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Silicon carbide ceramics is a product with high toughness, high thermal conductivity, and resistance to acid and alkali rust. It can adapt well to the outside world throughout use. Environment, it is considered the best anti-corrosion warmth exchange product in the industry. The strength of normal ceramic materials will go down substantially at 1200 ~ 1400 ° C, while the flexural stamina of silicon carbide porcelains at 1400 ° C continues to be at a high level of 500 ~ 600MPa, and its functioning temperature can reach 1600 ~ 1700 ° C and will not. It is immune to melting damages and has strong stability, high thermal conductivity, ultra-high temperature security, and secure architectural efficiency. Silicon carbide porcelains are especially famous in chemical warmth exchange applications.


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Silicon carbide ceramic warm exchanger

Silicon carbide porcelains have thorough anti-oxidation and anti-corrosion capabilities. It is identified as a “desire” heat exchange material in the area of chemical anti-corrosion. It additionally has high insulation residential or commercial properties. Compared to typical graphite, fluoroplastics, rare-earth elements, glass-lined and other warmth exchange products, its warmth exchange effectiveness and life span have obvious competitive advantages, especially in some composite solid acid settings; its extremely deterioration resistance is a lot more. It is irreplaceable and plays an increasingly essential function in advertising the enhancement of devices and modern technology in related areas.

Silicon carbide ceramic warmth exchangers primarily have the complying with advantages:

The use of silicon carbide ceramic warm exchangers is straight, easy, quickly, reliable, environmentally friendly and energy-saving. It does not need to be mixed with cool air and high-temperature security, the maintenance price is low, and there is no requirement to carry out any type of operations on it. It appropriates for waste warmth healing and use of gas-fired commercial kilns in different settings, particularly solving the issue that the waste warmth of various high-temperature industrial kilns is expensive to be used;

The state needs that the temperature level of ceramic warmth exchangers be ≥ 1000 ° C. Considering that it is immune to heats, it can be put in high-temperature locations. The greater the temperature, the much better the heat exchange impact and the higher the power conserving;

It can change metal warm exchangers under high-temperature conditions;

Solve the troubles of warmth exchange and deterioration resistance in the chemical sector;


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It has solid versatility, high-temperature resistance, rust resistance, high temperature strength, good oxidation resistance, steady thermal shock efficiency and long life span.

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