Features: The use of energy-saving technology ceramic fiber high pressure module lining, insulation effect is good, fast


Features: The use of energy-saving technology ceramic fiber high pressure module lining, insulation effect is good, fast heating speed. Silicon carbon rod heating element, dedicated to forging heating, no exhaust emissions, instead of coal-fired forging furnace.
Structure description: The ceramic fiber silicon carbon bar box forging furnace structure, the furnace shell is welded into a fixed structure by the section steel and steel plate, the user does not need to install the foundation, can be used on the cement floor.
The furnace liner adopts the ceramic fiber high pressure module of our company's energy saving and emission reduction technology. The ceramic fiber high pressure module is made by the special method of high pressure press and assembled to form the whole whole fiber high-density energy-saving furnace liner structure (the compression ratio of fiber furnace liner production is ≥55-65%). Ceramic fiber needled blanket is used as raw material and compressed by special high pressure equipment. The ceramic fiber is compressed by high pressure press during processing to achieve good heat storage effect. Compared with other products, the furnace wall of the structure has the advantages of low thermal conductivity, low heat capacity, excellent thermal stability, thermal shock resistance and heat insulation, and the anchor is set on the low temperature surface of the furnace body, which improves the high temperature resistance of the fiber.
The upper furnace door is used for loading, and the lower furnace door is lifted up and down, which is convenient for high temperature taking. Because only the lower part of the furnace door is opened and the upper part of the furnace door is closed, the heat loss of the furnace is small, and it is not easy to cool down when taking materials.
The heating elements are made of silicon carbon rods, which are arranged on both sides of the walls and heated by strong radiation of silicon carbon rods.
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