Claims
- 1. A method of manufacturing a wide thin metal sheet directly from molten metal, comprising the steps of:
- melting the metal to form a pool;
- channeling a flow of molten metal in a vertical direction;
- discharging said molten metal in a fan-shaped pattern along a downwardly inclined direction on an inclined plate;
- maintaining said discharged molten metal in a constant fan-shaped flow having a uniform flow rate;
- directing said fan-shaped flow to a molten metal flow space having a restricted passage;
- depositing said fan-shaped flow, from above, into said molten metal flow space without causing a disturbance on the surface of the molten metal by feeding the molten metal from the plate from an outlet positioned above a molten pool;
- applying rotational forces to said molten metal in said flow space; and
- simultaneously cooling and solidifying said molten metal passing through said flow space and said rotational forces.
- 2. A method of manufacturing a wide thin metal sheet directly from molten metal according to claim 1, wherein said inclined direction is defined by a flat surface or a gently convex or concave surface.
- 3. A method of manufacturing a wide thin metal sheet directly from molten metal according to claim 1, wherein axes of rotation forces are at the same level or at different levels.
- 4. A method of manufacturing a wide thin metal sheet directly from molten metal according to claim 1, wherein said rotational forces are defined by a pair of rollers having an equal diameter or different diameters.
- 5. A method of manufacturing a wide thin metal sheet directly from molten metal according to claim 1, wherein said fan-shaped flow is obtained with one or more nozzles.
- 6. An apparatus for manufacturing a wide thin metal sheet directly from molten metal comprising:
- a nozzle installed vertically at the bottom of a molten metal vessel;
- an inclined generally planar plate in contact with the lower end of said nozzle;
- a pair of rollers of internally water cooled type and having axes of rotation extending substantially parallel to and below the lower level end of said inclined plate;
- a pair of dams provided at the opposite ends of said pair of rollers and slidable in a direction at right angles to the direction of said axes of rotation of said pair of rollers;
- the peripheral wall of the lower end of said nozzle being formed with a notch facing the lower level end of said inclined plate, with the notch being directed generally perpendicular to said axes of rotation of the rollers;
- the distance between a position of contact between the lower end of said nozzle and said inclined surface and said lower level end of said inclined plate being determined by the angularity of said inclined plate to provide a constant fanshape laminar flow having a uniform flow rate distribution on said inclined surface as it flows down said inclined surface;
- the lower level end of said inclined plate being positioned downstream of the notch above a molten metal pool defined between the rollers and said dams so that the molten metal falling from said lower level end of said inclined plate will not cause any disturbance on the surface of or the inside of said molten metal pool; and
- said molten metal being solidified in the narrower gap portion between said pair of rollers to be discharged from saide open-at-the-bottom space between said pair of rollers.
- 7. An apparatus for manufacturing a wide thin metal sheet directly from molten metal according to claim 6, wherein said inclined surface is a flat surface or a gently convex or concave surface.
- 8. An apparatus for manufacturing a wide thin metal sheet directly from molten metal according to claim 6, wherein the axes of rotation of said pair of rollers are at the same level or at different levels.
- 9. An apparatus for manufacturing a wide thin metal sheet directly from molten metal according to claim 6, wherein said pair of rollers have an equal diameter or different diameters.
- 10. An apparatus for manufacturing a wide thin metal sheet directly from molten metal according to claim 6, wherein the end surface of said lower level end of said inclined plate has a lower portion receding with respect to the perpendicular direction.
- 11. An apparatus for manufacturing a wide thin metal sheet directly from molten metal according to claim 6, wherein one or more nozzles are used as said nozzle.
- 12. An apparatus for manufacturing a wide thin metal sheet directly from molten metal comprising:
- a nozzle installed vertically at the bottom of a molten metal vessel;
- an inclined generally planar plate in contact with the lower end of said nozzle;
- a pair of rollers of internally water cooled type and having axes of rotation extending substantially parallel to and below the lower level end of said inclined plate, said axes of rotation being at different levels;
- a pair of dams provided at the opposite ends of said pair of rollers and slidable in a direction at right angles to the direction of said axes of rotation of said pair of rollers;
- a dam provided in the neighborhood of the highest level portion of the rotating surface of one of said pair of rollers with the axes of rotation at the lower level, said dam extending parallel to the direction of said axes of rotation and having opposite ends in contact with said opposite end dams;
- the peripheral wall of the lower end of said nozzle being formed with a notch facing the lower level end of said inclined plate, with the notch being directly generally perpendicular to said axes of rotation of the rollers;
- the distance between a position of contact between the lower end of said nozzle and said inclined surface and said lower level end of said inclined plate being determined by the angularity of said inclined plate to provide a constant shape laminar flow having a uniform flow rate distribution on said inclined surface as it flows down said inclined surface;
- an outlet end of said inclined plate being positioned downstream of the notch above a molten pool defined between the rollers and said dams so that the molten metal falling from said outlet end of said inclined plate into the molten pool below will not cause any disturbance on the surface of or the inside of said molten metal pool; and
- said molten metal being solidified in the narrowest gap portion between said pair of rollers to be discharged from said open-at-the-bottom space between said pair of rollers.
Priority Claims (1)
Number |
Date |
Country |
Kind |
60-176906 |
Aug 1985 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 891,881 filed July 31, 1986 now abandoned.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
2332759 |
Schwarz |
Oct 1943 |
|
3604598 |
Kappmeyer et al. |
Sep 1971 |
|
3867978 |
Johansson et al. |
Feb 1975 |
|
Foreign Referenced Citations (7)
Number |
Date |
Country |
54-8162 |
Jan 1979 |
JPX |
55-176085 |
Dec 1980 |
JPX |
58-151948 |
Sep 1983 |
JPX |
58-238736 |
Dec 1983 |
JPX |
60-21171 |
Feb 1985 |
JPX |
60-21158 |
Feb 1985 |
JPX |
60-21153 |
Feb 1985 |
JPX |
Non-Patent Literature Citations (1)
Entry |
Journal of the Iron and Steel Institute of Japan, No. 14, vol. 68, Oct. 1982, pp. 74-82. |
Continuations (1)
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Number |
Date |
Country |
Parent |
891881 |
Jul 1986 |
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