The invention relates to a refractory unit for a sliding gate at the spout of a container containing metal melt, comprising a refractory adapter block that can be placed on the container spout, a refractory bottom plate connected thereto, to which bottom plate a slidable refractory sliding plate can be connected, wherein the sliding plate allows the sliding gate to be opened or closed, in addition to the first bottom plate connected to the adapter block, a second bottom plate adjoining the adapter block, which second bottom plate can be slid in under the adapter block to replace the first bottom plate.
Sliding gates at the spout of containers for metal melt are known in a wide variety of configurations. A sliding gate which is used in particular for opening and closing a converter spout opening is disclosed, for example, in EP 0 819 488 B1. It comprises a housing frame in which are located a stationary refractory valve plate (a so-called bottom plate) and a refractory sliding plate held in a sliding unit and which can be displaced relative to said bottom plate. The sliding plate can be pressed tightly against a lower sliding surface of the bottom plate with its upper sliding surface. The housing frame is releaseably attached to a base plate secured to the container, it being possible to brace the bottom plate over its upper sliding surface with a refractory spout head part inserted into the base plate. During casting operation the refractory parts are subjected to strong wear and tear. It is therefore necessary to replace them relatively frequently. For this purpose the housing frame must be respectively detached from the base plate.
The present invention is based upon the object of providing a refractory unit for a sliding gate at the spout of a container for metal melt, in particular a converter, in which the exchangeability in particular of the refractory bottom plates of this unit can be implemented reliably and easily.
This object is achieved according to the invention by a refractory unit for a sliding gate at the spout of a container containing metal melt, comprising a refractory adapter block placed on the container spout, a first refractory bottom plate connected thereto and against which a slidable refractory sliding plate is pressed, a second bottom plate adjoining the adapter block which is slid in under the adapter block to replace the first bottom plate, wherein the adapter block has a length in the direction of the second bottom plate such that it is in sliding contact with its lower sliding surface with this second bottom plate, and by a sliding gate including a housing frame adapted to be attached to the spout, a slider unit comprising the sliding plate, a refractory unit as described above and a cassette contained in the housing frame and holding the first and second bottom plates next to one another, the cassette being displaceable in the housing frame such that the first bottom plate located in the operating position is replaced by the second bottom plate.
Further preferred configurations of the valve plate according to the invention form the subject matter of the dependent claims.
With the refractory unit according to the invention replacement of the bottom plates when the sliding gate is fitted can be implemented without any problem.
In the following the invention is described in more detail by means of the drawings. These show as follows:
A sliding gate 1 according to
For the opening and closing of the sliding gate 1 the slider unit 20 is moved perpendicularly to the image plane together with the sliding plate 18 and the spout cover 19 located beneath the latter, this not being illustrated in detail.
In the sliding gate 1, the one bottom plate 10 can be moved out of the operating position by displacing the cassette 40 by means of a drive 34 provided, for example, as a cylinder unit and be replaced by the second bottom plate 12 without having to dismantle the housing frame 30.
According to the invention the adapter block 21 has a length in the direction of the second bottom plate 12 such that it is in sliding contact with its lower sliding surface 21′ with this second bottom plate 12. Advantageously the adapter block 21 is in sliding contact with this second bottom plate 12 at least over a length of a couple of millimeters.
The adapter block 21 has a round external form and correspondingly lies in the form of segments on the upper sliding surface 12′ of the second bottom plate 12. It is provided on its lower sliding surface 21′, at least in the region standing with this second bottom plate 12, with bevelling 29. Advantageously such bevelling 29 is also provided opposite if the bottom plate 10 is slid in from the other side.
The refractory parts of this refractory unit 5 respectively comprise at least one zircon insert or the like and a refractory mass surrounding the latter. In addition, there are also metal cassettes respectively forming the outer periphery. A gradation 10″, 12″, 18″ provided all around is respectively assigned to the bottom or slider plate which enables almost play-free insertion of the latter into the housing frame 30 or into the slider unit 20.
Number | Date | Country | Kind |
---|---|---|---|
1616/09 | Oct 2009 | CH | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/EP2010/006246 | 10/13/2010 | WO | 00 | 5/15/2012 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2011/047799 | 4/28/2011 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
5139238 | Buhr | Aug 1992 | A |
5173199 | Bruckner et al. | Dec 1992 | A |
5174908 | King et al. | Dec 1992 | A |
5693249 | Szadkowski | Dec 1997 | A |
5698129 | Keller et al. | Dec 1997 | A |
5836485 | Plattner et al. | Nov 1998 | A |
5879579 | Yoshino et al. | Mar 1999 | A |
6019258 | Richard | Feb 2000 | A |
Number | Date | Country |
---|---|---|
40 12 093 | Feb 1991 | DE |
0 468 363 | Jan 1992 | EP |
0 869 856 | Dec 1998 | EP |
0 819 488 | Feb 2000 | EP |
2009127333 | Oct 2009 | WO |
Number | Date | Country | |
---|---|---|---|
20120217272 A1 | Aug 2012 | US |