Claims
- 1. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace, the sintering furnace having a furnace conveyor moving from a furnace input to a furnace output, comprising:
a lower input refractory driver for unrolling a lower refractory material from an input refractory roll and feeding said refractory material to be disposed upon the furnace conveyor in proximity to the furnace input of the furnace; a lower output refractory driver for rolling said lower refractory material onto an output refractory roll from the furnace conveyor in proximity to the furnace output of the furnace; an input media drive for unrolling the multiple layers of media material from an input media roll and feeding said multiple layers of media material onto said lower refractory material; an output media drive for removing said multiple layers of media material from said lower refractory material and for rolling the multiple layers of media material onto an output media roll; an upper input refractory driver for unrolling an upper refractory material from an input refractory roll and feeding said refractory material to be disposed upon the multiple layers of media material disposed upon said lower refractory material in proximity to the furnace input of the furnace; an upper output refractory driver for rolling said upper refractory material onto an output refractory roll from said multiple layers of media material in proximity to the furnace output of the furnace; said upper refractory material providing a compressive force to said multiple layers of media material within the furnace; and a tension device cooperating with said upper and lower input refractory drivers for applying a tension acting upon opposed ends of said lower and upper refractory materials for maintaining a constant tension therebetween for maintaining a constant force on said upper and lower surfaces of said multiple layers of media material.
- 2. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 1, wherein the furnace conveyor is an endless belt conveyor disposed within a furnace and extending between the open furnace input and the open furnace output.
- 3. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 1, wherein the furnace comprises an open furnace input and an open furnace output; and
the furnace conveyor comprising an endless belt conveyor disposed within the furnace and extending between the open furnace input and the open furnace output.
- 4. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 1, including an input load drive for unrolling a load material from an input load roll and feeding said load material onto said upper refractory material for providing a load upon said multiple layers of media material; and
an output load drive for removing said load material from said upper refractory material and for rolling said load material onto an output load roll.
- 5. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 1, including a lateral sensor for adjusting the lateral position of said input and output refractory drives relative to the furnace conveyor.
- 6. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 1, including an input barrier drive for unrolling a barrier material from an input barrier roll and feeding said barrier material onto the furnace conveyor for providing a support to said lower refractory material; and
an output barrier drive for removing said barrier material from the furnace conveyor and for rolling said barrier material onto an output barrier roll.
- 7. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace, the sintering furnace having a furnace conveyor moving from a furnace input to a furnace output, comprising:
a lower input refractory driver for unrolling a lower refractory material from an input refractory roll and feeding said refractory material to be disposed upon the furnace conveyor in proximity to the furnace input of the furnace; a lower output refractory driver for rolling said lower refractory material onto an output refractory roll from the furnace conveyor in proximity to the furnace output of the furnace; an input media drive for unrolling the multiple layers of media material from input media rolls and feeding said multiple layers of media material onto said lower refractory material; an output media drive for removing said multiple layers of media material from said lower refractory material and for rolling the multiple layers of media material onto output media rolls; an upper input refractory driver for unrolling an upper refractory material from an input refractory roll and feedings said refractory material to be disposed upon the multiple layers of media material disposed upon said lower refractory material in proximity to the furnace input of the furnace; an upper output refractory driver for rolling said upper refractory material onto an output refractory roll from said multiple layers of media material in proximity to the furnace output of the furnace; said upper refractory material providing a compressive force to said multiple layers of media material within the furnace; a hanging sensor for sensing a catenary hang of said multiple layers of media material from said input media rolls; a control connected to said hanging sensor for powering said input media drive for unrolling the multiple layers of media materials in unison with the movement of the furnace conveyor and said lower and upper refractory materials for maintaining a constant catenary hang of said multiple layers of media material from said input media roll; and a tension device cooperating with said upper and lower input refractory drivers for applying a tension acting upon opposed ends of said lower and upper refractory materials for maintaining a constant tension therebetween for maintaining a constant force on said upper and lower surfaces of said multiple layers of media material.
- 8. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 7, wherein the furnace conveyor is an endless belt conveyor disposed within a furnace and extending between the open furnace input and the open furnace output.
- 9. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 7, wherein said hanging sensor includes a proximity sensor for remotely sensing the hang of the multiple layers of media material.
- 10. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 7, wherein the banging sensor includes a proximity sensor for remotely sensing the hang of the multiple layers of media material; and
said control powering said input media drive for unrolling the multiple layers of media material from input media rolls and feeding said multiple layers of media material onto said lower refractory material for maintaining a predetermined desired hang of the matrix of open metallic fibers between the cylinder and the conveyor.
