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MQZ energy-saving bearing type Drive the ball mill
Energy-saving bearing ball mill is a form of mill developed on the basis of the use of conventional ball mills. The transmission adopts double-row aligning roller bearings instead of plain bearings, thereby transforming the original sliding friction into rolling friction, reducing the friction and resistance, thereby saving power consumption and cost, and prolonging the service life.
Ball load: 4.8-120t
Model: MQZ1224-MQZ3660
Application: Widely used in mineral processing, chemical industry, coal, refractory and other industries.
MQZ energy-saving bearing drive ball mill product introduction
The energy-saving bearing edge drive ball mill produced by our company has many advantages compared with the traditional ball mill: reduce the working current by 15%, reduce the starting current by 50%; Improve the concentricity of the ball mill is not enough, the operation is unstable, the current is high and low, and the hollow shaft is seriously worn; After using rolling bearings, the hollow shaft can continue to be used, the speed is increased by 10%, and the power saving per ton of products is 20-30%.
Outstanding advantage
1, the fineness of the product is easy to adjust, and the product particles are uniform;
2, MQZ type energy-saving bearing ball mill liner is made of high-quality wear-resistant material, high strength, wear resistance, long service life;
3, small vibration, low noise, clean and environmental protection;
4, high grinding efficiency, less loss;
5, grinding uniform, large specific surface area.
Working principle
The transmission device makes it slowly rotate, and when the grinding material enters the inside of the mill through the feeding end of the mill, the grinding medium and material are brought to a certain height by the friction and centrifugal force generated by the rotary movement of the cylinder, and are thrown and poured down in the shape of the material curtain, and then the material is hit and ground by the grinding body. Due to the continuous feeding of materials, the material in the cylinder is prompted to move from the feeding end to the discharge end, and the material reaching the finished particle size is discharged from the discharge end of the cylinder. When wet grinding, the material is carried out by the water flow; During dry grinding, the material is forced out.
Technical parameter
| TYPE | Cylinder size (m) | Speed (r/min) | Ball load (t) | Feed size (mm) | Discharge size (mm) | Yield (t/h) | Power (kW) | Weight (t) |
| MQZ1224 | 1.2x2.4 | 31 | 4.8 | 0-20 | 0.074-0.6 | 0.4-6.8 | 37 | 13.43 |
| MQZ1245 | 1.2x4.5 | 31 | 5.2 | 0-20 | 0.074-0.6 | 1.6-12 | 45 | 17.4 |
| MQZ1530 | 1.5x3.0 | 27.5 | 8.1 | 0-25 | 0.074-0.4 | 2.9-16.5 | 65 | 18.6 |
| MQZ1557 | 1.5x5.7 | 29.2 | 15 | 0-25 | 0.074-0.4 | 4-25 | 95 | 24.54 |
| MQZ1645 | 1.6x4.5 | 27.5 | 14 | 0-25 | 0.074-0.4 | 4-24 | 95 | 26 |
| MQZ1836 | 1.8x3.6 | 23.9 | 11 | 0-25 | 0.074-0.4 | 8-40 | 132 | 33 |
| MQZ1864 | 1.8x6.4 | 23.9 | 18.5 | 0-25 | 0.074-0.4 | 8-60 | 155 | 35.6 |
| MQZ2130 | 2.1x3.0 | 23.8 | 19.8 | 0-25 | 0.074-0.4 | 6.5-36 | 155 | 45 |
| MQZ2136 | 2.1x3.6 | 23.8 | 27 | 0-25 | 0.074-0.4 | 8-61 | 155 | 46.8 |
| MQZ2265 | 2.2x6.5 | 21.6 | 28 | 0-25 | 0.074-0.4 | 8-35 | 210 | 62 |
| MQZ2430 | 2.4x3.0 | 22 | 22.5 | 0-25 | 0.074-0.4 | 7-92 | 210 | 67 |
| MQZ2436 | 2.4x3.6 | 22 | 28 | 0-25 | 0.074-0.4 | 7-95 | 210 | 73 |
| MQZ2465 | 2.4x6.5 | 22 | 36 | 0-25 | 0.074-0.4 | 7-2010 | 260 | 76 |
| MQZ2736 | 2.7x3.6 | 21.9 | 39 | 0-25 | 0.074-0.4 | 13-140 | 310 | 77 |
| MQZ2745 | 2.7x4.5 | 21.9 | 43 | 0-25 | 0.074-0.4 | 13-150 | 320 | 91 |
| MQZ2836 | 2.8x3.6 | 20 | 42 | 0-25 | 0.074-0.4 | 15-140 | 310 | 94.2 |
| MQZ3060 | 3.0x6.0 | 19 | 70 | 0-25 | 0.074-0.4 | 100-145 | 630 | 155 |
| MQZ3245 | 3.2x4.5 | 18.6 | 65 | 0-25 | 0.074-0.4 | 100-145 | 630 | 126 |
| MQZ3260 | 3.2x6.0 | 18.6 | 86 | 0-25 | 0.074-0.4 | 120-150 | 800 | 176 |
| MQZ3645 | 3.6x4.5 | 17.8 | 90 | 0-25 | 0.074-0.4 | 120-220 | 1000 | 159.7 |
| MQZ3660 | 3.6x6.0 | 17.8 | 120 | 0-25 | 0.074-0.4 | 50-230 | 1250 | 189 |
MQZ energy-saving bearing type Drive the ball mill
Energy-saving bearing ball mill is a form of mill developed on the basis of the use of conventional ball mills. The transmission adopts double-row aligning roller bearings instead of plain bearings, thereby transforming the original sliding friction into rolling friction, reducing the friction and resistance, thereby saving power consumption and cost, and prolonging the service life.
