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Metallurgical rotary kiln is a high-temperature processing equipment commonly used in the metallurgical industry for the thermal treatment of various materials. It is designed to generate heat through high-temperature combustion, which is used to transform raw materials into finished products such as metals, alloys, and other materials.
Model: Φ2.2x38m--Φ4.3x64m
Capacity: 120tpd-800tpd
Material: Metallurgical ore

Metallurgical rotary kiln, also called metallurgical chemical kiln or metallurgical kiln, is mainly used in metallurgical industry, iron plant magnetization roasting of poor iron ore; chromium, nickel iron ore oxidation roasting; refractory plant roasting of high metallurgical ore and aluminum plant roasting clinker, aluminum hydroxide, chemical plant roasting of chromite ore sand and chromite powder and other types of minerals.
When the metallurgical rotary kiln is in normal operation, the main drive motor transmits power to this open gear unit through the main reducer to drive the rotary kiln. The material enters the kiln from the end of the kiln (the high end of the cylinder) and is calcined.
Due to the tilting and slow rotation of the cylinder, the material both rolls in the circumferential direction and moves axially (from the high end to the low end) to produce clinker that enters the cooler through the kiln head hood. The fuel is sprayed into the kiln from the kiln head, and the exhaust gas produced by combustion is exchanged with the material and then exported from the kiln tail.

1. The metallurgical rotary kiln can be processed at high temperature to calcine and sinter the materials to get good properties and performance.
2. It can accommodate a large amount of materials to be processed, so that it has high production capacity and improves production efficiency.
3. The metallurgical rotary kiln can accommodate a variety of materials for processing, including ore, concentrate, slag, powder, etc., which has good adaptability.
4. The control system of metallurgical rotary kiln can realize fully automatic control, monitoring temperature, pressure and other parameters through sensors and other devices to realize precise control and optimized operation.

| Specification (m) |
Kiln Size | Power (kw) |
Wight (t) |
Remarks | ||||
| Diameter(m) | Length(m) | Slope(%) | Capacity (t/d) |
Speed (r/min) |
||||
| Φ2.5×40 | 2.5 | 40 | 3.5 | 180 | 0.44-2.44 | 55 | 149.61 | |
| Φ2.5×50 | 2.5 | 50 | 3 | 200 | 0.62-1.86 | 55 | 187.37 | |
| Φ2.5×54 | 2.5 | 54 | 3.5 | 280 | 0.48-1.45 | 55 | 196.29 | Kiln decomposition kilns |
| Φ2.7×42 | 2.7 | 42 | 3.5 | 320 | 0.10-1.52 | 55 | 198.5 | ------ |
| Φ2.8×44 | 2.8 | 44 | 3.5 | 450 | 0.437-2.18 | 55 | 201.58 | Kiln decomposition kilns |
| Φ3.0×45 | 3 | 45 | 3.5 | 500 | 0.5-2.47 | 75 | 201.94 | ------ |
| Φ3.0×48 | 3 | 48 | 3.5 | 700 | 0.6-3.48 | 100 | 237 | Kiln decomposition kilns |
| Φ3.0×60 | 3 | 60 | 4 | 800 | 0.3-2 | 100 | 310 | ------ |
| Φ3.2×50 | 3.5 | 50 | 4 | 1000 | 0.6-3 | 125 | 278 | Kiln decomposition kilns |
| Φ3.3×52 | 3.3 | 52 | 3.5 | 1300 | 0.266-2.66 | 125 | 283 | Preheating decomposition kilns |
| Φ3.5×54 | 3.5 | 54 | 3.5 | 1500 | 0.55-3.4 | 220 | 363 | Preheating decomposition kilns |
| Φ3.6×70 | 3.6 | 70 | 3.5 | 1800 | 0.25-1.25 | 125 | 419 | Waste heat power kilns |
| Φ4.0×56 | 4 | 56 | 4 | 2300 | 0.41-4.07 | 315 | 456 | Preheating decomposition kilns |
| Φ4.0×60 | 4 | 60 | 3.5 | 2500 | 0.396-3.96 | 315 | 510 | Preheating decomposition kilns |
| Φ4.2×60 | 4.2 | 60 | 4 | 2750 | 0.41-4.07 | 375 | 633 | Preheating decomposition kilns |
| Φ4.3×60 | 4.3 | 60 | 3.5 | 3200 | 0.396-3.96 | 375 | 583 | Preheating decomposition kilns |
| Φ4.5×66 | 4.5 | 66 | 3.5 | 4000 | 0.41-4.1 | 560 | 710.4 | Preheating decomposition kilns |
| Φ4.7×74 | 4.7 | 74 | 4 | 4500 | 0.35-4 | 630 | 849 | Preheating decomposition kilns |
| Φ4.8×74 | 4.8 | 74 | 4 | 5000 | 0.396-3.96 | 630 | 899 | Preheating decomposition kilns |
| Φ5.0×74 | 5 | 74 | 4 | 6000 | 0.35-4 | 710 | 944 | Preheating decomposition kilns |
| Φ5.6×87 | 5.6 | 87 | 4 | 8000 | Max4.23 | 800 | 1265 | Preheating decomposition kilns |
| Φ6.0×95 | 6 | 95 | 4 | 10000 | Max5 | 950×2 | 1659 | Preheating decomposition kilns |
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