Claims
- 1. A method of treatment of an endless web of textile material comprising
- guiding the endless web over a first rotating roller and a second rotating roller, disposed in series in advance moving direction of the endless web disposed within a treatment chamber for drying the endless web, and wherein the second rotating roller is a rear rotating roller;
- withdrawing generated exhaust vapors;
- separating the withdrawn and generated exhaust vapors in a separator into gas and liquid;
- returning the liquid resulting in the separator into the treatment chamber;
- passing the gases resulting in the separator to a vacuum generator;
- returning the gases, released by the vacuum generator at a discharge region of the endless web in the area of the rear rotating roller, into a treatment region.
- 2. The method according to claim 1, further comprising
- spraying the returned gases with nozzles onto the endless web;
- passing the returned gases in a direction oppositely to the advance moving direction of the endless web from the discharge region of the endless web up to an entrance region of the endless web through a heated flow channel surrounding the first rotating roller and the second rotating roller and sealed towards the outside; and
- withdrawing the returned gases after exiting from this flow channel together with the generated exhaust vapors.
- 3. The method according to claim 1, further comprising,
- operating rollers guiding the endless web without supplying heat to the first rotating roller and the second rotating roller;
- entering gas released from the vacuum generator into a heat exchanger furnished with a water feed;
- generating hot liquid by transferring heat from the gas released from the vacuum generator to the water; and
- venting generated exhaust air into the ambient open air.
- 4. The method according to claim 1, further comprising
- generating heat at the rear rotating roller guiding the endless web for drying the endless web;
- wherein the first rotating roller is a front rotating roller, and further comprising
- deflecting the endless web in an entrance region of the endless web onto the front rotating roller;
- passing the endless web over an exhaust tube;
- sucking off exhaust vapors from the endless web with the exhaust tube.
- 5. The method according to claim 1, further comprising
- forming one of the first rotating roller and the second rotating roller as a suction roller;
- axially withdrawing exhaust vapors from the suction roller;
- entering returned gases into an axial region of the rear rotating roller.
- 6. A method of treatment of an endless web of textile material, where the endless web is led over deflection rollers within a treatment chamber, wherein generated exhaust vapors are withdrawn by way of a vacuum and are separated by a separator into gas and liquid, wherein the liquid is returned into the treatment chamber, wherein, for drying a textile web, the endless web is led over a first rotating roller and a second rotating roller, disposed in series in advance moving direction of the endless web, wherein the second rotating roller is a rear rotating roller, wherein the exhaust vapors are withdrawn by a vacuum generator, wherein the exhaust vapors are passed through the separator, where the gases are passed from the separator to the vacuum generator and are then returned at a discharge region of the endless web by the rear rotating roller into a treatment region.
- 7. The method according to claim 6, wherein the returned gases are passed in a direction oppositely to the advance moving direction of the endless web from the discharge region of the endless web up to the entrance region of the endless web through a heated flow channel, surrounding the first rotating roller and the second rotating roller and sealed towards the outside, and wherein the returned gases are withdrawn after exiting from this flow channel together with the formed exhaust vapors;
- wherein the returned gases are sprayed with nozzles onto the endless web;
- wherein the gas, withdrawn from the vacuum generator, is completely or in part returned into the treatment chamber;
- wherein the first rotating roller and the second rotating roller are operated without heating.
- 8. The method according to claim 6, wherein the gas, withdrawn from the vacuum generator, is completely or in part entered into a heat exchanger furnished with a water feed, and wherein the thereby generated hot liquid is completely or in part passed to a user, and wherein the generated exhaust air is completely or in part vented into the ambient open air;
- wherein the the first rotating roller and the second rotating roller are furnished with heating and are operated as drying cylinders;
- wherein the exhaust vapors are sucked off from the endless web by way of one or several exhaust tubes, wherein the first rotating roller is a front rotating roller, wherein the endless web passes in the entrance region of the endless web onto the front rotating roller, and wherein the endless web runs over the exhaust tubes.
- 9. The method according to claim 6 for treating an endless web of elastic knitted fabric, wherein the exhaust vapors are axially withdrawn from the first rotating roller upon formation of the first rotating roller and the second rotating roller as suction rollers or sieve rollers, and wherein the returned gases or parts of the returned gases are entered into the axis of the rear rotating roller;
- wherein at least one of the first rotating roller and of the second rotating roller is furnished without heating, and wherein at least the second rotating roller is operated as a heated drying cylinder.
