METHOD AND APPARATUS FOR TRIMMING CORES
20170217039 · 2017-08-03
Assignee
Inventors
Cpc classification
B26D2007/013
PERFORMING OPERATIONS; TRANSPORTING
B26D7/18
PERFORMING OPERATIONS; TRANSPORTING
B26D5/005
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26D3/16
PERFORMING OPERATIONS; TRANSPORTING
B26D7/18
PERFORMING OPERATIONS; TRANSPORTING
B26D5/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A core end piece collector for handling cut off end pieces during processing of tubular cores has a carrying member and a catcher arranged on the carrying member. The catcher protrudes from the carrying member at an angle in relation to the longitudinal direction of the carrying member.
Claims
1. A method for processing a core, said core having a tubular shape with a hollow centre portion, the method comprising the steps of: moving at least a portion of a carrying member of a core end piece collector inside the core centre portion; and inserting a catcher into a cut made by a core cutting member, whereby the catcher restricts a cut off core end piece from falling off the carrying member.
2. The method according to claim 1, wherein the collector is configured to place cut off core end pieces in an end piece collection position.
3. The method according to claim 1, wherein the core is rotated during cutting, and wherein the catcher is inserted into the cut made by the core cutting member during cutting before the entire circumference of the core is cut.
4. The method according to claim 1, wherein at least a portion of the carrying member is firstly moved inside the core centre portion during processing of the core such that the catcher arranged on the carrying member is aligned with a cutting plane of the core cutting member and then moved in a direction in the cutting plane until a portion of the core end piece collector is in the vicinity of an inner surface of the core.
5. The method according to claim 1, wherein at least a portion of the carrying member is firstly moved inside the core centre portion during processing of the core such that the catcher arranged on the carrying member is aligned with a cutting plane of the core cutting member and then moved in a direction in the cutting plane until a portion of the core end piece collector is in contact with an inner surface of the core.
6. The method according to claim 1, wherein the axial direction of the core is essentially horizontally oriented during processing and wherein the core end piece collector is configured to place the carrying member at or in the vicinity of the highest located portion of the core centre portion before it inserts the catcher into the cut.
7. The method according to claim 1, wherein the catcher is inserted into the cut by rotating at least the carrying member around the longitudinal axis of said carrying member such that the catcher is rotated into the cut made by the cutting member.
8. The method according to claim 1, wherein the core end piece collector releases the end piece of the core in an end piece collection position by lowering the end piece onto an uneven and/or leaning surface such that it falls of the core end piece collector.
9. The method according to claim 1, wherein the core end piece collector releases the end piece of the core in an end piece collection position by firstly rotating at least the carrying member around the longitudinal axis of said carrying member such that the catcher does not obstruct axial motion of the end piece and then tilting at least the carrying member such that the end piece slides off.
10. The method according to claim 1, wherein the core end piece collector detects a contact force between a portion of the core end piece collector and the inner surface of the core during movement of the carrying member towards the inner surface of the core, and wherein a contact force above a threshold value indicates sufficient contact between the core end piece collector and the core.
11. The method according to claim 1, wherein the core end piece collector clamps the end piece by means of a clamping element which applies a pressure on the end piece such that it is held in place between the catcher and the clamping element, said clamping being performed after the entire core circumference is cut and rotation of the core has stopped.
12. A core end piece collector for handling cut off end pieces during processing of tubular cores with a hollow centre portion, said core end piece collector comprising a carrying member and a catcher being arranged on the carrying member, said catcher protruding from the carrying member at an angle in relation to the longitudinal direction of said carrying member, wherein the core end piece collector further comprises means for moving at least the carrying member in relation to the core.
13. The core end piece collector according to claim 12, wherein the catcher protrudes essentially perpendicular in relation to the longitudinal direction of said carrying member to a height measured from the surface of the carrying member which is equal to or less than the wall thickness of the processed core.
