Claims
- 1. A spray bar for use in combination with apparatus for cooling a rolling mill roll comprising; an elongated tubular member, means for delivering a liquid coolant into said elongated tubular member, and a plurality of spaced spray nozzles each adapted to spray such liquid coolant from within said tubular member onto a surface of such rolling mill roll, said nozzles disposed in a curved alignment, so as to form an arc with respect to a straight line parallel to the axis of said spray bar, along a surface of said spray bar so that each adjacent nozzle effects at least one of a different spray-angle and different spray-distance thereby achieving different cooling rates within different portions of such rolling mill roll, said tubular member adapted for movement with respect to such rolling mill roll to change cooling rates effected by said nozzles.
- 2. A spray bar according to claim 1 in which said curved alignment is an arcuate curved alignment having an apex adjacent to a center portion of such rolling mill roll to thereby effect a cooling rate which varies uniformly from such center portion of such rolling mill to an edge portion or such rolling mill roll.
- 3. A method of controllably cooling a flat rolled product upon emerging from a hot roll stand comprising; providing a spray bar having a plurality of spaced coolant spray nozzles positioned thereon, said nozzles being spaced along the surface of said spray bar in a curved alignment, so as to form an arc with respect to a straight line parallel to the axis of said spray bar, such that, at any particular position of said spray bar, the spray-angles and spray-distances effected by the nozzles are not the same and effect different spray-angles and/or different spray-distances to achieve different cooling rates within different portions of such hot rolled product, positioning the spray bar adjacent to such emerging hot rolled product so that said nozzles are adjacent to and spaced across a width of such hot rolled product, admitting a liquid coolant into said spray bar such that the coolant will be continuously sprayed through each of said nozzles and onto a surface of such hot rolled product at a given spray-angle and a given spray-distance to cool such hot rolled product, and controlling a cooling rate of such hot rolled product be effecting a controlled movement of said spray bar sufficient to change each of said spray-angles and/or each of said spray-distances and thereby change said cooling rate effected by each of said nozzles.
- 4. A method according to claim 3 in which said spray bar movement is a translational movement in a plane as will effect at least a change in the spray-distances effected by said nozzles.
- 5. A method according to claim 3 in which said spray bar movement is a rotational movement as will effect at least a change in the spray-angles effected by each of said nozzles.
- 6. A method according to claim 3 in which said spray bar movement is a combination of two movements selected from the group consisting of translational movement in a plane and rotational movement.
- 7. Apparatus for use in combination with a flat rolled product emerging from a hot roll stand for cooling such hot rolled product comprising; a spray bar having a plurality of spray nozzles secured to a surface thereof, said nozzles being spaced along the surface of said spray bar in a curved alignment, so as to form an arc with respect to a straight line parallel to the axis of said spray bar, so that, at any particular position of said spray bar, the spray-angles and spray-distances effected by the nozzles are not the same and effect different spray-angles and/or different spray-distances to achieve different cooling rates within different portions of such hot rolled product, means for admitting a liquid coolant into said spray bar such that such coolant will egress from said spray bar through said nozzles to impact on a surface of such hot rolled product at given spray-angles and given spray-distances as necessary to effect a given cooling rate, drive means for causing a movement of spray bar sufficient to change said spray-angles and/or said spray-distances as necessary to change the cooling rates effected by said nozzles.
- 8. Apparatus according to claim 7 in which said drive means causes a translational movement of said spray bar in a plane as will effect at least a change in the spray-distances effected by said nozzles.
- 9. Apparatus according to claim 7 in which said drive means causes a rotational movement of said spray bar as will effect at least a change in the spray-angles effected by said nozzle.
- 10. Apparatus according to claim 7 in which said drive means causes a movement which is a combination of two movements selected from the group consisting of translational movement in a plant and rotational movement.
- 11. Apparatus according to claim 7 further including a control means automatically controlling said spray bar, said control means including a front monitoring means or monitoring the temperature of such hot rolled product before it is cooled, a back monitoring means for monitoring the temperature of such hot rolled product after it has been cooled, and a controller which adjust the spray bar in response to signals from said front monitoring means and said back monitoring means as compared to a reference temperature.
