AN INDUCTION HEAT SEALING DEVICE AND A METHOD FOR TRANSVERSALLY SEAL A TUBE OF PACKAGING MATERIAL
20220127031 · 2022-04-28
Inventors
- Per KARLSSON (Limhamn, SE)
- Patrik Palmquist (Lomma, SE)
- Magnus Lindvall (Lund, SE)
- Max Melin (Staffanstorp, SE)
- Håkan ANDERSSON (Åkarp, SE)
- Karl ISRAELSSON (Malmö, SE)
Cpc classification
B29C65/3656
PERFORMING OPERATIONS; TRANSPORTING
B29C66/1122
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8122
PERFORMING OPERATIONS; TRANSPORTING
B29C66/81427
PERFORMING OPERATIONS; TRANSPORTING
B29C65/3668
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8122
PERFORMING OPERATIONS; TRANSPORTING
B29C66/341
PERFORMING OPERATIONS; TRANSPORTING
B29C66/81455
PERFORMING OPERATIONS; TRANSPORTING
B29C66/4312
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/7166
PERFORMING OPERATIONS; TRANSPORTING
B29C66/72321
PERFORMING OPERATIONS; TRANSPORTING
B29C66/81431
PERFORMING OPERATIONS; TRANSPORTING
B65B9/2049
PERFORMING OPERATIONS; TRANSPORTING
B29C66/232
PERFORMING OPERATIONS; TRANSPORTING
B29K2021/00
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8491
PERFORMING OPERATIONS; TRANSPORTING
B29C66/7373
PERFORMING OPERATIONS; TRANSPORTING
B29K2021/00
PERFORMING OPERATIONS; TRANSPORTING
B29C65/7451
PERFORMING OPERATIONS; TRANSPORTING
B29C66/73921
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B51/30
PERFORMING OPERATIONS; TRANSPORTING
B29C65/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An induction heat sealing device (300) for providing a transversal sealing of a tube (104) of packaging material, said induction heat sealing device (300) comprising a main body (302) comprising a first and a second sealing surface (314a, 314b) arranged to face the packaging material during a sealing state (S), a recess (308) provided in the main body (308) for receiving a knife during a cutting state (C), wherein the first and second sealing surface (314a, 314b) are placed on opposite sides of the recess (308), and an electric conductor arrangement (306a, 306b, 306c, 306d), provided in the main body (302), for inducing eddy currents in the packaging material during the sealing state (S), wherein at least part of the first and second sealing surface (314a, 314b) are inclined and provided with a first and a second top section (316a, 316b), respectively, such that particles in a product held inside the tube (104) are pushed away from a sealing band of the tube as the sealing band is pressed towards the first and second top section (316a, 316b).
Claims
1. An induction heat sealing device for providing a transversal sealing of a tube of packaging material, said induction heat sealing device comprising: a main body comprising a first and a second sealing surface arranged to face the packaging material during a sealing state, a recess provided in the main body for receiving a knife during a cutting state, wherein the first and second sealing surface are placed on opposite sides of the recess, and an electric conductor arrangement, provided in the main body, the electric conductor arrangement configured to induce eddy currents in the packaging material during the sealing state, wherein at least part of the first and second sealing surface are inclined and provided with a first and a second top section , respectively, such that particles in a product held inside the tube are pushed away from a sealing band of the tube as the first and second top section are pressed towards the sealing band.
2. The induction heat sealing device according to claim 1, further comprising a magnetic flux concentrator arrangement holding the electric conductor arrangement, wherein the magnetic flux concentrator arrangement is provided with one or several inclined magnetic flux concentrator top surfaces forming part of the first and second sealing surface.
3. The induction heat sealing device according to claim 1, wherein the electronic conductor arrangement is provided with one or more inclined electronic conductor arrangement top surfaces forming part of the first and second sealing surface.
4. The induction heat sealing device according to claim 1, wherein at least part of the first and second sealing surface are inclined to control a direction in which melted polymer in the packaging material is moved while the induction heat sealing device is pressed towards the sealing band.
