Claims
- 1. A drying section of a papermaking machine blow box assembly comprising:first and second drying cylinders for drying a moving web, and a wire for transporting the web running from said first cylinder to said second cylinder; a turning element, said wire passing around said turning element between said drying cylinders; a blow box positioned within a pocket defined by said cylinders, turning element, and wire within the papermaking machine drying section, said blow box ejecting air from said pocket and at least one of generating and maintaining an underpressure zone in at least part of said pocket; an interface between said underpressure zone and a volume outside said underpressure zone; at least one sealing element which has at least a portion which projects from said blow box toward said wire to a point a distance d from said wire, and which forms a seal between said underpressure zone and said outside volume at said interface including by blowing air from said blow box toward said wire; and said at least one sealing element connected to said blow box so that said at least a portion thereof may be moved away from said wire a distance d′ which is greater than d.
- 2. A blow box assembly recited in claim 1 wherein said at least one sealing element comprises a sealing blow nozzle articulated to said blow box by a link, said nozzle movable with said at least a portion of said sealing element.
- 3. A blow box assembly recited in claim 2 further comprising an actuator for moving said blow nozzle so that said at least a portion thereof moves between said distances d and d′.
- 4. A blow box assembly recited in claim 2 wherein sealing element has a free end with a convex surface, and wherein said air nozzle is formed by an outlet channel in said sealing element positioned with respect to said surface so that air from said air nozzle flows smoothly along said convex surface.
- 5. A blow box assembly recited in claim 2 wherein sealing element has a free end with a Coanda surface, and wherein said air nozzle is formed by an outlet channel in said sealing element positioned with respect to said surface so that air from said air nozzle flows smoothly along said Coanda surface.
- 6. A blow box assembly recited in claim 1 wherein said at least one sealing element comprises a plurality of sealing blow nozzles extending sequentially across the width of the moving web to be dried supported by said wire.
- 7. A blow box assembly recited in claim 1 wherein said sealing element comprises at least one stationary nozzle which blows air from said blow box toward said wire.
- 8. A blow box assembly recited in claim 1 wherein said wire comprises first and second wires, defining a twin-wire drying section.
- 9. A blow box assembly recited in claim 1 wherein said wire moves in a running direction into said pocket; and wherein said sealing element includes a first nozzle which blows air from said blow box in a direction opposite to the wire running direction so as to substantially prevent air from being transported into said pocket with said wire.
- 10. A blow box assembly recited in claim 9 wherein said wire comprises first and second wires, defining a twin wire drying section; and wherein said turning element comprises a turning roll; and wherein said blow box comprises a second nozzle adjacent said turning roll for blowing air against said turning roll to eject air from said underpressure zone past said turning roll.
- 11. A blow box assembly recited in claim 1 wherein d is between 3-15 mm, and wherein d′ is between about 20-30 mm.
- 12. A blow box assembly recited in claim 1 further comprising a spring for biasing said sealing element so that said sealing element is at said point a distance d from said wire.
- 13. A blow box assembly recited in claim 12 wherein said sealing element may be moved against said spring bias by an object moving past the sealing element, and wherein said distance d′>50 mm.
- 14. A blow box assembly recited in claim 1 wherein said blow box comprises first and second spaced blow box components, each component having at least one said sealing element therein; and a blow nozzle for blowing air through a space between said blow box components for ejecting air out of said pocket to maintain underpressure in said underpressure zone.
- 15. A blow box assembly recited in claim 14 wherein said wire has an exit side, and wherein said first component is on said wire exit side and a stationary main blow box structure extending across the web, and said second component comprises a wing-shaped structure turnably articulated to said first component and extending across the web, said second component having a smaller average cross-sectional area than said first component.
- 16. A blow box assembly recited in claim 14 wherein said first and second components are identical mirror images of each other; and further comprising a movable closing element for selectively closing said space between said blow box components.
- 17. A blow box assembly recited in claim 1 further comprising a cavity defined in said blow box; and wherein said sealing element is mounted in said cavity so that at least a portion thereof is movable into and out of said cavity.
- 18. A method of sealing a pocket defined by a wire running between first and second drying cylinders and a turning element in a drying section of a papermaking machine, the pocket including an underpressure zone at least one of generated or maintained by a blow box, and an interface provided between the underpressure zone and a volume outside the underpressure zone, said method comprising:(a) sealing the interface using at least one flexible sealing element having at least a portion thereof projecting from the blow box toward the wire to a point a distance d from the wire, and movable to a distance d′ from the wire where d′>d; and (b) blowing air through the at least one sealing element toward the wire so that the air is ejected from the pocket and at least one of generates and maintains underpressure in the underpressure zone.
- 19. A method as recited in claim 18 further comprising (c) moving the sealing element at least one portion between the points spaced d and d′ using an activator.
- 20. A method as recited in claim 19 wherein the sealing element is a sealing blow nozzle, and wherein (c) is practiced to turn the nozzle toward the blow box during tail threading of the wire in the papermaking machine.
- 21. A method as recited in claim 18 wherein the wire moves in a running direction into the pocket; and wherein (b) is practiced so as to blow air in a direction opposite to the wire running direction to prevent air from being transported into the pocket with the wire.
- 22. An arrangement for improving the runnability of a web being transported by a transport element on a first face thereof, comprising:a stationary frame located adjacent a second face of the transport element, opposite the first face, and spaced therefrom a distance D; a sealing element pivotally connected to the frame for pivotal movement of a free end thereof toward and away from the transport element second face; an air nozzle connected to said sealing element, which blows air from said sealing element toward the transport element; and a biasing element acting between said frame and said sealing element for biasing said free end of said sealing element toward the transport element so that said free end is spaced a distance d from the transport element, wherein D>d.
- 23. An arrangement as recited in claim 22 wherein said biasing element comprises a spring.
- 24. An arrangement as recited in claim 22 wherein said air nozzle is mounted adjacent said sealing element free end for movement therewith.
- 25. An arrangement as recited in claim 24 wherein said free end of said sealing element has a convex surface, and wherein said air nozzle is formed by an outlet channel in said sealing element positioned with respect to said surface so that air from said air nozzle flows smoothly along said convex surface.
- 26. A blow box assembly recited in claim 24 wherein sealing element has a free end with a Coanda surface, and wherein said air nozzle is formed by an outlet channel in said sealing element positioned with respect to said surface so that air from said air nozzle flows smoothly along said Coanda surface.
- 27. An arrangement as recited in claim 22 wherein said air nozzle is stationary so that said sealing element free end may move without moving said air nozzle.
- 28. An arrangement as recited in claim 22 further comprising an actuator for moving said sealing element against the bias of said bias element so that said free end is spaced a distance d from the transport element, wherein d′>d.
Priority Claims (2)
Number |
Date |
Country |
Kind |
971729 |
Apr 1997 |
FI |
|
971730 |
Apr 1997 |
FI |
|
CROSS REFERENCE TO RELATED APPLICATION
This application is U.S. national phase of International Application No. PCT/FI98/00360 filed Apr. 23, 1998.
US Referenced Citations (5)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
PCT/FI98/00360 |
Apr 1998 |
US |
Child |
09/420760 |
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US |