14. The core end piece collector according to claim 12, wherein the collector further comprises a clamping element arranged on the carrying member inside of the catcher and wherein said clamping element is reciprocally moveable towards and away from the catcher, respectively.
15. The core end piece collector according to claim 12, wherein the collector further comprises a roller arranged at the free end of the carrying member, the roller being configured to abut against the inner surface of the core, and wherein the roller is rotatable in relation to the carrying member.
16. The core end piece collector according to claim 12, wherein a protrusion is arranged on at least a portion of the circumference of the carrying member, the protrusion having a gradually increasing height towards the roller such that the end piece is capable of sliding off the carrying member.
17. The core end piece collector according to claim 12, wherein the means for moving at least the carrying member and the catcher of the collector comprises electrical motors and/or pneumatic cylinders.
18. The core end piece collector according to claim 12, the collector further comprises a controller for controlling the movements of the collector and wherein said controller is configured to be connected to a core processing apparatus.
19. A core processing apparatus configured for cutting cores into sections, said apparatus comprising: (i) a cutting member for cutting off sections of the core; (ii) a core end piece collector as claimed in claim 12, and; (iii) a controller configured for controlling the movements of the apparatus and the core end piece collector.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] Embodiments of the invention will be described in further detail in the following with reference to the accompanying schematic drawings which illustrate non-limiting examples on how the concept can be reduced into practice and in which:
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DETAILED DESCRIPTION OF EMBODIMENTS
[0039] The disclosed embodiments will now be described more fully hereinafter with reference to the accompanying drawings, in which certain embodiments of the invention are shown. Like numbers refer to like elements throughout.
[0040] With simultaneous reference to
[0041] Core is a term for describing the load bearing structure onto which different sorts of materials suitable for winding is transported. The core 3 is preferably made of some sort of paper based material. However, it may also be made of for instance plastic materials, metals etc. Cores are sometimes reused and may therefore require processing, for instance cutting, to produce cores which fit the material that is to be wound onto it. When cutting cores 3 into smaller sections, it is inevitable that at least one of the end pieces of the core 3 needs to be handled when the desired core sections are removed. The teachings described herein facilitate handling of such end pieces, and enables the size of the end pieces to be reduced which in turn saves material and money.
[0042] The core end piece collector 1 of the teachings herein comprises a carrying member 11 for carrying at least the majority of the weight of the end piece 31. The carrying member 11 is preferably an oblong beam of a suitable material such as metal, plastic, composite etc, which is arranged such that it is moveable in relation to the core processing apparatus 2 and to the core 3 being processed in the apparatus 2 which is included in a machine not described in detail here. The carrying member 11 has preferably have a cylindrical cross sectional shape or a rectangular cross sectional shape (as can be seen in
[0043] The core end piece collector 1 further comprises a catcher 12 which is arranged on the carrying member 11. The catcher 12 protrudes from the carrying member 11 at an angle in relation to the longitudinal axis of the carrying member 11. Preferably, the catcher 12 protrudes in an essentially perpendicular direction in relation to the longitudinal axis of the carrying member 11 such that is possible to insert the catcher 12 into a cut in a core 3 when the longitudinal axis of the core 3 is essentially parallel with the carrying member 11. The catcher 12 preferably protrudes to a height from the surface of the carrying member 11 which is equal to or less than the wall thickness of the core 3, to ensure that the catcher 12 does not protrude past the outer peripheral surface of the core 3.
[0044] Preferably, the catcher 12 has an essentially circular shape, and the circular catcher 12 is preferably oriented in relation to the carrying member 11 such that it does not protrude from the peripheral surface of the carrying member 11 around the entire circumference of the carrying member 11. This facilitates removal of the end piece 31 from the carrying member 11 since by orienting, for instance by rotation, the carrying member 11 such that the part of the carrying member 11 where the catcher 12 does not protrude faces upwards, the end piece 31 is free to slide off the carrying member 11.
