EP4165245A1 - Walze - Google Patents
WalzeInfo
- Publication number
- EP4165245A1 EP4165245A1 EP21729439.6A EP21729439A EP4165245A1 EP 4165245 A1 EP4165245 A1 EP 4165245A1 EP 21729439 A EP21729439 A EP 21729439A EP 4165245 A1 EP4165245 A1 EP 4165245A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- roller
- lamellae
- counter
- central plane
- material web
- 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.)
- Withdrawn
Links
Classifications
-
- 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
- D21F1/36—Guiding mechanisms
- D21F1/40—Rolls
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H23/00—Registering, tensioning, smoothing or guiding webs
- B65H23/02—Registering, tensioning, smoothing or guiding webs transversely
- B65H23/022—Registering, tensioning, smoothing or guiding webs transversely by tentering devices
- B65H23/025—Registering, tensioning, smoothing or guiding webs transversely by tentering devices by rollers
- B65H23/0251—Registering, tensioning, smoothing or guiding webs transversely by tentering devices by rollers with a straight axis
- B65H23/0255—Registering, tensioning, smoothing or guiding webs transversely by tentering devices by rollers with a straight axis with axially stretchable elements
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H23/00—Registering, tensioning, smoothing or guiding webs
- B65H23/04—Registering, tensioning, smoothing or guiding webs longitudinally
- B65H23/24—Registering, tensioning, smoothing or guiding webs longitudinally by fluid action, e.g. to retard the running web
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21F—PAPER-MAKING MACHINES; METHODS OF PRODUCING PAPER THEREON
- D21F3/00—Press section of machines for making continuous webs of paper
- D21F3/02—Wet presses
- D21F3/04—Arrangements thereof
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21F—PAPER-MAKING MACHINES; METHODS OF PRODUCING PAPER THEREON
- D21F3/00—Press section of machines for making continuous webs of paper
- D21F3/02—Wet presses
- D21F3/08—Pressure rolls
-
- 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
- D21F7/005—Wire-tensioning devices
-
- D—TEXTILES; PAPER
- D21—PAPER-MAKING; PRODUCTION OF CELLULOSE
- D21G—CALENDERS; ACCESSORIES FOR PAPER-MAKING MACHINES
- D21G1/00—Calenders; Smoothing apparatus
- D21G1/02—Rolls; Their bearings
- D21G1/0233—Soft rolls
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65H—HANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
- B65H2406/00—Means using fluid
- B65H2406/10—Means using fluid made only for exhausting gaseous medium
- B65H2406/11—Means using fluid made only for exhausting gaseous medium producing fluidised bed
- B65H2406/112—Means using fluid made only for exhausting gaseous medium producing fluidised bed for handling material along preferably rectilinear path, e.g. nozzle bed for web
Definitions
- the invention relates to a roller for producing a fiber material web, in particular a paper web, with a rotationally symmetrical base body which is rotatable about a longitudinal axis and which has a circumferential surface.
- a still moist fibrous material web is conveyed in the direction of its longitudinal extension and its moisture content is reduced in the process.
- the drying process leads to a reduction in the space between the fibers of the fiber material, which ultimately results in a change in volume of the fiber material web.
- the fiber material web experiences both a change in length in the direction of its longitudinal extent and a change in width in a direction transverse to its longitudinal extent during drying, the transverse shrinkage of the fiber material web generally being at least approximately parallel to the longitudinal axis of the roller.
- the change in length can be specifically influenced by a suitable arrangement of several rollers arranged in the conveying direction of the fiber material web in conjunction with a belt with a contractible surface layer in order to prevent creping of the paper web (see e.g. DE 1 003 564 B), the change in width or transverse shrinkage rather a coincidental consequence of the change in length and can only be controlled to a certain extent or not at all.
- the object is achieved by a roller with the features of claim 1.
- the roller according to the invention comprises a rotationally symmetrical base body which can be rotated about a longitudinal axis and which has a jacket surface on which at least two elastically deformable and / or deflectable annular or spiral lamellae are arranged, which extend in the radial direction away from the jacket surface and which the base body in the circumferential direction surround, wherein the lamellae are arranged at least in sections with the formation of an angle of inclination obliquely to a center plane of the roller which is oriented perpendicular to the longitudinal axis of the roller.
