Magnetic Separation Equipment

Electromagnetic Iron Separator

An electromagnetic iron separator removes unwanted ferrous metal from material carried on a conveyor belt. It generates a magnetic field that attracts tramp iron, pulling it out of the material stream to protect crushers, screens and mills from damage.

01Model
02Applicable Belt Width (mm)
03Rated Suspension Height (mm)
04Magnetic Field Strength
05Material Thickness (≤ mm)
06Excitation Power (≤ kW)
07Applicable Belt Speed

Technical parameters

Installed above a conveyor, the separator is typically placed after the primary crusher or before sensitive downstream equipment. It works continuously, discharging collected iron at intervals without stopping the belt.

The model table lists eight sizes, each defined by belt width, suspension height, magnetic field strength, material depth, excitation power, belt speed and weight. As model number increases, these parameters scale to suit wider belts and deeper material burdens. Select a model matching the conveyor dimensions and tramp iron characteristics.

Electromagnetic Iron Separator technical parameters, 8 models
ModelApplicable Belt Width (mm)Rated Suspension Height (mm)Magnetic Field Strength (≥mT)Material Thickness (≤ mm)Excitation Power (≤ kW)Applicable Belt Speed (≤ m/s)Weight (kg)
RCDB-5500150609014.5360
RCDB-6.5650200701502560
RCDB-8800250702003.6800
RCDB-1010003007025051350
RCDB-121200350703006.82000
RCDB-1414004007035092500
RCDB-16160045070400134800
RCDB-18180050070450186100
Parameter boundary

Standard-model catalogue figures. Actual capacity, power draw and wear life shift with ore properties, feed gradation and circuit conditions. Use them to shortlist, then confirm the duty by testwork, flowsheet calculation and a written confirmation from the manufacturer.

What decides the selection

Before selecting a model, determine the conveyor belt width, belt speed, maximum lump size and depth of the material burden. Also identify the magnetic properties and size of the tramp iron to be removed. The suspension height available and the required magnetic field strength guide the appropriate model from the table. Environmental conditions such as temperature and dust may also influence the choice.

  • Specific magnetic susceptibility of the mineral
  • Field strength and gradient
  • Particle size
  • Dry or wet circuit
  • Throughput and feed density
  • Risk of magnetic medium blockage
  • Product quality target

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Send the duty, get a sized proposal

Tell us the ore, the throughput and the target product. Our process engineers come back with a flowsheet position, a model shortlist and the testwork we would need to confirm it.