Thermoforming packaging machine with film deflection
11260999 · 2022-03-01
Assignee
Inventors
Cpc classification
B65B65/003
PERFORMING OPERATIONS; TRANSPORTING
B65B5/02
PERFORMING OPERATIONS; TRANSPORTING
B65H23/32
PERFORMING OPERATIONS; TRANSPORTING
B65B31/00
PERFORMING OPERATIONS; TRANSPORTING
B65B25/06
PERFORMING OPERATIONS; TRANSPORTING
B65H2406/351
PERFORMING OPERATIONS; TRANSPORTING
B65H2301/41704
PERFORMING OPERATIONS; TRANSPORTING
B65B61/02
PERFORMING OPERATIONS; TRANSPORTING
B65B51/10
PERFORMING OPERATIONS; TRANSPORTING
B65B47/04
PERFORMING OPERATIONS; TRANSPORTING
B65H2701/191
PERFORMING OPERATIONS; TRANSPORTING
B65B9/045
PERFORMING OPERATIONS; TRANSPORTING
B65B47/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B5/02
PERFORMING OPERATIONS; TRANSPORTING
B65B51/10
PERFORMING OPERATIONS; TRANSPORTING
B65B61/02
PERFORMING OPERATIONS; TRANSPORTING
B65B9/04
PERFORMING OPERATIONS; TRANSPORTING
B65B47/02
PERFORMING OPERATIONS; TRANSPORTING
B65H23/32
PERFORMING OPERATIONS; TRANSPORTING
B65B25/06
PERFORMING OPERATIONS; TRANSPORTING
B65B31/00
PERFORMING OPERATIONS; TRANSPORTING
B65B47/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A thermoforming packaging machine that includes a film holder for receiving a lower film supply roll and one behind the other in a sequential arrangement along a production direction a pretreatment station for pretreating the lower film web, a forming station for forming troughs in the lower film web by thermoforming, an insertion line for filling the troughs with products and a sealing station for sealing the troughs with a top film. A transport device is configured to transport the lower film web along the production direction through the pretreatment station, further to the forming station, further to the insertion line and finally to the sealing station. A deflection unit arranged at least partially below the pretreatment station is configured to deflect the lower film web before reaching the pretreatment station. The pretreatment station may include a punching or slitting unit to punch or slit the lower film web.
Claims
1. A thermoforming packaging machine having a production direction, wherein the thermoforming packaging machine comprises: a film holder for receiving a supply roll of a lower film web; a pretreatment station for pretreating the lower film web; a forming station arranged downstream of the pretreatment station with respect to the production direction and having a forming tool for forming one or more troughs in the lower film web by thermoforming; an insertion line arranged downstream of the forming station with respect to the production direction for filling the one or more troughs with products; a sealing station arranged downstream of the insertion line with respect to the production direction and having a sealing tool for sealing the one or more troughs with a top film; a transport device which is configured to transport the lower film web in the production direction sequentially through the pretreatment station, the forming station, the insertion line and the sealing station; and a deflection unit configured to deflect the lower film web by an angle, viewed from above, around a vertical axis before the lower film web reaches the pretreatment station, wherein the angle is transverse to the vertical axis, and wherein the deflection unit is disposed at least partially below the pretreatment station.
2. The thermoforming packaging machine according to claim 1, wherein the film holder is provided offset with respect to the production direction.
3. The thermoforming packaging machine according to claim 1, wherein the deflection unit is configured to deflect the lower film web by an angle between 60° and 120° around the vertical axis.
4. The thermoforming packaging machine according to claim 1, wherein the deflection unit is configured such that a running direction of the lower film web after deflection through the deflection unit is one of parallel to the production direction or anti-parallel to the production direction when viewed from above the thermoforming packaging machine.
5. The thermoforming packaging machine according to claim 1, further comprising a feeding device which is adapted to feed the lower film web into the pretreatment station after being deflected by the deflection unit.
6. The thermoforming packaging machine according to claim 5, further comprising a machine frame upon which the pretreatment station, the forming station, the insertion line and the sealing station are mounted and arranged sequentially one after the other in the production direction, and wherein the feeding device is also mounted on the machine frame.
7. The thermoforming packaging machine according to claim 5, wherein the feeding device comprises at least one horizontally aligned deflection roll.
