WO2013010977A1 - Dispositif de formation de feuille - Google Patents
Dispositif de formation de feuille Download PDFInfo
- Publication number
- WO2013010977A1 WO2013010977A1 PCT/EP2012/063883 EP2012063883W WO2013010977A1 WO 2013010977 A1 WO2013010977 A1 WO 2013010977A1 EP 2012063883 W EP2012063883 W EP 2012063883W WO 2013010977 A1 WO2013010977 A1 WO 2013010977A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- blade
- sheet forming
- wire
- forming device
- format
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21F—PAPER-MAKING MACHINES; METHODS OF PRODUCING PAPER THEREON
- D21F7/00—Other details of machines for making continuous webs of paper
- D21F7/006—Cutting the edges of the paper-web
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21F—PAPER-MAKING MACHINES; METHODS OF PRODUCING PAPER THEREON
- D21F1/00—Wet end of machines for making continuous webs of paper
- D21F1/56—Deckle frame arrangements
Definitions
- the invention relates to a sheet forming apparatus for a fourdrinier machine for producing a fibrous web, in particular a paper, cardboard or packaging paper web, from at least one pulp suspension, comprising at least a circumferential wire, a headbox, which produces a machine-wide pulp suspension jet via a headbox nozzle and applied to the wire , and two, each in both the edge region of the wire and in the area of the pulp suspension jet attached format limiting units, the format limiting units on the start side each have a means for separating an edge strip and the outside and the means for separating the edge strip preferably immediately downstream a means for discharging the separated edge strip ,
- a sheet forming device of a fourdrinier machine is characterized by an endless screen, also called a wire screen, for forming the fibrous web, in particular the paper, board or packaging paper web.
- the wire is over an open and flat table surface.
- At least one pulp, which is highly diluted with water, the pulp suspension is added to a headbox, which generates a machine-wide pulp suspension jet with a headbox running in the machine width and places it on the moving wire. Subsequently, the pulp suspension is dewatered through the wire and there is a fibrous web, the further course the machine is further processed to the finished paper, board or packaging paper web.
- format limiting units are mounted in the two edge regions of the wire and following the headbox of the headbox, which should prevent lateral bleeding of the pulp suspension and thus a dilution of the ultimately resulting paper, cardboard or packaging paper web in this area.
- the format limiting units on the start side each have a means for separating the edge strip.
- a means for discharging the separated edge strip is preferably provided on the outside and the packaging means, preferably immediately downstream.
- the functional quality of the means for separating the marginal strip represents a decisive criterion. If the quality of the function is not constant, secondary flows can form in the region of the boundary boundary layers of the passing pulp suspension, which in turn lead to edge waves in the pulp suspension which run in the direction of the machine center. Also, in the poor quality separation of the edge strip material accumulation in the region of the means for separating the edge strip come on the one hand, the one already mentioned On the other hand, they can also detach uncontrollably and possibly lead to major manufacturing errors in the fibrous web to be produced. It is therefore an object of the invention to develop a sheet forming apparatus of the type mentioned in such a way that an improved and reliable separation of the edge strip takes place without any generation of edge waves in the hydrogen suspension and / or material accumulations of pulp suspension.
- the means for separating the edge strip comprises a blade consisting of at least two blade areas, wherein two blade portions of the blade are aligned at an angle of> 90 ° to each other.
- the first blade area of the blade in the direction of the wire which is aligned at a further blade area of the blade at an angle of> 90 °, causes a gentle and gradual separation of the edge strip without any shocks and delays.
- the second blade area of the blade performs, if necessary, then ultimately the complete separation of the edge strip.
- the recycling of the fibers contained in the separated edge strip is carried out in the short cycle. This type of repatriation provides the advantage of a resource savings, as a fiber blending, for example, with other layers, is completely avoided. This is particularly advantageous when using fresh fiber in the production of a white blanket.
- the means for separating the edge strip preferably comprises a blade consisting of two blade areas, the two blade areas of the blade being aligned at an angle of 90 to 110 °, preferably 93 to 100 °, in particular 95 to 100 °.
- the first blade portion of the blade preferably extends at an angle of 3 to 15 °, preferably 5 to 12 °, especially 5 to 10 °, to the wire and preferably has a blade portion length of 50 to 200 mm, preferably 75 to 150 mm, in particular from 100 to 150 mm.
