Metallurgy, mineral processing ball mill
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  • Metallurgy, mineral processing ball mill

Metallurgy, mineral processing ball mill

This machine consists of feeding part, discharging part, rotating part, transmission part (reducer, small transmission gear, motor, electronic control) and other main parts. The hollow shaft is made of cast steel, the inner part can be disassembled and replaced, the rotating large gear is processed by casting hobbing, and the cylinder is equipped with wear-resistant lining plate, which has good wear resistance. This machine runs smoothly and works reliably.

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Excellent production

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Product Classification:

Ball mill

WhatsApp:+86-15038279844

Product Introduction

Ball mill structural features:

This machine consists of feeding part, discharging part, rotating part, transmission part (reducer, small transmission gear, motor, electronic control) and other main parts. The hollow shaft is made of cast steel, the inner village can be disassembled and replaced, the rotating large gear is processed by casting hobbing, and the cylinder is equipped with wear-resistant lining, which has good wear resistance. This machine runs smoothly and works reliably.

Note: According to the material and discharge method, dry ball mill and wet grid ball mill can be selected.

 

 

Main technical parameters of metallurgical and ore dressing ball mills

Specifications Cylinder speed(c/min) Ball loading(t) Feed size (mm) Discharge size(mm) Yield (t/h) Motor power(kw) Remark
φ750×750 40.56 0.5 ≤20 0.074-0.3 0.18-0.5 15 Energy-saving
φ750×1060 49.6 0.6 0-12 0.074-0.4 0.14-0.34 4 Energy-saving
φ750×1800 49.6 0.1 0-12 0.074-0.5 0.55-1.11 7.5 Energy-saving
φ900×900 40 0.67 ≤60 0.074-0.6 0.23-0.74 22 Energy-saving
φ900×900 39 0.7 ≤40 0.074-0.6 0.3-1.2 7.5 Wet grid
φ900×900 39 0.7 ≤40 0.074-0.6 0.3-1.1 7.5 Wet overflow
φ900×1200 38 0.3 ≤40 0.074-0.6 0.2 5.5 Dry
φ900×1800 40 1.6 ≤60 0.074-0.89 0.58-2 30 Energy-saving
φ900×1800 39 0.85 ≤40 0.074-0.89 0.6-2.1 15 Wet grid
φ900×1800 39 0.85 ≤40 0.074-0.89 0.5-2.0 15 Wet overflow
φ900×2100 41 1.7 0-15 0.074-0.89 0.69-1.30 15 Energy-saving
φ900×2100 37 1.73 ≤15 0.074-0.89 0.4-2 18.5 Dry lattice
φ900×2400 39 2.1 ≤40 0.074-0.89 0.7-2.8 18.5 Wet grid
φ900×2400 39 2.1 ≤40 0.074-0.89 0.6-2.5 18.5 Wet overflow
φ900×3000 36 2.7 ≤20 0.074-0.89 1.1-3.5 22 Dry
