Sealing device and a method for heat sealing packaging material, and a filling machine
10821677 · 2020-11-03
Assignee
Inventors
Cpc classification
B29C65/3656
PERFORMING OPERATIONS; TRANSPORTING
B29C66/1122
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8324
PERFORMING OPERATIONS; TRANSPORTING
B29C66/83541
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8221
PERFORMING OPERATIONS; TRANSPORTING
B29C66/4312
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8322
PERFORMING OPERATIONS; TRANSPORTING
B65B51/303
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8163
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B51/22
PERFORMING OPERATIONS; TRANSPORTING
B29C65/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a sealing device (100) and a method for heat sealing packaging material for producing sealed packages. The invention also relates to a filling machine. The sealing device (100) comprises a first jaw (110) comprising an electromagnet (112), and a second jaw (120) comprising a magnetic element (122). The second jaw (120) is arranged opposite to the first jaw (110) to form a gap adapted to receive the packaging material, such that the first jaw (110) and the second jaw (120) are attracted to each other upon actuation of the electromagnet (112) to close the gap and clamp the packaging material between the first jaw (110) and the second jaw (120).
Claims
1. A sealing device for heat-sealing packaging material when producing sealed packages formed of the packaging material, wherein the packaging material extends in a first direction, the sealing device comprising: a first jaw having a sealing portion and having an electromagnet, wherein the first jaw is located on a first side of the packaging material with respect to the first direction; and a second jaw having a second sealing portion and having a magnetic element configured to be magnetically coupled to the electromagnet of the first jaw, wherein the second jaw is located on a second side of the packaging material with respect to the first direction, wherein the second jaw is opposite of the first jaw with respect to the first direction, such that the second sealing portion and the first sealing portion and configured to form a gap therebetween for receiving the packaging material along the first direction, wherein the first jaw and the second jaw are attracted to each other upon actuation of the electromagnet to close the gap and clamp the packaging material between the first jaw and the second jaw, and wherein the second jaw includes a housing that at least partially houses a shaft connected to the magnetic element, the shaft being spring-loaded in relation to the housing, such that the spring biases the magnetic element toward the electromagnet.
2. The sealing device according to claim 1, wherein the magnetic element of the second jaw is a magnetic disc.
3. The sealing device according to claim 1, wherein the first jaw is movable in relation to the second jaw.
4. The sealing device according to claim 1, wherein the second jaw is movable in relation to the first jaw.
5. The sealing device according to claim 1, wherein at least one of the first jaw or the second jaw comprises an inductor device having a coil conductor which interacts with the packaging material by heating the packaging material during a sealing operation.
6. The sealing device according to claim 5, wherein the inductor device is actuated via inductive power transfer.
7. The sealing device according to claim 1, wherein the electromagnet is actuated via an inductive power transfer.
8. The sealing device according to claim 1, wherein the magnetic element has a spherical cross-sectional surface.
9. The sealing device according to claim 8, wherein the surface of the magnetic element is suspended in the second jaw in order to allow movement of the magnetic element towards the first jaw.
10. The sealing device according to claim 1, wherein at least one of the first jaw or the second jaw has a hinged connection, such that the at least one of the first jaw or the second jaw is configured to rotate about the hinged connection when closing the gap.
11. The sealing device according to claim 1, wherein the electromagnet of the first jaw is a first electromagnet and the first jaw further includes a second electromagnet, and wherein the magnetic element of the second jaw is a first magnetic element and the second jaw further includes a second magnetic element, wherein the first electromagnet is aligned opposite of the first magnetic element with respect to the first direction and the second electromagnet is aligned opposite of the second magnetic element with respect to the first direction.
12. The sealing device according to claim 1, wherein the first jaw further includes a first-jaw magnetic element and the second jaw further includes a second-jaw electromagnet, wherein the electromagnet of the first jaw is aligned opposite of the magnetic element of the second jaw with respect to the first direction and the second-jaw electromagnet is aligned opposite of the first-jaw magnetic element with respect to the first direction.
