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32 cells Dense alumina blocks

The high-performance ceramic honeycomb is developed for the actual combustion condition of the heating furnace, and can be adapted to the actual conditions of most heating furnaces with low control levels and poor combustion conditions. In the regenerative heat exchange process of high-performance honeycomb regenerators, the product of the mass density and the specific heat capacity of the regenerator is larger, and the greater the heat storage and release of the regenerator, plus the commutation cycle and service life, Unit volume heat exchange area, these parameters can be integrated to complete the best choice for heat storage and transfer technology. More frequent commutation also affects the service life of the honeycomb regenerators and reversing devices. The regenerator has the advantages of low pressure loss, large specific surface area, and high heat transfer rate. In theory, a regenerative combustion system that uses a high-performance honeycomb heat storage body will make it easier to retrofit existing furnaces with higher heat recovery efficiency. If the honeycomb heat accumulator can have a strong adaptability and a long service life, the heat storage heat exchange technology will be widely used in industrial furnaces.


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