8. The thermoforming packaging machine according to claim 5, wherein the feeding device is disposed at least partially below the pretreatment station.
9. The thermoforming packaging machine according to claim 1, which comprises a machine frame upon which the pretreatment station, the forming station, the insertion line and the sealing station are arranged sequentially one after the other in the production direction, wherein the machine frame below the pretreatment station has a recess area within which the deflecting unit is at least partially disposed.
10. The thermoforming packaging machine according to claim 9, wherein the machine frame has a cantilever arm that projects in a direction opposite the production direction and wherein the pretreatment station is disposed at least partially on the cantilever arm.
11. The thermoforming packaging machine according to claim 1, wherein the pretreatment station is upstream of the forming station in the production direction and the pretreatment station comprises a preheating station for preheating the lower film web prior to the lower film being transported to the forming station.
12. The thermoforming packaging machine according to claim 1, wherein the pretreatment station comprises a punching or slitting unit configured to punch or slit the lower film web.
13. The thermoforming packaging machine according to claim 12, wherein the punching or slitting unit comprises a waste device configured for collecting and/or removing film remains resulting from the punching or slitting of the lower film web.
14. The thermoforming packaging machine according to claim 12, wherein the punching or slitting unit comprises a suction device for suctioning off film remains resulting from the punching or slitting of the lower film web.
15. The thermoforming packaging machine according to claim 1, wherein the thermoforming packaging machine is configured to feed the lower film web to the transport device so that the lower film web is oriented parallel to the production direction, and so that the lower film web passes through the pretreatment station and the forming station in the production direction.
16. The thermoforming packaging machine according to claim 1, further comprising a feeding device configured to feed the lower film web into the pretreatment station after it has been deflected by the deflection unit so that the lower film web is oriented parallel to the production direction.
17. A thermoforming packaging machine having a production direction, wherein the thermoforming packaging machine comprises: a film holder for receiving a supply roll of a lower film web; a pretreatment station for pretreating the lower film web; a forming station arranged downstream of the pretreatment station with respect to the production direction and having a forming tool for forming one or more troughs in the lower film web by thermoforming; an insertion line arranged downstream of the forming station with respect to the production direction for filling the one or more troughs with products; a sealing station arranged downstream of the insertion line with respect to the production direction and having a sealing tool for sealing the one or more troughs with a top film; a transport device which is configured to transport the lower film web in the production direction sequentially through the pretreatment station, the forming station, the insertion line and the sealing station; and a deflection unit configured to deflect the lower film web by an angle with respect to a vertical axis before the lower film web reaches the pretreatment station, wherein the deflection unit is disposed at least partially below the pretreatment station, and wherein the film holder is arranged laterally offset to a left side or a right side with respect to the production direction.
18. The thermoforming packaging machine according to claim 17, wherein the deflection unit is configured such that a running direction of the lower film web after deflection through the deflection unit is one of parallel to the production direction or anti-parallel to the production direction when viewed from above the thermoforming packaging machine.
19. The thermoforming packaging machine according to claim 17, further comprising a feeding device which is configured to feed the lower film web into the pretreatment station after being deflected by the deflection unit.
20. The thermoforming packaging machine according to claim 17, further comprising a machine frame upon which the pretreatment station, the forming station, the insertion line and the sealing station are arranged sequentially one after the other in the production direction, wherein the machine frame below the pretreatment station has a recess area within which the deflecting unit is at least partially disposed.
21. The thermoforming packaging machine according to claim 20, wherein the machine frame has a cantilever arm that projects in a direction opposite the production direction, and wherein the pretreatment station is disposed at least partially on the cantilever arm.
22. The thermoforming packaging machine according to claim 17, wherein the thermoforming packaging machine is configured to feed the lower film web to the transport device so that the lower film web is oriented parallel to the production direction, and so that the lower film web passes through the pretreatment station and the forming station in the production direction.
23. The thermoforming packaging machine according to claim 17, further comprising a feeding device configured to feed the lower film web into the pretreatment station after it has been deflected by the deflection unit so that the lower film web is oriented parallel to the production direction.
