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Silicon carbide ceramics is a product with high stamina, high thermal conductivity, and resistance to acid and alkali rust. It can adjust well to the outside atmosphere throughout use and is considered the most effective anti-corrosion heat exchange product in the market. The stamina of normal ceramic products will certainly go down substantially at 1200 ~ 1400 ° C. In contrast, the flexural stamina of silicon carbide porcelains at 1400 ° C stays at a high level of 500 ~ 600MPa, and its working temperature can get to 1600 ~ 1700 ° C, however it will certainly not. It is resistant to melting damage and has solid stability, high thermal conductivity, ultra-high temperature stability, and steady architectural efficiency. Silicon carbide porcelains are particularly noticeable in chemical warm exchange applications.

(Silicon carbide ceramic heat exchange tube)

Silicon carbide ceramic heat exchanger

Silicon carbide porcelains, with their detailed anti-oxidation and anti-corrosion capacities, are hailed as a ‘desire’ heat exchange product in the area of chemical anti-corrosion. They additionally flaunt high insulation residential or commercial properties. In contrast to standard warm exchange products like graphite, fluoroplastics, rare-earth elements, and glass-lined, silicon carbide porcelains supply superior warm exchange effectiveness and life span. Their super corrosion resistance, specifically in composite strong acid environments, is unrivaled. As a result, they are playing an increasingly essential duty in driving tools and technology enhancements in associated areas.

Silicon carbide ceramic heat exchangers mainly have the adhering to advantages:

Making use of silicon carbide ceramic heat exchangers is straight, easy, quickly, effective, environmentally friendly, and energy-saving. It does not require to be blended with chilly air and high-temperature security, the maintenance expense is reduced, and there is no demand to carry out any procedures on it. It is suitable for waste heat recovery and application of gas-fired commercial kilns in different environments, specifically addressing the issue that the waste heat of different high-temperature industrial kilns is too expensive to be utilized;

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

It can change steel warmth exchangers under high-temperature conditions;

Address the problems of warm exchange and corrosion resistance in the chemical sector;

It has strong adaptability, high-temperature resistance, corrosion resistance, heat stamina, good oxidation resistance, stable thermal shock efficiency, and lengthy service life.

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