Wind-up apparatus for a web material
10494214 ยท 2019-12-03
Assignee
Inventors
- John Buk Jensen (Vissenbjerg, DK)
- Mads Sandahl Christensen (Vissenbjerg, DK)
- Jens Peder Rasmussen (Vissenbjerg, DK)
Cpc classification
B65H2406/10
PERFORMING OPERATIONS; TRANSPORTING
B65H2406/33
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/41354
PERFORMING OPERATIONS; TRANSPORTING
B65H2701/191
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/4139
PERFORMING OPERATIONS; TRANSPORTING
B65H19/30
PERFORMING OPERATIONS; TRANSPORTING
B65H18/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H18/10
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a roll making apparatus comprising spindles optionally having apertures for pressurized air and/or for applying a vacuum, the spindles being movable between a retracted position and an extended position, a roll engaging face configured to engage a roll carried by a spindle, upon the spindle carrying said roll moving to said retracted position, to move the roll relative to the spindle.
Claims
1. A roll making apparatus comprising: a frame comprising a feed conveyor for advancing a length of a web to be wound-up as a roll; a subsection comprising a first spindle support mounted to rotate and carry a plurality of parallel elongated spindles, each spindle mounted to rotate relative to said first spindle support, for winding up thereon said length of said web, said rotation of said first spindle support and of said spindles being about a respective axis perpendicular to said advancing length of the web, said spindles comprising a respective distal end and being movable between a retracted position, wherein said respective distal end is closer to said first spindle support, and an extended position; a face disposed on said first spindle support, the face configured to engage said roll carried by a spindle of said plurality of parallel elongated spindles, upon said spindle carrying said roll moving to said retracted position, to move said roll relative to said spindle; and a conveying device for conveying rolls discharged from said spindle upon said spindles moving to said retracted position, said spindles having apertures along a length thereof for one of applying pressurized air, applying a vacuum, and interchangeably applying pressurized air and applying the vacuum.
2. The apparatus of claim 1, further comprising a second spindle support located opposite said first spindle support, said second spindle support including bearings configured to support said distal ends of said rotating spindles when in said extended position.
3. The apparatus according to claim 1, wherein said spindles each having a proximal end connected to an air flow conduit for one of said pressurized air and said vacuum.
4. The apparatus according claim 1, wherein said first spindle support supporting air flow conduits telescopically receivable by said spindles when moving to said retracted position, said air flow conduits being connected to a source of said pressurized air, said spindles and said air flow conduits preferably being air sealed in relation to each other.
5. The apparatus according to claim 1, wherein said apertures of said spindles being sequentially closed on said spindle moving to said retracted position.
6. The apparatus according claim 1, further comprising a rotatable axle carrying said first spindle support, extending perpendicular to said feed conveyor, a motor being configured for stepwise rotation of said first spindle support.
7. The apparatus according claim 1, including a transferring device movable to receive and to transfer said discharged rolls to said discharge conveyor.
8. The apparatus according to claim 1, wherein a speed of rotation of said spindles is individually controllable.
9. The apparatus according claim 8, wherein said subsection including a respective motor for rotation of a corresponding spindle, and including a drive for said moving between said retracted and extended position.
10. The apparatus according to claim 9, wherein said motors being supported by said first spindle support.
11. The apparatus according to claim 9, wherein said drive being fixed to a housing of said apparatus.
12. The apparatus according to claim 1, including two of said subsections, mounted such that the distal ends of said spindles of one of said two subsections move to said retracted position in a parallel opposite direction compared to the movement of the distal ends of said spindles of the other subsection.
13. The apparatus according to claim 12, wherein said two subsections being coupled to a common axle for rotation.
14. The apparatus according to claim 12, wherein said conveying device being common to said two subsections, at least a portion of said conveying device conveying said discharged rolls perpendicular to the direction of said advancing.
15. The apparatus according to claim 14, including a respective feed conveyor for each subsection.
16. The apparatus according to claim 1, including one or more brushes arranged to interact with said web to guide it around said spindles, and also including nozzles for providing an air-flow oriented towards a leading edge of said web for initiating folding thereof around said spindles.
