Claims
- 1. A web former in a paper machine including a headbox for feeding a pulp suspension jet, comprising
- a carrying wire and a covering wire defining a twin-wire forming zone in which a web is dewatered, the pulp suspension jet being fed from the headbox onto a loop of said carrying wire, the web being separated from said covering wire after said twin-wire zone and transferred on said carrying wire to a pick-up point, and
- guide rolls and web-forming rolls for guiding said covering wire in a loop, said twin-wire zone beginning on or after a first one of said guide rolls arranged inside said loop of said covering wire,
- said twin-wire zone including
- a first forming shoe provided with a ribbed deck and arranged inside a loop of said covering wire or inside a loop of said carrying wire,
- a dewatering unit comprising forming ribs and arranged inside said loop of said covering wire or inside said loop of said carrying wire,
- a web forming unit comprising forming ribs and arranged opposite said dewatering unit inside the other of said loops from said dewatering unit,
- loading means for loading said forming ribs in at least one of said dewatering unit or said web forming unit, said loading means comprising a pressure-medium hose arrangement, and
- a spring blade wire loading device arranged after said first forming shoe and inside a loop of one of said wires, said spring blade wire loading device comprising a frame part, a flexible plate-shaped spring blade having a dragging area structured and arranged to drag against an inner face of said one of said wires and to follow variations in the thickness of the web, said spring blade being attached from outside its dragging area to said frame part, and spring blade loading means arranged in association with said spring blade for deflecting said spring blade into a curved profile to produce the dragging area and to apply an intensive pressure pulse to the web.
- 2. The web former of claim 1, wherein the linear load of the pressure pulse applied by said spring blade is from about 0.2 kN/m to about 3 kN/m, and/or wherein the length of the pressure pulse applied by said spring blade in a machine direction is from about 2 mm to about 10 mm.
- 3. The web former of claim 1, wherein said wire loading device is arranged in an area in which the dry solids content of the web is from about 1.2% to about 3% such that by means of the pressure pulse applied by said spring blade in said wire loading device, the formation of the web is improved and the dewatering of the web is promoted.
- 4. The web former of claim 1, wherein the linear load of the pressure pulse of said spring blade is adjustable in a cross-machine direction in order to control profiles of dewatering of the web, distribution of fillers in the web, formation of the web, and/or retention of water in the web in the cross-machine direction.
- 5. The web former of claim 1, wherein said ribbed deck is a curved ribbed deck having a radius of curvature in a range of about 3 m to about 8 m.
- 6. The web former of claim 1, wherein said first forming shoe and said wire loading device are arranged inside said loop of said carrying wire.
- 7. The web former of claim 1, further comprising a second forming shoe arranged after said dewatering unit and said web forming unit in the running direction of the web, said second forming shoe having a ribbed deck for guiding said twin-wire zone along a curved path.
- 8. The web former of claim 1, wherein the web former is a hybrid former and said covering wire is arranged above said carrying wire, said loop of said carrying wire having a substantially horizontal initial part after said headbox, said first forming shoe and said web forming unit being arranged inside said loop of said carrying wire, further comprising
- dewatering members arranged in said initial part of said carrying wire for draining water from the web through said carrying wire, and
- a foil rib for removing water from the web through said covering wire, said dewatering unit comprising a first suction box having an associated drain duct, said foil rib being connected to said first suction box through said drain duct and being arranged after said first forming shoe in the running direction of the web and inside said loop of said covering wire.
- 9. The web former of claim 8, further comprising
- a first open-faced forming roll arranged inside said loop of said covering wire and after said first suction box in the running direction of the web, said first forming roll having a sector arranged such that said twin-wire is curved upward on said sector,
- a curved-faced forming shoe arranged inside said loop of said carrying wire and after said first forming roll in the running direction of the web,
- a second forming roll arranged inside said loop of said carrying wire and after said curved-faced forming shoe in the running direction of the web, said second forming roll arranged to curve said twin-wire forming zone downward, and
- a second one of said guide rolls arranged inside said loop of said covering wire and after said second forming roll in the running direction of the web, the web being separated from said covering wire at or before said second guide roll and passed on said carrying wire onto a pick-up fabric.