- the invention is based on the knowledge that a lamella, due to its elastically deformable and / or deflectable design and its inclined orientation in relation to the center plane of the roller, is caused by a force acting on the lamellae perpendicular to the outer surface of the roller, both in the radial direction and perpendicular to the longitudinal axis the roller as well as in the axial direction can be deflected parallel to the longitudinal axis of the roller.
- the degree of deflection of the lamellae depends, among other things, on the angle of inclination between the lamella and the central plane of the roller, on the strength of the force acting on the lamella and / or on the material properties of the lamellar material.
- the length of the lamellas has an influence on the force distribution, i.e. on the line force of the pressure, which can thus be adjusted with the length.
- the rule is that a lamella is deflected more and the deflection in the axial direction is greater, the smaller the angle of inclination between the lamella and the central plane and / or the longer a lamella and / or the greater the force acting on the lamella.
- the invention is thus based on the general idea of applying a force acting perpendicular to the longitudinal axis of the roller to a roller provided with such annular lamellas in sections (e.g. by means of a counter-roller) such that the roller has both deflected and non-deflected lamella sections viewed in the circumferential direction .
- a force acting perpendicular to the longitudinal axis of the roller to a roller provided with such annular lamellas in sections (e.g. by means of a counter-roller) such that the roller has both deflected and non-deflected lamella sections viewed in the circumferential direction .
- the fiber material web running up against the deflected lamellar sections of the rotating roller experiences a compression or stretching in the axial direction in the area of the application of force.
- the deflection of the lamellae has a friction-related effect on the fiber material.
- a targeted alternating compression of the fiber material web both in the longitudinal direction and in the transverse direction enables an elastically stretchable fiber structure to be created, which is characterized by a high mechanical load capacity at the same time.
- a fiber material can be used, for example, in paper sacks for packaging cement.
- the lamellae are preferably closed in the circumferential direction.
- the lamellae extend in a spiral shape on the roller provided with lamellas.
- the spirals can extend from the central plane of the roller to the roller edges. Or the spirals can also extend in sections from the central plane of the roller to the roller edges.
- the spirals can be single-thread or multi-thread helical.
- a force can be transmitted to the lamellae, for example, by means of a counter roller, in that the counter roller and the roller provided with lamellae are moved towards one another in the radial direction and the counter roller is brought into contact with the lamellae.
- the longitudinal axis of the roller and a longitudinal axis of the counter-roller are preferably aligned parallel to one another. A slight deviation from the parallelism of the longitudinal axes leads to a different deflection of the lamellae seen in their direction, which may be desired in individual cases.
- the lamellas can have an inclination angle deviating from 90 ° with respect to the outer surface of the roller at their radially inner ends.
- the lamellas extend at right angles from the outer surface of the roller with a first section and have an obliquely angled second section adjoining the first section that extends at right angles.
- the lamellae are each inclined in the direction of the central plane of the roller.
- the lamellas can also be inclined away from the central plane of the roller, ie inclined towards the edges delimiting the roller in the axial direction, in order to enable the fiber material web to be stretched in a targeted manner in the direction transverse to its longitudinal extent.
- the roller can also have lamellae which are inclined towards the central plane and also inclined away from the central plane of the roller, in order to thereby produce local transverse compression and contraction of the fiber material web.
- several lamellae are arranged on the outer surface of the roller, starting from the edges in the direction of the central plane.
- a symmetrical transverse compression or transverse stretching of the fiber material web can be achieved in that at least two lamellae are arranged symmetrically, in particular mirror-symmetrically, to the center plane of the roller.
- the fiber material web is compressed or stretched uniformly in the direction transverse to its longitudinal extension.
- connection point at which an annular lamella is connected to the jacket surface of the roller is advantageously aligned in a plane parallel to the central plane.
- the connection point of the lamella is therefore essentially ring-shaped. However, it can also lie in a plane which is inclined at an angle to the central plane of the roller. In addition, it is basically also conceivable that one or more lamellae surround the roller in a spiral manner.
