The invention concerns a device for cooling rolling stock within the cooling line of a rolling mill, especially a hot strip rolling mill, in which stationary water spray devices are installed below the rolling stock between the rollers of a roller table, and spray bars held on support levers are installed above the rolling stock, wherein the support levers are supported by a tubular, rotationally driven and water-fed articulated tube that extends parallel to the longitudinal axis of the roller table, with a central water feed pipe and an automatic control device with associated on-off valves for switching the cooling water on and off.
Devices for cooling rolling stock are permanent parts of every rolling mill. They have become more important since certain metallurgical states, e.g., grain sizes, and the high working stress of the rolled product associated with these metallurgical states have been strived for by influencing the transformation of the steel.
For example, EP 0 178 281 B1 describes equipment for cooling a metal product with flat upper and lower sides, especially sheet metal, which is moved on a roller conveyor, wherein coolant for the lower side is fed into the gaps formed between the rollers of the roller conveyor, and another device is provided above the rolling stock, whose distance from the rolling stock can be varied. Disadvantages of this well-known cooling equipment are the comparatively high material expense and especially the costly on-site installation work, which results in relatively high construction costs.
DE 198 43 038.8 describes a device for cooling rolling stock, in which spray bars that deliver cooling water from above are supported in such a way that they can swivel and are partially balanced by counterweights to simplify the operation. By combining the cooling water feed lines, the resulting installation costs can be favorably affected.
This objective is achieved by the measures specified in claim 1. Modifications of the cooling device of the invention are specified in the dependent claims.
The features of the invention are explained in detail in the following description of the embodiment of the invention illustrated in the drawings.
The arrangement of the cooling bars, spray bars, and strip guide straightedges is shown in detail in
The cooling bar 2 is closed at both ends by caps 7, which can be removed, for example, for cleaning. The cooling bar 2 is fed through a cooling water pipe 8 via a manifold 9. The rollers 10 of the roller table 1 are provided with long, slender pins 11, which support the rollers in bearings and transmit the drive from the roller table motors 12. The rollers 10 are arranged with very narrow spacing, and the spray tubes 13 of the cooling bar 2 fit into the narrow spaces between them. However, this allows only small amounts of cooling water to flow off between the rollers 10; all the more space is offered for the water to flow off between the long, slender pins 11 of the rollers 10.
In this connection, the strip guide straightedges 6 are shown again in this drawing. The guide straightedge shown on the left is pulled back for maximum strip widths or for a home position and thus opens the area of the pins of the rollers for water to flow off from the very start. On the other hand, the guide straightedge shown on the right is pushed extremely far forward and thus largely covers the runoff route formed between the pins 11 of the rollers 10. Therefore, during practical operation, when the strip is run in, the strip guide straightedges 6 are set to the width of the strip that is running in, and after the strip has been run in, the cooling system is turned on, and the strip guide straightedges are pulled back into their home position of maximum opening.
The placement of the upper spray bar 3 is also shown in the drawing. A rotating articulated tube 15, which is fed with cooling water in the axial direction, is supported by means of one or more stands 14. Tubular support arms 16, into which the cooling water of the articulated tube 15 can enter, are connected to the articulated tube 15. Two parallel spray bars 3 are connected to each of these support arms and are supplied with cooling water through the tubular support levers 16. On the underside, the spray bars 3 are supplemented by interchangeable and adaptable spray tube plates 4, and the free ends support the articulated spray guard plates 5. Each of the support levers is supported by a hydraulic cylinder 17 and can be swung upward by the hydraulic cylinder from its working position shown in
The design of the spray bars 3 is illustrated in
However, as especially
As
Number | Date | Country | Kind |
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102 15 229 | Apr 2002 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP03/01999 | 2/27/2003 | WO | 00 | 10/1/2004 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO03/084686 | 10/16/2003 | WO | A |
Number | Name | Date | Kind |
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4247047 | Schaming | Jan 1981 | A |
4497180 | Graham | Feb 1985 | A |
4570453 | Kamio et al. | Feb 1986 | A |
4643013 | Blazevic | Feb 1987 | A |
4723562 | Wilmotte et al. | Feb 1988 | A |
4945746 | Jakimowicz et al. | Aug 1990 | A |
5146759 | Eguchi et al. | Sep 1992 | A |
5327763 | Kramer et al. | Jul 1994 | A |
6062056 | Groch | May 2000 | A |
6301906 | Thiel et al. | Oct 2001 | B1 |
Number | Date | Country |
---|---|---|
1011579 | Nov 1999 | BE |
198 43 038 | Mar 2000 | DE |
2580199 | Oct 1986 | FR |
0030776 | Jun 2000 | WO |
Number | Date | Country | |
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20050167897 A1 | Aug 2005 | US |