Claims
- 1. A roll casting machine comprising:
- a frame;
- a pair of work rolls mounted in the frame for rotation about parallel axes, each of the rolls comprising a shell secured on the core;
- means for introducing molten metal to be cast into the bite between the work rolls;
- means for circulating cooling water through the work rolls for extracting heat from the metal being cast; and
- means for controlling the cooling capacity of the water in at least a portion of one of the work rolls for providing a sufficient controlled temperature differential between the center portion and the ends of the roll for obtaining a controlled diameter differential between the center portion and the ends of the roll comprising:
- at least one inlet plenum in the core, parallel to the longitudinal axis of the core;
- at least one discharge plenum in the core, parallel to the longitudinal axis of the core;
- a plurality of channels formed in the perimeter of the core;
- a plurality of radially extending inlet passages in the core, each inlet passage interconnecting at least one channel and the inlet plenum;
- a plurality of radially extending outlet passages in the core, each outlet passage interconnecting at least one channel and the discharge plenum;
- means for introducing a cooling water into the inlet plenum and means for discharging the water from the discharge plenum; and
- means for controlling the cooling water flow through at least some of the channels relative to the remaining channels comprising:
- at least one sleeve within a plenum, the sleeve having a plurality of openings through the sidewall of the sleeve, the openings being located for communicating with the radially extending passages; and
- means for moving the sleeve between a maximum flow position with at least a portion of the openings in relatively greater alignment with at least a portion of the radially extending passages, and a minimum flow position with the portion of openings in a relatively lesser alignment with the portion of the passages.
- 2. The roll casting machine of claim 1 wherein the direction of the movement of the sleeve between the maximum flow position and the minimum flow position is rotational about the axis of the sleeve.
- 3. The roll casting machine of claim 1 wherein the direction of the movement of the sleeve between the maximum flow position and the minimum flow position is translational along the axis of the sleeve.
- 4. A roll casting machine comprising:
- a frame;
- a pair of work rolls mounted in the frame for rotating about parallel axes, each of the rolls comprising a shell secured on the core;
- means for introducing molten metal to be cast into the bite between the work rolls;
- means for circulating cooling water through the work rolls for extracting heat from the metal being cast; and
- means for controlling the cooling capacity of the water in at least a portion of one of the work rolls for providing a sufficient controlled temperature differential between the center portion and the ends of the roll for obtaining a controlled diameter differential between the center portion and the ends of the roll comprising:
- at least one inlet plenum in the core, parallel to the longitudinal axis of the core;
- at least one discharge plenum in the core, parallel to the longitudinal axis of the core;
- a plurality of channels formed in the perimeter of the core;
- a plurality of radially extending inlet passages in the core, each inlet passage interconnecting at least one channel and the inlet plenum;
- a plurality of radially extending outlet passages in the core, each outlet passage interconnecting at least one channel and the discharge plenum;
- means for introducing a cooling water into the inlet plenum and means for discharging the water from the discharge plenum; and
- means for controlling the cooling water flow through at least some of the channels relative to the remaining channels comprising:
- at least one sleeve within a plenum, the sleeve having a plurality of openings through the sidewall of the sleeve, the openings being located for communication with the radially extending passages; and
- means for moving the sleeve.
- 5. The roll casting machine of claim 4 wherein the openings through the sidewall of the sleeve comprise
- a first pattern of openings extending circumferentially around the sleeve, the openings being at least as large as and alignable with the radially extending passages near the ends of the roll;
- a second pattern of openings extending circumferentially around the sleeve alignable with the radial passages in the center portion of the roll, the openings varying in size circumferentially around the sleeve from at least as large as the passages to a predetermined size smaller than the size of the passages; and
- means for rotating the sleeve about its axis between a maximum flow position with the first pattern of openings and the largest of the second pattern of openings in alignment with the radially extending passages, and a minimum flow position with the first pattern of openings and the smallest of the second pattern of openings in alignment with the passages.
