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Application of Box type High temperature Heat Treatment Furnace in Aerospace Field

Time:2025-07-16 Click:0
  

In the aerospace field, the application of box type high-temperature heat treatment furnaces is crucial, mainly reflected in the heat treatment of key components, as follows:

Heat treatment of engine blades
Application background: High temperature alloy blades of aircraft engines are key components, and their performance directly affects the performance and reliability of the engine.
Heat treatment process: Solid solution treatment is carried out in a box type high-temperature heat treatment furnace at 1050 ℃ -1100 ℃, followed by aging treatment at 750 ℃ -850 ℃.
Processing effect: It enables the blades to achieve good high-temperature strength, fatigue resistance, and oxidation resistance, meeting the requirements of aircraft engines in harsh working conditions such as high temperature, high pressure, and high speed.

Heat treatment of titanium alloy components
Application background: Titanium alloys are widely used in the aerospace industry due to their high strength, low density, and good corrosion resistance.
Heat treatment process: The box type high-temperature heat treatment furnace can be used for preheating and post forging heat treatment of titanium alloys.
Processing effect: By precisely controlling the heating temperature and holding time, the microstructure of titanium alloy is optimized, and its mechanical and processing properties are improved. For example, in a 1400 degree high-temperature industrial box type muffle furnace, titanium alloy components can achieve stable high-temperature performance, meeting the high requirements for material properties in the aerospace industry.

Heat treatment of other key components
Application background: The aerospace industry also involves heat treatment of a large number of other key components, such as aviation aluminum alloy parts, structural components, etc.
Heat treatment process: The box type high-temperature heat treatment furnace can develop targeted heat treatment processes based on the material characteristics and performance requirements of different components.
Processing effect: Through heat treatment, internal stress of components can be eliminated, and dimensional accuracy and stability can be improved; Simultaneously optimizing the microstructure of the material to enhance its comprehensive properties such as strength, toughness, and corrosion resistance.

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