- the lamellae can have an essentially equal radial extension.
- all of the lamellas define a uniform circumference that is aligned parallel to the longitudinal axis of the roller.
- at least two lamellas can also have different outer circumferences.
- the circumferences of the lamellae can decrease starting from the respective edges of the roller in the direction of the central plane of the roller in order to achieve a uniform transverse compression of the fiber material web.
- the diameter of the lamellae can increase starting from the central plane of the roller in the direction of the respective edges of the roller in order to effect a transverse stretching of the fiber material web.
- the angle of inclination of the lamellae can vary in the axial direction of the roller.
- an axially varying transverse compression of the fiber material web is to be achieved, with this in the middle of the roller often being as small as possible or even zero.
- the angle of inclination N1 of the lamellae increases from the edge of the roller to the central plane, preferably increases continuously (N2 then decreases).
- N2 then decreases.
- the angle of inclination of the lamellae decreases from the central plane of the roller towards its edge, in particular continuously decreases.
- a distance between two adjacent connection points of the lamellae with the jacket surface can decrease in the direction of the central plane of the roller. If, on the other hand, the fiber material web is to be stretched transversely, it is advantageous if a distance between two adjacent connecting points of the lamellae with the lateral surface increases in the direction of the central plane of the roller.
- a diameter of the roller can change in the axial direction.
- an intermediate body can be formed between the jacket surface of the roller and the lamellae, the diameter of which changes in the axial direction of the roller.
- the diameter of the roller or the diameter of the intermediate body preferably increases from the respective edges of the roller in the direction of the central plane of the roller.
- the lamellae each have the same radial external extension. This takes the distances between the respective connection point of a lamella with the outer surface of the roller or with the Intermediate body and an outer edge of the lamella in the direction of the central plane of the roller from or to.
- a lamella further away from the center plane of the roller is longer than a lamella arranged closer to the center plane of the roller.
- the intermediate body can be designed in the form of a double cone, the respective outer diameter of the two cones increasing, for example, in the direction of the central plane of the roller.
- the intermediate body is convexly curved, a diameter of the curved intermediate body being greatest in the central plane.
- a jacket surface of the intermediate body can be designed as desired in order to produce locally different stretching and / or compression.
- the lateral surface of the intermediate body is preferably rotationally symmetrical.
- the intermediate body and the lamellae can consist of the same material.
- a diameter of the roller can decrease towards the center plane (in sections) and / or an intermediate body can be formed between the outer surface of the roller and the lamellae, the diameter of which is in Direction of the center plane of the roller (in sections) decreases in order to stretch a fiber material web in its transverse direction (locally).
- the distances between adjacent connecting points of the lamellas with the lateral surface can be essentially the same in the axial direction.
- the slats can be made of an elastic and / or pressure-resistant material, in particular a plastic or rubber.
- the slats are made from the same material.
- the lamellae are also made from different materials.
- the lamellae can also be made of a rigid material. In this case, they would have to be attached to the outer surface of the roller or the intermediate body by means of a joint pretensioned against a deflection direction and / or by means of another type of elastic connection.
- the lamellae can be formed on a roller cover which is fixed in a rotationally fixed manner on the outer surface of the roller.
- the roller cover and the lamellae are preferably made from the same material, so that the roller cover and the lamellae can be produced quickly and inexpensively in one production step.
- the roll cover and the lamellas can also be made of different materials.
- the roll cover provided with the lamellas can, for example, be pulled or shrunk onto the roll. However, it is also conceivable to form the roll cover onto the roll, for example by means of an injection molding process. In a corresponding manner, the lamellas can also be attached to a roller without a roller cover.
- the lamellae can each have free outer ends on which the fiber material web runs.
- radial outer ends of at least two adjacent lamellae can be connected to a membrane, in particular to an elastic membrane.
- the membrane preferably forms, at least in sections, a contact surface for the fiber material web.
- the membrane forms a continuous contact surface for the fiber material web, so that the membrane essentially completely spans the lamellae.
- the membrane can be textured to increase the friction of the contact surface and thus to improve the power transmission.
- the lamellae and the membrane are preferably made from the same material. But it is also conceivable to manufacture the membrane and the lamellae from different materials.