- the second blade region of the blade preferably extends at an angle of 80 to 100 °, preferably of 85 to 95 °, in particular of approximately 90 °, to the wire and preferably has a blade region length of 25 to 100 mm, preferably 30 up to 75 mm, in particular from 40 to 60 mm.
- the two blade portions of the blade preferably merge into one another by means of a rounding.
- the first blade region of the blade can run at an angle of 10-15 ° to the long sieve. It is also conceivable that the first blade portion of the blade at an angle of 1 1 -14 ° and in particular from 12-13 ° to the wire. With such an angular position of the first blade portion, the first blade portion may have a blade portion length of 170-350 mm. It is also conceivable that the blade area length of the first blade area in this case is 200-300 mm, optionally 220-280 mm, in particular 240-260 mm and for example 250 +/- 5 mm. In such a design of the first blade area may optionally also on other blade areas be omitted, so that in this case the means for separating the edge strip has only a first blade area.
- the first blade area of the blade can run at an angle of 10-15 ° to the wire. It is also conceivable that the first blade portion of the blade at an angle of 1 1 -14 ° and in particular from 12-13 ° to the wire.
- the second blade region may be disposed to the first blade region at an acute angle of 15-20 °. It is also conceivable that the acute angle is 16-19 ° and in particular 17-18 °. As a result, the second blade portion may be disposed at an angle of 25-35 ° to the wire. It is conceivable that the second blade area is also arranged at an angle of 27-33 ° and in particular of 29-31 ° to the wire.
- a total blade area length of the first and second blade portions may be 170-350 mm. It is also conceivable that the total blade area length of the first blade area and the second blade area in this case is 200-300 mm, optionally 220-280 mm, in particular 240-260 mm and for example 250 +/- 5 mm. In the case of such a design of the first and second blade regions, additional blade regions can optionally be dispensed with, so that in this case the means for separating the edge strip has only a first and a second blade region.
- the transition between the individual blade areas can be done by means of a circle radius or a predefined change in slope.
- the two aforementioned embodiments which are characterized by a flat blade guide and by a long cutting edge length, a clean separation of the edge regions without disturbing fiber accumulations in the cutting edge region can be ensured.
- the large cutting edge length supports a speed reduction of To be separated pulp suspension advantageous. As a result, the quality of the fibrous web to be produced, in particular in the edge region, can be improved.
- the blade first blade portion is preferably preceded by a blade nose having a nose height of 2 to 5 mm, preferably 2 to 3 mm, and an initial and lower nose radius of 2 to 3 mm.
- a blade nose ensures safe guiding of the wire through the blade.
- the blade nose may have a longitudinally oriented, terminal fold, wherein the Abkantungser the fold can be 5-10 mm long. The bending length is measured from the terminal end of the fold to the edge or the transition region of the fold to the other first blade area.
- the folded length may also be 6-9 mm, in particular 7-8 mm and preferably 7.5 mm. In this case, the fold can be arranged to the wire at an angle of 10-20 °.
- the blade preferably has a one-sided and preferably outside chamfer with a basic chamfer length of 3 to 8 mm, preferably of 5 to 8 mm, in particular of about 6 mm.
- all surfaces of the pulp suspension jet which preferably are made of a non-corrosive material, in particular a stainless steel blade, are preferably polished, preferably with a roughness depth of 0.4.
- the format limiting unit and the blade arranged on the start side preferably have a common operating plane that is preferably adjustable with positioning means. Such a common working plane contributes significantly to avoiding secondary flows and edge waves in the pulp suspension.
- the format limiting unit is preferably at the beginning preferably directly connected to the headbox and end with a holder.
- the holder may also have further positioning means for the two agents. This is particularly advantageous in an adjustment of the aperture and at least one lip of the headbox of the headbox.
- the two format-limiting units are preferably designed and fastened such that the clear distance of the two format-limiting units from the center line of the wire is adjustable at least over a substantial part of its length in the direction of the wire.
- the format limiting units can be at least partially elastic and provided with at least one joint.
- the means for discharging the separated edge strip preferably comprises a channel, in particular a sheet metal channel, which is arranged at least partially outside the blade and the middle edge of the separated edge strips or directly a RandstMailrück accordingung, in particular a sieve or a separate collecting unit supplies.
