The disclosure relates to a device for melting a metal-containing mixture, in particular a precious metal-containing melting material and to a method for operating a device for melting a metal-containing mixture.
It is well-known that metal melting furnaces, which are operated at high temperatures with mixtures of materials, have to be regularly shut down at great expense with regard to the maintenance of wear-prone components and have downtimes of several days.
It is an object of the present disclosure to provide a melting device that enables simple and safe maintenance.
The object is achieved by a device for melting a metal-containing mixture, in particular a precious metal-containing melting material. The device comprises a vacuum melting furnace, in particular with a plasma jet melting means. A heated melting material, comprising the metal-containing mixture, is to be held in a graphite pool. The metal-containing mixture, in particular of a precious metal-containing melting material, in particular catalysts from internal combustion engine motor vehicles, is to be fed into the graphite pool through a feed line. A first lateral discharge opening can be inserted into the graphite pool for discharging metal melt, in particular precious metal melt. A second lateral discharge opening, specifically a siphon discharge opening, is provided for molten slags. The discharge openings are to be inserted through a wall of the graphite pool by a piercing lance. The lateral siphon discharge opening comprises an attached siphon with an integrated slag brick. An adaptively designed metal cover plate close to the outlet opening is inserted, in particular a copper cover plate, which is prepared in such a way that it is designed to be replaceable even when the vacuum melting furnace is operating.
The device allows a vacuum melting furnace to be reliably maintained. Maintenance is carried out quickly and on a timely basis before an undesirably large quantity of valuable metals, in particular precious metals, escape from an excessively large slag outlet opening. The removal of the metal cover plate close to the outlet opening, in particular a copper cover plate, is possible by replacement means, even with the vacuum furnace intact, without having to disassemble the furnace. Furthermore, the invention avoids excessive wear of a slag brick arranged in the siphon or enables the sufficient cooling of the slag brick. Instead of a complete replacement of the vacuum furnace, which can take approximately 2 weeks, maintenance can now be completed within a few hours.
It is advantageous if the metal cover plate close to the outlet opening, in particular a copper cover plate, is designed to be replaceable in a removal direction.
It is advantageous if side walls are provided in the siphon in the region of the metal cover plate, and detachable retainers are provided in the metal cover plate, in particular a copper cover plate, in particular with corresponding recesses in the metal cover plate, in particular a copper cover plate.
It is advantageous if side retainers are provided on the side walls and the removable metal cover plate is removably adapted to the side retainers.
It is advantageous if adapted stepped bevels are provided in the side retainers and corresponding bevels are provided on short sides of the metal cover plate.
It is advantageous if fasteners are provided for retaining on side retainers, in particular at least two and/or three fasteners in each case.
It is advantageous if the adaptively designed removable copper cover plate has a predetermined height of at least approximately the size of a siphon discharge opening to be pierced with the piercing lance, in particular approximately twice to approximately three times the size.
It is advantageous if a replacement sensor system is provided, which emits a replacement signal from a predetermined opening size in the removable metal cover plate, in particular a copper cover plate.
The object is also achieved by a use of a removable metal cover plate, in particular a copper cover plate, in a siphon at a vacuum melting furnace for separating a slag fraction from the heated melt material melted in a graphite pool of the vacuum melting furnace, wherein a removal can be undertaken in a removal direction within the siphon, in particular in a device as disclosed herein.
The object is also achieved by a method for operating a device for melting a metal-containing mixture, in particular a precious metal-containing melting material, comprising a vacuum melting furnace, in particular with a plasma jet melting means, wherein heated melting material, comprising the metal-containing mixture, is held in a graphite pool, wherein metal-containing mixture, in particular a precious metal-containing melting material, in particular catalysts from internal combustion engine motor vehicles, is fed into the graphite pool through a feed line, wherein a first lateral discharge opening can be inserted into the graphite pool for discharging metal melt, in particular precious metal melt, and a second lateral discharge opening, specifically a siphon discharge opening, is provided for molten slags, wherein the discharge opening is inserted through a wall of the graphite pool by a piercing lance, wherein the lateral siphon discharge opening comprises an attached siphon with an integrated slag brick, wherein an adaptively designed metal cover plate close to the outlet opening is inserted, in particular a copper cover plate, which is prepared in such a way that it is replaced even when the vacuum melting furnace is operating.
Further features and advantages of the invention are apparent from the claims and the following description, in which exemplary embodiments of the subject matter of the invention are explained in more detail in conjunction with the drawings.
1 Device for melting
2 Melting material
3 Vacuum melting furnace
4 Plasma jet melting means
5 Graphite pool
6 First lateral discharge opening
7 Second lateral discharge opening
8 Siphon discharge opening
9 Metal cover plate
10 Copper cover plate
11 Height
12 Feed line
13 Wall
14 Siphon
15 Slag brick
16 Side wall
17 Removal direction
18 Region
19 Side retainers
20 Retainers
21 Recess
22 Bevel
23 Fasteners
24 Short side
25 Bevel
26 Retaining step
27 Retaining step
28 Damage opening
Number | Date | Country | Kind |
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10 2020 006 897.9 | Nov 2020 | DE | national |
10 2021 001 936.9 | Apr 2021 | DE | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/DE2021/000117 | 7/9/2021 | WO |