24. A thermoforming packaging machine having a production direction, wherein the thermoforming packaging machine comprises: a film holder for receiving a supply roll of a lower film web; a pretreatment station for pretreating the lower film web; a forming station arranged downstream of the pretreatment station with respect to the production direction and having a forming tool for forming one or more troughs in the lower film web by thermoforming; an insertion line arranged downstream of the forming station with respect to the production direction for filling the one or more troughs with products; a sealing station arranged downstream of the insertion line with respect to the production direction and having a sealing tool for sealing the one or more troughs with a top film; a transport device which is configured to transport the lower film web in the production direction sequentially through the pretreatment station, the forming station, the insertion line and the sealing station; and a deflection unit configured to deflect the lower film web by an angle with respect to a vertical axis before the lower film web reaches the pretreatment station, wherein the deflection unit is disposed at least partially below the pretreatment station, wherein the pretreatment station comprises a punching or slitting unit configured to punch or slit the lower film web, and wherein the punching or slitting unit comprises a waste device configured for collecting and/or removing film remains resulting from the punching or slitting of the lower film web.
Description
DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
(1) In the following, an advantageous embodiment of the present invention will be explained in more detail making reference to a drawing, in which the individual figures show:
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DETAILED DESCRIPTION OF THE INVENTION
(6) The invention will now be described with reference to the drawing figures, in which like reference numerals refer to like parts throughout. For purposes of clarity in illustrating the characteristics of the present invention, proportional relationships of the elements have not necessarily been maintained in the drawing figures.
(7) The following detailed description of the invention references specific embodiments in which the invention can be practiced. The embodiments are intended to describe aspects of the invention in sufficient detail to enable those skilled in the art to practice the invention. Other embodiments can be utilized and changes can be made without departing from the scope of the present invention. The present invention is defined by the appended claims and the description is, therefore, not to be taken in a limiting sense and shall not limit the scope of equivalents to which such claims are entitled.
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(10) The pretreatment station 5 is designed to pretreat the lower film web 17 before reaching the forming station 7. The forming station 7 arranged downstream of the pretreatment station 5 with respect to production direction P comprises a forming tool 25 for forming troughs 27 in the lower film web 17 by thermoforming. In particular, the forming tool 25 may have a forming tool upper part and a forming tool lower part which are movable relative to each other in a vertical direction for thermoforming the troughs 27. In the insertion line 9 arranged downstream of the forming station 7 with respect to the production direction P, the troughs 27 formed in the lower film web 17 are filled with products 29 to be packaged. The troughs 27 may be filled automatically or manually. In the embodiment shown, the products 29 are conveyed from a processing station 33, such as a food cutting device, to the insertion line 9 using a feed belt 31, which runs parallel to the production direction P above the forming station 7. The filled troughs 27 are sealed with a top film 35 in the sealing station 11 arranged downstream of the insertion line 9 with respect to the production direction P. For this, the sealing station 11 comprises a sealing tool 37, which preferably comprises a sealing tool upper part and a sealing tool lower part movable along a vertical direction perpendicular to it. After closing the troughs 27 in the sealing station 11, the packages are separated from the film composite in the cutting station 13 so that the finished and separated packages 39 can then be transported away using a conveying device 41. In the embodiment shown, the cutting station 13 comprises a cross-cutting device 43 and a longitudinal cutting device 45.
(11) As illustrated in
(12) In order to be able to introduce the lower film web 17 into the production sequence of the thermoforming packaging machine 1 along the production direction P despite the laterally offset film holder 47, a deflection unit 51 is provided. The deflection unit 51 is configured to deflect the lower film web 17 by an angle a with respect to a vertical axis V (and around a vertical axis V′) before reaching the pretreatment station 5. In the embodiment shown, the lower film web 17 is deflected by the deflection unit 51 from the removal direction E to an intermediate direction Z, which is antiparallel to the production direction P.
(13) Since the deflection unit 51 is at least partially located under the pretreatment station 5 ac-cording to the invention, details of the deflection are not visible in
(14) In the shown variant, the lower film web 17 is fed to the deflection unit 51 along the removal direction E along which the lower film web 17 leaves the film holder 47. However, this is not absolutely necessary. It would also be conceivable, for example, that further deflection units are provided between the film holder 47 and the deflection unit 51 in order to be able to substantially position the film holder 47 in a completely free manner. Preferably, the lower film web 17 is basically deflected by 90° by the deflection unit 51. Depending on the direction in which the lower film web 17 reaches the deflection unit 51, however, it can also be preferable, if the deflection unit 51 deflects the lower film web 17 by a different angle, for example, by an angle between 60° and 120° or an angle between 80° and 100°.