φ900×3000 39 5.8 ≤25 0.075-0.89 0.8-3.1 22 Wet grid
φ900×3000 39 5.8 ≤25 0.075-0.89 0.7-2.8 22 Wet overflow
φ1200×1200 34 5 ≤25 0.075-0.89 0.3-3 18.5 Wet grid
φ1200×1200 34 5 ≤25 0.075-0.89 0.3-2.5 18.5 Wet overflow
φ1200×1200 31.3 2.4 ≤20 0.074-0.6 0.20-2.19 37 Energy saving
φ1200×1600 35 2.5 0-20 0.074-0.6 0.80-2.0 18.5 Energy saving
φ1200×2000 35 3.0 0-20 0.074-0.6 1.1-2.6   Energy saving
φ1200×2400 31.3 4.8 0-20 0.075-0.3 0.4-5.8 45 Energy saving
φ1200×2400 34 9 ≤25 0.075-0.3 0.5-6 30 Wet grid
φ1200×2400 34 9 ≤25 0.075-0.3 0.5-5 30 Wet overflow
MQG1200×2400 32 4.8 ≤20 0.074-0.6 1.5-2 45 Dry
φ1200×2800 35 4.22 ≤25 0.074-0.6 1.5-3.7 37 Dry
φ1200×2800 35 4 0-20 0.074-0.6 1.42-3.8 30 Energy saving
φ1200×3000 34 11 ≤25 0.074-0.6 0.6-7 37 Wet grid
φ1200×3000 34 11 ≤25 0.074-0.6 0.6-6 37 Wet overflow
φ1200×3000 32 5 ≤25 0.074-0.4 1.6-5 45 Dry
MB1200×3000 28 7.2 ≤25 0.074-0.4 1.5-8 45 Wet Rod Mill
φ1200×4500 33 13 ≤25 0.074-0.4 0.7-8 45 Wet grid
φ1200×4500 33 13 ≤25 0.074-0.4 0.7-7 45 Wet overflow
MQG1200×4500 30 5.2 <25 0.074 1.5 55 Dry
φ1500×1500 29.2 4 ≤25 0.074-0.85 1-3.5 60 Energy saving
φ1500×1500 31 9 ≤25 0.074-0.4 1.5-7 45 Wet grid
φ1500×1500 31 9 <25 0.074-0.4 1.5-6 45 Wet overflow
φ1500×1800 28 7 <25 0.074-0.4 1 11 Dry
φ1500×3000 32.7 10.4 ≤25 0.074-0.85 2-6.8 95 Energy saving
φ1500×3000 31 17 ≤25 0.074-0.4 3-11 75 Wet grid
φ1500×3000 31 17 ≤25 0.074-0.4 3-10 75 Wet overflow
MBJ1500×3000 26 10 ≤25 0.074-0.4 3-15 75 Wet Rod Mill
MQ1500×3500 31 8.2 0-25 0.074-0.4 3.3-8.2 75 Cone Energy Saving
MQG1500×4500 28.8 10 ≤25 0.074-04 3-4 110 Dry
φ1500×4500 30 23 ≤25 0.074-0.4 4-12 110 Wet grid
φ1500×4500 30 23 ≤25 0.074-0.4 4-11 110 Wet overflow
MQG1500×5700 28.8 12 ≤25 0.074-0.4 3-5 130 Dry
φ1500×5700 28 10.5 0-25 0.074-0.6 3.5-9.5 130 Energy saving
φ1500×5700 30 25 ≤25 0.074-0.6 4-14 130 Wet grid
φ1500×5700 30 25 ≤25 0.074-0.6 4-13 135 Wet overflow
MQG1500×6400 28.8 13 ≤25 0.074-0.4 3-5 130 Dry
MQG1830×3000 26.8 14 ≤25 0.074-0.4 6-16 130 Wet grid
MQG1830×3000 26.8 14 ≤25 0.074-0.4 6-15 130 Wet overflow
φ1830×3000 25.4 11 ≤25 0.074-0.4 4-10 130 Energy saving
MQG1830×3600 24.23 11 0-25 0.074-0.4 6.6-18.5 130 Wet energy saving
φ1830×4500 26.8 31 ≤25 0.074-0.4 6-18 180 Wet grid
φ1830×4500 26.8 31 ≤25 0.074-0.4 6-17 180 Wet overflow
φ1830×4500 25.4 5 ≤25 0.074-0.4 4.5-12 155 Dry
φ1830×4500 24 15 <25 0.074-0.4 4-19 155 Ball (Rod) Mill
φ1830×5400 24.5 15 ≤25 0.074-0.4 5-7 210 Wet overflow
φ1830×6400 24.1 21 ≤25 0.074-0.4 6.5-15 210 Wet overflow

 