- 11. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 7, wherein said hanging sensor sensing the catenary hang of the multiple layers of media material; and
said hanging sensor connected to said control for controlling said input media drive for maintaining a constant catenary hang of said media material between said input media rolls and said refractory material.
- 12. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 7, wherein the furnace comprises an open furnace input and an open furnace output; and
the furnace conveyor comprising an endless belt conveyor disposed within the furnace and extending between the open furnace input and the open furnace output.
- 13. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 7, including an input load drive for unrolling a load material from an input load roll and feeding said load material onto said upper refractory material for providing a load upon said multiple layers of media material; and
an output load drive for removing said load material from said upper refractory material and for rolling said load material onto an output load roll.
- 14. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 7, including a lateral sensor for adjusting the lateral position of said input and output refractory drives relative to the furnace conveyor.
- 15. An apparatus for continuously sintering a web of multiple layers of media material with a sintering furnace as set forth in claim 7, including an input barrier drive for unrolling a barrier material from an input barrier roll and feeding said barrier material onto the furnace conveyor for providing a support to said lower refractory material; and
an output barrier drive for removing said barrier material from the furnace conveyor and for rolling said barrier material onto an output barrier roll.
- 16. An apparatus for continuously sintering a plurality of web of media material with a sintering furnace, the sintering furnace having a furnace conveyor moving from a furnace input to a furnace output, comprising:
a lower input refractory driver for unrolling a lower refractory material from a lower input refractory roll and feeding said lower refractory material to be disposed upon the furnace conveyor in proximity to the furnace input of the furnace; a lower output refractory driver for rolling said lower refractory material onto a lower output refractory roll from the furnace conveyor in proximity to the furnace output of the furnace; a lower input media drive for unrolling a lower media material from a lower input media roll and feeding said lower media material onto said lower refractory material; a lower output media drive for removing said lower media material from said lower refractory material and for rolling said lower media material onto a lower output media roll; a first intermediate input refractory driver for unrolling a first intermediate refractory material from a first intermediate input refractory roll and feeding said first intermediate refractory material to be disposed upon said lower media material disposed upon said lower refractory material in proximity to the furnace input of the furnace; a first intermediate output refractory driver for rolling said first intermediate refractory material onto a first intermediate output refractory roll from said lower media material in proximity to the furnace output of the furnace; said first intermediate refractory material providing a compressive force to said lower media material within the furnace; an intermediate input media drive for unrolling an intermediate media material from an intermediate input media roll and feeding said intermediate media material onto said first intermediate refractory material; an intermediate output media drive for removing said intermediate media material from said first intermediate refractory material and for rolling said intermediate media material onto an intermediate output media roll; a second intermediate input refractory driver for unrolling a second intermediate refractory material from a second intermediate input refractory roll and feeding said second intermediate refractory material to be disposed upon said intermediate media material disposed upon said first intermediate refractory material in proximity to the furnace input of the furnace; a second intermediate output refractory driver for rolling said second intermediate refractory material onto a second intermediate output refractory roll from said intermediate media material in proximity to the furnace output of the furnace; said second intermediate refractory material providing a compressive force to said lower and intermediate media material within the furnace; an upper input media drive for unrolling an upper media material from an upper input media roll and feeding said upper media material onto said second intermediate refractory material; an upper output media drive for removing said upper media material from said second intermediate refractory material and for rolling said upper media material onto an upper output media roll; an upper input refractory driver for unrolling an upper refractory material from an upper input refractory roll and feeding said upper refractory material to be disposed upon said upper media material disposed upon said second intermediate refractory material in proximity to the furnace input of the furnace; an upper output refractory driver for rolling said upper refractory material onto an upper output refractory roll from said upper media material in proximity to the furnace output of the furnace; said upper refractory material providing a compressive force to said lower, intermediate and said upper media material within the furnace; and a tension device cooperating with said upper, first and second intermediate and said lower input refractory drivers for applying a tension acting upon opposed ends of said upper, first and second intermediate and said lower refractory materials for maintaining a constant tension therebetween for maintaining a constant force on said upper and lower surfaces of said lower, intermediate and upper media material.
- 17. An apparatus for continuously sintering a plurality of web media material with a sintering furnace as set forth in claim 16, wherein the furnace conveyor is an endless belt conveyor disposed within a furnace and extending between the open furnace input and the open furnace output.
- 18. An apparatus for continuously sintering a plurality of web media material with a sintering furnace as set forth in claim 16, wherein the furnace comprises an open furnace input and an open furnace output; and
the furnace conveyor comprising an endless belt conveyor disposed within the furnace and extending between the open furnace input and the open furnace output.