- 12. A method of differentially cooling different selected portions of a rolling mill roll comprising; providing a plurality of cooling spray nozzles on a spray bar adjacent to such rolling mill roll such that different nozzles are adapted to cool different selected portions of such rolling mill roll at a predetermined spray-angle and spray-distance, and such that those nozzles adapted to cool at least a first of such selected portions of such rolling mill roll are positioned so that at least one of such spray-angle and such spray-distance is different from that effected by nozzles adapted to cool at least a second of such selected portions of such rolling mill roll, said nozzles on said spray bar being spaced along a surface of said spray bar in a curved alignment, so as to form an arc with respect to a straight line parallel to the axis of said spray bar, such that, at any particular position of said spray bar, the spray-angles and spray-distances effected by adjacent nozzles are not the same and effect at least one of different spray-angles and different spray-distances to achieve different cooling rates within different portions of such rolling mill roll, admitting a continuous flow of liquid coolant through all of said nozzles and onto a surface of such rolling mill roll, and controlling a cooling rate within at least such first selected portions of such rolling mill roll by effecting a uniform controlled movement of all nozzles adapted to cool such first selected portion to uniformly change at least one of said first spray-angle and said first spray-distance effected by such moved nozzles to thereby change the cooling rate within at least said first selected portion of the rolling mill roll.
- 13. A method according to claim 12 in which said controlled movement is a translational movement in a plane.
- 14. A method according to claim 13 in which said translational movement is in a generally horizontal plane to thereby move the nozzles on said spray bar towards or away from such rolling mill roll.
- 15. A method according to claim 13 in which said translational movement is in a generally vertical plane to thereby move the nozzles on said spray bar generally vertically along a side of such rolling mill roll.
- 16. A method according to claim 12 in which said controlled movement is a rotational movement as will effect at least a change in the spray-angles effected by the nozzles on said spray bar.
- 17. A method according to claim 12 in which said controlled movement is a combination of two movements selected from the group consisting of translational movement in a plane and rotational movement.
- 18. A method according to claim 12 in which said controlled movement is a movement to either one of two positions, a first position of high cooling rate and a second position of low cooling rate.
- 19. A method according to claim 18 in which a preferred cooling rate is effected by moving said spray bar back and forth between such two positions and varying the time during which said spray bar remains at each position.
- 20. A method according to claim 12 in which a roll condition is monitored, and said spray bar is subjected to said controlled movement as necessary to change the cooling rate within different portions of the roll as necessary to minimize any undesired roll condition.
- 21. A method according to claim 20 in which said roll condition is temperature profile of the roll.
- 22. A method according to claim 20 in which said roll condition is thermal expansion of the roll.
- 23. A method according to claim 12 in which a workpiece being rolled is continuously monitored to determine a rolled characteristic, and said spray bar is subjected to said movement as necessary to change the cooling rate within different portions of the rolling mill roll as necessary to minimize any undesired rolled characteristic of such workpiece.
- 24. A method according to claim 23 in which said rolled characteristic is flatness.
- 25. A method according to claim 23 in which said rolled characteristics is profile.
- 26. A method according to claim 23 in which both a roll condition and a workpiece rolled characteristic are monitored.
- 27. Apparatus for use in combination with a rolling mill roll for differentially cooling different selected portions of such rolling mill roll comprising; a plurality of coolant spray nozzles adapted to spray a liquid coolant onto a surface of such rolling mill roll whereby different nozzles are adapted to cool differed selected portions of such rolling mill roll, and such that the nozzles for cooling at least a first of such selected portions are spaced along a surface of an elongated spray bar adjacent to such rolling mill roll, the nozzles on the spray bar being spaced along a surface of the spray bar in a curved alignment, so as to form an arc with respect to a straight line parallel to the axis of said spray bar, so that, at any particular position of said spray bar, the spray-angles and spray-distances effected by the nozzles are not the same and effect different spray-angles and-or different spray-distances to achieve different cooling rates within different portions of such rolling mill roll, means for admitting a continuous flow of liquid coolant to each of said nozzles so that the coolant will egress from said nozzles and impact on a surface of such rolling mill roll at predetermined spray-angles and spray-distances, and at lest one of such spray angles and spray-distances can differ for nozzles cooling differing selected portions of such rolling mill roll as necessary to effect differing predetermined cooling rates within differing selected portions of such rolling mill roll, drive means for causing a controlled movement of said spray bar sufficient to change at least one of such spray-angles and spray-distances of the nozzles thereon as necessary to change the cooling rates effected within at least such first selected portion.
- 28. Apparatus according to claim 27 in which said drive means is adapted to cause a controlled translational movement of said spray bar in a plane as will effect at least a change in the spray-distances effected by the nozzles thereon.
