Claims
- 1. A furnace system for partially carbonizing oxidized fibers, comprising:
- a furnace having opposite ends thereof and including an interior heating enclosure, the furnace and enclosure being configured to pass a fiber tow therethrough along a generally planar fiber tow path, and including seal means at the opposite ends, the generally planar fiber tow path extending in a longitudinal direction along a length thereof between the opposite ends;
- fiber tow tensioning apparatus with the generally planar fiber tow path;
- hot gas source means for producing a thin flowing sheet of heated inert gas in the longitudinal direction along a portion of the length of the generally planar fiber tow path between the seal means, the hot gas source means introducing the inert gas into the generally planar fiber tow path adjacent one of the opposite ends and in the longitudinal direction so that the heated inert gas flows along a substantial portion of the length of the generally planar fiber tow path between the opposite ends with the thin flowing sheet of heated inert gas being generally parallel to the generally planar fiber tow path and the hot inert gases thereof impinging tangentially on the general planar fiber tow path;
- means disposed between the furnace and heating enclosure for heating an interior of the heating enclosure to in the range of 300.degree. C. to 700.degree. C. in a midregion of the furnace between the opposite ends; and
- means defining exit port means adjacent the midregion of the furnace in communication with the interior of the heating enclosure for withdrawing gases therefrom.
- 2. A system as set forth in claim 1 above, wherein the generally planar fiber tow path has a pair of opposite side edges thereof, the heating enclosure has an interior thereof and the furnace further includes manifold means disposed along the opposite side edges of the generally planar fiber tow path and in communication with both the interior of the heating enclosure and the exit port means.
- 3. A furnace system for partially carbonizing oxidized acrylic fibers without redeposition of volatiles and tars on the fibers comprising:
- a vertical furnace structure having upper and lower portions thereof and including entrance and exit apertures in the upper and lower portions respectively and means for moving a distributed sheet tow of oxidized fibers having a pair of opposite sides thereof upwardly through the furnace structure between the entrance and exit apertures while maintaining tension on the fibers of the tow sufficient to stretch the fibers of the tow in the range of 5-20% under given temperature conditions in the furnace structure;
- entrance housing means disposed adjacent the entrance aperture and including entrance seal means positioned adjacent the entrance aperture and disposed to pass the sheet tow of oxidized fibers without ingress of exterior gases, the entrance housing means including a furnace extension section between a bottom of the furnace structure and the entrance seal means;
- exit housing means disposed adjacent the exit aperture and including exit seal means positioned adjacent the exit aperture and disposed to pass the sheet tow of oxidized fibers without ingress of exterior gases, the exit housing means including a furnace extension section between a top of the furnace structure and the exit seal means;
- heating enclosure means located inside of the furnace structure and encompassing the sheet tow of oxidized fibers within an interior of the heating enclosure means for heating an atmosphere within the interior of the heating enclosure means to a midregion temperature in the range of about 350.degree. C. to about 620.degree. C.; and
- means disposed adjacent the entrance aperture and within the interior of the heating enclosure means for upwardly injecting heated inert gas in a temperature range in excess of 400.degree. C. adjacent the opposite sides of the sheet tow of oxidized fibers.
- 4. Apparatus for producing carbon-containing fibers which comprises:
- an enclosed insulated body portion having a hollow interior at an inner wall thereof, the hollow interior having a middle zone thereof;
- means for advancing a plurality of fibers substantially centrally through the hollow interior of said body portion between entry and exit ends of said body portion;
- said advancing means including a first gas seal spaced from the entry end of said body portion externally thereof and a second gas seal spaced from the exit end of said body portion externally thereof;
- enclosure means having a hollow interior and disposed about the plurality of fibers between the first and the second gas seals and within the hollow interior of said body portion;
- gas sparger means positioned within the hollow interior of the enclosure means adjacent the entry end of said body portion for introducing a gaseous medium into the hollow interior of said enclosure means in a direction from the entry end to the exit end, for impingement on said plurality of fibers and for sweeping off-gassing products away from said plurality of fibers;
- means for heating the hollow interior of said enclosure means;
- gas outlet ports adjacent the inner wall of said body portion and positioned intermediate the entry and exit ends of said body portion in communication with the hollow interior of the enclosure means; and
- gas discharge duct means communicating with said outlet ports and disposed adjacent the inner wall of said body portion.