- 19. An apparatus for continuously sintering a plurality of web media material with a sintering furnace as set forth in claim 16, including an input load drive for unrolling a load material from an input load roll and feeding said load material onto said upper refractory material for providing a load upon said upper, intermediate and said lower media material; and
an output load drive for removing said load material from said upper refractory material and for rolling said load material onto an output load roll.
- 20. An apparatus for continuously sintering a plurality of web media material with a sintering furnace as set forth in claim 16, including a lateral sensor for adjusting the lateral position of said lower, first and second intermediate and said upper input and output refractory drives relative to the furnace conveyor.
- 21. An apparatus for continuously sintering a plurality of web media material with a sintering furnace as set forth in claim 16, including an input barrier drive for unrolling a barrier material from an input barrier roll and feeding said barrier material onto the furnace conveyor for providing a support to said lower refractory material; and
an output barrier drive for removing said barrier material from the furnace conveyor and for rolling said barrier material onto an output barrier roll.
- 22. An apparatus for continuously sintering a plurality of web media material with a sintering furnace, the sintering furnace having a furnace conveyor moving from a furnace input to a furnace output, comprising:
a lower input refractory driver for unrolling a lower refractory material from a lower input refractory roll and feeding said lower refractory material to be disposed upon the furnace conveyor in proximity to the furnace input of the furnace; a lower output refractory driver for rolling said lower refractory material onto a lower output refractory roll from the furnace conveyor in proximity to the furnace output of the furnace; a lower input media drive for unrolling a lower media material from a lower input media roll and feeding said lower media material onto said lower refractory material; a lower output media drive for removing said lower media material from said lower refractory material and for rolling said lower media material onto a lower output media roll; a first intermediate input refractory driver for unrolling a first intermediate refractory material from a first intermediate input refractory roll and feeding said first intermediate refractory material to be disposed upon said lower media material disposed upon said lower refractory material in proximity to the furnace input of the furnace; a first intermediate output refractory driver for rolling said first intermediate refractory material onto a first intermediate output refractory roll from said lower media material in proximity to the furnace output of the furnace; said first intermediate refractory material providing a compressive force to said lower media material within the furnace; an intermediate input media drive for unrolling an intermediate media material from an intermediate input media roll and feeding said intermediate media material onto said first intermediate refractory material; an intermediate output media drive for removing said intermediate media material from said first intermediate refractory material and for rolling said intermediate media material onto an intermediate output media roll; a second intermediate input refractory driver for unrolling a second intermediate refractory material from a second intermediate input refractory roll and feeding said second intermediate refractory material to be disposed upon said intermediate media material disposed upon said first intermediate refractory material in proximity to the furnace input of the furnace; a second intermediate output refractory driver for rolling said second intermediate refractory material onto a second intermediate output refractory roll from said intermediate media material in proximity to the furnace output of the furnace; said second intermediate refractory material providing a compressive force to said lower and intermediate media material within the furnace; an upper input media drive for unrolling an upper media material from an upper input media roll and feeding said upper media material onto said second intermediate refractory material; an upper output media drive for removing said upper media material from said second intermediate refractory material and for rolling said upper media material onto an upper output media roll; an upper input refractory driver for unrolling an upper refractory material from an upper input refractory roll and feeding said upper refractory material to be disposed upon said upper media material disposed upon said second intermediate refractory material in proximity to the furnace input of the furnace; an upper output refractory driver for rolling said upper refractory material onto an upper output refractory roll from said upper media material in proximity to the furnace output of the furnace; said upper refractory material providing a compressive force to said lower, intermediate and said upper media material within the furnace; a plurality of hanging sensors for sensing the catenary hangs of said lower, intermediate and said upper media materials from said lower, intermediate and said upper input media rolls; a control connected to said hanging sensors for powering said lower, intermediate and said upper input media drives for unrolling said lower, intermediate and said upper media materials in unison with the movement of the furnace conveyor and said lower, first and second intermediate and upper refractory materials for maintaining constant catenary hangs of said lower, intermediate and said upper media materials from said lower, intermediate and said upper input media rolls; and a tension device cooperating with said upper, first and second intermediate and said lower input refractory drivers for applying a tension acting upon opposed ends of said upper, first and second intermediate and said lower refractory materials for maintaining a constant tension therebetween for maintaining a constant force on said upper and lower surfaces of said lower, intermediate and upper media material.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation-in-part of U.S. patent application Ser. No. 09/437,803 filed Nov. 10, 1999 now U.S. Pat. No. 6,437,803. All subject matter set forth in application Ser. No. 09/437,803 is hereby incorporated by reference into the present application as if fully set forth herein.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
09437803 |
Nov 1999 |
US |
Child |
10085816 |
Oct 2001 |
US |