- the invention further relates to a roller arrangement which comprises a roller provided with lamellas according to one of the embodiments described above and a counter roller, a distance between the rollers being variably adjustable.
- the roller provided with lamellas and the counter roller can be moved towards one another in a direction perpendicular to their longitudinal axes, whereby the two rollers can be brought into contact with one another (in the operating state the material web is between the rollers). If the two rollers are in contact, the counter roller exerts a force the lamellae of the roller according to the invention, whereby the lamellae are deflected in the axial direction.
- the counter roller can be heated, so that the moisture evaporates more quickly.
- the mating roller can have an outer surface provided with openings, in particular a porous outer surface, the openings connecting the outer surface of the mating roller to the interior of the mating roller.
- a fluid can be conducted through the openings from the interior of the roller to its outer surface. This fluid can be heated in order to accelerate the drying process.
- the fluid can be used to form a fluid cushion or a thin fluid film on the outer surface of the opposing roller so that the fiber material web hardly adheres to the opposing roller, or at best not at all.
- the fluid can be a gas, in particular an inert gas such as nitrogen, or water vapor.
- steam can escape from the openings in order to keep the fiber material web pliable during the conveyance.
- a jacket surface of the counter roll can have a lower coefficient of friction than the outside of the roll provided with lamellas.
- the counter roller does not counteract the compression and / or stretching of the fiber material web, or only hardly counteracts it.
- the counter roller can be coated with Teflon or silicone to reduce the friction in interaction with the fiber material web or have a thin film of water that can be generated by spraying steam or water.
- at least two rolls provided with lamellas can be assigned to the counter-roll, the rolls provided with lamellas and the counter-roll each forming a gap for receiving the fiber material web.
- FIG. 1 shows a longitudinal sectional view of a roller according to the invention according to a first embodiment
- Fig. 2 shows a detail of the roller of Fig. 1;
- FIG. 3 shows a longitudinal sectional view of a roller according to the invention according to a second embodiment
- FIG. 4 shows a cross-sectional view of a roller arrangement with a roller according to the invention
- FIG. 5a shows a detail of the roller arrangement from FIG. 4 in a load-free state
- FIG. 5b shows a detail of the roller arrangement from FIG. 4 in a loaded state
- FIG. 6 shows a detail of the roller arrangement of the roller from FIG. 1 (schematic);
- FIG. 7 shows a cross-sectional view of a roller arrangement with a plurality of rollers according to the invention.
- FIG. 1 shows a roller 10 according to a first embodiment, a detail of which is shown in FIG.
- a second embodiment of a roller 10 is shown in FIG. 4 and 7 each show different configurations of a roller arrangement with a roller 10 shown in FIG. 1 or 3.
- FIGS. 5 and 6 serve to explain the functional principle of the rollers 10 shown in FIG. 1 or 3.
- the rollers 10 shown in the figures serve to position a fiber material web 11 (FIG. 7), in particular a paper web, in which a compression or stretching in a direction transverse to the longitudinal extension of the fiber material web 11 is to be set in a controlled manner.
- a fiber material web 11 FIG. 7
- a paper web in which a compression or stretching in a direction transverse to the longitudinal extension of the fiber material web 11 is to be set in a controlled manner.
- the exemplary embodiments are described in connection with a transverse compression of the fiber material web 11.
- Each of the rollers 10 shown in the figures can be rotated about its longitudinal axis A and each has a rotationally symmetrical base body 12 with a lateral surface 14.
- the slats 16 can be made of a plastic or a rubber material.
- the lamellae 16 are fastened to an intermediate body 18 arranged between the base body 12 and the lamellae 16 (for example, formed in one piece with this or molded onto it).
- the lamellae 16 surround the base body 12 in its circumferential direction.
- the lamellae 16 can also extend directly, ie without intermediate bodies 18, at an angle away from the lateral surface 14 of the base body 12 and be inclined towards the central plane E of the roller 10.
- the rollers 10 are not only designed to be rotationally symmetrical with respect to their respective longitudinal axes A, but also mirror-symmetrically with respect to the central plane E.