- 5. The apparatus of claim 4, said enclosure means including a first constricted extension between said second gas seal and the exit end of said body portion and arranged for passage of said fibers therethrough, said constricted extension cooling the fibers and gases and preventing condensing of the off-gassing products from said plurality of fibers in said gas seals.
- 6. The apparatus of claim 4, including baffle means located within the hollow interior of said body portion between said gas outlet ports and the exit end to substantially prevent off-gassing in the middle zone of the hollow interior of said body portion from proceeding to the exit end of said body portion.
- 7. The apparatus of claims 4, wherein said enclosure means encompasses the plurality of fibers along the hollow interior of the body portion and wherein the means for heating are disposed between the body portion and the enclosure means.
- 8. The system of claim 4, including means for heating the gaseous medium prior to introduction into said gas superior means.
- 9. The apparatus of claim 4, including gas discharge manifold means within the hollow interior
- gas outlet means adjacent the inner wall of said furnace and positioned intermediate the first end and the second end of said furnace along the interior enclosure and communicating with the hollow interior of the interior enclosure; and
- a baffle located within the hollow interior of said interior enclosure adjacent said gas outlet means to substantially prevent off-gassing in the middle zone of the hollow interior of said interior enclosure from proceeding to the end of the hollow interior.
- 10. The apparatus in claim 9, including valve means in said gas discharge duct means for balancing the flow of gases within said enclosure means relative to said plurality of fibers passing through said body portion, to thereby effect uniform flow of gases around said plurality of fibers.
- 11. The apparatus of claim 10, including an afterburner, said gas discharge duct means communicating with said afterburner for burning volatiles and tars in said gas discharge duct means, and heat exchange means in said afterburner for heating the gaseous medium introduced into said gas sparger means.
- 12. The apparatus of claim 4, said enclosure means including
- a first constricted extension between said first gas seal and the entry end of said body portion adapted for passage of said fibers therethrough and a second constricted extension between said second gas seal and the exit end of said body portion adapted for passage of said fibers therethrough, said constricted extensions preventing condensing of the off-gassing products from said plurality of fibers in said first and second gas seals; and
- means associated with each of said first and second gas seals for maintaining relatively low temperature levels at the entry and exit portions.
- 13. The apparatus of claim 12, wherein said means for maintaining relatively low temperature levels comprise water cooled means and wherein said first and second gas seals comprise means for injecting relatively low temperature inert gas at positive pressure relative to ambient.
- 14. The apparatus of claim 13, including valve means in said gas discharge duct means for balancing the flow of gases within said body portion relative to opposite sides of said plurality of fibers passing through said body portion, to thereby effect uniform flow of gases around said plurality of fibers, means for heating the gaseous medium introduced into said gas sparger means, an afterburner, said gas discharge manifold means communicating with said afterburner for burning volatiles and tars in said gas discharge manifold means, and heat exchange means in said afterburner for heating said gaseous medium introduced into said gas sparger means.
- 15. The apparatus of claim 4, including means for maintaining said plurality of fibers under tension during passage of said plurality of fibers through said body portion.
- 16. Apparatus for producing carbon-containing fibers which comprises:
- an enclosed insulated heating furnace having an inner wall and including an interior enclosure having a hollow interior with a middle zone and an end thereof for passage of a tow of fibers through the hollow interior along a path of travel for the tow of fibers, the tow of fibers having a pair of opposite edges;
- means for guiding said tow of fibers substantially centrally through said interior enclosure within the furnace;
- first gas seal means disposed adjacent a first end of said furnace and second gas seal means adjacent a second end of said furnace opposite the first end;
- a first constricted enclosure between said first gas seal means and the first end of said furnace adapted for passage of said tow of fibers therethrough and a second constructed enclosure between said second gas seal means and the second end of said furnace adapted for passage of said tow of fibers therethrough;
- gas sparger means positioned adjacent at least one of the first and second ends of said furnace for introducing a gaseous medium into said interior enclosure, for impingement of said tow of fibers, and for sweeping off-gassing products away from said tow of fibers;
- heating means in the furnace adjacent said interior enclosure for heating the interior of the interior enclosure to heat the fibers in a midregion of the furnace; to opposite sides of the path of travel for said tow of fibers through said furnace, to thereby effect uniform flow of gases around said tow of fibers.
