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What materials are suitable for continuous feeding and discharging rotary inclined tube furnace?

Time:2025-03-27 Click:0
  

The continuous feeding and discharging rotating inclined tube furnace is suitable for processing various materials, mainly including the following fields:

Powder metallurgy materials: The rotating inclined tube furnace can be used for the reduction, sintering, and melting processes of metal powders. By controlling the atmosphere and temperature inside the furnace, the densification of metal powders can be achieved, and the mechanical properties and conductivity of metals can be improved.
Ceramic materials: In the ceramic industry, this furnace type is widely used in the firing, melting, and sintering processes of ceramic products. Ceramic raw materials undergo high-temperature treatment in the furnace to form a dense ceramic structure with good mechanical properties and chemical stability.
Lithium ion battery positive and negative electrode materials: The rotating inclined tube furnace can be used for firing and calcining the positive and negative electrode materials of lithium-ion batteries to improve their electrochemical performance.
New energy materials: In the field of new energy, such as solar cells, fuel cells, etc., this furnace type can be used for material synthesis, modification, and performance testing.
Catalyst materials: Catalysts in the chemical industry often require high-temperature calcination treatment to improve their catalytic activity. The high temperature control accuracy and balanced temperature field of the rotating inclined tube furnace make it very suitable for catalyst calcination treatment.
Other inorganic materials:such as refractory materials and grinding tools, can also be used in the powder particle industry to determine the performance of materials under certain atmospheric conditions.

In addition, this furnace type is also suitable for universities, research institutes, and operating enterprises to conduct heat treatment or coating experiments on particle powders such as lithium positive and negative electrode materials, ceramic materials, inorganic non-metallic compound materials, and new energy materials. Its advantage lies in the ability to achieve continuous movement and processing of materials, ensuring that each part can be uniformly heated, improving production efficiency and material uniformity.

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