[0045] The carrying member 11 may further comprise a roller 13 arranged on the free end of the carrying member 11. The roller 13 is configured to come into contact with the interior surface of the core 3, thus preventing that the core end piece collector 1 damages the interior surface of the core 3 when the core 3 rolls during cutting. Preferably, the roller 13 is arranged on the carrying member 11 such that the rotational axis of the roller 13 is essentially parallel with the longitudinal axis of the core 3 when a portion of the carrying member 1 is moved into the core hollow portion 32.
[0046] The roller 13 may however obstruct the end piece 31 when it is removed from the carrying member 11. This can be avoided by the provision of a protrusion 14 which may be arranged on at least a portion of the circumference of the carrying member 11. The protrusion 14 has a gradually increasing height towards the roller 13 such that the end piece 31 can slide of the carrying member 11 and past the roller 13. Preferably, the protrusion 14 is ramp-shaped or wedge-shaped with the higher side being arranged in close proximity of the roller 13, and the protrusion 14 is preferably arranged on the side of the carrying member 11 opposite the catcher 12.
[0047] To further stabilize the end piece 31 when it is being collected, the core end piece collector 1 may comprise a clamping element 15 arranged on the carrying member 11 inside of the catcher 12. The clamping element 15 is reciprocally moveable towards and from the catcher 12 and can thereby clamp the end piece 31 so that it is held in place against the catcher 12 on the carrying member 11.
[0048] With simultaneous reference to
[0049] It is preferred that the location in the core 3 to which the collector 1 moves when collecting the end piece 31 is located in or in the vicinity of the highest portion inside the core 3 hollow portion 32. This is to prevent the end piece 31 from swinging on the carrying member 11 when it is lifted by the collector 1.
[0050] After the collector 1 has been moved inside the core 3, the catcher 12 is inserted S2 into a cut made by the core cutting member 21, which allows the catcher 12 to restrict the end piece 31 from falling of the carrying member 11. The collector 1 is shown in this position in
[0051] The cutting member 21 needs to be able to move towards and from the core 3 to a certain degree to allow axial movement of the core 3 when positioning it for new cuts. The catcher 12 may, since the core 3 is being rotated, remain stationary until the core 3 is rotated such that the cut reaches and passes the position of the catcher 12, upon which it is inserted into the cut. The carrying member 11 may be rotated to bring the catcher 12 into the cut or moved in the plane P of the cut and thus avoiding the rotating motion of the carrying member 11. The catcher 12 may also be resilient such that it is compressed against the interior surface of the core 3 during rotation, and is inserted S2 into the cut by the spring force when the cut reaches the catcher 12.
[0052] When the entire core 3 has been cut and the rotation of the core 3 has stopped, the collector 1 may be arranged to clamp the end piece 31 using the clamping element 15.
[0053] After the cut off core end piece 31 is collected or caught on the collector 1, it is placed S3 by the core end piece collector 1 in an end piece collection container or position 4. The collector 1 may collect several core end pieces 31 before placing them in the collection position 4 as this may be beneficial to increase the efficiency of the cutting process. After reaching the end piece collection position 4, releasing the end piece(s) may be achieved (as is illustrated in
[0054] In
[0055] As the carrying member 11 of the collector 1 in the embodiment in
[0056] In
[0057] In
[0058] The described method for processing tubular cores 3 with hollow centre portions 32 comprises the following steps: [0059] moving S1 at least a portion of a carrying member 11 of a core end piece collector 1 inside the core centre portion 32, [0060] inserting S2 the catcher 12 into a transverse cut in the core 3 made by the core cutting member 21 whereby the catcher 12 restricts a cut off core end piece 31 from falling of the carrying member 11, [0061] catching the end piece 31 as it is cut off from the core 3, and [0062] placing S3, by means of the core end piece collector 1, the end piece 31 of the core in an end piece collection position 4.
[0063] It should be mentioned that the inventive concept is by no means limited to the embodiments described herein, and several modifications are feasible without departing from the scope of the invention as defined in the appended claims.