FILM WINDING SYSTEM AND FILM STRETCHING UNIT USING SUCH FILM WINDING SYSTEM
20210380364 · 2021-12-09
Inventors
- Helmut GUMPINGER (Anger, DE)
- Xaver SCHWARZ (Waging a See, DE)
- Jens Adler (Siegsdorf, DE)
- Anthimos Giapoulis (Traunstein, DE)
Cpc classification
B65H2404/1522
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A film winding system (1) for a film stretching unit (110) comprises a film entry area (3) through which a film web (2) to be wound can be fed to the film winding system (1). A first winding station (4) is configured in a winding position to wind the film web (2) into a film bale (5). A contact roller (6) and a measuring roller (8) are provided, the contact roller (6) being arranged adjacent to the first winding station (4) in the winding position and being configured to guide the film web (2) to the first winding station (4). The measuring roller (8) is arranged before the contact roller (6) in the movement direction of the film web (2) and is configured to guide the film web (2) to the contact roller (6). A first adjustment device (10) is provided and configured to move the measuring roller (8) relative to the contact roller (6) along a travel path in such a way that a degree of wrapping over which the film web (2) covers the contact roller (6) can be varied.
Claims
1. Film winding system for a film stretching unit with the following features: a film entry area is provided, via which a film web to be wound up can be fed to the film winding system; a first winding station is provided, wherein the first winding station is configured in a winding position to wind the film web into a film bale; a contact roller and a measuring roller are provided, wherein the contact roller is arranged adjacent to the first winding station in the winding position and is configured to guide the film web to the first winding station; the measuring roller is arranged in front of the contact roller in the movement direction of the film web and is configured to guide the film web towards the contact roller; a first adjustment device is provided and configured to move the measuring roller relative to the contact roller along a travel path in such a way that a degree of wrapping over which the film web covers the contact roller can be varied.
2. Film winding system according to claim 1, wherein the following feature: the first adjustment is configured to move the measuring roller relative to the contact roller along the travel path during winding of the film web in order to change the degree of wrapping during operation.
3. Film winding system according to claim 1, wherein the following features: the first adjustment device is configured to move the measuring roller along the entire travel path or along the predominant part of the travel path: a) with a first movement vector; and/or b) with a second movement vector; the first adjustment device comprises: a) a first guide system, wherein the first guide system is movable with the first movement vector; and/or b) a second guide system, wherein the second guide system is movable with the second movement vector.
4. Film winding system according to claim 3, wherein the following feature: the measuring roller is: a) attached to the first guide system; or b) attached to the second guide system; the first guide system is mounted on the second guide system; or the second guide system is mounted on the first guide system.
5. Film winding system according to claim 1, wherein the following features: the first adjustment device is configured to move the measuring roller along the entire travel path or along the predominant part of the travel path: a) with a first movement vector; and/or b) with a second movement vector; the first movement vector comprises only a component in the X-direction, wherein the X-direction is parallel to the ground in the direction of the film entry area; and/or the second movement vector comprises a component in the X-direction and a component in the Z-direction, wherein the X-direction is parallel to the ground in the direction of the film entry area and wherein the Z-direction extends perpendicularly away from the ground and is perpendicular to the X-direction.
6. Film winding system according to claim 5, wherein the following features: the measuring roller can be moved further in the Z-direction than in the X-direction over the entire travel path; or the measuring roller can be moved further in the X-direction than in the Z-direction over the entire travel path; or the measuring roller can be moved the same distance in the Z-direction as in the X-direction over the entire travel path.
7. Film winding system according to claim 5, wherein the following features: the second movement vector forms with an XY-plane an angle larger than 10°, 20°, 30°, 40°, 50°, 60° or larger than 70° but smaller than 80°, 75°, 65°, 55°, 45°, 35°, 25° or smaller than 15°.
8. Film winding system according to claim 1, wherein the following feature: the travel path of the measuring roller is arc-shaped.
9. Film winding system according to claim 8, wherein the following feature: the travel path of the measuring roller comprises a plurality of arc-shaped segments which are connected directly to one another or by linearly extending sections.
