Wear-resisting blast-furnace tuyere small jacket
A kind of technology of small tuyere and blast furnace
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Embodiment 1
[0021] Example 1, such as figure 1 , figure 2 As shown, a wear-resistant blast furnace tuyere cover of the present invention includes a tuyere cap 1, a tuyere seat 2 and a water channel 3, wherein the tuyere cap 1 and the tuyere seat 2 are made of copper, and the front end and the outer wall of the tuyere cap 1 are embedded or cast Mechanically inlaid with a number of foam-shaped cylindrical inlays 4, the depth of the inlays 4 embedded in the copper matrix is 4 mm, the gap 5 between the inlays 4 is 10 mm, and the gaps are filled by the copper matrix. The diameter of the inlays 4 is 6 mm, inlay 4 is made of carbide. The inlay 4 can also be made of zirconium corundum, silicon carbide, ceramic, mullite or aluminum corundum.
Embodiment 2
[0022] Example 2, such as image 3 As shown, the front end and the outer wall of the tuyere cap of a wear-resistant blast furnace tuyere cover are inlaid or mechanically inlaid with an inlay 4b. The depth of the inlay 4b embedded in the copper matrix is 2 mm, and several inlays are processed on the inlay 4b. A circular hole, wherein the circular hole is a through hole, their diameter is 10 mm, the gap between the circular holes is 6 mm, the circular hole is filled with a copper matrix, and the inlay 4b is made of hard alloy. The inlay 4b can also be made of zirconium corundum, silicon carbide, ceramic, mullite or aluminum corundum.
Embodiment 3
[0023] Example 3, such as Figure 4 As shown, the front end and the outer wall of the tuyere cap of a wear-resistant blast furnace tuyere cover of the present invention are cast or mechanically inlaid with several annular inlays 4c, and the depth of the inlays 4c embedded in the copper matrix is 3 mm, wherein The width of the object 4c is 6 mm, the gap 6 between the annular inlays 4c is 10 mm, wherein the gap is filled with a copper matrix, and the inlay 4c is made of hard metal. The inlay 4c can also be made of zirconium corundum, silicon carbide, ceramic, mullite or aluminum corundum.
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Abstract
Description
Claims
Application Information
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