5. The induction heat sealing device according to claim 1, wherein an inclination profile of the first and second sealing surface of the heat sealing device is configured for a specific type of packaging material having a specific type of polymer in the polymer layer.
6. The induction heat sealing device according to claim 1, wherein an inclination profile of the first and second sealing surface of the heat sealing device is configured for a specific type of product comprising a specific type of particles.
7. The induction heat sealing device according to claim 1, wherein an inclination profile of the first and second sealing surface of the heat sealing device is configured for a specific type of dynamics of a filling machine.
8. A transversal sealing system comprising the induction heat sealing device according to claim 1, and a counter-pressure arrangement arranged opposite to the induction heat sealing device, wherein the induction heat sealing device and the counter-pressure arrangement is arranged, in operation, such that the tube can be fed between the two.
9. The transversal sealing system according to claim 8, wherein the counter-pressure arrangement comprises a first and a second counter-pressure element provided with a first and a second pressure pad surface, respectively, wherein the first and second counter-pressure pad surfaces are convex-shaped.
10. The transversal sealing system according to claim 9, wherein a first pressure pad top section of the first convex-shaped pressure pad is offset the first top section of the first sealing surface of the induction heat sealing device, and a second pressure pad top section of the second convex-shaped pressure pad is offset the second top section of the first sealing surface of the induction heat sealing device.
11. A method for transversally sealing a tube of packaging material by using an induction heat sealing device comprising a main body comprising a first and a second sealing surface arranged to face the packaging material during a sealing state, a recess provided in the main body for receiving a knife during a cutting state, wherein the first and second sealing surface are placed on opposite sides of the recess, and an electric conductor arrangement, provided in the main body, for inducing eddy currents in the packaging material during the sealing state, wherein at least part of the first and second sealing surface are inclined and provided with a first and a second top section, respectively, and a counter-pressure arrangement arranged opposite to the induction heat sealing device, said method comprising: placing the tube such that a sealing band of the tube is facing the induction heat sealing device and the counter-pressure arrangement, moving the induction heat sealing device and the counter-pressure arrangement towards one another such that particles of the product held inside the tube is pushed away, inducing eddy currents in the packaging material of the tube by using the induction heat sealing device, pressing a first side and a second side of the tube towards one another such that the melted polymer in the polymer layer of the first and the second side of the tube attach to each other, and distributing the melted polymer using the inclined sealing surfaces of the induction heat sealing device such that a risk for insufficient sealing is reduced.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Embodiments of the invention will now be described, by way of example, with reference to the accompanying schematic drawings, in which
[0023]
[0024]
[0025]
[0026]
[0027]
DETAILED DESCRIPTION
[0028]
[0029] In order to form a package 108 from the tube 104 filled with product, a transversal sealing can be made in a lower end of the tube by using a sealing apparatus 110. Generally, the sealing apparatus 110 has two main functions providing the transversal sealing, i.e. welding two opposite sides of the tube together such that the product in a lower part of the tube, placed downward the sealing apparatus, is separated from the product in the tube placed upward the sealing apparatus, and cutting off the lower part of the tube such that the package 108 is formed. Alternatively, instead of providing the transversal sealing and cutting off the lower part in one and the same apparatus as illustrated, the step of cutting off the lower part may be made in a subsequent step by a different piece of equipment, or by the consumer if the packages are intended to be sold in a multi-pack.
[0030] In
[0031] In order to provide for a more controlled forming process of the package 108 so-called volume forming flaps 204a, 204b can be used. More specifically, by using these the tube 104 having a round cross-section may be steered into a package 108 having a rectangular cross-section in a controlled manner.
[0032] The sealing device can be provided with two inductors, a first inductor 206a and a second inductor 206b. In the illustrated example, the first inductor 206a is arranged above the second inductor 206b. After having provided the transversal sealing a knife 208 can be used for cutting off the lower part of the tube and thus form the package 108. In this example, the knife 208 and the first and second inductors 206a, 206b are provided in the sealing device, but other arrangements are also possible. For instance, the knife may be provided on the other side of the tube, in the counter pressure device, or the cutting step may be performed by a separate device downstream the sealing device.