- 10. The web former of claim 8,
- wherein said forming ribs in said web forming unit are arranged after said wire loading device in the running direction of the web and said loading means load said forming ribs in said web forming unit, further comprising
- a second suction box connected to a suction pump via a suction duct, and wherein said forming ribs in said dewatering unit are arranged inside said loop of said covering wire and operate against said covering wire, a first one of said forming ribs in said dewatering unit being arranged to operate in an area of a loading zone of said spring blade, said forming ribs in said dewatering unit defining gaps therebetween which communicate with said second suction box.
- 11. The web former of claim 10, wherein said forming rib and said loading ribs are structured and arranged to dewater the web before said first forming roll such that the dry solids content of the web after said forming rib and said loading ribs is from about 3% to about 5%.
- 12. The web former of claim 11, wherein said forming rib and said loading ribs are structured and arranged to dewater the web such that the dry solids content of the web is about 3.5%.
- 13. The web former of claim 10, wherein said first suction box comprises a first suction duct which connects said first suction box to a blower such that negative pressure prevailing in said first suction box is maintained at a level from about 0 mH.sub.2 O to about 2 mH.sub.2 O, and said second suction box comprises a second suction duct which connects said second suction box to a vacuum pump such that the level of negative pressure prevailing in said second suction box is maintained at a level from about 0.4 mH.sub.2 O to about 4 mH.sub.2 O.
- 14. The web former of claim 9, wherein said twin-wire zone has a substantially straight run between said second forming roll and said second guide roll, further comprising suction flatboxes arranged in said carrying wire for applying suction to the web.
- 15. The web former of claim 1, wherein said twin-wire zone is substantially horizontal.
- 16. The web former of claim 1, wherein said spring blade has a length and a thickness, the ratio of the length to the thickness of said spring blade being from about 10 to 1000.
- 17. The web former of claim 1, wherein said spring blade loading means comprise a loading hose positioned against said spring blade at a location between said frame part and a tip of said spring blade.
- 18. The web former of claim 1, wherein the ratio of the length of said spring blade to the thickness of said spring blade is from about 10 to about 1000.
- 19. A hybrid web former in a paper machine including a headbox for feeding a pulp suspension jet, comprising
- a carrying wire and a covering wire defining a twin-wire forming zone in which a web is dewatered, the pulp suspension jet being fed from the headbox onto a loop of said carrying wire, said loop of said carrying wire having a substantially horizontal initial part after the headbox, the web being separated from said covering wire after said twin-wire zone and transferred on said carrying wire to a pick-up point, said covering wire being arranged above said carrying wire,
- dewatering members arranged in said initial part of said carrying wire for draining water from the web through said carrying wire,
- guide rolls and web-forming rolls for guiding said covering wire in a loop, said twin-wire zone beginning on or after a first one of said guide rolls arranged inside said loop of said covering wire,
- said twin-wire zone including
- a first forming shoe provided with a ribbed deck and arranged inside a loop of said carrying wire,
- a dewatering unit comprising forming ribs and arranged inside said loop of said covering wire,
- a web forming unit comprising forming ribs and arranged opposite said dewatering unit inside said loop of said carrying wire, and
- loading means for loading said forming ribs in at least one of said dewatering unit or said web forming unit, said loading means comprising a pressure-medium hose arrangement,
- a foil rib for removing water from the web through said covering wire, said dewatering unit comprising a first suction box having an associated drain duct, said foil rib being connected to said first suction box through said drain duct and being arranged after said first forming shoe in the running direction of the web and inside said loop of said covering wire,
- a first open-faced forming roll arranged inside said loop of said covering wire and after said first suction box in the running direction of the web, said first forming roll having a sector arranged such that said twin-wire is curved upward on said sector,
- a curved-face second forming shoe arranged inside said loop of said carrying wire and after said first forming roll in the running direction of the web,
- a second forming roll arranged inside said loop of said carrying wire and after said curved-faced second forming shoe in the running direction of the web, said second forming roll arranged to curve said twin-wire forming zone downward, and
- a second one of said guide rolls arranged inside said loop of said covering wire and after said second forming roll in the running direction of the web, the web being separated from said covering wire at or before said second guide roll and passed on said carrying wire onto a pick-up fabric.
