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In the metallurgical industry, rotary kiln can be divided into internal heating rotary kiln and external heating rotary kiln according to different heating methods. The material of the internal heating rotary kiln is in direct contact with the flame and the flue gas, and the oxidizing or reducing atmosphere in the furnace can be realized by adjusting, and the refractory brick is built on the inner wall of the cylinder, and the head and tail lining is lining for high-strength wear-resistant castable, head and tail cover and cylinder The body is a flexible seal that completely eliminates dust and material leakage. Multiple gears can be used to make the cylinder length up to 60 meters and the maximum operating temperature up to 1600 °C. The output is large, and the applicable fuels are liquefied gas, natural gas, coal gas, fuel oil, coal powder, coal, and the like.
The company currently has a QP3540 ball breaking mill in stock, which is sold at a low price.
In the metallurgical industry, rotary kiln can be divided into internal heating rotary kiln and external heating rotary kiln according to different heating methods. The material of the externally heated rotary kiln is not in direct contact with the flame and the flue gas. The heat source is between the heating furnace and the cylinder, and the material is heated by the heat transfer of the heat-resistant steel cylinder wall. The lining of the heating furnace is refractory fiber, which can save energy and reduce consumption. It is especially suitable when dealing with requirements such as high toxicity, high smoke concentration and high product purity.
Fuel economy, environmental protection and energy conservation are the main combustion principles of the new technology active lime kiln. The soil kiln has serious environmental pollution, the working environment is extremely harsh, and the work intensity is large. The new technology active lime rotary kiln solves this problem. The amount of fuel used is related to the calorific value of its furnace type and fuel. The heat required for calcining lime is derived from the combustion of fuel. The fuel and limestone are simultaneously distributed into the kiln, and different furnace types and different heating methods are used. , determines the calcination effect of the lime kiln.