- 17. Apparatus as set forth in claim 16 above, wherein said gas outlet means comprises a pair of manifolds each disposed along a different side of the interior enclosure parallel to and adjacent a different one of the pair of opposite edges of the tow of fibers, and gas ducting means coupled to the pair of manifolds and extracting gases therein outwardly from the furnace.
- 18. The apparatus of claim 17, said gas sparger means being in the form of a pair of parallel sparger bars positioned horizontally adjacent the first end of said furnace, and positioned on opposite sides of the path of travel for said tow of fibers through said furnace.
- 19. The apparatus of claim 18, including valve means in said gas ducting means for balancing the flow of gases from the hollow interior of said interior enclosure relative of the body portion and coupled to the gas outlet ports, said gas discharge manifold means being in communication with the gas discharge duct means.
- 20. The apparatus of claim 19, wherein the gas seal means each comprise a pair of water cooled tubes positioned on opposite sides of the tow of fibers and a pair of cold nitrogen spargers on opposite sides of the tow of fibers, the water cooled tubes being closest to the furnace and the spargers providing positive pressure relative to ambient, and wherein the gas seal means further include means for enlarging the relative spacings between the elements of each pair to provide room for threading the tow of fibers therebetween prior to operation of the apparatus.
- 21. A furnace system for partially carbonizing oxidized fibers to enable more efficient and reliable subsequent carbonization comprising;
- a principal heating enclosure disposed along and about a generally planar path along which oxidized fibers move as a tow between opposite first and second ends of the heating enclosure within a hollow interior of the heating enclosure having an intermediate region thereof;
- means for feeding the fibers as a tow along the generally planar path through the heating enclosure between the opposite first and second ends of the heating enclosure;
- first fiber heating means comprising means for supplying heated inert gas disposed adjacent the fibers and adjacent the first end of the enclosure along the generally planar path and including means for directing hot inert gases along the fibers into communication with the fibers, the first fiber heating means directing a thin flowing sheet of the heated inert gas along a portion of a length of the tow between the opposite first and second ends of the heating enclosure, the thin flowing sheet being generally parallel to the tow with the hot gases thereof impinging on the tow of fibers in generally tangential fashion in a direction along the generally planar path from the first end to the second end of the heating enclosure;
- second fiber heating means disposed along the generally planar path for increasing the temperature of the fibers above the temperature of the hot inert gases within the heating enclosure;
- gas exhaust means in communication with the hollow interior of the heating enclosure for withdrawing off-gasses products and gases from contact with the fibers in the intermediate region of the hollow interior of the heating enclosure; and
- seal means disposed at the opposite first and second ends of the heating enclosure for substantially blocking the flow of exterior air into the hollow interior of the heating enclosure.
- 22. Apparatus as set forth in claim 21 above, wherein the first fiber heating means comprises elongated spargers disposed transverse to the generally planar path and substantially parallel thereto.
- 23. A furnace system for partially carbonizing previously oxidized fibers to enable more efficient and reliable subsequent carbonization comprising:
- a principal heating enclosure disposed along and about an axis along which oxidized fibers move and having an interior with an intermediate region and opposite first and second end portion of the enclosure;
- means for feeding a tow of the fibers distributed in a planar sheet along the axis through the heating enclosure;
- first fiber heating means comprising elongated spargers disposed transverse to the planer sheet and substantially parallel thereto for supplying heated inert gas disposed adjacent the fibers and adjacent the first end portion of the heating enclosure along the axis and including means for directing hot inert gases along the fibers into communication with the fibers;
- second fiber heating means disposed along the axis for increasing the temperature of the fibers above the temperature of the hot inert gases within the heating enclosure;
- gas exhaust means in communication with the interior of the heating enclosure for withdrawing off-gassed products and gases from contact with the fibers in the intermediate region of the interior of the heating enclosure;
- seal means disposed at opposite ends of the heating enclosure for substantially blocking the flow of exterior air into the interior of the heating enclosure;
- end enclosures at the opposite first and second ends of the heating enclosure, the end enclosures having substantially smaller cross-sectional areas than the heating enclosure;
- the seal means comprising pairs of tubes straddling the axis;
- variable speed tensioning stands coupled to the fibers moving through the furnace adjacent the opposite first and second ends of the furnace system; and
- means for driving the tensioning stands with differential velocities such that stretch in the range of 5-20% is imparted to the fibers passing through the furnace system.
