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High-temperature calcination rotary equipment
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  • High-temperature calcination rotary equipment

High-temperature calcination rotary equipment

Indirect rotary kilns offer advantages such as strong structure, reliable operation, continuous operation, strong adaptability, high processing capacity, and easy maintenance. They are widely used in metallurgy, building materials, chemical, and coal industries and are particularly suitable for applications involving materials that require modification and deoxidation under sustained high temperatures. The process begins with a natural gas burner igniting in the combustion chamber, uniformly heating the rotating kiln cylinder. A quantitative feeder introduces materials into the rotating cylinder. The cylinder's rotation and inclination ensure the continuous forward movement of the materials. As the materials move, heat from the heated cylinder is transferred to them, raising their temperature and resulting in the calcination of the materials. The high-temperature calcined product is then discharged from the tail end.

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Yun Fen Technology

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Introduction

Indirect rotary kiln equipment boasts advantages such as strong structure, reliable operation, continuous operation, strong adaptability, high processing capacity, and easy maintenance. It is widely used in metallurgy, building materials, chemical, and coal industries and is particularly suitable for applications involving materials modification and deoxidation under sustained high temperatures. First, natural gas burners combust in the combustion chamber, uniformly heating the rotating kiln body. Materials are fed into the rotary kiln via a quantitative feeder. Through the rotation and inclination of the kiln body, the materials continuously move forward. During this movement, the heated kiln body transfers heat to the materials, raising their temperature and calcining the materials. The calcined products are discharged from the tail end in a high-temperature state.

 

Engineering Process Flow Diagram 

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