Technical ceramic compressors provide an innovative solution to improve the performance and efficiency of turbine systems in various applications.
A main advantage is their ability to reduce vibrations. This leads to improved stability and performance of the compressor. Another advantage is the possibility of near-net-shape production. Technical ceramics can be formed into complex shapes and geometries, enabling precise manufacturing. This results in improved fit and efficiency of the compressor.
Ceramic materials have high hardness, which provides improved wear resistance and durability. This is especially important in applications with high loads and abrasive environments. In addition, the low mass acceleration of compressors made of technical ceramics enables shorter response times. This is particularly important in applications where fast reactions are required, such as compressors for hydrogen, oxygen and exhaust gases.
Due to the properties of technical ceramics, compressors can realize high operating temperatures of up to 1350°C, resulting in increased efficiency. In addition, this can open up areas of application in which conventional compressors cannot be used due to their limited temperature resistance.
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