13. A filling machine for filling packages with a food product, comprising a sealing device according to claim 1.
14. A method for using a sealing device to heat-seal packaging material when producing sealed packages formed of the packaging material that extends in a first direction, wherein the sealing device includes an inductor device, a first jaw having an electromagnet, and a second jaw having a magnetic element, wherein the second jaw includes a housing that at least partially houses a shaft connected to the magnetic element, the shaft being spring-loaded in relation to the housing, such that the spring biases the magnetic element toward the electromagnet and wherein the second jaw is arranged opposite to the first jaw with respect to the first direction to thereby form a gap between the first jaw and the second jaw, such that the gap is configured to receive the packaging material during a sealing operation, the method comprising: actuating the electromagnet of the first jaw to thereby attract the first jaw and the second jaw toward each other and to thereby close the gap and clamp the packaging material between the first jaw and the second jaw; actuating the inductor device to seal the packaging material by heating the packaging material; deactivating the inductor device; and deactivating the electromagnet to release the first jaw and the second jaw from each other and to thereby open the gap between the first jaw and the second.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above objects, as well as additional objects, features and advantages of the present invention, will be more fully appreciated by reference to the following illustrative and non-limiting detailed description of preferred examples of the present invention, when taken in conjunction with the accompanying drawings, wherein:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF PREFERRED EXAMPLES OF THE INVENTION
(6)
(7) This way the closing and opening of the first jaw 110 and the second jaw 120 will be realised without letting the normal forces be transferred into the main frame to which the jaws 120,130 are mounted. Such a transfer of forces is a problem since it may risk causing friction between the moving and stationary parts of the transport system of the filling machine of which the sealing device 100 is a part. Increased friction results in increased pull forces in the transport system, which in turn results in higher mechanical stress to the jaw system causing shorter life-time of its components.
(8) The second jaw 120 is movable with respect to the first jaw 110 by means of the second jaw 120 being rotatable using a hinged connection 128. Naturally, other alternatives are possible, such as e.g. that the first jaw is movable with respect to the second jaw, or both jaws 110,120 are movable with respect to its supporting frame. Naturally, this relative movement between the jaws 110,120 is not limited to an angular movement by means of a hinged connection 128, but could also be realised using for instance transversal movement of the first jaw 110 and/or second jaw 120 for instance in sliding grooves.
(9) The magnetic element 122 of the second jaw 120 may be a magnetic disk. The material of the disk should be magnetic, but different materials may be used, such as for example ferromagnetic metals and alloys, ferromagnetic liquids.
(10) The second jaw 120 comprises an inductor device 124 having a coil conductor which interacts with said packaging material. The purpose of the inductor device 124 is to heat the packaging material to a temperature sufficient to seal the material, the heating being realised by inducing loss currents in a metal layer part of the packaging material that is present between the jaws 110,120. This ensures a localized heating which melts the heat seal plastic material locally. Alternatively, the heating may be realised by inducing loss currents in the first sealing portion 114. This may be advantageous when using package materials without a metal layer.
(11) In an alternative example, the second jaw 120 comprises the inductor device 124.
(12) The power supplied to the inductor device 124 may be realised using inductive power transfer. Thus power may be transmitted without the need of establishing a physical conducting loop to the inductor device. The power supplied to the electromagnets may also be realised using inductive power transfer.
(13) The magnetic element 122 may alternatively be spherically suspended in the second jaw 120.
(14) The actuation between the first and second jaw 110,120 will now be described in more detail with reference to
(15)
(16)
(17) An example of a method for heat sealing packaging material to produce sealed packages will now be described. The method comprises the use of a sealing device 100, the sealing device 100 comprising a first jaw 110 comprising an electromagnet 112 and a second jaw 120 comprising a magnetic element 122. The second jaw 120 is arranged opposite to the first jaw 110 to form a gap adapted to receive said packaging material. The second jaw 120 further comprises an inductor device 124. The method comprises the first step of: actuating the electromagnet 112 of the first jaw 110 so the first jaw 110 and the second jaw 120 attract each other to close the gap and clamp the packaging material. The method further comprises the second step of: actuating the inductor device 124 to seal the packaging material, deactivating the inductor device 124, and deactivating the electromagnet 112 to release the first jaw 110 and the second jaw 120 from each other.
(18) It is understood that a sealing device according to the disclosure herein can be for instance an induction sealing device.
(19) It is understood that other variations in the present invention are contemplated and in some instances, some features of the invention can be employed without a corresponding use of other features. Accordingly, it is appropriate that the appended claims be construed broadly in a manner consistent with the scope of the invention.