A continuous casting tundish breathable ceramic tube upper nozzle seat brick and argon blowing refining method thereof
A continuous casting tundish and nozzle seat block technology, which is applied to casting equipment, casting molten material containers, manufacturing tools, etc., can solve the problems of small effect and unstable "circular air flow", achieve good air tightness, and inhibit immersion Nodulation problem of type nozzle, effect of promoting flotation and removal
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Embodiment 1
[0045] A continuous casting tundish breathable ceramic tube upper nozzle seat brick, such as figure 1 , figure 2 , image 3 , Figure 4 As shown, it includes the upper nozzle block body 1, the ceramic tube 2, the air chamber 3, and the air intake pipe 4. The middle part of the upper nozzle block body is provided with an upper nozzle installation hole that penetrates up and down, and the upper nozzle block body 1 is provided with a circle. A plurality of ceramic tubes 2 evenly arranged in the ring and a circular air chamber 3 are provided with a plurality of sockets 20 evenly arranged in a circular shape. The shape, quantity and arrangement of the sockets 20 are the same as the Corresponding to the ceramic tube 2, the top of the ceramic tube protrudes from the upper surface of the nozzle block body 1 by 5-10mm, the lower end of the ceramic tube 2 is fixed in the socket 20 on the air chamber, and communicates with the air chamber 3, the side of the air chamber Connected with...
Embodiment 2
[0063] The continuous casting tundish air-permeable ceramic tube upper nozzle seat brick as described in Example 1, the difference lies in:
[0064] The distance x between the longitudinal centerline of the ceramic tube 2 and the upper edge of the installation hole of the upper nozzle is 55 mm.
[0065] The cylindrical outer diameter ¢ of the ceramic tube 2 is 30 mm, and the height h of the ceramic tube is 125 mm.
[0066] The diameter of the air blowing channels set in the ceramic tube 2 is 0.16 mm, and the air blowing channels are evenly distributed in three concentric rings. From the inside to the outside, the number of air blowing channels in the first ring is 7, and the number of air blowing channels in the second ring The number of air channels is 14, and the number of air blowing channels in the third ring is 21.
[0067] There are 16 ceramic tubes 2, which are uniformly arranged in a circular shape, and the distance x between the longitudinal centerline of the circula...
Embodiment 3
[0079] The continuous casting tundish air-permeable ceramic tube upper nozzle seat brick as described in Example 1, the difference lies in:
[0080] The distance x between the longitudinal centerline of the ceramic tube 2 and the upper edge of the installation hole of the upper nozzle is 50mm.
[0081] The cylindrical outer diameter ¢ of the ceramic tube 2 is 18 mm, and the height h of the ceramic tube is 115 mm.
[0082] The diameter of the air blowing channels set in the ceramic tube 2 is 0.15 mm, and the air blowing channels are evenly distributed in three concentric rings. From the inside to the outside, the number of air blowing channels in the first ring is 6, and the number of air blowing channels in the second ring The number of air channels is 12, and the number of air blowing channels in the third ring is 18.
[0083] There are 12 ceramic tubes 2, which are uniformly arranged in a circular shape, and the distance x between the longitudinal centerline of the circular...
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