CXG Series Permanent Magnet Separator - High-Performance Iron Removal Equipment by China Suppliers & Factory
Application
Features
Main technical parameters (multi-cylinder type)
| Model parameter items | roller diameter | roller length | Number of rollers | Magnetic induction intensity | Drum speed | processing capacity | Material granularity | Driving power | weight | Outline size |
| mm | mm | Piece | GS | r/min | T/h | mm | Kw | Kg | mm | |
| 2CXJ-3260 | 320 | 600 | 2 | Upper barrel≥1000 | 17-82 | ≤2 | ≤5 | 1.5 | 920 | 1075×950×1250 |
| Lower cylinder≥4000 | ||||||||||
| 3CXJ-260 | 320 | 600 | 3 | Upper barrel≥1000 | ≤2.5 | ≤5 | 1.5 | 1250 | 1075×1100×1750 | |
| Middle cylinder≥3000 | ||||||||||
| Lower cylinder≥4000 | ||||||||||
| 2CXJ-080 | 406 | 800 | 2 | Upper barrel≥1000 | ≤2.5 | ≤6 | 1.75 | 1100 | 1330×1250×1580 | |
| Lower cylinder≥4000 | ||||||||||
| 3CXJ4080 | 406 | 800 | 3 | Upper barrel≥1000 | ≤3 | ≤8 | 1.75 | 1460 | 1330×1300×1950 | |
| Middle cylinder≥3000 | ||||||||||
| Lower cylinder≥4000 | ||||||||||
| 4CXJ4080 | 406 | 800 | 4 | Upper barrel≥1000 | ≤3.5 | ≤8 | 1.75 | 1850 | 1330×1450×2600 | |
| Middle cylinder≥3000 | ||||||||||
| Middle cylinder≥4000 | ||||||||||
| Lower cylinder≥4500 | ||||||||||
| CXJ-5100 | 508 | 1000 | 2 | Upper barrel≥1000 | ≤4 | ≤10 | 2.2 | 1500 | 1565×1450×1820 | |
| Lower cylinder≥4000 | ||||||||||
| 3CXJ-5100 | 508 | 1000 | 3 | Upper barrel≥1000 | ≤5.5 | ≤10 | 3 | 2100 | 1565×1465×2450 | |
| Middle cylinder≥3000 | ||||||||||
| Lower cylinder≥4000 |
Frequently Asked Questions (FAQ)
What materials can this permanent magnet separator process?
This separator is designed for dressing and refining strong magnetic particles (≤ 10mm), recovering heavy magnetic medium, and removing iron from minerals. It is highly effective for beneficiating high-intensity magnetic minerals such as magnetite, titanite magnetite, franklinite, pyrrhotite, and maghemite/oxymagnetite.
What magnetic material is used in the separator?
The equipment utilizes strong magnetic rare earth NdFeB (Neodymium Iron Boron) as the primary magnetic source, which ensures a high-intensity and strong magnetic force.
In which industries is this magnetic separator applied?
It is widely applied in metallurgy, the coal industry, mining, insulation material production, the cement industry, chemistry, building materials, and the food industry, among others.
What are the primary performance advantages of this machine?
Key features include high magnetic intensity, strong magnetic force, high separating efficiency, low maintenance requirements, low power consumption, and a safe, reliable design.
What is the typical magnetic induction intensity of the cylinders?
Depending on the multi-cylinder configuration, the magnetic induction intensity ranges from ≥1000 GS for the upper barrel, ≥3000 GS for the middle cylinder, and up to ≥4000 GS to ≥4500 GS for the lower cylinder.