10. Film winding system according to claim 1, wherein the following features: the first adjustment device is configured to position the measuring roller between a first position and a second position to adjust the degree of wrapping, wherein: a) the measuring roller in the first position is spaced from the contact roller only in the vertical direction, whereby the film web is movable between the measuring roller and the contact roller almost exclusively with a vertical component, whereby a degree of wrapping of approximately 0° is settable at the contact roller; and/or b) the measuring roller in the second position is spaced from the contact roller only in the horizontal direction, whereby the film web is movable between the measuring roller and the contact roller almost exclusively with a horizontal component, whereby a degree of wrapping of approximately 90° is settable at the contact roller.
11. Film winding system according to claim 1, wherein the following features: a control device is provided; the control device is configured to control the first adjustment device in such a way that it moves the measuring roller in such a way that a predetermined setpoint value for the degree of wrapping is achieved.
12. Film winding system according claim 11, wherein the following features: the control device is configured to load the setpoint for the degree of wrapping from a data memory and/or to receive the setpoint from an input unit; and/or the control device is configured to load at least one material property of the film web from a data memory and/or to receive at least one material property of the film web from an input unit, wherein the least one material property of the film web is for example: a) a film type; and/or b) a material thickness; and/or c) a material strength; and/or d) a material elongation; and/or e) a shrinkage; and/or f) a film temperature; in order to calculate the setpoint for the degree of wrapping from this at least one material property; and/or the control device is configured to load at least one line parameter of the film stretching unit from a data memory and/or to receive at least one line parameter of the film stretching unit from an input unit, wherein the at least one line parameter of the film stretching unit is for example: a) a line speed; and/or b) a film tension; in order to calculate the setpoint for the degree of wrapping from this at least one line parameter.
13. Film winding system according to claim 11, wherein the following features: a force measuring device is provided and arranged on the measuring roller; the force measuring device is configured to measure an actual value for a film tension and to transmit it to the control device; the control device is configured to compare the actual value for the film tension with a setpoint for the film tension and to increase, maintain or reduce the setpoint for the degree of wrapping depending on this comparison result.
14. Film winding system according to claim 1, wherein the following features: a deflection roller and a second adjustment device are provided; the deflection roller is arranged between the film entry area and the measuring roller; the second adjustment device is configured to move the deflection roller in the vertical direction in such a way that the film web guided between: a) the deflection roller and the measuring roller; and/or b) the deflection roller and the contact roller can be aligned approximately horizontally.
15. Film winding system according to claim 1, wherein the following features: a first and a second stabilizing roller are provided and can be arranged on a first edge region of the film web, wherein the first stabilizing roller can be brought into contact with an upper side of the film web and wherein the second stabilizing roller can be brought into contact with an underside of the film web, wherein the first and the second stabilizing rollers are spaced apart from one another only in the vertical direction; a third and a fourth stabilizing roller are provided and can be arranged on a second edge region of the film web opposite the first edge region, wherein the third stabilizing roller can be brought into contact with an upper side of the film web and wherein the fourth stabilizing roller can be brought into contact with an underside of the film web, wherein the third and fourth stabilizing rollers are spaced apart from one another only in the vertical direction.
16. Film winding system according to claim 1, wherein the following features: a third adjustment device is provided; the contact roller is attached to the third adjustment device; the third adjustment device is configured to move the contact roller in the direction of the film entry area.
17. Film winding system according to claim 1, wherein the following features: at least one discharge device is provided; the discharge device is arranged in the region of the film web and is configured to discharge electrical charge on the film web and/or the film bale.
18. Film winding system according to claim 1, wherein the following features: the first winding station comprises a base body, wherein the base body of the first winding station can be set into a rotational movement and wherein the film web can be wound around the base body; a second winding station with a base body is provided, wherein the base body of the second winding station can be set in a rotational movement and wherein the film web can be wound around the base body; the first winding station is configured to be pivoted from the winding position in which it is located adjacent to the contact roller to an unloading position, wherein the wound film bale is removable from the first winding station in the unloading position, wherein the second winding station is configured to be pivoted from the unloading position to the winding position at the same time; a cutting device is provided; the cutting device is configured to cut the film web across its width when the first winding station is pivoted in the direction of the unloading position, wherein the second winding station is configured to be pivoted further into the winding position in such a way that the base body of the second winding station immediately comes into contact with the new beginning of the film web now formed.