[0033] In
[0034] The induction heat sealing device 300 can comprise a main body 302. In the main body 302 a magnetic flux concentrator arrangement 304a-d may be provided. A purpose of the magnetic flux concentrator arrangement 304a-d can be to direct the electromagnetic radiation formed by an electronic conductor arrangement 306a-d, that also can be comprised in the main body 302, towards the tube 102 of packaging material during the sealing stage S. The magnetic flux concentrator arrangement 304a-d can be made of different materials, such as plasto-ferrite or soft magnetic composite.
[0035] The induction heat sealing device 300 may be designed in different ways. In
[0036] Further, as illustrated, the electronic conductor arrangement 306a-d may be held by the magnetic flux concentrator arrangement 304a-d such that the electronic conductor arrangement 306a-d forms part of an outer surface of the main body 302.
[0037] Another option, even though not illustrated, is that the electronic conductor arrangement 306a-d is held completely within the magnetic flux concentrator arrangement 304a-d such that the electronic conductor arrangement 306a-d does not form part of the outer surface of the main body 302. Still an option is to have a surface cover, not illustrated, such that neither the magnetic flux concentrator arrangement 304a-d nor the electronic conductor arrangement 306a-d form part of the outer surface.
[0038] A first and second sealing surface 314a, 314b of the first and second inductor 310, 312, respectively, may be inclined as illustrated in
[0039] In addition to improving that product residues are adequately removed from the sealing band in the sealing stage S, having the sealing surfaces 314a, 314b inclined also has a positive effect on sealing quality. A pressure gradient is namely also formed in the polymer layer that is melted during the sealing stage S. This provides for that how melted polymer in the packaging material is moved can be controlled in a more precise manner compared to if using the flat-surfaced inductors. In turn, this may result in that a risk of having aggregations of melted polymer in the packaging material can be reduced. Put differently, the melted polymer can be distributed more efficiently. Another positive effect is that less polymer may be required for making reliable transversal sealing. Since how the melted polymer is distributed during the sealing stage S can be controlled in a more precise manner, this may imply that less polymer is required, which is advantageous from an environmental point of view as well as from a cost perspective.
[0040] In the example illustrated in
[0041]
[0042] The induction heat sealing device 300 illustrated in
[0043] The first and second counter-pressure element 402a, 402b may comprise a first and second counter pressure pad 404a, 404b, respectively, which may for instance be made of rubber or other elastic material. The first and second counter pressure pad 404a, 404b can be provided with a first and a second counter-pressure pad surface 406a, 406b arranged to face the tube 104 during the sealing stage S. The first and second counter-pressure pad surface 406a, 406b can be convex-shaped and provided with a first and a second counter-pressure pad top section 408a, 408b, respectively.
[0044] As illustrated in
[0045] Further, as presented above, the inclination profile of the first and second sealing surface 314a, 314b may adjusted to meet needs of a specific product, a specific packaging material, a specific type of sealing apparatus 110, a specific packaging machine 100 or a combination thereof. In addition, to even further improve sealing properties, also an inclination profile of the first and second counter-pressure pad surface 406a, 406b may be adjusted to meet the needs stated above.
[0046] In addition, the first and second counter-pressure element 402a, 402b may be shaped differently such that the first and second counter-pressure pad surface 406a, 406b have different inclination profiles. One reason for having these shaped differently is that the tube 104, placed upstream the transversal sealing system 400, provides a pressure caused by the food product held in the tube 104 down onto the transversal sealing system 400. By having the first and second counter-pressure element 402a, 402b, and optionally also, or instead, the first and second inductor 310, 312 shaped differently, the pressure caused by the food product can be compensated for.
[0047]
[0048] From the description above follows that, although various embodiments of the invention have been described and shown, the invention is not restricted thereto, but may also be embodied in other ways within the scope of the subject-matter defined in the following claims.