in time to prevent leakage or deviation.
4. Environmental control: avoid the magnet being in a strong acid, strong alkali or high temperature environment for a long time to prevent demagnetization or material damage.
Selection Guide
1. Material Characteristics: Material name, particle size, moisture content, and flowability.
2. Material Layer Thickness: Average and maximum material thickness on the belt.
3. Iron Impurity Characteristics: Size, shape, burial depth (top or bottom of the material layer), and magnetic strength.
4. Conveyor Parameters: Belt width, belt speed, pulley diameter, and installation space.
5. Working Environment: Temperature, humidity, and presence of corrosive substances.
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