Furnace cover of closed type calcium carbide furnace and process for producing same
A technology of calcium carbide furnace and furnace cover, which is applied to furnaces, furnace components, lighting and heating equipment, etc., can solve problems such as process operation and furnace difficulty, furnace pressure fluctuation, serious material spraying, etc., so as to avoid furnace gas and dust falling into the furnace. The effect of improving the quality structure of the material layer and saving the cost of electricity
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[0017] Such as figure 1 , 2 As shown, the furnace cover of the present invention is constituted as follows: there are three electrode sealing ring devices 1, and the electrode sealing ring devices are used to seal the furnace gas to prevent the furnace gas from protruding from its electrode column to contact with air and burn, and the electrode sealing ring device 1 passes through the method. The blue bolt connection is connected to the electrode water-cooled sealing sleeve 2 rolled by non-magnetic steel thick-walled seamless steel pipe. The water-cooling ring 4 made of magnetic steel thick-walled seamless steel pipe is welded, and the water-cooling ring 4 is used to cool the feeding nozzle to install the seat plate. The water-cooling ring 4 is seamless with the periphery of the four feeding nozzles by welding The water-cooled reinforcement ring 5 rolled by steel pipe is welded, and the water-cooled reinforcement ring 5 is welded and connected with the outer ring 6 of the fur...
Embodiment 2
[0020] Same as Example 1, the difference is: heat-resistant concrete adopts high aluminum powder, 446 type stainless steel fiber reinforced heat resistant concrete, high temperature resistant aggregate, three sodium phosphate, the first three (high aluminum powder, 446 type stainless steel fiber Reinforced heat-resistant concrete, high-temperature-resistant aggregate) according to the ratio of 1:1.5:2.5 (weight ratio), after mixing evenly, add 15% of its weight of trisodium phosphate, and add an appropriate amount of water to mix evenly, and then directly pour it into the formwork, Use a vibrating pump to vibrate it to make it full, and it will be put into use 36 hours after it is fully formed.
Embodiment 3
[0022]Same as Example 1, the difference is: heat-resistant concrete adopts high aluminum powder, 446 type stainless steel fiber reinforced heat resistant concrete, high temperature resistant aggregate, three sodium phosphate, the first three (high aluminum powder, 446 type stainless steel fiber Reinforced heat-resistant concrete, high-temperature-resistant aggregate) according to the ratio of 1:2.5:3.5 (weight ratio), after mixing evenly, add 15% of its weight of trisodium phosphate, and add an appropriate amount of water after stirring evenly, and then directly pour it into the formwork, Use a vibrating pump to vibrate it to make it full, and it will be put into use 36 hours after it is fully formed.
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