- the lamellae 16 are arranged mirror-symmetrically with respect to the central plane E and are inclined mirror-symmetrically in the direction of the central plane E of the roller 10. It goes without saying that the lamellae 16 can also be inclined away from the center plane E of the roller 10 in a mirror-symmetrical manner in order to enable the fiber material web 11 to extend transversely. Asymmetrical lamellar arrangements and / or designs can also be implemented in order to be able to generate the respectively desired compression and / or expansion profile.
- radial outer ends of the lamellae 16 are connected to an elastic membrane 20 in order to form a continuous contact surface for the fibrous material web 11.
- the fiber material web 11 can also be conveyed without a membrane 20, i.e. by placing the fiber material web 11 directly on the lamellae 16.
- lamellae 16 connected to an elastic membrane 20 have a higher coefficient of friction than free-standing lamellae 16.
- the membrane 20 can also be textured.
- Both the lamellae 16 and the intermediate body 18 as well the membrane 20 can be made of the same material.
- the lamellae 16, the intermediate body 18 and / or the membrane 20 can also be made of different materials in order to ensure individual adaptability to the specific requirements.
- the roller 10 according to the first embodiment has a plurality of lamellae 16, the angle of inclination N1 of which varies in the axial direction of the roller 10.
- the angle N1 is drawn in with respect to a plane E ′ which is arranged parallel to E.
- the angles of inclination N1 between the lamellae 16 and the central plane E increase continuously from the edges 22 delimiting the roller 10 in the axial direction in the direction of the central plane E.
- Such an alignment of the lamellae 16 has the consequence that the angles N2 between the lamellae 16 and the lateral surface 14 decrease continuously in the direction of the central plane E.
- This ensures that a lamella 16 that is steeper to the lateral surface 14 is deflected more strongly in a direction parallel to the longitudinal axis A of the roller 10 when subjected to a force acting perpendicular to the longitudinal axis A of the roller 10 than a flatter lamella inclined towards the lateral surface 14 16, as will be explained in more detail below (FIG. 6).
- this means that the lamella 16, which is shown on the left-hand side and which is steeper to the lateral surface 14, is stronger in one direction when a force acting in the radial direction of the roller 10 ( y-direction) is applied
- Direction parallel to the longitudinal axis A of the roller 10 is deflected than the lamella 16 which is shown on the right-hand side and is more flatly inclined towards the lateral surface 14, as will be explained in more detail below.
- the decrease in the angle N2 between the lamellae 16 and the lateral surface 14 is accompanied by the fact that the distances between the connecting points of the lamellae 16 with the intermediate body 18 or the lateral surface 14 of the roller 10 gradually decrease in the direction of the central plane E.
- an outer circumference of the intermediate body 18 is aligned at least approximately parallel to the jacket surface 14 of the roller 10, the jacket surface 14 surrounding the longitudinal axis A of the roller 10 coaxially.
- a compact but elastic support section 24 extends from the intermediate body 18 and surrounds the center plane E of the roller 10 with mirror symmetry and on which the fiber material web 11 rests without experiencing any appreciable transverse compression. That is, there the fiber material web 11 is slightly or not at all compressed in a direction transverse to the longitudinal extension of the fiber material web 11. The upsetting of the web 11 thus decreases inwardly from the edges 22 of the roller 10.
- the distances between adjacent connecting points of the lamellae 16 are essentially the same, viewed in the axial direction. This also applies to the angle of inclination N1. So that a lamella 16 that is further spaced from the center plane E of the roller 10 is longer and thereby deflected more strongly in the direction parallel to the longitudinal axis A as a result of a force acting in the direction perpendicular to the longitudinal axis A of the roller 10 than a shorter lamella 16 arranged closer to the center plane E. , an intermediate body 18 is formed between the lamellae 16 and the base body 12, the diameter of which increases in the direction of the central plane E of the roller 10.
- a diameter of the roller 10 could continuously increase towards its center plane E in order to achieve the same technical effect.
- the intermediate body 18 or the roller 10 forms a support portion 24, which a Has a technical effect comparable to that of the support section 24 of the roller
- the innermost lamellae 16 of the two roller halves, which are inclined towards one another, have a stabilizing effect, so that only small or negligible transverse forces are generated here, which act on web 11.
