Features of Magnetic Roll Separators
- Compact construction.
- Single or multi stage separation.
- Fully enclosure with dust extraction port.
- Designed for easy maintenance.
- Automatic belt tensioning and tracking.
- Tool free belt change.
Technical Features
- Standard 2.5, 2, 1.5, 1, 0.75, 0.5 and 0.25 meter wide magnetic roll. Also available in a laboratory scale model with readily interchangeable rolls of 100 mm length.
- Supplied with a vibrating feeder to suit the roll width.
- Simple conveyor belt tensioning and tracking system accessible at the sides of the machine.
- Fixed or-variable speed roll drive options. Fractional HP motor having voltage and frequency to suit user.
USES
Induced Roll Separators are primarily used for separating or concentrating minerals or
materials of low magnetic susceptibility. Uses include extraction of iron or chromium bearing minerals from
silica sand, the concentration minerals such as wolframite, the removal of paramagnetic minerals such as Iron
Titanium Oxide (Ilmenite, FeTiO3), Iron Carbonate (siderite, FeCO3), etc., from valuable non-magnetic minerals,
and purification of dry granular chemical compounds and abrasives.
These self-cleaning magnetic separator selectively removes magnetic components out of a
conveyed material and discharges them as distinct and clean material. Field intensity is adjustable for
selective recovery. Very high gauss of 20,000 is achieved by the magnetic separator.
The throughput and degree of separation depends upon the following factors:
- The susceptibility of the magnetic fraction - throughput is reduced for materials of lower magnetic susceptibility.
- The particle size - for most materials the maximum size which can be satisfactorily treated is 3mm. For the treatment of dry materials up to 50 mm in size, electromagnetic multi-channel Pulley or Drum Separators are available (details available upon request). The presence of fine particles (particularly those less than 30 microns) reduces throughput.
- The bulk density - higher values increases throughput.
- The flow characteristics - these are determined by particle shape, surface condition and moisture content. Better flow characteristics increase throughput.
- The proportion of magnetics � a high percentage of magnetics may reduce throughput.
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