- 24. Apparatus as set forth in claim 23 above, wherein the means for supplying heated inert gas comprises preheating means for preheating inert gas and means for mixing lower temperature inert gas with preheated inert as to provide a selected inert gas temperature level at the fibers, and wherein the gas exhaust means comprise insulated gas piping systems communicating with the intermediate region of the interior of the heating enclosure at a number of different portions of the heating enclosure.
- 25. A furnace system for partially carbonizing oxidized acrylic fibers without redeposition of volatiles and tars on the fibers comprising:
- a furnace structure having opposite entrance and exit portions thereof and including entrance and exit apertures in the entrance and exit portions respectively and means for moving a distributed sheet tow of oxidized fibers having a pair of opposite sides thereof through the furnace structure between the entrance and exit apertures while maintaining tension on the fibers of the tow sufficient to stretch the fibers of the tow in the range of 5-20% under given temperature conditions in the furnace structure;
- entrance housing means disposed adjacent the entrance aperture and including entrance seal means positioned adjacent the entrance aperture and disposed to pass the sheet tow of oxidized fibers without ingress of exterior gases, the entrance housing means including a furnace extension section between a first end of the furnace structure and the entrance seal means;
- exit housing means disposed adjacent the exit aperture and including exit seal means positioned adjacent the exit aperture and disposed to pass the sheet tow of oxidized fibers without ingress of exterior gases, the exit housing means including a furnace extension section between a second end of the furnace structure opposite the first end and the exit seal means;
- heating enclosure means located inside of the furnace structure and encompassing the sheet tow of oxidized fibers within an interior of the heating enclosure means for heating an atmosphere within the interior of the heating enclosure means to a midregion temperature in the range of about 350 .degree. C. to about 620.degree. C.; and
- means disposed adjacent the entrance aperture and within the interior of the heating enclosure means for injecting heated inert gas generally parallel to the generally planar sheet tow wherein the hot gases thereof impinge tangentially on the opposite sides of the generally planar sheet tow of oxidized fibers.
- 26. The apparatus of claim 25, wherein the means disposed adjacent the entrance aperture and within the interior of the heating enclosure means injects inert gas heated to a temperature sufficient to produce an onset of decomposition of the distributed sheet tow of oxidized fibers.
- 27. Apparatus for producing carbon-containing fibers which comprises:
- an enclosed insulated body portion having a hollow interior at an inner wall thereof, the hollow interior having a middle zone thereof;
- means for advancing a plurality of fibers substantially centrally through the hollow interior of said body portion between entry and exit ends of said body portion;
- said advancing means including a first gas seal spaced from the entry end of said body portion externally thereof and a second gas seal spaced from the exit end of said body portion externally thereof;
- enclosure means having a hollow interior and disposed about the plurality of fibers between the first and the second gas seals and within the hollow interior of said body portion;
- means positioned within the hollow interior of the enclosure means adjacent the entry end of said body potion for introducing a gaseous medium into the hollow interior of said enclosure means in a direction from the entry end to the exit end, for impingement tangentially on said plurality of fibers in a direction along the generally planar path from the entry end to the exit end of the hollow interior and for sweeping off-gassing products away from aid plurality of fibers;
- means for heating the hollow interior of said enclosure mean;
- gas outlet ports adjacent the inner wall of said body potion and positioned between the entry and exit ends of said body portion in communication with the hollow interior of the enclosure means; and
- gas discharge duct means communicating with said outlet ports and disposed adjacent the inner wall of said body portion.
Parent Case Info
This is a continuation of co-pending application Ser. No. 07/363,365 filed on May 31, 1989 now abandoned which is a continuation of application Ser. No. 07/147,105 filed Jan. 20, 1988 now abandoned which is a continuation of Ser. No. 06/865,165 filed May 20, 1986 and now abandoned, which is a divisional of application Ser. No. 06/742,103 filed on Jun. 5, 1985 (now issued as U.S. Pat. No. 4,610,860), which is a continuation of application Ser. No. 06/541,652 filed Oct. 13, 1983 now abandoned.
US Referenced Citations (8)
Divisions (1)
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Number |
Date |
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Parent |
742103 |
Jun 1985 |
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Continuations (4)
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Number |
Date |
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363365 |
May 1989 |
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Parent |
147105 |
Jan 1988 |
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Parent |
865165 |
May 1986 |
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Parent |
541652 |
Oct 1983 |
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