- roller 4 and 7 each show a roller arrangement which has both a roller 10 provided with lamellae 16 and a counter roller 26 rotatable about a longitudinal axis B.
- the roller 10 and the counter roller 26 can be moved relative to one another in a direction at right angles to the longitudinal axes A, B of the rollers 10, 26 in order to variably adjust or reduce a distance between the rollers 10, 26.
- the rollers 10, 26 of the roller arrangement can be moved so far towards each other that the counter roller 26 exerts a force on the lamellae 16 of the roller 10 via the web 11 conveyed between the rollers 10, 16, whereby the lamellae 16 are deflected radially inward.
- a jacket surface 28 of the mating roller 26 has a lower coefficient of friction than the outside of the roller 10 formed by the membrane 20
- the mating roller 26 can have a lateral surface 28 which is provided with openings not shown in the figures.
- a fluid can exit through these openings from the interior of the counter roll 26 to the jacket surface 28 of the counter roll 26 in order to form a fluid film on the jacket surface 28 of the counter roll 26.
- a heated gas can exit through the openings, around the To accelerate the drying process of the fiber material web 11.
- (water) steam emerges from the openings in order to keep the fiber material web 11 supple during the conveyance.
- At least two rollers 10 provided with lamellae 16 can be assigned to the opposing roller 26, the rollers 10 and the opposing roller 26 each forming a gap for receiving the fibrous material web 11.
- the counter roller 26 is assigned four rollers 10.
- the counter-roller 28 ensures compression ( ⁇ y ) of the layer formed by the lamellae 16 and the membrane 20 in the y direction.
- the lamellae 16 are tilted, their radially outer end being offset in the z direction (parallel to the axis A) (d z ).
- the geometrical considerations of FIG. 6 show that the offset d z is a function of the angle of inclination N1 or N2 in an unloaded state of the lamellas 16: the smaller N1, the greater the offset d z for a given compression ⁇ y .
- a section of the web 11 which rests on the left lamella 16 in FIG.
- the fibrous material web 11 initially runs onto the undeflected lamellae 16 and is then conveyed into the gap or contact area between the rollers 10, 26.
- the lamellae 16 experience a deflection due to the force exerted by the counter-roller 26, the lamellae 16 - figuratively speaking - being "tilted” inward and, with their radially outer end, the overlying web material from the edge areas in the axial direction towards the center plane E. draw.
- the fiber material web 11 thus follows the deflection of the lamellae 16 or (if present) the membrane 20 in the axial direction. This leads to the fiber material web 11 being compressed transversely to its longitudinal extension. It goes without saying that when the lamellae 16 are inclined outwards, ie away from the central plane E, the web 11 is stretched in the direction transverse to its longitudinal extent.
- a transverse compression or transverse extension of the fiber material web 11 can thus be set in a targeted manner by means of a lamella and / or intermediate body configuration that varies in the axial direction. Complex compression and / or expansion profiles can also be generated.
- the transverse compression or transverse extension can be increased by a plurality of rollers 10 provided with lamellae 16 (FIG. 7).
- the concept according to the invention can also be implemented in high-performance systems with a web speed of over 1000 m / min.
- a transverse shrinkage of 10 to 30% is achieved with weights per unit area of 70 to 200 g / m 2 and paper moisture levels of 55 to 90%.