- a channel in particular a sheet metal channel, which is arranged at least partially outside the blade and the middle edge of the separated edge strips or directly a RandstMailrück leung, in particular a sieve or a separate collecting unit supplies.
- a groove which preferably already begins in the region of the blade, ensures a continuous reliable extrusion of the separated edge strip.
- the format-limiting unit is preferably provided with at least one fluid rinse, in particular water rinse, which prevents flow through the pulp suspension lying on the wire through it.
- a fluid flushing with two parallel lower-side flushing channels is known for example from the document EP 1 681 390 A1, the content of which is hereby made the subject of the present disclosure.
- An alternative fluid flushing with a flushing channel on the underside and spraying nozzles arranged on the outside and directed in the direction of the flushing channel is known from EP 1 975 312 A1, the content of which is hereby also made the subject of the present disclosure.
- the device preferably comprises a plurality of linearly arranged and acting conical jet nozzles of known type.
- the sheet forming device according to the invention can also be used in a fourdrinier for producing a fibrous web, in particular paper, cardboard or packaging paper web, from at least one pulp suspension.
- FIG. 1 shows a schematic longitudinal section in the region of a jet impact point of a pulp suspension jet of a sheet forming apparatus according to the prior art
- FIG. 2 is a schematic perspective view of a first preferred embodiment of a format limiting device of a sheet forming apparatus according to the invention
- FIGS. 3 to 5 are various partial views of the first preferred embodiment of FIG
- Figure 6 is a schematic perspective view of the first preferred embodiment of the format limiting device of the sheet forming apparatus according to the invention.
- FIGS. 7 to 10 are various partial views of a second preferred embodiment of a format limiting device of a sheet forming device according to the invention.
- FIG. 1 is a schematic perspective view of the second preferred embodiment of the format limiting device of the sheet forming apparatus according to the invention.
- FIG. 1 shows a schematic longitudinal section in the region of a jet impingement point P of a pulp suspension jet J of a sheet forming device 1.
- the sheet forming device 1 for a non-illustrated fourdrinier machine 100 for producing a fibrous web 2, in particular a paper, cardboard or packaging paper web, at least one pulp suspension 3 comprises a circumferential and guided over a breast roll 5 four-wire with a running direction L (arrow) and a headbox 6, which produces the machine-wide pulp suspension jet J via a headbox nozzle 7 and applies it to the long sieve 4.
- the headbox 7 of the headbox 6 has a lower lip 8 and an overlying and preferably adjustable aperture 9.
- the adjustability of the aperture 9 is indicated by a double arrow.
- the wire 4 is, as already stated, passed over the breast roll 5 and then passed over a horizontally extending screen table 1 1 away.
- a secondary flow 12 which builds up in this area of the sheet forming device 1, is represented by a plurality of arrows.
- the embodiment of Figure 1 shows a in the edge region of the wire 4 and in the area of the pulp suspension jet J attached format limiting unit 13, which has at its wall portion over a dried-up fabric area 14 and underneath a wet area 15.
- the format limiting unit 13 has in a known, but not explicitly shown manner at the beginning a means 16 for separating an edge strip 17 and the outside and the means 16 for the separation of the edge strip 17 preferably immediately downstream of a means 18 for discharging the separated edge strip 17, in particular a groove 20th on (see Figure 2).
- FIG. 2 shows a schematic perspective view of a first preferred embodiment of a format limiting device 13 of a sheet forming device 1 according to the invention for a non-illustrated fourdrinier machine 100 for producing a fibrous web, in particular a paper, cardboard or packaging paper web, from at least one pulp suspension.
- the format limiting unit 13 has a means 16 for separating an edge strip 17 (arrow) and the outside and the means 16 for separating the edge strip 17 (arrow) preferably immediately downstream of a means 18 for discharging the separated edge strip 17 (arrow).
- the means 16 for separating the edge strip 17 (arrow) in turn comprises a blade 19 consisting of two blade areas 19.1, 19.2, the two blade areas 19.1, 19.2 of the blade 19 being aligned at an angle W of> 90 ° relative to one another (cf. also FIG. 3).
- the blade 19 may also have more than two blade portions.
- the two blade areas 19.1, 19.2 of the blade 19 are ideally aligned at an angle W of 90 to 110 °, preferably 93 to 100 °, in particular 95 to 100 °, to each other.