19. Film winding system according to claim 1, wherein the following features: the contact roller is: a) arranged immediately adjacent to the first winding station, wherein the first winding station is in the winding position, wherein the contact roller is in contact with and touches the film bale, or wherein only the film web runs without forming a free space between the contact roller and the film bale; or b) arranged at a distance from the first winding station, the first winding station being in the winding position, wherein the distance is less than 4 cm, 3 cm or less than 1 cm.
20. Assembly of a film stretching unit and the film winding system according to claim 1, wherein the following features: a plastic meld is feedable to the film stretching unit at an input area of the film stretching unit; the film stretching unit comprises various zones in which the plastic melt is heated and/or stretched to form the film web; an exit area of the film stretching unit is connected to the film entry area of the film winding system.
Description
[0022] Various embodiments of the invention are described below by way of example with reference to the drawings. The same subject-matters have the same reference signs. The corresponding figures of the drawings show in detail:
[0023]
[0024]
[0026]
[0028]
[0029]
[0030] The film stretching unit 110 comprises an entry area 111, wherein a film to be stretched can be fed to the film stretching unit 110 at its entry area 111. At the end of the film stretching unit 110, i.e. at its exit area 112, the stretched film web 2 exits. The exit area 112 of the film stretching unit 110 is connected to a film entry area 3 of the film winding system 1 according to the invention.
[0031] In the following
[0032] As explained before, different types of film should be wound up differently, because only then can it be ensured that winding is carried out without folds and that sufficient air is introduced between the individual layers so that the film web 2 can be unwound without difficulty in subsequent process steps. The method of winding according to the invention also ensures that the film web 2 does not tear.
[0033]
[0034] In
[0035] In
[0036] With regard to
[0037] With regard to
[0038]
[0039] The diameters of the contact roller 6 and the measuring roller 8 are different. They could also be the same. In order to achieve a degree of wrapping of 0°, the film web 2 between the measuring roller 8 and the contact roller 6 preferably runs exclusively with a component in the vertical direction (perpendicular to the ground). The measuring roller 8 is in a first position in
[0040] The contact roller 6 and the measuring roller 8 rotate in the same direction. The contact roller 6 and the base body 4a, 7a of the respective winding station 4, 7 in the winding position rotate in different directions.
[0041] In principle, both the contact roller 6 and the measuring roller 8 could be tempered. Such a temperature control (cooling or heating) could be achieved by an appropriate fluid (air, liquid).
[0042] The distance between the measuring roller 8 and the contact roller 6 can be constant over the entire travel path of the measuring roller 8. Preferably, however, the distance changes. The distance can become smaller or larger over the entire travel path.
[0043] The first adjustment device 10 is configured to move the measuring roller 8 relative to the contact roller 6 even during winding of the film web 2. This allows the degree of wrapping to be changed during operation. The moving of the measuring roller 8 relative to the contact roller 6 is in particular stepless. It could also take place in discrete steps. The moving is carried out pneumatically, electrically, hydraulically and/or mechanically, for example.
[0044] The first adjustment device 10 is further configured to move the measuring roller 8 along the entire travel path or along the predominant part of the travel path with a first movement vector and/or with a second movement vector.
[0045] The first and/or second guide system 11, 12 can, for example, be a sled, rail and/or chain system. In
[0046] The first movement vector comprises only one component in the X-direction, wherein the X-direction is parallel to the ground in the direction of the film entry area 3. The component in the X-direction is larger than zero, whereas all other components are zero. The second movement vector comprises a component in the X-direction and a component in the Z-direction. The component in the Z-direction extends perpendicular away from the ground (upward) and is perpendicular to the component in the X-direction. A component in the Y-direction is zero. The component in the Y-direction would otherwise run parallel to the axis of rotation or longitudinal axis of the contact roller 6 or the measuring roller 8.
[0047] This makes it possible for the measuring roller 8 to be moved only horizontally in the X-direction (i.e. away from the first or second winding station 4, 7) via the first guide system 11. Via the second guide system 12, the measuring roller 8 can be moved slanted. The second movement vector preferably forms an angle of 45° with an XY-plane. In particular, however, the angle could also be larger than 10°, 20°, 30°, 40°, 50°, 60° or greater than 70°. Preferably, however, the angle is smaller than 80°, 75°, 65°, 55°, 45°, 35°, 25° or smaller than 15°.