- 6. The roll casting machine of claim 4 wherein the openings through the sidewall of the sleeve comprise:
- a first pattern of openings extending longitudinally along the sleeve, the openings being at least as large as and alignable with the with the radially extending passages near the ends of the roll;
- a second pattern of openings extending longitudinally along the sleeve alignable with the radially extending passages in the center portion of the roll, the openings varying in size longitudinally along the sleeve from at least as large as the passages to a predetermined size smaller than the size of the passages; and
- means for moving the sleeve longitudinally along its axis between a maximum flow position with the first pattern of openings and the largest of the second pattern of openings in alignment with the radially extending passages, and a minimum flow position with the first pattern of openings and the smallest of the second pattern of openings in alignment with the passages.
- 7. The roll casting machine of claim 6 wherein the openings through the sidewall of the sleeve comprise
- a first pattern of openings all of the same shape, the openings alignable with the radially extending passages near the center portion of the roll and having a width from one end to the other being at least as large as the width of the passages;
- a second pattern of openings all of the same shape, the openings alignable with the radially extending passages near the ends of the roll, each opening having two opposite ends, the width at one end being at least as large as the width of the passages and the width at the other end being smaller than the width of the passages; and
- means for moving the sleeve between a maximum flow position with one end of the openings in alignment with the radially extending passages, and a minimum flow position with the other end of the openings in alignment with the passages.
- 8. The roll casting machine of claim 7 wherein the means for moving the sleeve rotates the sleeve about its axis between the maximum flow position and the minimum flow position.
- 9. The roll casting machine of claim 7 wherein the means for moving the sleeve translates the sleeve along its axis between the maximum flow position and the minimum flow position.
- 10. The roll casting machine of claim 4 wherein the openings through the sidewall of the sleeve comprise:
- two or more rows of openings extending longitudinally along the sleeve, each row having a different pattern of openings alignable with the with the radially extending passages; and
- means for rotating and translating the sleeve such that the sleeve may be rotated to align a preselected row of openings with the radially extending passages and translated to vary the volume of water flow through the preselected row of openings.
- 11. A roll comprising:
- a core having at least one axially extending cooling water inlet plenum;
- the core additionally having at least one axially extending cooling water outlet plenum;
- a shell fixed on the core;
- a plurality of cooling water channels in the perimeter of the core;
- a plurality of radially extending cooling water passages between the plenums and the channels; and
- means for controlling the thermal expansion of the core by changing the cooling capacity of the water in at least a portion of the core of the work roll for providing a controlled temperature differential in the core between the center portion and the ends of the roll, comprising:
- a plurality of radially extending inlet passages in the core, each inlet passage interconnecting at least one channel and the inlet plenum;
- a plurality of radially extending outlet passages in the core, each outlet passage interconnecting at least one channel and the discharge plenum;
- means for introducing a cooling water into the inlet plenum and means for discharging the water from the discharge plenum; and
- means for controlling the cooling water flow through at least some of the channels relative to the remaining channels comprising:
- at least one sleeve within a plenum, the sleeve having a plurality of openings through the sidewall of the sleeve, the openings being located for communicating with the radially extending passages; and
- means for moving the sleeve between a maximum flow position with at least a portion of the openings in relatively greater alignment with at least a portion of the radially extending passages, and a minimum flow position with the portion of openings in a relatively lesser alignment with the portion of the passages.
- 12. The roll of claim 11 wherein the movement of the sleeve between the maximum flow position and the minimum flow position is rotational about the axis of the sleeve.
- 13. The roll of claim 11 wherein the movement of the sleeve between the maximum flow position and the minimum flow position is translational along the axis of the sleeve.
