Claims
- 1. An apparatus for continuously casting molten metal comprising:
- (a) an open-ended direct chill casting mould comprising a mould plate having inner axially extending walls defining a rectangular mould cavity with opposed long side walls and short side walls,
- (b) coolant delivery apertures adjacent at least the mould cavity long side walls adapted to discharge streams of coolant inwardly at an angle in the direction of metal movement to impinge on an ingot being formed, and
- (c) deflector means having a varying contoured face for deflecting the coolant streams in a variable direction dependent on the local shrinkage conditions of the rectangular ingot being formed such that the coolant impinges upon the ingot at a constant distance below said mould plate around the periphery of the ingot, said deflector means being a baffle having a contoured deflector face adapted to deflect the coolant streams in compensation for the outside solidification profile of the forming ingot.
- 2. An apparatus according to claim 1 wherein a coolant manifold is mounted on the downstream side of the mould, said manifold including discharge means for separately discharging coolant onto the skin of the forming ingot.
- 3. An apparatus for continuously casting molten metal comprising:
- (a) an open-ended direct chill casting mould comprising a mould plate having inner axially extending walls defining a rectangular mould cavity with opposed long side walls and short side walls,
- (b) coolant delivery apertures adjacent at least the mould cavity long side walls adapted to discharge streams of coolant inwardly at an angle in the direction of metal movement to impinge on an ingot being formed, and
- (c) deflector means having a varying contoured face for deflecting the coolant streams in a variable direction dependent on the local shrinkage conditions of the rectangular ingot being formed such that the coolant impinges upon the ingot at a constant distance below said mould plate around the periphery of the ingot, said deflector means being a movable baffle having a contoured deflector face adapted to deflect the coolant streams in compensation for the outside solidification profile of the forming ingot.
- 4. An apparatus according to claim 3 wherein the baffle has at least one projecting finger for maintaining a minimum distance of the baffle from the ingot and providing a constant flow gap between the baffle and the forming ingot.
- 5. An apparatus according to claim 3 wherein the baffle is pivotally mounted.
- 6. An apparatus for continuously casting molten metal comprising:
- (a) an open-ended direct chill casting mould comprising a mould plate having inner axially extending walls defining a rectangular mould cavity with opposed long side walls and short side walls,
- (b) coolant delivery apertures adjacent at least the mould cavity long side walls adapted to discharge streams of coolant inwardly at an angle in the direction of metal movement to impinge on an ingot being formed,
- (c) a downwardly extending skirt on said mould plate adjacent the coolant delivery apertures, said skirt having a varying contoured face adapted to be engaged by the coolant streams and deflect them such that the coolant streams impinge on the long sides of the emerging rectangular ingot at a uniform impingement point, and
- (d) a movable coolant baffle adapted to direct emerging coolant streams into engagement with said contoured skirt face.
- 7. An apparatus for continuously casting molten metal comprising:
- (a) an open-ended direct chill casting mould comprising a mould plate having inner axially extending walls defining a rectangular mould cavity with opposed long side walls and short side walls,
- (b) coolant delivery apertures adjacent at least the mould cavity long side walls adapted to discharge streams of coolant inwardly at an angle in the direction of metal movement to impinge on an ingot being formed,
- (c) a downwardly extending skirt on said mould plate adjacent the coolant delivery apertures, said skirt having a contoured face of varying angle to the vertical along the length thereof adapted to be engaged by the coolant and deflect it such that the coolant impinges on the long sides of the emerging rectangular ingot at a uniform impingement point, and
- (d) a coolant baffle adapted to direct coolant streams emerging from said apertures into engagement with said contoured skirt face, said baffle having a deflector face of constant downward and outward angle and terminating in an outer edge, said outer edge having a contour corresponding to the contour of said skirt face thereby providing a coolant gap of substantially uniform width between said baffle outer edge and said contoured skirt face.
- 8. In a process for the production of rectangular metal ingots by the direct chill continuous casting process comprising the steps of
- (a) pouring molten metal into an open-ended thermally insulated hot top section,
- (b) allowing the molten metal to descend from said hot top section into a lower chilled rectangular mould section axially aligned with said hot top section and bring said molten metal into contact with said chilled mould section to produce a solidified peripheral layer, and
- (c) withdrawing the metal continuously from the chilled rectangular mould section at a predetermined casting rate and applying liquid coolant directly to the surface of the solidified peripheral layer of metal emerging from the chilled mould section,
- the improvement which comprises deflecting the direction of the liquid coolant streams in a pattern determined by the shrink pattern of at least the long sides of the emerging rectangular ingot such that the coolant streams impinge on the emerging ingot at a uniform impingement point on all sides thereof, said coolant streams being deflected by engaging a varying contoured deflector face of a baffle which is laterally movable.
- 9. In a process for the production of rectangular metal ingots by the direct chill continuous casting process comprising the steps of
- (a) pouring molten metal into an open-ended thermally insulated hot top section.
- (b) allowing the molten metal to descend from said hot top section into a lower chilled rectangular mould section axially aligned with said hot top section and bring said molten metal into contact with said chilled mould section to produce a solidified peripheral layer, and
- (c) withdrawing the metal continuously from the chilled rectangular mould section at a predetermined casting rate and applying liquid coolant directly to the surface of the solidified peripheral layer of metal emerging from the chilled mould section,
- the improvement which comprises deflecting the direction of the liquid coolant streams in a pattern determined by the shrink pattern of at least the long sides of the emerging rectangular ingot such that the coolant streams impinge on the emerging ingot at a uniform impingement point on all sides thereof, said coolant streams being deflected by engaging a first deflector face of constant downward and outward angle to the horizontal and terminating in a contoured outer edge and said coolant thereafter engaging a second deflector face of varying angle to the vertical along the length thereof to provide a contoured face causing the coolant impingement on the ingot at a uniform impingement point, said first deflector face contoured outer edge having a contour corresponding to the contour of said second deflector face thereby providing a coolant gap of substantially uniform width between said first and second deflector faces.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 585386 |
Dec 1988 |
CAX |
|
Parent Case Info
This is a continuation of application Ser. No. 446,100, filed Dec. 5, 1989 now abandoned.
US Referenced Citations (7)
Foreign Referenced Citations (1)
| Number |
Date |
Country |
| 1188480 |
Jun 1985 |
CAX |
Continuations (1)
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Number |
Date |
Country |
| Parent |
446100 |
Dec 1989 |
|