The invention pertains to furnace doors for coiler furnaces, suitable especially for use in Steckel rolling mills, where, as the hot-rolled strip is being transported back and forth in a reversing manner through the mill, it is coiled onto a drum in one of these furnaces and uncoiled from another drum in the other furnace and possibly heated, the door being equipped with guide tables, which are mounted on the movable furnace door to feed in and guide the strip, where the furnace doors and the coiler furnace are separate components, each furnace door being divided into at least two elements, which can be folded toward and away from each other, and where the two door elements are connected by a door support so that they have the freedom to pivot.
Because of the extremely high thermal loads imposed by the Steckel furnaces, their adjustable doors have been equipped with pneumatically actuated drives. The conventional practice has been to attach these doors directly to the furnace. DE 40 16 256 A1 discloses a Steckel furnace of this type. In this case, however, it is difficult to replace the guide tables, which are mounted on the doors. Before the tables can be replaced, the furnace must be cooled down completely. This requires a difficult and time-consuming work process, however, not only because of the very long cooling times but also because of the extremely difficult working conditions. These circumstances result in high labor costs and force the system in question to be idle for long periods of time. DE 40 16 256 A1, however, also discloses a Steckel furnace of the general type in question, but it suffers from the same disadvantages.
In view of recognized difficulties, a proposal was developed as a remedy in EP 0 936 276 A2 to improve the coiler furnaces used especially in Steckel rolling mills.
The coiler furnace known from the previously mentioned document comprises an upper housing part and a lower housing part, which can be tightly connected to each other, and a furnace drum in the housing with means for accepting a rolled strip. The housing also has a bottom part, separate from the lower housing; this bottom part of the housing is able to move relative to the lower housing. As a result, the bottom part can be moved even when the interior of the furnace is still hot. The bottom part is designed and mounted in such a way that it can be moved or removed together with the movable roller table rolls. As a result, the replacement time is reduced from the previous 30 hours to approximately 5 hours.
Proceeding from the state of the art indicated above, the invention is based on the task of providing an improved design for a coiler furnace and especially for its door, by means of which even shorter replacement times can be achieved.
This task is accomplished for furnace doors of the type indicated in the introductory clause of Claim 1 in that the furnace doors and the associated coiler furnace are separate components; in that the furnace doors are mounted on a part of a roller table frame located underneath the coiler furnace; and in that each furnace door is divided into at least two elements, which can be folded toward and away from each other, the two door elements being connected to each other by a door support so that they have the freedom to pivot.
In an embodiment of the invention, it is provided that the roller table frame is able move along guide rails and thus carry the furnace door out of the thermal radiation zone of the coiler furnace.
Attaching the furnace doors to the movable roller table located underneath the furnace offers the great advantage that the furnace doors can be moved out of the thermal radiation zone of the furnace for the purpose of maintenance. The furnace tables and the doors can thus be easily maintained. The use of hydraulic cylinders can also make it easier to operate the doors and the elements which move them.
An embodiment of the device according to the invention also provides that the support for the door is mounted on the roller table frame by way of at least one bracket on the drive side and at least one bracket on the operating side.
So that the doors can be supported in exactly the right position under the furnace, the movable part of the roller table frame is pushed onto adjustable support pads during the reinstallation process. The exact positioning in the rolling direction can be achieved by adjusting the frame on the support pads.
To absorb the forces which develop during the movement of the strip, the roller table frame is locked in place according to the invention by locking cylinders.
Additional embodiments provide that at least one hydraulic cylinder is assigned to each of the pivoting elements of the furnace door, these cylinders preferably being installed on the operating side.
And finally, the design of the furnace door according to the invention is characterized in that it is mounted on the brackets in such a way that its height can be adjusted.
Additional details, features, and advantages of the invention can be derived from the following explanation of an exemplary embodiment, which is illustrated schematically in the drawings:
The furnace door 2, i.e., the door parts 2′, 2″, according to the invention and the associated coiler furnace 1 are separate components. These are mounted on a part 4′ of the roller table frame 4 located underneath the coiler furnace 1. The furnace door can be divided into at least two elements 2′, 2″, which can be folded back and forth relative to each other, and which are for this purpose connected to each other by a door support, which is designed as a hinge 7, permanently connected to the part 4′ of the roller table frame 4. As a result, it is possible to create an opening in the lower part of the housing of the coiler furnace 1, an opening which greatly improves the accessibility of the interior of the furnace for the sake of, for example, repair work or inspection.
In the position of the furnace door 2 according to
The part 4′ of the roller table frame 4 has rollers 14 by which it can travel out sideways from the roller table frame 4 along rails 5, 5′ under the action of one or more hydraulic cylinders and thus out of the thermal radiation zone of the coiler furnace 1, as can be seen in
The door support 7, the brackets 8 for the door support 7, and the hydraulic cylinders 3 for the pivoting movement of the door parts 2, 2′ can also be seen in
As soon as the roller table frame part has been positioned exactly on the support pads 9, 9′ in the rolling direction, the roller table frame part 4′ is locked in place by the locking cylinders 10, 10′.
For the feed-in phase, as
The inventive design of the coiler furnace doors, which are attached to the movable roller table, is uncomplicated and extremely effective and greatly improves the ability to maintain coiler furnaces.
Number | Date | Country | Kind |
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101 59 717 | Dec 2001 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP02/12973 | 11/20/2002 | WO | 00 | 5/19/2004 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO03/048397 | 6/12/2003 | WO | A |
Number | Name | Date | Kind |
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4761983 | Ginzburg et al. | Aug 1988 | A |
5009092 | Buchegger | Apr 1991 | A |
5269166 | Thomas | Dec 1993 | A |
5848543 | White | Dec 1998 | A |
6089067 | Yoshioka et al. | Jul 2000 | A |
Number | Date | Country |
---|---|---|
904547 | May 1950 | DE |
3000638 | Jul 1980 | DE |
3224621 | Mar 1983 | DE |
4016256 | Dec 1990 | DE |
0936276 | Aug 1999 | EP |
Number | Date | Country | |
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20040261484 A1 | Dec 2004 | US |