- 14. A roll for a casting machine comprising:
- a core having at least one axially extending cooling water inlet plenum;
- the core additionally having at least one axially extending cooling water outlet plenum;
- a shell fixed on the core;
- a plurality of cooling water channels in the perimeter of the core;
- a plurality of radially extending cooling water passages between the plenums and the channels; and
- means for controlling the cooling capacity of the water in at least a portion of the work roll for providing a controlled temperature differential between the center portion and the ends of the roll, comprising:
- a plurality of radially extending inlet passages in the core, each inlet passage interconnecting at least one channel and the inlet plenum;
- a plurality of radially extending outlet passages in the core, each outlet passage interconnecting at least one channel and the discharge plenum;
- means for introducing a cooling water into the inlet plenum and means for discharging the water from the discharge plenum; and
- means for controlling the cooling water flow through at least some of the channels relative to the remaining channels comprising:
- at least one sleeve within a plenum, the sleeve having a plurality of openings through the sidewall of the sleeve, the openings being located for communicating with the radially extending passages; and
- means for moving the sleeve.
- 15. The roll of claim 14 wherein the openings through the sidewall of the sleeve comprise
- a first pattern of openings extending circumferentially around the sleeve, the openings being at least as large as and alignable with the radially extending passages near the ends of the roll;
- a second pattern of openings extending circumferentially around the sleeve alignable with the radial passages in the center portion of the roll, the openings varying in size circumferentially around the sleeve from at least as large as the radially extending passages to a predetermined size smaller than the size of the passages; and
- means for rotating the sleeve about its axis between a maximum flow position with the first pattern of openings and the largest of the second pattern of openings in alignment with the passages, and a minimum flow position with the first pattern of openings and the smallest of the second pattern of openings in alignment with the passages.
- 16. The roll of claim 14 wherein the openings through the sidewall of the sleeve comprise
- a first pattern of openings extending longitudinally along the sleeve, the openings being at least as large as and alignable with the with the radially extending passages near the ends of the roll;
- a second pattern of openings extending longitudinally along the sleeve alignable with the radially extending passages in the center portion of the roll, the openings varying in size longitudinally along the sleeve from at least as large as the passages to a predetermined size smaller than the size of the passages; and
- means for moving the sleeve longitudinally along its axis between a maximum flow position with the first pattern of openings and the largest of the second pattern of openings in alignment with the passages, and a minimum flow position with the first pattern of openings and the smallest of the second pattern of openings in alignment with the passages.
- 17. The roll of claim 14 wherein the openings through the sidewall of the sleeve comprise:
- a first pattern of openings all of the same shape, the openings alignable with the radially extending passages near the center portion of the roll and having a width from one end to the other being at least as large as the width of the passages;
- a second pattern of openings all of the same shape, the openings alignable with the radially extending passages near the ends of the roll, each opening having two opposite ends, the width at one end being at least as large as the width of the passages and the width at the other end being a predetermined amount smaller than the width of the passages; and
- means for moving the sleeve between a maximum flow position with one end of the openings in alignment with the radially extending passages, and a minimum flow position with the other end of the openings in alignment with the passages.
- 18. The roll of claim 17 wherein the means for moving the sleeve rotates the sleeve about its axis between the maximum flow position and the minimum flow position.
- 19. The roll of claim 17 wherein the means for moving the sleeve translates the sleeve along its axis between the maximum flow position and the minimum flow position.
- 20. The roll of claim 14 wherein the openings through the sidewall of the sleeve comprise
- two or more rows of openings extending longitudinally along the sleeve, each row having a different pattern of openings alignable with the with the radially extending passages; and
- means for rotating and translating the sleeve such that the sleeve may be rotated to align a preselected row of openings with the radially extending passages and translated to vary the volume of water flow through the preselected row of openings.