- the format limiting unit 13 is provided with a fluid rinse 22, in particular water rinse, which prevents the fibrous suspension 3 lying on the wire 4 from flowing through under the same.
- the supply lines 23 for the fluid purge 22 are shown at least partially.
- the structural and functional properties of the fluid purge 22 reference is made to the two publications EP 1 681 390 A1 and EP 1 975 312 A1, the contents of which relating thereto are hereby made the subject of the present disclosure.
- a not shown in detail, but known in the art device 24 for inside humidification of the format limiting unit 13 with fine fluid mist 25, in particular water mist may be provided on the format limiting unit 13, thereby preventing unwanted fiber buildup on the format limiting unit 13.
- the device 24 preferably comprises a plurality of linearly arranged and acting conical jet nozzles of known type.
- the format limiting unit 13 and the blade 19 arranged on the start side have a common working plane E which is preferably adjustable with known positioning means (cf. also FIG. 4). Also, the two format delimiting units 13 are formed and fixed such that the clear distance A (double arrow) of the two format limiting units 13 from the center line M of the wire 4 at least over a substantial part of its length in the direction (L) of the wire 4 is adjustable. The part in M of the wire 4 is indicated symbolically by dashed lines.
- FIGS. 3 to 5 show various partial views of the first preferred embodiment of the format limiting device 13 of the sheet forming device 1 according to the invention, shown in FIG. 2, for a non-illustrated fourdrinier machine 100.
- At least partially illustrated means 16 for separating the edge strip 17 comprises a blade 19.1, 19.2 existing blade 19, wherein the two blade portions 19.1, 19.2 of the blade 19 are aligned at an angle W of> 90 ° to each other.
- the blade 19 may also have more than two blade portions.
- the first blade portion 19.1 of the blade 19 extends at an angle W1 of 3 to 15 °, preferably 5 to 12 °, in particular 5 to 10 °, to the indicated fourdrinier wire 4 and has a blade portion length 19.1 L of 50 to 200 mm, preferably from 75 to 150 mm, in particular from 100 to 150 mm.
- the second blade area 19.2 of the blade 19 extends at an angle W2 of 80 to 100 °, preferably 85 to 95 °, in particular about 90 °, to the indicated fourdrinier 4 and has a blade area length 19.2L of 25 to 100 mm, preferably from 30 to 75 mm, in particular from 40 to 60 mm.
- the two blade portions 19.1, 19.2 of the blade 19 merge into one another by means of a rounding 19.3.
- the first blade portion 19.1 may be arranged to the wire 4 at an angle W1 of 10-15 °. It is also conceivable that the first Blade portion 19.1 of the blade 19 at an angle W1 of 1 1 -14 ° and in particular 12-13 ° to the four-wire 4 runs. With such an angular position of the first blade area 19.1, it may have a blade area length 19.1 L of 170-350 mm. It is also conceivable that the blade area length 19.1 L of the first blade area 19.1 in this case is 200-300 mm, optionally 220-280 mm, in particular 240-260 mm and for example 250 +/- 5 mm. In the case of such a design of the first blade region 19.1, additional blade regions may possibly be dispensed with, so that in this case the means 16 for separating the edge strip has only a first blade region 19.1.
- first blade portion 19.1 of the blade 19 is preceded by a blade nose 19.4 with a nose height 19.4H of 2 to 5 mm, preferably 2 to 3 mm, and an initial and lower nose radius 19.4R of 2 to 3 mm.
- the blade nose 19.4 on the outside is not surrounded by the channel 20, in particular the sheet metal trough (see Figure 2).
- the format limiting unit 13 is preferably initially connected directly to the headbox 6 and the end with a holder 26, not shown.
- FIG. 4 shows at least partially the means 16 for separating the edge strip 17 in the form of a blade 19 and the means 18 for removing the separated edge strip 17.
- the second means 18 comprises the channel 20 , in particular the sheet metal channel, which is at least partially outside of the blade 19 and which the severed edge strip 17 medium or directly the known and thus not shown RandstMailschreib desk groundung 21, in particular a sieve or a separate collecting unit supplies.
- FIG. 5 shows a schematic perspective view of the first preferred embodiment of the format limiting device 13 of the sheet forming device 1 according to the invention shown in FIG.
