A good helper for 3D printing-silicon carbide ceramic heat exchange tube 3d printing service

May 07,2024

Silicon carbide porcelains is a material with high strength, high thermal conductivity, and resistance to acid and alkali corrosion. It can adapt well to the outside setting during use and is considered the best anti-corrosion warmth exchange material in the market. The strength of common ceramic products will certainly drop significantly at 1200 ~ 1400 ° C. On the other hand, the flexural toughness of silicon carbide porcelains at 1400 ° C continues to be at a high degree of 500 ~ 600MPa, and its functioning temperature level can reach 1600 ~ 1700 ° C, but it will not. It is resistant to melting damages and has strong stability, high thermal conductivity, ultra-high temperature stability, and steady structural performance. Silicon carbide porcelains are specifically prominent in chemical warmth exchange applications.


(Silicon carbide ceramic heat exchange tube)

Silicon carbide ceramic warm exchanger

Silicon carbide ceramics, with their detailed anti-oxidation and anti-corrosion capabilities, are hailed as a ‘dream’ heat exchange material in the area of chemical anti-corrosion. They also boast high insulation properties. In contrast to traditional warmth exchange materials like graphite, fluoroplastics, rare-earth elements, and glass-lined, silicon carbide porcelains provide exceptional warmth exchange efficiency and service life. Their very corrosion resistance, particularly in composite strong acid atmospheres, is unparalleled. Consequently, they are playing a significantly important role in driving equipment and innovation renovations in associated areas.

Silicon carbide ceramic warmth exchangers mainly have the following advantages:

Using silicon carbide ceramic heat exchangers is direct, easy, fast, effective, eco-friendly, and energy-saving. It does not need to be mixed with cool air and high-temperature defense, the upkeep cost is low, and there is no need to do any procedures on it. It appropriates for waste warm recovery and use of gas-fired commercial kilns in various atmospheres, especially resolving the problem that the waste warm of various high-temperature industrial kilns is too expensive to be used;

The state calls for that the temperature of ceramic warmth exchangers be ≥ 1000 ° C. Because it is resistant to heats, it can be placed in high-temperature areas. The greater the temperature level, the much better the warm exchange impact and the even more power conserved;

It can change metal warmth exchangers under high-temperature problems;

Fix the problems of heat exchange and corrosion resistance in the chemical sector;

It has strong adaptability, high-temperature resistance, corrosion resistance, heat stamina, great oxidation resistance, secure thermal shock efficiency, and lengthy life span.

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