Ball load: 4.8-120t
Model: MQZ1224-MQZ3660
Application: Widely used in mineral processing, chemical industry, coal, refractory and other industries.
MQZ energy-saving bearing drive ball mill product introduction
The energy-saving bearing edge drive ball mill produced by our company has many advantages compared with the traditional ball mill: reduce the working current by 15%, reduce the starting current by 50%; Improve the concentricity of the ball mill is not enough, the operation is unstable, the current is high and low, and the hollow shaft is seriously worn; After using rolling bearings, the hollow shaft can continue to be used, the speed is increased by 10%, and the power saving per ton of products is 20-30%.
Outstanding advantage
1, the fineness of the product is easy to adjust, and the product particles are uniform;
2, MQZ type energy-saving bearing ball mill liner is made of high-quality wear-resistant material, high strength, wear resistance, long service life;
3, small vibration, low noise, clean and environmental protection;
4, high grinding efficiency, less loss;
5, grinding uniform, large specific surface area.
Working principle
The transmission device makes it slowly rotate, and when the grinding material enters the inside of the mill through the feeding end of the mill, the grinding medium and material are brought to a certain height by the friction and centrifugal force generated by the rotary movement of the cylinder, and are thrown and poured down in the shape of the material curtain, and then the material is hit and ground by the grinding body. Due to the continuous feeding of materials, the material in the cylinder is prompted to move from the feeding end to the discharge end, and the material reaching the finished particle size is discharged from the discharge end of the cylinder. When wet grinding, the material is carried out by the water flow; During dry grinding, the material is forced out.
Technical parameter
| TYPE | Cylinder size (m) | Speed (r/min) | Ball load (t) | Feed size (mm) | Discharge size (mm) | Yield (t/h) | Power (kW) | Weight (t) |
| MQZ1224 | 1.2x2.4 | 31 | 4.8 | 0-20 | 0.074-0.6 | 0.4-6.8 | 37 | 13.43 |
| MQZ1245 | 1.2x4.5 | 31 | 5.2 | 0-20 | 0.074-0.6 | 1.6-12 | 45 | 17.4 |
| MQZ1530 | 1.5x3.0 | 27.5 | 8.1 | 0-25 | 0.074-0.4 | 2.9-16.5 | 65 | 18.6 |
| MQZ1557 | 1.5x5.7 | 29.2 | 15 | 0-25 | 0.074-0.4 | 4-25 | 95 | 24.54 |
| MQZ1645 | 1.6x4.5 | 27.5 | 14 | 0-25 | 0.074-0.4 | 4-24 | 95 | 26 |
| MQZ1836 | 1.8x3.6 | 23.9 | 11 | 0-25 | 0.074-0.4 | 8-40 | 132 | 33 |
| MQZ1864 | 1.8x6.4 | 23.9 | 18.5 | 0-25 | 0.074-0.4 | 8-60 | 155 | 35.6 |
| MQZ2130 | 2.1x3.0 | 23.8 | 19.8 | 0-25 | 0.074-0.4 | 6.5-36 | 155 | 45 |
| MQZ2136 | 2.1x3.6 | 23.8 | 27 | 0-25 | 0.074-0.4 | 8-61 | 155 | 46.8 |
| MQZ2265 | 2.2x6.5 | 21.6 | 28 | 0-25 | 0.074-0.4 | 8-35 | 210 | 62 |
| MQZ2430 | 2.4x3.0 | 22 | 22.5 | 0-25 | 0.074-0.4 | 7-92 | 210 | 67 |
| MQZ2436 | 2.4x3.6 | 22 | 28 | 0-25 | 0.074-0.4 | 7-95 | 210 | 73 |
| MQZ2465 | 2.4x6.5 | 22 | 36 | 0-25 | 0.074-0.4 | 7-2010 | 260 | 76 |
| MQZ2736 | 2.7x3.6 | 21.9 | 39 | 0-25 | 0.074-0.4 | 13-140 | 310 | 77 |
| MQZ2745 | 2.7x4.5 | 21.9 | 43 | 0-25 | 0.074-0.4 | 13-150 | 320 | 91 |
| MQZ2836 | 2.8x3.6 | 20 | 42 | 0-25 | 0.074-0.4 | 15-140 | 310 | 94.2 |
| MQZ3060 | 3.0x6.0 | 19 | 70 | 0-25 | 0.074-0.4 | 100-145 | 630 | 155 |
| MQZ3245 | 3.2x4.5 | 18.6 | 65 | 0-25 | 0.074-0.4 | 100-145 | 630 | 126 |
| MQZ3260 | 3.2x6.0 | 18.6 | 86 | 0-25 | 0.074-0.4 | 120-150 | 800 | 176 |
| MQZ3645 | 3.6x4.5 | 17.8 | 90 | 0-25 | 0.074-0.4 | 120-220 | 1000 | 159.7 |
| MQZ3660 | 3.6x6.0 | 17.8 | 120 | 0-25 | 0.074-0.4 | 50-230 | 1250 | 189 |