- 10. An apparatus for treating an endless web of textile material led over deflection rollers within a treatment chamber, including
- a treatment chamber;
- a plurality of deflection rollers disposed within the treatment chamber for guiding and treating the endless web;
- a first rotating roller, disposed in series as seen in advance moving direction of the endless web between the deflection rollers, for guiding and treating the endless web and for drying of the endless web;
- an exhaust device connected to the treatment chamber for discharging formed exhaust gases;
- an exhaust line connected to the exhaust device;
- a separator connected to the exhaust line for withdrawing the formed exhaust gases;
- a gas exhaust line connected to a head of the separator;
- a liquid line connected to a floor of the separator;
- a pump disposed in the liquid line and feeding a connection of the liquid line to the treatment chamber;
- a vacuum generator connected to the gas exhaust line; and
- a gas return line connected to the vacuum generator and to the treatment chamber.
- 11. The apparatus according to claim 10, further comprising
- a distributor box with exit nozzles disposed at an end of the gas return line on a side of the treatment chamber, wherein exit openings of the exit nozzles are directed onto the endless web;
- a second rotating roller sequentially following to the first rotating roller;
- a heatable double-walled sheet metal jacket having baffles disposed inside the sheet metal jacket surrounding the first rotating roller at a distance and surrounding the second rotating roller at a distance and thereby forming a flow channel between the rotating rollers and the sheet metal jacket;
- a first lip seal furnished to the sheet metal jacket of the second rotating roller in a region of a discharge of the endless web;
- a second lip seal furnished to the sheet metal jacket of the second rotating roller at an input of an endless web entrance region of the second rotating roller;
- a third lip seal furnished to the sheet metal jacket of the second rotating roller at an output of an endless web exit region of the first rotating roller.
- 12. The apparatus according to claim 10, further comprising
- a second rotating roller sequentially following to the first rotating roller, wherein the first rotating roller and the second rotating roller are formed as sieve rollers, wherein the exhaust device is coordinated to the endless web in a region of the first rotating roller, wherein the exhaust device is connected to the exhaust line through branch channels, wherein one of the deflection rollers is furnished between the first rotating roller and the second rotating roller in a lower part of the treatment chamber;
- an axial exhaust furnished to the first rotating roller;
- an axial feed furnished to the second rotating roller;
- a heatable, double-walled sheet metal jacket having baffles disposed inside the sheet metal jacket and adapted to the rotating rollers, thereby forming a flow channel in an upper part between the first rotating roller, the second rotating roller, and the sheet metal jacket, and said sheet metal jacket surrounding the first rotating roller and the second rotating roller at a distance;
- a floor tub covering a lower part of the first rotating roller and of the second rotating roller;
- a branch line branching off from the gas return line, and wherein the branch line is led to the axial feed of the second rotating roller;
- a first valve placed in the gas return line;
- a second valve placed in the branch line;
- a distributor box disposed inside the sheet metal jacket.
- 13. The apparatus according to claim 10, further comprising
- a second branch line branching off from the gas return line;
- a heat exchanger, wherein the second branch line connects by way of a perforated tube to a floor of the heat exchanger;
- a fresh water feed connected to the heat exchanger for feeding fresh water to the heat exchanger;
- a distributor plate having microfine openings for generating a fine distribution of the gas from the gas return line with the fresh water from the fresh water feed;
- a discharge line for hot liquid is connected to the heat exchanger in a region of the distributor plate;
- an exhaust air line connected to the heat exchanger and led above the distributor plate into the ambient open air;
- a third branch line branching off from the exhaust air line; and
- a connection line connecting the third branch line to the gas return line.
