Claims
- 1. A method for casting rectangular billets from metal close to final dimensions and for subsequent inline rolling out of the billet, with a material supply vessel, via an outlet nozzle of which the liquid metal is deposited onto an upper stand of a conveyor belt, on which the metal solidifies and is transferred to a roll stand for forming a rolling stock, the method comprising the steps of:a) before starting casting, aa) approximating a point at which the liquid metal is deposited onto the conveyor belt, and ab) setting conveying speed of the conveyor belt as a function of a desired rolling thickness and rolling speed of the roll stand; and b) during casting, ba) detecting position of thorough solidification of the metal billet located on the conveyor belt, bb) detecting temperature of the rolling stock in a region of the roll stand, and bc) using the position of thorough solidification and the temperature of the rolling stock as control variables for the current position of a point at which the liquid metal leaving the material supply vessel is deposited onto the conveyor belt.
- 2. A method as defined in claim 1, including detecting a thickness of the metal billet located on the conveyor belt and using the detected thickness for controlling a quantity flow of the liquid metal leaving the material supply vessel.
- 3. A method as defined in claim 1, including detecting speed of the conveyor belt and using the detected speed for controlling a quantity flow of the liquid metal leaving the material supply vessel.
- 4. A method as defined in claim 1, including taking geodetic height of the metal located in the material supply vessel into account when controlling the quantity flow of the liquid metal leaving the material supply vessel.
- 5. A method as defined in claim 1, including taking a discharge of heat from the metal billet located on the conveyor belt into account when controlling the position of the material depositing point.
- 6. A device for casting rectangular billets from metal close to final dimensions and for subsequent inline rolling out of the billet, comprising: a metal supply vessel having an outlet nozzle; a horizontally arranged conveyor belt; at least one roll stand downstream of the conveyor belt for forming a rolling stock; movement elements connected to the material supply vessel so as to move the supply vessel in a horizontal direction, coaxially to a major axis of the conveyor belt, in or opposite to a conveying direction of a billet; an actuator connected to the material supply vessel; regulating means for regulating the actuator; first measuring elements connected to the regulating means and operatively arranged for detecting a position of the thorough solidification of the billet; and second measuring elements connected to the regulating means and operatively arranged for detecting temperature of the rolling stock.
- 7. A device as defined in claim 6, and further comprising means for controlling quantity flow of metal through the outlet nozzle of the metal supply vessel.
- 8. A device defined in claim 7, wherein the control means includes at least one of a controllable closing element and a vacuum device.
- 9. A device as defined in claim 6, and further comprising rails, the movement elements being wheels which are connected to the material supply vessel and run on the rails.
- 10. A device as defined in claim 6, and further comprising a track, the movement elements being sliding elements which are connected to the material supply vessel and match with the track.
- 11. A device as defined in claim 6, wherein the movement element are levers which have joints and are designed as thrust mechanisms such that, in the event of a horizontal movement of the material supply vessel, a mouth of the outlet nozzle is guided at a constant distance from an upper strand of the conveyor belt over a defined region.
- 12. A device as defined in claim 6, wherein the movement elements are piston/cylinder units, and further comprising further regulating means connected to the piston/cylinder units for guiding a mouth of the outlet nozzle at a constant distance from an upper strand of the conveyor belt in the event of a horizontal movement of the material supply vessel.
- 13. A device as defined in claim 6, wherein the actuator is a hydraulic piston/cylinder unit.
- 14. A device as defined in claim 13, wherein the piston/cylinder unit is a synchronous cylinder, and further comprising a spacer rod arranged to connect the synchronous cylinder to the material supply vessel.
- 15. A device as defined in claim 6, wherein the actuator includes an electric drive, and an endless belt that connects the electric drive to the material supply vessel.
- 16. A device as defined in claim 6, and further comprising an additional stand having its own drive for moving coaxially to the major axis of the conveyor belt, the movement elements being arranged on the additional stand.
- 17. A device as defined in claim 6, wherein the material supply vessel is a vacuum vessel having a charging chamber into which the melt can be introduced.
- 18. A device as defined in claim 6, and further comprising a housing arranged to encase at least free surfaces of the billet from a depositing point on the conveyor belt and during transport by the conveyor belt.
- 19. A device as defined in claim 18, wherein the housing has a cover equipped as a blind which is connected at one end to the outlet nozzle of the material supply vessel and allows it to execute an unimpeded traveling movement, and further comprising a winding device connected at an other end of the cover.
- 20. A device as defined in claim 18, and further comprising gas supply means connected to the housing for supplying gas.
Priority Claims (1)
Number |
Date |
Country |
Kind |
198 23 440 |
May 1998 |
DE |
|
Parent Case Info
This application is A 371 of PCT/DE99/00891 filed Mar. 13, 1999.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
PCT/DE99/00891 |
|
WO |
00 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO99/59750 |
11/25/1999 |
WO |
A |
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4993477 |
Praeg |
Feb 1991 |
A |
6192973 |
Schwerdtfeger et al. |
Feb 2001 |
B1 |