Specifications Cylinder speed(r/min) Ball loading(t) Feed size (mm) Discharge size(mm) Yield (t/h) Motor power(kw) Remark
φ1830×6400 24 23 ≤25 0.074-0.4 6.5-15 210 Wet grid
φ1830×7000 24.1 23 ≤25 0.074-0.4 7.5-17 210 Dry energy saving
MQG1830×7000 24.5 20 ≤25 0.074-0.4 6-8 245 Dry
φ1830×7000 24.5 21 0-25 0.074-0.6 4-35 210 Wet energy saving
φ1830×7000 24.5 20 ≤25 0.074-0.6 6-22 210 Wet grid
φ1830×7000 24.5 20 ≤25 0.074-0.6 6-21 210 Wet overflow
φ2100×2100 24 28.5 ≤25 0.074-0.6 6-33 180 Wet grid
φ2100×2100 24 28.5 ≤25 0.074-0.6 6-32 180 Wet overflow
φ2100×3000 23.7 15 <25 0.074-0.4 6.5-36 180 Dry
φ2100×3000 23.8 18 ≤25 0.074-2.36 6-33 180 Energy-saving ball mill
MB2100×3000 22 20 ≤25 0.074-2.36 14-35 210 Wet Rod Mill
φ2100×3600 23.8 15 0-30 0.074-0.4 12-30 180 Cone Energy Saving
φ2100×3600 22 22.9 ≤25 0.074-0.4 7.6-28 210 Dry
φ2100×3600 24 45 ≤25 0.075-0.4 7-39 210 Wet grid
φ2100×3600 24 45 ≤25 0.075-0.4 7-38 210 Wet overflow
MBJ2100×3600 20 25 ≤25 0.075-0.4 15-40 210 Wet Rod Mill
φ2100×4500 23.7 24 ≤25 0.075-0.4 8-43 245 Dry
φ2100×4500 24 49 ≤25 0.074-0.4 8-43 240 Wet grid
φ2100×4500 24 49 ≤25 0.074-0.4 8-41 240 Wet overflow
φ2200×6500 21 31 ≤25 0.074-0.4 14-26 380 Dry
φ2200×7500 21 33 ≤25 0.074-0.8 16-29 380 Dry
MQG2200×9000 21.4 34 ≤25 0.074-0.8 8-10 475 Dry
φ2400×3000 22 50 ≤25 0.074-0.8 7-90 240 Wet
φ2400×3600 22 50 ≤25 0.074-0.8 9-47 240 Wet
MQG2400×7000 20.4 36 ≤25 0.074-0.8 10-14 475 Dry
MQG2400×8000 20.4 42 ≤25 0.074-0.8 10-14 560 Dry
MQG2600×8000 19.6 52 ≤25 0.074-0.8 16-20 630 Dry
φ2700×2100 21 70 ≤25 0.074-0.8 9-80 240 Wet
φ2700×2100 21 70 ≤25 0.074-0.8 9-78 240 Wet
MQG2700×3600 20.6 39 0-35 0.074-0.8 31-65 380 Energy saving
φ2700×3600 21 46 ≤25 0.074-0.8 12-125 380 Wet grid
φ2700×3600 21 46 ≤25 0.074-0.8 12-120 380 Wet overflow
MBJ2700×3600 18 45 ≤25 0.074-0.8 18-123 350 Wet Rod Mill
φ2700×4000 21 53 ≤25 0.074-0.8 12-1145 380 Wet grid
φ2700×4000 21 53 ≤25 0.074-0.8 12-140 380 Wet overflow
φ2700×4500 20 53 ≤25 0.074-0.8 12-150 430 Wet grid
φ2700×4500 20 53 ≤25 0.074-0.8 12-145 430 Wet overflow
MQG3000×9000 18.3 78 ≤25 0.074-0.8 20-25 1000 Dry
φ3200×4500 18 69 ≤25 0.074-0.8 According to process conditions 600 Wet grid
φ3200×4500 18 69 ≤25 0.074-0.8 600 Wet overflow
φ3600×4500 17 90 ≤25 0.074-0.8 850 Wet grid
φ3600×4500 17 90 ≤25 0.074-0.8 850 Wet overflow
φ3600×6000 17 95 ≤25 0.074-0.8 1250 Wet grid
φ3600×6000 17 95 ≤25 0.074-0.8 1250 Wet overflow

Product Video

回转窑制作车间11 (11).mp4
煤泥烘干视频 (4).mp4
煤泥烘干视频 (1).mp4
煤泥烘干视频 (3).mp4
煤泥烘干视频 (2).mp4
现场安装 (8).mp4
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