- roller 11 fiber material web 12 base body 14 outer surface 16 lamellae 18 intermediate body 20 membrane 22 edge 24 support section 26 counter roller 28 outer surface
Landscapes
- Registering, Tensioning, Guiding Webs, And Rollers Therefor (AREA)
- Treatment Of Fiber Materials (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102020115802.5A DE102020115802A1 (de) | 2020-06-16 | 2020-06-16 | Walze |
| PCT/EP2021/063815 WO2021254732A1 (de) | 2020-06-16 | 2021-05-25 | Walze |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4165245A1 true EP4165245A1 (de) | 2023-04-19 |
Family
ID=76250297
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP21729439.6A Withdrawn EP4165245A1 (de) | 2020-06-16 | 2021-05-25 | Walze |
Country Status (5)
| Country | Link |
|---|---|
| US (1) | US12221749B2 (de) |
| EP (1) | EP4165245A1 (de) |
| CN (1) | CN115917082A (de) |
| DE (1) | DE102020115802A1 (de) |
| WO (1) | WO2021254732A1 (de) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102023126223A1 (de) | 2023-09-27 | 2025-03-27 | Voith Patent Gmbh | Walzenanordnung für eine Stauchung einer Faserstoffbahn |
Family Cites Families (16)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| BE516549A (de) | 1952-06-11 | |||
| US4566162A (en) * | 1982-10-26 | 1986-01-28 | American Roller Company | Stretcher/expander roller |
| DE3890004D2 (de) | 1987-01-09 | 1989-08-17 | Anton Lueckenotto | Expander roller |
| JP2618317B2 (ja) * | 1992-10-26 | 1997-06-11 | 株式会社明治ゴム化成 | 抄紙機用キャンバスストレッチロール |
| AT401044B (de) * | 1993-12-16 | 1996-05-28 | Koren Erwin | Lamellenring, insbesondere für breitstreckwalzen, sowie damit versehene einrichtung zur führung bahnförmiger materialien und verfahren zu deren herstellung |
| DE19857123C1 (de) * | 1998-12-11 | 2000-05-31 | Lueraflex Gmbh G Lueckenotto | Walze zur Führung von bahnenförmigem Material |
| JP2002060101A (ja) * | 2000-08-14 | 2002-02-26 | Sony Corp | シート状基材巻き取り装置およびシート状基材巻き取り方法 |
| KR20020091767A (ko) * | 2001-05-30 | 2002-12-06 | 니타 고교 가부시키가이샤 | 종이 전송용 롤러를 위한 열 가소성 엘라스토머 재료 |
| DE10135124B4 (de) * | 2001-07-19 | 2004-03-11 | LÜRAFLEX GmbH Gerhard Lückenotto | Walze zur Führung von bahnenförmigem Material |
| DE10206568B4 (de) * | 2002-02-18 | 2004-01-08 | LÜRAFLEX GmbH Gerhard Lückenotto | Walze zur Führung von bahnenförmigem Material |
| DE10313748B4 (de) * | 2003-03-27 | 2007-02-22 | LÜRAFLEX GmbH Gerhard Lückenotto | Walze zur Führung von bahnenförmigem Material |
| JP2005067780A (ja) * | 2003-08-22 | 2005-03-17 | Mitsubishi Paper Mills Ltd | スパイラル溝付きエキスパンダーロール |
| JP2006298604A (ja) * | 2005-04-22 | 2006-11-02 | Toshiyuki Nose | 流体中を搬送するシートの拡幅装置 |
| EP1873099B1 (de) * | 2006-06-29 | 2009-07-29 | Applied Materials GmbH & Co. KG | Walze zum Führen und Breitstrecken von Bandmaterial |
| ITVE20130038A1 (it) | 2013-07-22 | 2015-01-23 | Giorgio Trani | Macchina e metodo per realizzare un nastro di materiale fibroso ad elevate estensibilita' longitudinale e trasveresale. |
| JP6405417B1 (ja) * | 2017-06-22 | 2018-10-17 | 株式会社小林製作所 | コンタクトロール |
-
2020
- 2020-06-16 DE DE102020115802.5A patent/DE102020115802A1/de not_active Ceased
-
2021
- 2021-05-25 EP EP21729439.6A patent/EP4165245A1/de not_active Withdrawn
- 2021-05-25 WO PCT/EP2021/063815 patent/WO2021254732A1/de not_active Ceased
- 2021-05-25 CN CN202180043346.8A patent/CN115917082A/zh active Pending
-
2022
- 2022-12-16 US US18/082,958 patent/US12221749B2/en active Active
Also Published As
| Publication number | Publication date |
|---|---|
| CN115917082A (zh) | 2023-04-04 |
| US12221749B2 (en) | 2025-02-11 |
| US20230117841A1 (en) | 2023-04-20 |
| WO2021254732A1 (de) | 2021-12-23 |
| DE102020115802A1 (de) | 2021-12-16 |
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