Method for manufacturing products made of aluminium-copper-lithium alloy with improved fatigue properties, and distributor for this method
US-2016355916-A1 · Dec 8, 2016 · US
US11351600B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11351600-B2 |
| Application number | US-201916575880-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 19, 2019 |
| Priority date | Mar 31, 2017 |
| Publication date | Jun 7, 2022 |
| Grant date | Jun 7, 2022 |
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A nozzle put into a molten metal in vertical upwards continuous casting for casting a cast product by pulling up the molten metal, the nozzle includes a nozzle body having an intake hole through which the molten metal is taken in and which is formed in a lateral surface of the nozzle body and a flange portion formed on lower side of the intake hole and projecting beyond the nozzle body.
Opening claim text (preview).
What is claimed is: 1. A nozzle put into a molten metal in vertical upwards continuous casting for casting a cast product by pulling up the molten metal, the nozzle comprising: an upper cap; a nozzle body having an intake hole through which the molten metal is taken in; and a flange portion formed on a lower side of the nozzle body, with the nozzle body, which has an extending direction, comprising a hollow cylindrical passage having constant inner and outer diameters that extend from the upper cap to a lowermost opening in the hollow cylindrical passage that is fluidly closed by the flange portion, which projects outwardly beyond the outer diameter of the hollow cylindrical passage of the nozzle body, such that the intake hole is formed in a lateral surface of the hollow cylindrical passage at a distance above the lowermost opening in the hollow cylindrical passage and extends to the outer diameter of the hollow cylindrical passage in a direction perpendicular to the extending direction of the nozzle body. 2. The nozzle according to claim 1 , wherein the flange portion is formed entirely along an outer peripheral side of the nozzle body. 3. The nozzle according to claim 1 , wherein the flange portion includes an outer edge wall formed at an outer peripheral edge of the flange portion and vertically rising in a fashion coming closer to the intake hole. 4. The nozzle according to claim 1 , wherein the flange portion includes a rising wall formed between an outer peripheral edge of the flange portion and the nozzle body and vertically rising in a fashion coming closer to the intake hole. 5. The nozzle according to claim 1 , wherein the flange portion is a cap member disposed at a tip of the nozzle body. 6. The nozzle according to claim 1 , wherein the nozzle is used for the molten metal of one or more among Cu—Zr, Cu—Sn, Cu—Fe and Cu—Ag alloys and multi-element copper alloys containing some of the above-mentioned elements. 7. A casting apparatus that carries out vertical upwards continuous casting for casting a cast product by pulling up a molten metal, the casting apparatus comprising: a storage section storing the molten metal; an inclusion removal unit put into the storage section, performing bubbling in the molten metal with inert gas, and causing inclusions in the molten metal to float upwards; the nozzle according to claim 1 , the nozzle being put into the storage section and taking in the molten metal; and a cooling unit disposed above the nozzle and quenching the taken-in molten metal. 8. A cast product manufacturing method of carrying out vertical upwards continuous casting for casting a cast product by pulling up a molten metal, the cast product manufacturing method comprising: an inclusion removal step of performing bubbling in the molten metal with inert gas and causing inclusions in the molten metal to float upwards; and a casting step of, after the inclusion removal step, moving the nozzle according to claim 1 downwards to be put into the molten metal, taking in the molten metal, and casting the cast product. 9. The cast product manufacturing method according to claim 8 , wherein, in the casting step, the molten metal having been pulled up through the nozzle is cooled by a cooling unit disposed above the nozzle. 10. The cast product manufacturing method according to claim 8 , wherein, in the inclusion removal step, the bubbling is performed in the molten metal of one or more among Cu—Zr, Cu—Sn, Cu—Fe and Cu—Ag alloys and multi-element copper alloys containing some of the above-mentioned elements.
by treating with gases (B22D11/118, B22D11/119 take precedence) · CPC title
Copper alloys · CPC title
for vertical casting · CPC title
Cooling the moulds {(B22D11/04 takes precedence)} · CPC title
Distributing the molten metal, e.g. using runners, floats, distributors · CPC title
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