Magnetic Separators

Magnetic Separators are industrial solutions used to detect, extract,
and separate ferrous contaminants from bulk materials, liquids, and product streams.
They help protect equipment, improve product purity, and ensure smooth production
across various industries.

At Tesseract Systems, magnetic separators are engineered for high magnetic
strength, reliable separation efficiency, and long service life in demanding
industrial environments.

Purpose & Working Principle

Magnetic separators generate a controlled magnetic field that attracts iron-based
particles as material flows through or over the system. The captured ferrous
contaminants are safely removed, allowing clean material to continue through the
process without interruption.

Types of Magnetic Separators

Drum Type Magnetic Separator
Designed for continuous and automatic separation of ferrous materials from bulk
products in recycling, mining, foundry, and manufacturing applications.

  • Rotating magnetic drum for efficient separation
  • Suitable for dry and wet processing conditions
  • Consistent performance with minimal manual handling

Belt Type Magnetic Separator
Used for inline removal of tramp iron from conveyor-fed material streams, ensuring
smooth and uninterrupted material flow.

  • High-intensity magnets mounted over or within conveyors
  • Effective removal of metal fragments and scrap
  • Easy installation and low maintenance

Key Advantages

  • Protects machinery from metal damage
  • Improves product quality and purity
  • Reduces downtime and maintenance costs
  • Reliable operation in harsh environments

Applications

  • Manufacturing and machining industries
  • Bulk material processing
  • Recycling and scrap handling
  • Food, pharmaceutical, and chemical plants
  • Mining, cement, and power industries

Why Choose Tesseract Systems

Every magnetic separator from Tesseract Systems is custom-engineered to
match application requirements, ensuring dependable performance, seamless system
integration, and long-term operational efficiency.