17. A roll making apparatus comprising: a frame comprising a feed conveyor for advancing interleaved sections of a length of a web to be wound-up as a roll; a subsection comprising a first spindle support mounted to rotate and carry a plurality of parallel elongated spindles, each spindle mounted to rotate relative to said first spindle support, for winding up thereon said interleaved sections of said length of said web, said rotation of said first spindle support and of said spindles being about a respective axis perpendicular to said advancing said interleaved sections of said length of said web, said spindles comprising a respective distal end and being movable between a retracted position, wherein said respective distal end is closer to said first spindle support, and an extended position; a face disposed on said first spindle support, the face configured to engage said roll carried by a spindle of said plurality of parallel elongated spindles, upon said spindle carrying said roll moving to said retracted position, to move said roll relative to said spindle; and a conveying device for conveying rolls discharged from said spindle upon said spindles moving to said retracted position, said spindles having apertures along a length thereof for one of applying pressurized air, applying a vacuum, and interchangeably applying pressurized air and applying the vacuum.
18. The apparatus of claim 17, further comprising a second spindle support located opposite said first spindle support, said second spindle support including bearings configured to support said distal ends of said rotating spindles when in said extended position.
19. The apparatus according to claim 17, wherein said spindles each having a proximal end connected to an air flow conduit for one of said pressurized air and said vacuum.
20. The apparatus according claim 17, wherein said first spindle support supporting air flow conduits telescopically receivable by said spindles when moving to said retracted position, said air flow conduits being connected to a source of said pressurized air, said spindles and said air flow conduits preferably being air sealed in relation to each other.
21. The apparatus according to claim 17, wherein said apertures of said spindles being sequentially closed on said spindle moving to said retracted position.
22. The apparatus according claim 17, further comprising a rotatable axle carrying said first spindle support, extending perpendicular to said feed conveyor, a motor being configured for stepwise rotation of said first spindle support.
23. The apparatus according claim 17, including a transferring device movable to receive and to transfer said discharged rolls to said discharge conveyor.
24. The apparatus according to claim 17, wherein a speed of rotation of said spindles is individually controllable.
25. The apparatus according claim 24, wherein said subsection including a respective motor for rotation of a corresponding spindle, and including a drive for said moving between said retracted and extended position.
26. The apparatus according to claim 25, wherein said motors being supported by said first spindle support.
27. The apparatus according to claim 25, wherein said drive being fixed to a housing of said apparatus.
28. The apparatus according to claim 17, including two of said subsections, mounted such that the distal ends of said spindles of one of said two subsections move to said retracted position in a parallel opposite direction compared to the movement of the distal ends of said spindles of the other subsection.
29. The apparatus according to claim 28, wherein said two subsections being coupled to a common axle for rotation.
30. The apparatus according to claim 28, wherein said conveying device being common to said two subsections, at least a portion of said conveying device conveying said discharged rolls perpendicular to the direction of said advancing.
31. The apparatus according to claim 30, including a respective feed conveyor for each subsection.
32. The apparatus according to claim 17, including one or more brushes arranged to interact with said web to guide it around said spindles, and also including nozzles for providing an air-flow oriented towards a leading edge of said web for initiating folding thereof around said spindles.
Description
(1) An embodiment of the invention will now be described, by way of example only, with reference to the accompanying drawings, as follows:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
BRIEF DESCRIPTION OF THE DRAWINGS
(10)
(11) The shown machine 1 includes as a machine part an apparatus according to the present invention, referenced generally by numeral 20 (shown only in part in
(12) As mentioned, the integral lengths of the web and, where applicable also individualized short sections thereof, are separated from each other using a separator mechanism incorporated in the machine 1. One separator mechanism for performing such a separation is shown by way of example in U.S. Pat. No. 5,588,644; this known machine also performs an interleaving procedure wherein individualized sections separated from each other by the separator mechanism are arranged in a partially overlapping, shingle-like manner, for subsequent rolling-up. The apparatus of the present invention may find use in connection with a variety of such separator mechanisms.
(13) Integration of the present apparatus 20 in a machine 1 where the separation of lengths of the web from each other is carried out, preferably with an additional individualization and interleaving of sections of each such length of the web, is preferred as this may lead to significant benefits as regards machine manufacturing costs, easy maintenance and low installation space requirements.