- 21. A method of controlling the profile of sheet produced on a roll casting machine comprising the steps of:
- introducing molten metal to be cast into the bite between a pair of parallel rotating work rolls each having a core and a shell fixed on the core;
- circulating cooling water through the core of the work rolls for extracting heat from the metal being cast; and
- controlling thermal expansion of at least one of the cores by changing the cooling capacity of the water in at least a portion of one of the work rolls for providing a controlled temperature differential in the core of the roll between the center portion and the ends of the roll comprising:
- introducing a cooling water into at least one inlet plenum in the core;
- circulating the water from the inlet plenum through a plurality of radially extending inlet passages in the core, a plurality of channels formed in the perimeter of the core, and a plurality of radially extending outlet passages in the core to at least one discharge plenum;
- discharging the water from the discharge plenum; and
- controlling the cooling water flow through at least some of the channels relative to the remaining channels comprising:
- the step of moving at least one sleeve within a plenum, the sleeve having a plurality of openings through the sidewall thereof, the openings being located for communication with the radially extending passages, between a maximum flow position with at least a portion of the openings in relatively extending passages, and a minimum flow position with the portion of openings in a relatively lesser alignment with the portion of the passages.
- 22. A method of controlling the profile of sheet produced on a roll casting machine comprising the steps of:
- introducing molten metal to be cast into the bits between a pair of parallel rotating work rolls each having a core and a shell fixed on the core;
- circulating cooling water through the core of the work rolls for extracting heat from the metal being cast; and
- controlling thermal expansion of at least one of the cores by changing the cooling capacity of the water in at least a portion of one of the work rolls for providing a controlled temperature differential int he core of the roll between the center portion and the ends of the roll comprising:
- introducing a cooling water into at least one inlet plenum in the core;
- circulating the water from the inlet plenum through a plurality of radially extending inlet passages in the core, a plurality of channels formed in the perimeter of the core, and a plurality of radially extending outlet passages in the core to at least one discharge plenum;
- discharging the water from the discharge plenum; and
- controlling the cooling water flow through at least some of the channels relative to the remaining channels comprising:
- the step of moving at least one sleeve within a plenum, the sleeve having a plurality of openings through the sidewall thereof, the openings being located for communication with the radially extending passages, between a maximum flow position with at least a portion of the openings in alignment with passages being at least as large as the passages, and a minimum flow position with at least a portion of openings in alignment passages being smaller than the passages.
- 23. A method of controlling the profile of sheet produced on a roll casting machine comprising the steps of:
- introducing molten metal to be cast into the bits between a pair of parallel rotating work rolls each having a core and a shell fixed on the core;
- circulating cooling water through the core of the work rolls for extracting heat from the metal being cast; and
- controlling thermal expansion of at least one of the cores by changing the cooling capacity of the water in at least a portion of one of the work rolls for providing a controlled temperature differential in the core of the roll between the center portion and the ends of the roll comprising:
- introducing a cooling water into at least one inlet plenum in the core;
- circulating the water from the inlet plenum through a plurality of radially extending inlet passages in the core, a plurality of channels formed in the perimeter of the core, and a plurality of radially extending outlet passages in the core to at least one discharge plenum;
- discharging the water from the discharge plenum; and
- controlling the cooling water flow through at least some of the channels relative to the remaining channels comprises the additional steps of:
- rotating to a preselected position at least one sleeve within a plenum, the sleeve having two or more rows of openings through the sidewall thereof extending longitudinally along the sleeve, each row defining a selectable position of the sleeve and having a different pattern of openings alignable with the radially extending passages; and
- translating the sleeve to vary the volume of water flow through the preselected row of passages.
CROSS-REFERENCE TO RELATED APPLICATIONS
This is a continuation of application Ser. No. 07/379,884, filed Jul. 14, 1989, now abandoned.
US Referenced Citations (11)
Foreign Referenced Citations (4)
Number |
Date |
Country |
3326746 |
Feb 1985 |
DEX |
61-262452 |
Nov 1986 |
JPX |
62-238050 |
Oct 1987 |
JPX |
1-113155 |
May 1989 |
JPX |
Continuations (1)
|
Number |
Date |
Country |
Parent |
379884 |
Jul 1989 |
|