Silicon carbide ceramics is a material with high stamina, high thermal conductivity, and resistance to acid and alkali deterioration. It can adapt well to the outside world throughout usage. Environment, it is thought about the very best anti-corrosion heat exchange material in the sector. The toughness of average ceramic materials will certainly go down significantly at 1200 ~ 1400 ° C, while the flexural strength of silicon carbide ceramics at 1400 ° C remains at a high level of 500 ~ 600MPa, and its working temperature level can reach 1600 ~ 1700 ° C and will certainly not. It is immune to melting damages and has solid stability, high thermal conductivity, ultra-high temperature level security, and secure structural performance. Silicon carbide porcelains are specifically popular in chemical warm exchange applications.
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Silicon carbide ceramic warmth exchanger
Silicon carbide porcelains have comprehensive anti-oxidation and anti-corrosion capabilities. It is recognized as a “desire” heat exchange material in the field of chemical anti-corrosion. It also has high insulation homes. Compared with typical graphite, fluoroplastics, precious metals, glass-lined and various other warmth exchange materials, its warm exchange performance and service life have evident affordable advantages, particularly in some composite strong acid environments; its super rust resistance is a lot more. It is irreplaceable and plays a significantly vital function in advertising the enhancement of devices and modern technology in relevant fields.
Silicon carbide ceramic warmth exchangers generally have the following advantages:
Using silicon carbide ceramic heat exchangers is straight, easy, quickly, efficient, environmentally friendly and energy-saving. It does not require to be blended with cold air and high-temperature protection, the upkeep expense is reduced, and there is no need to perform any kind of operations on it. It is suitable for waste warm healing and application of gas-fired commercial kilns in different settings, particularly resolving the problem that the waste heat of numerous high-temperature industrial kilns is expensive to be used;
The state calls for that the temperature of ceramic warm exchangers be ≥ 1000 ° C. Given that it is resistant to heats, it can be put in high-temperature areas. The higher the temperature, the far better the warm exchange effect and the higher the energy saving;
It can change steel heat exchangers under high-temperature conditions;
Address the issues of warmth exchange and rust resistance in the chemical sector;
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It has solid flexibility, high-temperature resistance, deterioration resistance, high temperature toughness, good oxidation resistance, stable thermal shock performance and long life span.
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