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Technical Parameter of High gradient magnetic separator


Model
SSS-I-1000
SSS-I-1200
SSS-I-1500
SSS-I-1750
SSS-I-2000
Separating ring diameter(mm)
1000
1200
1500
1750
2000
Rated excitated power(kw)
25
35
45
63
72
Capacity(t/h)
4-10
10-20
20-35
30-50
40-75
Rated backgroudn field
 intensity (t)
1.0
1.0
1.0
1.0
1.0
Feeding size(mm)
0.01-2
0.01-2
0.01-2
0.01-2
0.01-2
Motor power(kw)
4.5
6.6
8.4
13.5
16.5
Weight(kg)
8000
12000
21000
38000
51000
 



Introduction and Application of High gradient magnetic separator
The high-gradient magnetic separator adopts vertical rotation, back-flush device, and high-frequency vibration, so it has thoroughly solved the worldwide problem existing among horizontal-ringmagnetic separators. The magnetic medium of our high-gradient magnetic separatorcan`t block in the cylinder.It features high efficiency,low operation cost,high reliability, and easy operation. The slurry flows into the chute from the mineral box, and feeding pipes rush it into feeding section in the chute.
Applications: The high-gradient magnetic separator is suitable for the separation of weak-magnetism minerals, such as hematite, limonite, siderite, ilmenite, chromite, wolframite, tantalum, niobium and red mud, etc.

Working Principle of High gradient magnetic separator
The magnetic system is made from high-quality ferrite magnetic materials or synthetic materials of rare earth and magnet steel. On the shell surface, the average magnet intensity reaches 100-600mt.We are able to provide different types of magnetic separator according to the needs of customers, such as concurrent type, counter-current type andcounter-rotation type. It features short magnetic circuit, high magnetic intensity, low energy consumption, fine separation, simple structure and easy maintenance. It mainly consists of sorting ring, sealing system, driven system support and positioned wheel-set.The “magnetic linkage” or”magnetic group” rotates with the cylinder,non-magnetic ores which locate between themfall down.The magnetic minerals will absorb on the surface of the medium. And then be sent into non-magnetic field by swivel, then be flushed into concentrated ore bucket ,and the non-magnetic particles will discharge from the tailings along the gap.

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