(15) The deflection edge 53 of the deflection unit 51 can, for example, be formed by a cylindrical body 55, as shown in
(16) As shown in
(17) The thermoforming packaging machine 1 further comprises a feeding device 63 which is con-figured to feed the lower film web 17 into the pretreatment station 5 after it has been deflected by the deflection unit 51. The feeding device 63 does not necessarily have to feed the lower film web 17 into the pretreatment station 5 itself. It is sufficient, if it aligns the lower film web 17 in such a way that it is introduced into the normal production sequence of the thermoforming packaging machine 1, thus, received by the transport device 15 for conveying. In the embodiment shown, the feeding device 63 comprises a plurality of horizontally aligned deflection rolls 65. Preferably, the feeding device 63 is also arranged at least partially under the pretreatment station 5 and/or the cantilever arm 61 in order to save further installation space. The feeding device 63, in particular its deflection rolls 65, can be mounted on the ma-chine frame 3.
(18) In the embodiment in which the lower film web 17 is shown in
(19) In the embodiment shown, the pretreatment station 5 comprises a preheating station 67 for preheating the lower film web 17 before reaching the forming station 7 in order to facilitate thermoforming through the forming station 7. In addition, the pretreatment station 5 in the embodiment shown comprises a punching or slitting unit 69 for punching or slitting the bottom film web 17. Through slits or holes introduced using the punching or slitting unit 69, gas can be suctioned out of the packaging or a protective gas atmosphere can be introduced in the sealing station 11 before the packaging is sealed so that the products can be packaged under vacuum or protective gas atmosphere. The punching or slitting unit 69 shown comprises a suction device 71 for suctioning off film remains arising during or resulting from the punching or slitting of the lower film web 17 so that these cannot fall onto the lower film web 17 in the region of the deflection unit 51. However, suctioning off the film remains is not absolutely necessary and there could also be provided a waste device of another design for the collection and/or removal of film remains resulting from the punching or slitting of the lower film web 17. In the simplest case, a sheet could simply be fitted between the pretreatment station 5 and the deflection unit 51 to collect film remains.
(20) It is also conceivable that the pretreatment station 5 only comprises either a preheating station 67 or a punching or slitting unit 69, but not both. For example, the punching or slitting unit 69 could be integrated into the forming station 7 or could be completely omitted. A punching or slitting unit 69 or a preheating station 67 are particularly well suited for providing the deflection unit 51 underneath, since they have a relatively low overall height compared to, for example, the forming station 7 or the sealing station 11. However, it would also be conceivable that the pretreatment station 5 could alternatively or additionally include another machine unit for pretreating the lower film web 17.
(21) From the foregoing, it will be seen that this invention is one well adapted to attain all the ends and objects hereinabove set forth together with other advantages which are obvious and which are inherent to the structure. It will be understood that certain features and sub combinations are of utility and may be employed without reference to other features and sub combinations. This is contemplated by and is within the scope of the claims. Since many possible embodiments of the invention may be made without departing from the scope thereof, it is also to be understood that all matters herein set forth or shown in the accompanying drawings are to be interpreted as illustrative and not limiting.
(22) The constructions and methods described above and illustrated in the drawings are presented by way of example only and are not intended to limit the concepts and principles of the present invention. Thus, there has been shown and described several embodiments of a novel invention.
(23) As is evident from the foregoing description, certain aspects of the present invention are not limited by the particular details of the examples illustrated herein, and it is therefore contemplated that other modifications and applications, or equivalents thereof, will occur to those skilled in the art. The terms “having” and “including” and similar terms as used in the foregoing specification are used in the sense of “optional” or “may include” and not as “required”. Many changes, modifications, variations and other uses and applications of the present construction will, however, become apparent to those skilled in the art after considering the specification and the accompanying drawings. All such changes, modifications, variations and other uses and applications which do not depart from the spirit and scope of the invention are deemed to be covered by the invention which is limited only by the claims which follow.