Ball Mill for Iron Ore Beneficiation Plant
Product Spotlights
Product Introduction
This ball mill for iron ore beneficiation plant is a professional heavy-duty grinding equipment tailored for iron ore processing scenarios such as magnetite and hematite. It adopts a high-wear-resistant structural design adapted to the characteristics of high-hardness iron ore, covering full-series specifications from small test units to large industrial continuous grinding systems. It can efficiently dissociate iron minerals from gangue monomers, and the ground pulp can be seamlessly connected to subsequent beneficiation processes such as magnetic separation and gravity separation, which is the core grinding equipment to ensure the concentrate grade and recovery rate of the iron ore processing plant.
Working Principle
The heavy-duty thickened cylinder is driven by a high-torque transmission system to rotate at a precisely controlled constant speed, driving the built-in graded high-chromium wear-resistant steel balls to rise to the optimal height along the thickened corrugated liner and then fall in a parabolic trajectory. The high-hardness iron ore raw material is continuously fed into the cylinder, and is fully crushed and ground by the strong impact force of the steel balls and the continuous grinding effect between the media. The ground pulp that meets the beneficiation fineness requirements is stably discharged through the grid or overflow discharge port, completing the large-capacity continuous grinding process.
Core Features
This product has multiple targeted advantages for iron ore beneficiation plants. The enhanced anti-wear design of the liner and steel balls greatly improves the impact resistance, effectively reducing the wear rate when grinding high-hardness iron ore. The optimized grinding parameters can stably control the pulp fineness, fully dissociate iron minerals, and significantly improve the subsequent magnetic separation efficiency and iron concentrate grade. The heavy-duty structure can adapt to 24-hour uninterrupted high-load operation, with extremely low failure rate and long service life. It can be seamlessly connected with subsequent magnetic separation units, making the whole iron beneficiation process more smooth and efficient.
Technical Specifications
Category |
Model |
Effective Volume |
Capacity |
Impeller |
Impeller RPM Motor Power |
(kW)-Agitating |
Motor Power |
Single Weight (t) |
XJK type |
XJK-0.35 |
0.35 |
0.18-0.4 |
300 |
480 |
1.5 |
0.75 |
0.6 |
XJK-0.62 |
0.3-0.9 |
350 |
400 |
3 |
1.1 |
0.9 |
||
XJK-1.1 |
0.6-1.6 |
500 |
330 |
5.5 |
1.1 |
1.3 |
||
XJK-2.8 |
1.5-3.5 |
600 |
280 |
11 |
1.5 |
2.5 |
||
XJK-5.8 |
5.8 |
5-7 |
750 |
240 |
15 |
1.5 |
3.6 |
|
SF type Flotation |
SF-0.37 |
0.37 |
0.2-0.4 |
300 |
352-442 |
1.5 |
0.55 |
0.5 |
SF-0.65 |
0.65 |
0.3-1.0 |
350 |
336 |
3 |
1.1 |
1 |
|
SF-1.2 |
1.2 |
0.6-1.6 |
450 |
298 |
5.5 |
1.1 |
1.5 |
|
SF-2.8 |
2.8 |
1.5-3.5 |
550 |
268 |
11 |
1.5 |
2.3 |
|
SF-4 |
4 |
2-4 |
650 |
237 |
15 |
2.2 |
2.8 |
|
SF-8 |
8 |
4-8 |
760 |
191 |
30 |
2.2 |
4.3 |
|
SF-10 |
10 |
5-10 |
760 |
191 |
30 |
3 |
4.6 |
|
SF-16 |
16 |
6-16 |
850 |
180 |
45 |
3 |
7.8 |
|
SF-20 |
20 |
8-20 |
730 |
186 |
55 |
3 |
9.8 |
|
| JJF type Flotation machine | JJF-2 |
2 |
1-3 |
370 |
400 |
11 |
1.1 |
1.9 |
JJF-4 |
4 |
2-4 |
410 |
305 |
15 |
1.5 |
2.3 |
|
JJF-8 |
8 |
4-8 |
540 |
233 |
22 |
2.2 |
4.5 |
|
JJF-10 |
10 |
5-10 |
540 |
233 |
22 |
2.2 |
4.9 |
|
JJF-16 |
16 |
5-16 |
700 |
180 |
37 |
2.2 |
8.2 |
|
JJF-20 |
20 |
5-20 |
730 |
180 |
37 |
2.2 |
10.5 |
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