Overview: The raw material mill adopts a large cover, that is, the end cover and hollow shaft are cast as a whole. The unique streamlined design is adopted in the large end cap and discharge system, which reduces ventilation resistance, increases effective volume, facilitates discharge, and improves mill output. The raw material mill adopts a single compartment structure, and the inner lining plate of the mill is designed in combination. Different lining plate structures are adopted for different stages of the raw material mill, greatly improving the gri...
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This series of products is mainly used for grinding raw materials in cement plants, and is also suitable for grinding various ores and other grindable materials in metallurgical, chemical, power and other industrial and mining enterprises. It can be produced by both dry and wet methods, as well as by grinding and drying simultaneously. It can be used for open flow grinding and is also suitable for circulating flow grinding composed of a powder selector. The raw material grinding transmission form is edge transmission, with a compact structure and less land occupation. This greatly saves user investment. The raw material mill adopts a large end cap, which is a cast integral part of the end cap and hollow shaft. The unique streamlined design is adopted in the large end cap and discharge system, which reduces ventilation resistance, increases effective volume, facilitates discharge, and improves mill output. The raw material mill adopts a single compartment structure, and the inner lining plate of the mill is designed in combination. Different lining plate structures are adopted for different stages of the raw material mill, greatly improving the grinding efficiency. The working pressure inside the raw material mill is negative pressure, effectively preventing the occurrence of powder leakage. The hot air for drying is introduced into the high-temperature exhaust gas at the kiln tail, and insulation measures are taken inside the raw material mill, achieving a drying capacity of 6% to 8% for the materials. DCS interface is reserved for the electrical control of the raw material mill to meet the needs of users for centralized control.
Specification (m) (diameter×); Length | Speed (r/min) | Feed particle size (mm) | Production capacity (t/h) | Grinding body loading capacity (t) | Main motor | Main reducer | Weight (excluding motor reducer) (t) | |||
---|---|---|---|---|---|---|---|---|---|---|
Model | Power (kw) | Speed (r.p.m.) | Model | Speed ratio | ||||||
Φ 2.2× 7 (Wet method) |
21.4 | ≤ 25 | 20-15 | 31 | YR148-8 | 380 | 740 | ZD70-9 | 5 | 41 |
Φ 2.2× 13 (Wet method) |
21.6 | ≤ 25 | 33-37 | 58-60 | YR630-8/1180 | 630 | 740 | MBY630 | 5.6 | 95 |
Φ 2.4× 8 (Dry method) |
20.91 | ≤ 25 | 25-28 | 39-42 | JR1512-8 | 570 | 740 | ZD80-9 | 5 | 76.4 |
Φ 2.4× 10 (Dry method) |
20 | ≤ 25 | 38-40 | 50 | YR710-8/1180 | 710 | 740 | JDX630 | 5.6 | 92.4 |
Φ 2.4× 11 (Dry method) |
21 | ≤ 25 | 40-45 | 60-62 | YR800-8/1180 | 800 | 740 | MBY710 | 6.3 | 105 |
Φ 2.4× 12 (Dry method) |
21 | ≤ 25 | 45-48 | 63-65 | YR800-8/1180 | 800 | 740 | MBY710 | 6.3 | 107 |
Φ 2.4× 13 (Dry method) |
21.5 | ≤ 25 | 48-51 | 65-68 | YR800-8/1180 | 800 | 740 | MBY710 | 6.3 | 117 |
Φ 2.4× 13 (Wet method) |
21 | ≤ 25 | 45-50 | 65-68 | YR800-8/1180 | 800 | 740 | JDX710 | 5.6 | 117 |
Φ 2.6× 10 (Dry method) |
20.6 | ≤ 25 | 40-42 | 62-65 | YR800-8/1180-8 | 800 | 740 | JDX710 | 6.3 | 133 |
Φ 2.6× 13 (Wet method) |
20.6 | ≤ 25 | 45-46 | 75-80 | YR1000-8/1180 | 1000 | 740 | JDX800 | 6.3 | 151 |
Φ 3× 9 (Dry method) |
19.13 | ≤ 25 | 50-55 | 76-80 | YR1000-8/1180 | 1000 | 740 | JDX800 | 6.3 | 137 |
Φ 3× (8.5+1.5) (Drying) |
18.9 | ≤ 25 | 45-50 | 76-80 | YR1000-8/1180 | 1000 | 740 | JDX800 | 6.3 | 150 |
Φ 3.2× 6.4 (Wet method) |
18.5 | ≤ 25 | 32-41 | 68 | TDMK1000-36 | 1000 | 167 | 134 | ||
Φ 3.2× 9 (Dry method) |
18.3 | ≤ 25 | 60-70 | 90 | YR1250-8/1430 | 1250 | 740 | JDX900 | 7.1 | 157 |
Φ 3.2× (7+1.8) (Cantilever drying) |
18.3 | ≤ 25 | 50-53 | 59 | YR1000-8/1180-8 | 1000 | 740 | JDX800 | 6.3 | 145 |
Φ 3.4× (7.5+2.) (Drying) |
17.8 | ≤ 25 | 53-55 | 62 | YR1000-8/1180 | 1000 | 740 | JDX800 | 6.3 | 183 |
Φ 3.5× 8 (Wind sweep) |
17.2 | ≤ 25 | 53-55 | 80 | YRKK710-8 | 1000 | 740 | MBY800 | 6.3 | 170 |
Φ 3.5× 10 (drying) | 17.3 | ≤ 25 | 75-80 | 87 | YR1250-8/430 | 1250 | 740 | JS110-A-F1 | 160 | |
Φ 3.6× (7.5+2.5) (Drying) |
16.7 | ≤ 25 | 95-100 | 90 | YR1400-8/1430 | 1400 | 740 | JDX900 | 7.1 | 186 |
Φ 3.8× 7.5 | 16.7 | ≤ 25 | 85 | 85 | YR1400-8/1430 | 1400 | 740 | MBY800 | 5.6 | 165 |
Φ 3.8× 12 (Drying) (Double skate shoes) |
16.6 | ≤ 25 | 100-110 | 130 | YRKK800-8 | 2000 | 740 | JS130-A | 270 | |
Φ 4.6× (9.5+3.5) (Drying) (Double skate shoes) |
15.1 | ≤ 25 | 185 | 175-180 | YRKK1000-8 | 3500 | 740 | JS150-B | 298 | |
Φ 4.6× (10+3.5) (Double skate shoes) |
15.1 | ≤ 25 | 195 | 190 | YRKK1000-8 | 3500 | 740 | JS150-B | 315 | |
Φ 4.8× (11+3.5) | 14.8 | ≤ 25 | YRKK1000-8 | 4000 | 740 | 353 |