The bar is composed of an extremely powerful neodymium magnet, often encapsulated in a stainless steel tube (Ø 25 mm outside diameter).
It generates an intense magnetic field around it.
When materials containing ferromagnetic particles pass nearby, these particles are strongly attracted and retained by the bar.
Non-magnetic materials continue on their way unaffected.
The ferromagnetic particles remain stuck to the bar until it is cleaned manually.
Cleaning is usually carried out by removing the bar from its location and wiping off the collected particles.
Positioning: Place the bar in areas of turbulent flow to maximise contact with materials.
Regular cleaning: Establish a cleaning schedule based on the amount of contaminants in your materials.
Careful handling: Due to their high magnetic force, handle the bars with care to avoid injury or damage to equipment.
Temperature control: Avoid exposure to excessive temperatures that could affect magnetic properties.
Multiple installation: For increased efficiency, consider installing multiple bars in series.
High magnetic power: Neodymium magnets offer a much stronger magnetic field than traditional magnets.
Compactness: Their high magnetic strength allows for superior performance in a compact format.
Versatility: Available in different sizes and magnetic strengths to suit a variety of applications.
Energy efficiency: Do not require a power supply to operate.
Ease of installation: Can be easily integrated into existing systems.
Corrosion resistance: Typically coated with stainless steel for improved durability.
High retention capacity: Can retain a large amount of ferromagnetic particles before requiring cleaning.
Cost-effectiveness: Offer an efficient magnetic separation solution at a relatively low cost.
The bar is composed of an extremely powerful neodymium magnet, often encapsulated in a stainless steel tube (Ø 25 mm outside diameter).
It generates an intense magnetic field around it.
When materials containing ferromagnetic particles pass nearby, these particles are strongly attracted and retained by the bar.
Non-magnetic materials continue on their way unaffected.
The ferromagnetic particles remain stuck to the bar until it is cleaned manually.
Cleaning is usually carried out by removing the bar from its location and wiping off the collected particles.
Positioning: Place the bar in areas of turbulent flow to maximise contact with materials.
Regular cleaning: Establish a cleaning schedule based on the amount of contaminants in your materials.
Careful handling: Due to their high magnetic force, handle the bars with care to avoid injury or damage to equipment.
Temperature control: Avoid exposure to excessive temperatures that could affect magnetic properties.
Multiple installation: For increased efficiency, consider installing multiple bars in series.
High magnetic power: Neodymium magnets offer a much stronger magnetic field than traditional magnets.
Compactness: Their high magnetic strength allows for superior performance in a compact format.
Versatility: Available in different sizes and magnetic strengths to suit a variety of applications.
Energy efficiency: Do not require a power supply to operate.
Ease of installation: Can be easily integrated into existing systems.
Corrosion resistance: Typically coated with stainless steel for improved durability.
High retention capacity: Can retain a large amount of ferromagnetic particles before requiring cleaning.
Cost-effectiveness: Offer an efficient magnetic separation solution at a relatively low cost.
Assistance with industrial commissioning
Spare parts stock
Fast response
from the after-sales service
Fleet monitoring and periodic performance checks
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We will then send you the instructions by e-mail.