- 20. A twin-wire zone in a wire section of a paper machine defined by a pair of wires between which a paper web is carried, comprising
- a first forming shoe including a curved ribbed deck and arranged inside a loop of a first one of said wires,
- web forming means comprising forming ribs and arranged inside said first wire loop,
- dewatering means arranged opposite said web forming means inside a loop of a second one of said wires, said dewatering means comprising a first and second suction box, forming ribs and a foil rib, said foil rib being arranged after said first forming shoe and before said web forming means in a running direction of the web, said foil rib removing water from the web through said second wire and causing the removed water to be passed into said first suction box,
- loading means for loading said forming ribs in at least one of said dewatering means and said web forming means,
- a first forming roll arranged inside said second wire loop after said dewatering means in the running direction of the web, said first forming roll curving said twin-wire in a first direction of curvature,
- a second forming shoe arranged inside said first wire loop and after said first forming roll in the running direction of the web,
- a second forming roll arranged inside said first wire loop and after said second forming shoe in the running direction of the web, said second forming roll curving said twin-wire zone in a second direction of curvature opposite to said first direction, and
- a guide roll arranged inside said first wire loop and after said second forming roll in the running direction of the web, the web being separated from said second wire at or before said guide roll and being passed on said first wire onto a pick-up fabric.
- 21. A twin-wire zone in a wire section of a paper machine defined by a pair of wires between which a paper web is carried, comprising
- a first forming shoe including a curved ribbed deck and arranged inside a loop of a first one of said wires,
- web forming means comprising forming ribs and arranged inside said first wire loop,
- dewatering means arranged opposite said web forming means inside a loop of a second one of said wires, said dewatering means comprising a first and second suction box, forming ribs and a foil rib, said foil rib being arranged after said first forming shoe and before said web forming means in a running direction of the web, said foil rib removing water from the web through said second wire and causing the removed water to be passed into said first suction box,
- loading means for loading said forming ribs in at least one of said dewatering means and said web forming means, and
- a spring blade wire loading device arranged after said first forming shoe and inside said first wire loop, said spring blade wire loading device comprising a frame part, a flexible plate-shaped spring blade having a dragging area structured and arranged to drag against an inner face of said first wire and to follow variations in the thickness of the web, said spring blade being attached from outside its dragging area to said frame part, and spring blade loading means arranged in association with said spring blade for deflecting said spring blade into a curved profile to produce the dragging area and to apply an intensive pressure pulse to the web.
- 22. The twin-wire zone of claim 21, further comprising
- a first forming roll arranged inside said second wire loop after said dewatering means in the running direction of the web, said first forming roll curving said twin-wire in a first direction of curvature,
- a second forming shoe arranged inside said first wire loop and after said first forming roll in the running direction of the web,
- a second forming roll arranged inside said first wire loop and after said second forming shoe in the running direction of the web, said second forming roll curving said twin-wire zone in a second direction of curvature opposite to said first direction, and
- a guide roll arranged inside said first wire loop and after said second forming roll in the running direction of the web, the web being separated from said second wire at or before said guide roll and being passed on said first wire onto a pick-up fabric.
- 23. A method for dewatering a web in a web former comprising the steps of:
- forming a web in a twin-wire forming zone between a carrying wire and a covering wire guided in separate loops by guide rolls and web-forming rolls, the twin-wire zone beginning on or after a first one of the guide rolls arranged inside the loop of the covering wire,
- draining water out of the web through both the carrying wire and the covering wire,
- arranging a first forming shoe in an initial portion of the twin-wire zone and inside the loop of the carrying wire or inside the loop of the covering wire,
- providing the first forming shoe with a ribbed deck,
- arranging a dewatering unit after the first forming shoe in the running direction of the web inside the same wire loop as the first forming shoe,
- arranging a web forming unit opposite the dewatering unit inside the other of the wire loops from the dewatering unit,
- providing the dewatering and web forming units with forming ribs,
- loading the forming ribs in at least one of the dewatering unit and the web forming unit by means of pressure-medium hose arrangements,
- separating the web from the covering wire after the twin-wire zone so that the web runs on the carrying wire, and
- transferring the web on the carrying wire to a pick-up point where the web is detached from the carrying wire,
- arranging a spring blade wire loading device after the first forming shoe in the running direction of the web, said spring blade wire loading device comprising a frame part and a flexible plate-shaped spring blade having a dragging area structured and arranged to drag against an inner face of one of said wires and to follow variations in the thickness of the web, said spring blade being attached from outside its dragging area to said frame part, and
- applying a pressure pulse to the web by loading the spring blade to defied said spring blade into a curved profile to produce the dragging area such that the formation of the web is improved and the dewatering of the web is promoted.