- the format limiting unit 13 is preferably directly connectable with the headbox 6 (see FIG. 1) and at the end with a holder 26 (not shown).
- Figures 7 to 10 show various partial views of a second preferred embodiment of a format limiting device 13 of a sheet forming apparatus 1 according to the invention for a non-illustrated fourdrinier machine 100 for producing a fibrous web, in particular a paper, cardboard or packaging paper web, from at least one pulp suspension.
- the format-limiting unit 13 has a means 16 for separating an edge strip 17 (arrow) and on the outside and the means 16 for separating the edge strip 17 (arrow) preferably directly downstream of a means 18 for discharging the separated edge strip 17 (arrow) (see FIG ).
- the means 16 for the separation of the edge strip 17 in turn comprises a blade 19.1, 19.2, 19.3 existing blade 19, wherein the first and the third blade portion 19.1, 19.3 of the blade 19 are aligned at an angle W of> 90 ° to each other.
- the blade 19 may also have more than three blade areas.
- the two blade areas 19.1, 19.3 of the blade 19 are ideally aligned at an angle W of 90 to 110 °, preferably 93 to 100 °, in particular 95 to 100 °, to each other.
- the format limiting unit 13 is provided with a fluid rinse 22, in particular water rinsing, which prevents flow through the pulp suspension 3 lying on the wire 4 under the same (see FIG.
- the supply lines 23 for the fluid purge 22 are at least partially shown (see also Figure 2).
- the structural and functional properties of the fluid purge 22 reference is made to the two publications EP 1 681 390 A1 and EP 1 975 312 A1, the contents of which relating thereto are hereby made the subject of the present disclosure.
- a device 24 which is not shown in detail, but which is known to the person skilled in the art, can be provided with fine fluid mist 25, in particular water mist, in order to prevent unwanted fiber build-up on the format limiting unit 13 (cf. FIG ).
- the device 24 preferably comprises a plurality of linearly arranged and acting conical jet nozzles of known type (see again Figure 2).
- the format limiting unit 13 and the blade 19 arranged on the start side have a common working plane E, which is preferably adjustable with known positioning means (cf., FIG. 2).
- the two format-limiting units 13 are also designed and fastened such that the clear distance A (double-headed arrow) of the two format-limiting units 13 is adjustable from the center line M of the wire 4 over at least a substantial part of its length in the running direction (L) of the wire 4 ( see also Figure 2).
- the center line M of the wire 4 is symbolically indicated by dashed lines (see again Figure 2).
- the means 16 for separating the edge strip 17 (arrow), which is at least partly shown in FIG. 7 (view of center line M of the wire 4, see FIG. 2), comprises a blade 19 consisting of three blade areas 19.1, 19.2, 19.3 first and the third blade portion 19.1, 19.3 of the blade 19 are aligned at an angle W of> 90 ° to each other.
- the blade 19 may also have more than three blade areas.
- the first blade portion 19.1 of the blade 19 extends at an angle W1 of
- the wire 4 3 to 15 °, preferably from 5 to 12 °, in particular from 5 to 10 °, to the wire 4 and has a blade portion length 19.1 L of 50 to 200 mm, preferably from 75 to 150 mm, in particular from 100 to 150 mm
- the second blade area 19.2 of the blade 19 extends at an angle W2 of 15 to 60 °, preferably 25 to 50 °, in particular of approximately 37 °, to the wire 4 and has a blade area length 19.3L of 20 to 75 mm, preferably from 25 to 50 mm, in particular from 30 to 45 mm.
- the third blade portion 19.3 of the blade 19 extends at an angle W3 of 80 to 100 °, preferably from 85 to 95 °, in particular of about 90 °, to the wire
- blade 4 has a blade area length 19.3L of 25 to 100 mm, preferably from 30 to 75 mm, in particular from 40 to 60 mm.
- a total blade region length of the first and second blade regions 19.1, 19.2 may be 170-350 mm. It is also conceivable that the total blade area length of the first blade area 19.1 and the second blade area 19.2 in this case is 200-300 mm, optionally 220-280 mm, in particular 240-260 mm and for example 250 +/- 5 mm. In the case of such a configuration of the first and second blade regions 19.1, 19.2, additional blade regions may also be dispensed with, so that in this case the means 16 for separating the edge strip has only a first and a second blade region 19.1, 19.2.