[0048] In principle, the travel path of the measuring roller 8 could also be arc-shaped. This would apply in particular to the second guide system 12. In this context, the travel path of the measuring roller 8 could also comprise several arc-shaped segments that are connected directly to each other or by linear sections.
[0049]
[0050] Optionally, a deflection roller 15 and a second adjustment device 16 are also provided. The second adjustment device 16 is preferably a sled, rail and/or chain system. The drive is again preferably pneumatic, electric, hydraulic and/or mechanical. The deflection roller 15 is arranged between the film entry area 3 and the measuring roller 8. The second adjustment device 16 is configured to move the deflection roller 15 in the vertical direction (Z-direction) in such a way that the film web 2 is aligned approximately horizontally (less than 5° deviation) between the deflection roller 15 and the measuring roller 8 or between the deflection roller 15 and the contact roller 6. The deflection roller 15 could also be temperature controlled (heated and/or cooled). If the measuring roller 8 is therefore moved at an angle via the second guide system 12, i.e. also with a component in the Z-direction (in the vertical direction), then the deflection roller 15 is also moved with a component in the Z-direction. The diameter of the deflection roller 15 can correspond to the diameter of the contact roller 6 or the diameter of the measuring roller 8 or deviate from these diameters.
[0051] In addition to adjusting the deflection roller 15 in the vertical direction, the deflection roller 15 could also be adjusted in the horizontal direction (X-direction). The deflection roller 15 could therefore be moved with a movement vector that comprises both a component in the X-direction and a component in the Y-direction. In the simplest case, the deflection roller 15 would be moved along a straight line, i.e. at an angle. However, it would also be possible for the travel path of the deflection roller 15 to be arc-shaped. In principle, the travel path of the deflection roller 15 could also comprise several arcuate segments that are connected directly to each other or by at least one linear section.
[0052] In principle, it would also be possible for the travel path of the deflection roller 15 to correspond to the travel path of the measuring roller 8. Preferably, both the deflection roller 15 and the measuring roller 8 would complete the same movement sequence at the same time.
[0053] Optionally, first and second stabilizing rollers 20, 21 are also provided and arranged at a first edge region of the film web. The first stabilizing roller 20 can be brought into contact with an upper side of the film web 2. The second stabilizing roller 21, on the other hand, can be brought into contact with an underside of the film web 2. The first and second stabilizing rollers 20, 21 are spaced apart from one another only in the vertical direction and are arranged directly above one another. For the second edge region of the film web, which is opposite the first edge region, there are preferably also a third and a fourth stabilizing roller (not shown). The third and fourth stabilizing rollers are preferably only offset in the Y-direction from the first and second stabilizing rollers 20, 21, respectively. The stabilizing rollers 20, 21 are preferably arranged between the deflection roller 15 and the measuring roller 8. The stabilizing rollers 20, 21 are preferably arranged closer to the measuring roller 8 or to the contact roller 6 than to the deflection roller 15.
[0054] Preferably, a third adjustment device 25 is also provided. The third adjustment device 25 is preferably again a sled, rail and/or chain system. The drive of the third adjustment device 25 can also again be pneumatic, electric, hydraulic and/or mechanical. The contact roller 6 is attached to the third adjustment device 25. The third adjustment device 25 is configured to move the contact roller 6 in the X-direction. This ensures that the distance between the contact roller 6 and the increasingly thick film bale 5 remains constant. Alternatively, the respective first or second winding station 4, 5, which is currently in the winding position, could also be moved in the X-direction via an adjustment device so that the distance from the outermost position of the film bale 5 towards the contact roller 6 remains constant.
