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Model: Φ2.2x38m--Φ4.3x64(m)
Capacity: 120tpd-800tpd
Material: Titanium Chrome Ore
Materials:(different sizes for 120 kinds of stones)
benonite
cement
clay
coals
Applied material:
Titanium-chromium ore is an important metallurgical raw material, which can be used to produce titanium-chromium alloy and other metal materials. And titanium-chromium ore rotary kiln is one of the common equipment to process the ore at high temperature. Through heating and chemical reactions, the ore is converted into metallic materials or other useful chemical substances.
The typical working principle of titanium-chromium ore rotary kiln is to put the titanium-chromium ore into the kiln for heat treatment, and the temperature can be adjusted between 600-850℃, so that the material can be fully sintered at a lower temperature and the impurities in the titanium-chromium ore can be melted, precipitated or synthesized to form a higher quality material.
The structure of titanium-chromium ore rotary kiln mainly consists of furnace body, end cover, discharge port, radiator, feed port and transmission system. The titanium-chromium ore rotary kiln can generate high temperature gas by burning fuel and enter the rotary kiln through the pipeline and airflow distribution device in the rotary kiln.
Working Principle:
The principle of titanium-chromium ore rotary kiln is to use high-temperature gas to heat the ore and make it undergo chemical reaction. In the rotary kiln, the ore is gradually exposed to the high-temperature gas as the rotary kiln rotates and is heated by it.
The high-temperature gas is produced by burning the fuel, which enters the rotary kiln through the ducts and airflow distribution devices inside the rotary kiln. The fuel can be coal, natural gas, liquefied gas and other common fuels. Under the action of the high temperature gas, the ore gradually heats up and undergoes chemical reactions such as thermal decomposition, reduction and oxidation.
Features And Advantages:
1. The use of lower temperature can obtain products with ultra-high sintering degree, so that the performance of the material is not affected by the temperature.
2. the rotary kiln is small in size and simple to install, which can effectively reduce the investment of the plant.
3. The kiln adopts temperature control device, which ensures the stability of temperature during heat treatment and realizes high precision and accuracy adjustment.
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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