- the blade section 19.1 of the blade 19.4 with a nose height 19.4H of 2 to 5 mm, preferably of 2 to 3 mm, and an initial and underside nose radius 19.4R of 2 to 3 mm upstream (see Figure 9).
- the blade nose 19.4 on the outside is not surrounded by the channel 20, in particular the sheet metal trough (see Figure 2).
- the blade nose 19.4 may have a bent edge 19.4K oriented toward the wire screen 4, as shown in FIG.
- a folded length 19.4L of the 19.K bend can be 5-10 mm long.
- the bevel 19.4K can be arranged at an angle 19.4W of 10-20 ° to the wire 4.
- the fold length 19.4L can also be 6-9 mm, in particular 7-8 mm and preferably 7.5 mm.
- the angle 19.4W can also be 1 1 -19 °, in particular 12-18 °, optionally 13-17 °, for example 14-16 ° and preferably 15 +/- 0.5 °.
- the format limiting unit 13 is preferably initially connected directly to the headbox 6 and the end with a holder 26, not shown. FIG.
- the second means 18 comprises the channel 20 , in particular the sheet metal channel, which is at least partially outside of the blade 19 and which the severed edge strip 17 medium or directly the known and thus not shown RandstMailschreib desk tipung 21, in particular a sieve or a separate collecting unit supplies.
- the means 16 for the separation of the edge strip 17 (arrow), which is at least partially shown in FIG. 10 (top view), comprises the blade 19, which has a chamfer 19.F with a chamfer base length 19.FL of 3 to 8 mm, preferably one on the outside and preferably on the outside from 5 to 8 mm, in particular from about 6 mm.
- all surfaces of the pulp suspension jet (compare FIG. 1) which are in contact, preferably of a non-corrosive material, in particular a stainless steel blade 19, are polished, preferably with a roughness depth of 0.4.
- FIG. 1 1 shows a schematic perspective illustration of the second preferred embodiment of the size limiting device 13 of the invention shown in FIG.
- Sheet forming device 1 It can be clearly seen that the format limiting unit 13 is preferably directly connectable with the headbox 6 (see FIG. 1) and at the end with a holder 26 (not shown).
- the sheet forming devices 1 according to the invention which are at least partially illustrated in FIGS. 2 to 11, are particularly suitable for use in a fourdrinier machine 100 for producing a fibrous web 2, in particular a paper, board or packaging paper web, from at least one fibrous stock suspension 3.
- the invention provides a sheet forming apparatus of the type mentioned in such a way that an improved and process-safe separation of the edge strip without any generation of edge waves in the pulp suspension and / or material accumulations on pulp suspension takes place.
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Abstract
L'invention concerne un dispositif de formation de feuille (1) pour une machine à table plate (100) destinée à la production d'une feuille continue (2) de matière fibreuse, notamment une bande de papier, de carton ou de papier d'emballage, à partir d'au moins une suspension de matière fibreuse (3). Le dispositif de formation de feuille (1) comprend au moins une toile sans fin (4) tournante, une caisse de tête (6) qui produit par l'intermédiaire d'une buse (7) un jet (J) de suspension de matière fibreuse ayant la largeur de la machine et l'applique sur la toile sans fin (4), et deux unités de délimitation de format (13) respectivement montées tant dans la zone de bordure de la toile sans fin (4) que dans la zone du jet (J) de suspension de matière fibreuse, les unités de délimitation de format (13) présentant, côté début, respectivement un moyen (16) assurant la séparation d'une rognure de bordure (17) et, côté extérieur, un moyen (18) qui assure l'évacuation de la rognure de bordure (17) séparée et qui est monté, de préférence, directement en aval du moyen (16) assurant la séparation de la rognure de bordure (17). L'invention est caractérisée en ce que le moyen (16) assurant la séparation de la rognure de bordure (17) comprend une lame (19) constituée au moins de deux zones (19.1, 19.2), deux zones (19.1, 19.2) de la lame (19) étant orientées l'une vers l'autre en formant un angle (W) > 90°.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE201120103266 DE202011103266U1 (de) | 2011-07-16 | 2011-07-16 | Blattbildungsvorrichtung |