(14) As will be understood from the following the apparatus 20 is highly suitable for performing a winding-up procedure for making core-less rolls 5, such as on the basis of interleaved, and optionally statically charged, short sections of a primary web, such as sections defining bags, being presented to the apparatus 20 directly from the upstream located separator mechanism which also may performs an interleaving. This separator mechanism is in the drawings referred to by reference numeral 100;
(15) Referring to
(16) The machine 1 of
(17) The machine 1 generally includes a frame 8 and a housing 10 having an end wall 11 delimiting the shown right side half of the machine to the right, as well as two opposite longitudinal sides 12 extending parallel with the aforementioned primary streams, between left and right in
(18)
(19) As shown in
(20) Each subsection 20, 20 includes a number of rotating and retractable elongated spindles carried by the respective first spindle support 21, 21, in the shown embodiment a total of four spindles 30, 31, 32, 33, of which one spindle 33 of each subsection 20, 20 is shown at the instant of being in a fully retracted position in
(21)
(22) As explained, the parallel spindles 30, 31, 32, 33 of each subsection 20, 20 are supported on the one hand by the first spindle support 21, and are normally located at the same distance from the axis around which the spindle supports 20, 20 rotate. The spindles 30, 31, 32, 33 are driven to rotate relative to their first spindle support 21, preferably by being each coupled to a respective servomotor M mounted onto the first spindle support 21 and for individual controlling of the speed of rotation of each spindle 30, 31, 32, 33. The spindles, and their mounting to the spindle support 21, will be discussed in further details later below.
(23) As the subsections 20, 20 are rotated or indexed stepwise so will each spindle 30, 31, 32, 33 consecutively be indexed or aligned stepwise with one lower position at the downstream end of the conveyor belts 104, 105 shown in
(24) As a spindle 32 carrying a finished roll 5 moves to the position shown in
(25)
(26)
(27) For simplicity, one subsection 20 of the two subsections will now be described in further details with reference to
(28) Turning to
(29) The preferred embodiment utilizes spindles 30, 31, 32, 33 that are each along the length thereof provided with an array of the aforementioned apertures 60 connected to an interior passage through which a vacuum can be drawn and/or through which the aforementioned pressurized air may flow to exit the apertures 60. Before starting to wind up a coreless roll 5 thereon, an empty spindle such as spindle 32 shown in
(30)
(31) As will be understood the nozzles N act to help this first web section get started on the rotating spindle 30 while the brushes 90 have a guiding function. The supporting conveyor 105 may also preferably be raised slightly to serve the new bag to the spindle 32. Once the first bag/section (and possibly more than one bag) is secure on the spindle 32 the subsection 20 will index or rotate to the position shown in
(32) As seen in
(33) When in the extended position each spindle 30, 31, 32, 33 is driven to rotation by its corresponding motor M supported by the rotating first spindle support 20, through a drive 70. This drive 70 may simply, as shown in
(34)
(35) The air flow conduit 50 is preferably formed as a straight tube supported by the further mount 77 at one end and within the spindle 30 at its other end; preferably, the air flow conduits 50 have a non-circular, such as square, outer contour received by a correspondingly shaped structure S inside the proximal end of the cylindrical spindles 30, so that there is no relative rotational movement between the spindles and their corresponding air flow conduits.
(36) The described structure allows for the use of a highly simple sliding air seal between the spindle 30 and the corresponding air flow conduit 50 since there is no relative rotational movement; the air seal prevents pressure loss through apertures 60 in the spindle 30 located near the proximal end of the spindle 30. Such a loss would be undesirable since a high air pressure must still be maintained in the distal portion of the spindles on which the finished roll still remains until the spindle 30 is fully retracted; absent such a high pressure the roll cannot be discharged without destroying its cylindrical form. A connection 900 at the end of the air flow conduit closest to the further mount 77 connect the inside of the air flow conduit 50 and, hence, the spindle 30 with a source of pressurized air/vacuum.
(37)
(38) While rotation of the second spindle support 25 together with the first spindle support 21 is preferred, a circular track providing locally the aforementioned bearings 26 may be provided in a stationary second spindle support 25, for supporting the distal ends of the spindles 30, 31, 32, 33 and allowing the spindles to change position as the first spindle support 21, 21 is rotated. Such a circular track may have local bearing 26, such as in the form of notches or recesses complementary with the distal end of the spindles, and into which notches the distal ends enter on being rotated by the first spindle support 21 to eg. the winding positions shown in
(39) It is noted that the present invention also relates to a method of operating the disclosed apparatus 20, wherein discharge of the finished roils take place by sliding the rolls off the spindles through the step of retracting the spindles while at the same time withholding the rolls by providing an engagement surface acting against the end face of the rolls.
(40) Conveniently, the aforementioned apertures 60 have a transverse dimension increasing towards the outer surface of the spindles 30, 31, 32, 33, for providing an increased contact area with the web/core on the spindles.
(41) While not shown herein, the invention is also suitable for making rolls with a separate core applied to a spindle 33 in, by way of example, the position shown in
(42) It is noted that controlling of the motors M with build-in servo controller may be by bus signals with digitally coded signals which, together with the driving power, may be transferred from stationary parts of the apparatus to the rotating subsections 20, 20 through a slip ring SR/rotating electrical connectors, part of which is seen mounted to the right in