Claims
- 1. An apparatus for continuously manufacturing ingots of low-oxygen copper, comprising:
a melting furnace in which combustion may be performed in a reducing atmosphere so as to produce molten copper; a soaking furnace connected to receive molten copper supplied from the melting furnace and adapted to maintain a predetermined temperature of the molten copper; a casting trough connected to receive molten copper supplied from the soaking furnace and configured to seal the molten copper supplied from the soaking furnace in a non-oxidizing atmosphere, and configured for transferring the molten copper to a turn-dish; a degasser provided in the casting trough and adapted for dehydrogenating the molten copper passing through the casting trough; a continuous casting machine connected and adapted for continuously producing cast copper from the molten copper supplied from the turn-dish; and a cutter positioned for cutting the cast copper into a predetermined length.
- 2. An apparatus for manufacturing ingots of low-oxygen copper, according to claim 1, wherein the degasser comprises a stirrer.
- 3. An apparatus for manufacturing ingots of low-oxygen copper, according to claim 2, wherein the stirrer comprises dikes positioned to cause a meandering the flow of the molten copper passing through the casting trough.
- 4. An apparatus for continuously manufacturing a low-oxygen copper wire, comprising:
a melting furnace in which combustion may be performed in a reducing atmosphere so as to produce molten copper; a soaking furnace connected to receive molten copper supplied from the melting furnace and adapted to maintain a predetermined temperature of the molten copper; a casting trough connected to receive molten copper supplied from the soaking furnace and configured to seal the molten copper supplied from the soaking furnace in a non-oxidizing atmosphere, and configured for transferring the molten copper to a turn-dish; a degasser provided in the casting trough and adapted for dehydrogenating the molten copper passing through the casting trough; a continuous casting machine, including a belt caster, connected and adapted for continuously producing cast copper from the molten copper supplied from the turn-dish; and a rolling machine positioned for rolling the cast copper so as to produce the low-oxygen copper wire.
- 5. An apparatus for manufacturing a low-oxygen copper wire, according to claim 4, wherein the degasser comprises a stirrer.
- 6. An apparatus for manufacturing a low-oxygen copper wire, according to claim 5, wherein the stirrer comprises dikes positioned for causing a meandering the flow of the molten copper passing through the casting trough.
- 7. An apparatus for continuously manufacturing ingots of low-oxygen copper, comprising:
a melting furnace in which combustion may be performed in a reducing atmosphere so as to produce molten copper; a soaking furnace connected to receive molten copper supplied from the melting furnace and adapted to maintain a predetermined temperature of the molten copper; a casting trough connected to receive molten copper supplied from the soaking furnace and configured to seal the molten copper supplied from the soaking furnace in a non-oxidizing atmosphere, and configured for transferring the molten copper to a turn-dish; a degasser provided in the casting trough and adapted for dehydrogenating the molten copper passing through the casting trough; an adder positioned for adding silver to the dehydrogenated molten copper; a continuous casting machine, including a belt caster, connected and adapted for continuously producing cast copper from the molten copper supplied from the turn-dish; and a rolling machine positioned for rolling the cast copper so as to produce the low-oxygen copper wire.
- 8. An apparatus for manufacturing a wire composed of a low-oxygen copper alloy, according to claim 7, wherein the degasser comprises a stirrer.
- 9. An apparatus for manufacturing a wire composed of a low-oxygen copper alloy, according to claim 8, wherein the stirrer comprises dikes positioned for causing a meandering the flow of the molten copper passing through the casting trough.
- 10. An apparatus for continuously manufacturing ingots of low-oxygen copper, comprising:
a melting furnace in which combustion may be performed in a reducing atmosphere so as to produce molten copper; a soaking furnace connected to receive molten copper supplied from the melting furnace and adapted to maintain a predetermined temperature of the molten copper; a casting trough connected to receive molten copper supplied from the soaking furnace and configured to seal the molten copper supplied from the soaking furnace in a non-oxidizing atmosphere, and configured for transferring the molten copper to a turn-dish; a degasser provided in the casting trough and adapted for dehydrogenating the molten copper passing through the casting trough; an adder positioned for adding phosphorus to the dehydrogenated molten copper; a continuous casting machine, including a belt caster, connected and adapted for continuously producing base cast copper from the molten copper supplied from the turn-dish; and a rolling machine positioned for rolling the base cast copper so as to produce the low-oxygen copper wire.
- 11. An apparatus for manufacturing a base low-oxygen copper material, according to claim 10, wherein the degasser is a stirrer.
- 12. An apparatus for manufacturing a base low-oxygen copper material, according to claim 11, wherein the stirrer comprises dikes positioned to cause a meandering the flow of the molten copper passing through the casting trough.
- 13. An apparatus for manufacturing a base low-oxygen copper material, according to claim 12, further comprising a cutter positioned to cut the base low-oxygen copper material to a predetermined length.
- 14. An apparatus for manufacturing a base low-oxygen copper material, according to claim 13, further comprising a washing positioned and adapted to wash the base low-oxygen copper material having a predetermined length.
Priority Claims (7)
Number |
Date |
Country |
Kind |
2000-48005 |
Feb 2000 |
JP |
|
2000-109827 |
Nov 2000 |
JP |
|
2000-109828 |
Apr 2000 |
JP |
|
2000-207488 |
Jul 2000 |
JP |
|
2000-207490 |
Jul 2000 |
JP |
|
2000-356325 |
Nov 2000 |
JP |
|
2000-356326 |
Nov 2000 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] The present application is based on Japanese Application 2000-109827, filed Apr. 11, 2000, which is hereby incorporated by reference in its entirety.