- 29. Apparatus according to claim 28 in which said drive means is adapted to cause a controlled translational movement generally in a horizontal plane to thereby move the nozzles on said spray bar towards or away from such rolling mill roll.
- 30. Apparatus according to claim 26 in which said drive means is adapted to cause a controlled translational movement generally in a vertical plane to thereby move the nozzles on said spray bar generally vertically along the side of such rolling mill roll.
- 31. Apparatus according to claim 27 in which said drive means is adapted to cause a controlled rotational movement of said spray bar as will effect at least a change in the spray-angles effected by the nozzle thereon.
- 32. Apparatus according to claim 27 in which said drive means is adapted to cause a controlled movement which is a combination of two movements selected from the group consisting of translational movement in a plane and rotational movement.
- 33. Apparatus according to claim 27 in which said spray bar is movable to either one of two positions, a first position of high cooling rate and a second position of low cooling rate.
- 34. Apparatus according to claim 27 in which such curved alignment is an arcuate alignment having an apex at a mid-portion of such rolling mill roll sufficient to achieve a given cooling rate at such mid-portion of such rolling mill roll and a different cooling rate in portions of such rolling mill roll spaced away from such mid-portion.
- 35. Apparatus according to claim 27 further including an automatic means for automatically activating said drive means for causing said controlled movement of said spray bar.
- 36. Apparatus according to claim 35 in which said automatic means comprises a means for monitoring a roll condition which is a function of heat absorbed by such rolling mill roll and producing a first signal indicative of such heat absorbed, control means for receiving such first signal and comparing it to a reference value of said roll condition, and when said comparison is indicative of a need to change the cooling rate of such rolling mill roll, producing a second signal, and a controller for receiving such second signal and causing said means for controlling said spray bar, to move said spray bar to thereby change at least one of such spray-angles and such spray-distances and effect a change of the cooling rate achieved thereby.
- 37. Apparatus according to claim 36 in which said means for automatically controlling said spray bar comprises a means for monitoring a workpiece being rolled to monitor a rolled characteristic which is a function of the heat absorbed by such roll and producing a first signal indicative of such heat absorbed, control means for receiving such first signal and comparing it to a reference value of such roll condition, and when said comparison is indicative of a need to change the cooling rate of such rolling mill roll, producing a second signal, and a controller for receiving such second signal and causing said means for moving said spray bar to move said spray bar and thereby change at least one of such spray-angles and such spray-distances and effect a change of the cooling rate achieved thereby.
- 38. Apparatus according to claim 36 is which said means for automatically controlling said spray bar comprises both a means for monitoring a roll condition and a means for monitoring a workpiece rolled characteristic.
- 39. Apparatus according to claim 36 in which said spray bar is movable to either one of two positions, a first position of high cooling rate and a second position of low cooling rate, and said means for automatically controlling said spray bar includes a controller adapted to move said spray bar back and forth between such two positions, said controller consisting of a microprocessor adapted to receive a cooling rate reference signal C.sub.R and determine a time duration at which said spray bar is to remain at each of such two positions to achieve an overall cooling rate indicated by such cooling rate reference signal.
- 40. Apparatus according to claim 39 in which such cooling rate reference signal is the second signal produced by said control means.
- 41. Apparatus according to claim 39 in which such cooling rate reference signal is a cooling rate program based on prior experience in rolling like products.
- 42. Apparatus according to claim 27 further including means for causing said movement of said spray bar in response to a change in rolling conditions including a change in roll diameter and/or a change in roll gap.
- 43. Apparatus according to claim 42 in which said means for causing a movement of said spray bar includes a microprocessor adapted to receive input information regarding a change in rolling conditions, and calculate an optimum nozzle spray-angle for said changed rolling condition, and signaling said drive means to move said spray bar and change the spray-angles of the nozzles to such optimum spray-angle.
- 44. Apparatus according to claim 43 further including a position regulator and a means for monitoring an angular position of said nozzles, whereby said position regulator receives a signal from said monitor indicating the angular position of said nozzles as well as a signal from said microprocessor, and signals said drive means to move said spray bar as necessary to change the nozzle spray-angles from such monitored position to an optimum position.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a Continuation-In-Part of patent application Ser. No. 07/699,203, filed May 13, 1991 now abandoned.
US Referenced Citations (13)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1433490 |
Apr 1976 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Vidiplan Automatic Shape Control of Steel Flat Products--Davy McKee (Sheffield) Ltd., 1987. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
699203 |
May 1991 |
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