| DE202011103266.7 | 2011-07-16 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2013010977A1 true WO2013010977A1 (fr) | 2013-01-24 |
Family
ID=45372982
Family Applications (2)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/EP2012/063880 Ceased WO2013010975A1 (fr) | 2011-07-16 | 2012-07-16 | Dispositif de formation de feuille |
| PCT/EP2012/063883 Ceased WO2013010977A1 (fr) | 2011-07-16 | 2012-07-16 | Dispositif de formation de feuille |
Family Applications Before (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/EP2012/063880 Ceased WO2013010975A1 (fr) | 2011-07-16 | 2012-07-16 | Dispositif de formation de feuille |
Country Status (4)
| Country | Link |
|---|---|
| EP (1) | EP2732095B1 (fr) |
| CN (1) | CN103842584B (fr) |
| DE (1) | DE202011103266U1 (fr) |
| WO (2) | WO2013010975A1 (fr) |
Families Citing this family (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE202011103266U1 (de) * | 2011-07-16 | 2011-08-29 | Voith Patent Gmbh | Blattbildungsvorrichtung |
| DE102018119008A1 (de) * | 2018-08-06 | 2020-02-06 | Voith Patent Gmbh | Verfahren zur reduktion von randwellen bei einem blattbildungssystem sowie blattbildungssystem |
| DE102020125806A1 (de) | 2020-10-02 | 2022-04-07 | Voith Patent Gmbh | Strömungsoptimierte Randbehandlung |
| DE102022112334A1 (de) | 2022-05-17 | 2023-09-21 | Voith Patent Gmbh | Maschine und Verfahren zur Herstellung oder Behandlung einer Wellpappenrohpapierbahn mit einem Randbeschnitt in einer Trockenpartie |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3361620A (en) * | 1964-12-11 | 1968-01-02 | Allis Chalmers Mfg Co | Deckle assembly for a paper making machine |
| GB2139261A (en) | 1982-11-25 | 1984-11-07 | Beloit Corp | Method and device for controlling the edge of a paper web formed on a travelling foraminous wire |
| EP1681390A1 (fr) | 2005-01-14 | 2006-07-19 | Vaahto OY | Dispositif dans une machine à papier ou à carton de limiter l'écoulement de pâte de la caisse de tête |
| EP1975312A1 (fr) | 2007-03-28 | 2008-10-01 | Vaahto OY | Procédé et appareil dans une machine à carton ou papier pour confiner le débit de pâte dans la caisse d'arrivée |
Family Cites Families (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE202011103266U1 (de) * | 2011-07-16 | 2011-08-29 | Voith Patent Gmbh | Blattbildungsvorrichtung |
-
2011
- 2011-07-16 DE DE201120103266 patent/DE202011103266U1/de not_active Expired - Lifetime
-
2012
- 2012-07-16 CN CN201280035338.XA patent/CN103842584B/zh active Active
- 2012-07-16 WO PCT/EP2012/063880 patent/WO2013010975A1/fr not_active Ceased
- 2012-07-16 WO PCT/EP2012/063883 patent/WO2013010977A1/fr not_active Ceased
- 2012-07-16 EP EP12738433.7A patent/EP2732095B1/fr active Active
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3361620A (en) * | 1964-12-11 | 1968-01-02 | Allis Chalmers Mfg Co | Deckle assembly for a paper making machine |
| GB2139261A (en) | 1982-11-25 | 1984-11-07 | Beloit Corp | Method and device for controlling the edge of a paper web formed on a travelling foraminous wire |
| EP1681390A1 (fr) | 2005-01-14 | 2006-07-19 | Vaahto OY | Dispositif dans une machine à papier ou à carton de limiter l'écoulement de pâte de la caisse de tête |
| EP1975312A1 (fr) | 2007-03-28 | 2008-10-01 | Vaahto OY | Procédé et appareil dans une machine à carton ou papier pour confiner le débit de pâte dans la caisse d'arrivée |
Also Published As
| Publication number | Publication date |
|---|---|
| EP2732095B1 (fr) | 2019-05-15 |
| CN103842584A (zh) | 2014-06-04 |
| WO2013010975A1 (fr) | 2013-01-24 |
| EP2732095A1 (fr) | 2014-05-21 |
| DE202011103266U1 (de) | 2011-08-29 |
| CN103842584B (zh) | 2015-12-09 |
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