- 14. An apparatus for treating an endless web of textile material led over deflection rollers within a treatment chamber, including
- a treatment machine for treating an endless web, which is led over deflection rollers within the treatment chamber, and wherein an exhaust device is connected to the treatment chamber for discharging the formed exhaust vapors,
- wherein a first rotating roller and a second rotating roller (16, 17, 48, 52) are disposed successively in series as seen in advance moving direction of the endless web between the deflection rollers (10 through 14, 44, 45) for guiding and treating the endless web and for drying the endless web, wherein an exhaust line (32) is connected to a separator (33) for withdrawing the formed exhaust gases, wherein the separator (33) is connected at its head to a gas exhaust line (38), and wherein the separator (33) is connected at its floor (34) to a liquid line (36), wherein the gas exhaust line (38) is connected to a vacuum generator (39), and wherein the liquid line (36) furnished with a pump (37) is connected to a user (1), and wherein a gas return line (41) is disposed between the vacuum generator (39) and the treatment chamber (1).
- 15. The apparatus according to claim 14, wherein an end of the gas return line (41) on the treatment side of the chamber is furnished with a distributor box (42) with exit nozzles (43), wherein exit openings of the exit nozzles (43) are directed onto the endless web (3);
- wherein the rollers (16, 17) are surrounded at a distance in each case by a heatable double-walled sheet metal jacket (20, 21) having baffles (96) disposed inside the sheet metal jacket (20, 21), thereby forming a flow channel (25) between the first rotating roller, the second rotating roller (16, 17) and the sheet metal jacket (20, 21), wherein the sheet metal jacket (20) of the first roller (16) is furnished with a lip seal (22) in a discharge region of the endless web (3), wherein the second rotating roller is a rear rotating roller, and wherein the sheet metal jacket (21) of the rear rotating roller (17) is furnished with a lip seal (23) at an input side entrance region, and wherein the sheet metal jacket (21) is furnished with a lip seal (24) at an output side exit region of the endless web (3).
- 16. The apparatus according to claim 14, wherein one or several exhaust pipes (26, 27) are coordinated to the endless web (3) in a region of the first rotating roller (16), wherein the exhaust pipes (26, 27) are connected to the exhaust line (32) through branch channels (28, 29).
- 17. The apparatus according to claim 14, wherein the endless web is an endless web of elastic knitted fabric, wherein the first rotating roller and the second rotating roller (48, 52) are surrounded at a distance with a heatable, double-walled sheet metal jacket (46) having baffles disposed inside the sheet metal jacket (46) and adapted to the first rotating roller and the second rotating roller (48, 52), thereby forming a flow channel (75) in the upper part between the first rotating roller and the second rotating roller (48, 52) and the sheet metal jacket (46), wherein the lower part of the first rotating roller and the second rotating roller (48, 52) is covered by a floor tub (58), and wherein a further deflection roller (44) is provided between the first rotating roller and the second rotating roller (48, 52) in the lower part;
- wherein the first rotating roller and the second rotating roller (48, 52) are formed as suction rollers or sieve rollers, wherein the first rotating roller is a front roller, and wherein the front roller (48) is furnished with an axial exhaust (51), and wherein the rear rotating roller (52) is furnished with an axial feed (54);
- wherein a branch line (55) branches off from the gas return line (41), wherein the branch line (55) is led to the axial feed (54) of the roller (52), and wherein the gas return line (41) and the branch line (55) are in each case furnished with a valve (56, 57).
- 18. The apparatus according to claim 14, further comprising
- a distributor box (42) disposed inside a sheet metal jacket (21 or, respectively, 46);
- wherein a further branch line (63) branches off from the gas return line (41), wherein the further branch line (63) enters by way of a perforated tube (64) into a floor of a heat exchanger (66) with a fresh water feed (67) and furnished with a distributor plate (69) having openings, wherein a discharge line (73) for hot liquid is furnished in a region of the distributor plate (69);
- wherein an exhaust air line (70) is furnished and led above the distributor plate (69) into the ambient open air;
- wherein the distributor plate (69) is furnished with microfine openings.
- 19. The apparatus according to claim 18, wherein a branch line (71) branches off from the exhaust air line (70), wherein the branch line (71) is connected to the gas return line (41).
Priority Claims (1)
Number |
Date |
Country |
Kind |
195 19 551.5 |
May 1995 |
DEX |
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CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part application of another application filed Oct. 12, 1995 and bearing Ser. No. 08/542,389. The entire disclosure of this latter application, including the drawings thereof, is hereby incorporated in this application as if fully set forth herein.
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Continuation in Parts (1)
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Number |
Date |
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Parent |
542389 |
Oct 1995 |
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