[0055] Furthermore, a control device 30 is provided. For reasons of clarity, the control device 30 is only shown in
[0056] The setpoint can be loaded from a data memory (not shown) or received in writing or from an input unit (e.g., computer, tablet computer, external control unit, and/or mobile device). In principle, the control device 30 would also be able to determine the setpoint based on at least one material property of the film web. These material properties include, for example, film type, material thickness, material strength, material elongation, shrinkage, and/or film temperature. It would also be possible for the control device 30 to determine the setpoint from a line parameter of the film stretching unit 110. These line parameters include, for example, the line speed and the film tension. In order to be able to determine the film tension, a force measuring device (not shown) is preferably also provided, which is arranged on the measuring roller 8. The force measuring device 8 is configured to measure a current value (actual value) for the film tension and transmit it to the control device 30. Based on this actual value, the control device 30 can control the first adjustment device 10 in such a way that the degree of wrapping is increased, reduced or maintained. This prevents the film web 2 from tearing.
[0057] With reference to
[0058]
[0059]
[0060] The first and second stabilizing rollers 20, 21 are preferably adjustable in their position (in particular vertically) via the first adjustment device 10, as are the third and fourth stabilizing rollers. The stabilizing rollers 20, 21 are preferably coupled to the second guide system 12. If the measuring roller 8 is adjusted (moved) with the second movement vector (X-direction and
[0061] Z-direction), then preferably the stabilizing rollers 20, 21 are also changed (moved) at least in their vertical position.
[0062]
[0063] This is the second position of the measuring roller 8. In this case, the measuring roller 8 is only spaced apart from the contact roller 6 in the horizontal direction. By using the control device 30, the measuring roller 8 can preferably be moved as desired between the first position (
[0064] Comparing
[0065] The first, second and/or third adjustment device 10, 16, 25 preferably also comprise a braking and/or locking device which ensures that the respective adjustment device 10, 16, 25 remains permanently in position (even in the event of a power failure of the respective adjustment device 10, 16, 25) until the braking and/or locking device is released again.
[0066] In principle, it would also be possible for the film web 2 to run completely above the contact roller 6. In this case, the measuring roller 8 and the deflection roller 15 would be arranged in mirror image.
[0067]
[0068] In principle, it is also possible for the diameter of the contact roller 6 to be variable. This means that a bend-adjustable contact roller can be used. Instead of a bend-adjustable contact roller 6, a crowned contact roller 6 can also be used. Such a crowned contact roller 6 is known, for example, from DE 10 2009 048 074 A1, wherein the content regarding the crowned contact roller 6 is hereby incorporated by reference. This results in a more uniform film bale 5, even if the thickness distribution of the film web 2 is different or if very smooth surfaces are produced (for example with optical films), which tend to telescope.
[0069] The contact roller 6, the measuring roller 8 and the deflection roller 15 preferably extend over the entire width of the film web 2 (and possibly beyond). The stabilizing rollers 20, 21 extend only over (a part of) the respective edge region of the film web 2.
[0070] Furthermore, there may be additional control units which are arranged between the deflection roller 15 and the measuring roller 8 and/or between the measuring roller 8 and the contact roller 6 and/or between the contact roller 6 and the corresponding winding station 4, 7 in the winding position and detect further film properties (for example film thickness, film temperature, crack formation) and transmit these film properties to the control device 30 so that the control device 30 adjusts the degree of wrapping on the basis of the further film properties. These additional control units may be, for example, optical cameras and/or IR sensors.
[0071] In principle, it would also be possible for the measuring roller 8 and/or the deflection roller 15 and/or the contact roller 6 to be driven by a common drive device. Synchronization could, for example, take place via corresponding gear wheels and/or chains and/or belts. However, it is also possible that the measuring roller 8 and/or the deflection roller 15 and/or the contact roller 6 are each driven via their own drive device.
[0072] In the following, some features are emphasized separately.
[0073] It is very beneficial if the first adjustment device 10 is configured to move the measuring roller 8 relative to the contact roller 6 continuously or in discrete steps.
[0074] It is also very beneficial if the ratio between the component in the X-direction and the component in the Z-direction of the second movement vector is constant over most of the travel path or over the entire travel path.
[0075] It is also very beneficial if the at least one discharge device 40, 41, 42 comprises: [0076] a) a plurality of flexible electrically conductive metal strips which can be brought into contact with the film web 2; and/or [0077] b) a discharge conductor which can be arranged at a distance from the film web 2, wherein an alternating electric field can be applied to the discharge conductor.
[0078] The invention is not limited to the embodiments described. Within the scope of the invention, all described and/or drawn features can be combined with each other as desired.