- 24. The method of claim 23, further comprising adjusting a linear load of the pressure pulse applied by the spring blade in a cross-machine direction in order to control profiles of dewatering of the web, distribution of fillers in the web, formation of the web, and/or retention of water in the web in the cross-machine direction.
- 25. The method of claim 23, further comprising arranging the first forming shoe and the wire loading device inside the loop of the carrying wire.
- 26. The method of claim 23, further comprising
- arranging a second forming shoe after the dewatering and web forming units in the running direction of the web,
- providing the second forming shoe with a ribbed deck, and
- guiding the twin-wire zone along a curved path formed by the ribbed deck.
- 27. The method of claim 26, further comprising
- providing the first and second forming shoes with suction boxes connected to a source of negative pressure,
- providing the dewatering and web forming units with suction boxes connected to a source of negative pressure, and
- controlling the dewatering of the web by adjusting the level of negative pressure in the suction boxes in the forming shoes and dewatering and web forming units.
- 28. The method of claim 23, further comprising arranging the web former as a hybrid former by
- feeding a pulp suspension jet from a headbox onto a loop of the carrying wire,
- providing the carrying wire with a substantially horizontal initial part,
- draining water from the web through the carrying wire in the initial part by means of dewatering members,
- arranging the first forming shoe inside the loop of the carrying wire,
- removing water from the web through the covering wire by means of a foil rib connected to a first suction box through a drain duct,
- arranging the foil rib after the first forming shoe in the running direction of the web and inside the loop of the covering wire,
- arranging the spring blade wire loading device inside the loop of the carrying wire and after the foil rib in the running direction of the web,
- dewatering the web by means of ribs arranged in the loop of the covering wire and the loop of the carrying wires, and
- arranging one of the ribs to operate in an area of a loading zone of the spring blade.
- 29. The method of claim 28, further comprising
- arranging a first forming roll inside the loop of the covering wire,
- curving the twin-wire zone upward by means of a curved sector on the first forming roll,
- arranging a curved-faced second forming shoe and thereafter a second forming roll inside the loop of the carrying wire,
- curving the twin-wire zone downward by means of a curved sector on the second forming roll, then
- separating the web from the covering wire at or before a second one of the guide rolls arranged inside the loop of the covering wire direction of the web, and
- passing the web on the carrying wire onto a pick-up fabric.
Priority Claims (1)
Number |
Date |
Country |
Kind |
920228 |
Jan 1992 |
FIX |
|
Parent Case Info
This is a continuation of U.S. patent application Ser. No. 08/006,372, filed Jan. 19, 1993, now U.S. Pat. No. 5,395,484.
US Referenced Citations (12)
Foreign Referenced Citations (13)
Number |
Date |
Country |
0306759 |
Mar 1989 |
EPX |
0397430 |
Nov 1990 |
EPX |
0475921 |
Mar 1992 |
EPX |
0516601 |
Dec 1992 |
EPX |
82084 |
Jul 1986 |
FIX |
892198 |
Nov 1990 |
FIX |
912630 |
Oct 1992 |
FIX |
3927597 |
Feb 1991 |
DEX |
9105797 |
Jul 1991 |
DEX |
4014403 |
Nov 1991 |
DEX |
2045827 |
Nov 1980 |
GBX |
2180273 |
Jun 1988 |
GBX |
9102842 |
Mar 1991 |
WOX |
Continuations (1)
|
Number |
Date |
Country |
Parent |
06372 |
Jan 1993 |
|