Thermoforming packaging machine with space-saving film source

11459134 ยท 2022-10-04

Assignee

Inventors

Cpc classification

International classification

Abstract

A thermoforming packaging machine comprises a film source, a forming station, a sealing station and a conveying device. The film source is configured to receive a lower film supply roll and provide a lower film web unwound from the lower film supply roll. The conveying device is configured to convey the lower film web from the film source to the forming station and further to the sealing station. The film source comprises a holding mandrel for receiving thereon the lower film supply roll and a film storage device configured for accommodating a variable length of the lower film web and regulating a film tension of the lower film web. The holding mandrel and the film storage device are arranged one above the other in a vertical direction.

Claims

1. A thermoforming packaging machine, comprising: a film source for receiving a lower film supply roll and providing a lower film web unwound from the lower film supply roll; a forming station for forming packaging troughs in the lower film web by thermoforming; a sealing station for closing the packaging troughs by sealing an upper film to the lower film web; and a conveying device configured for conveying the lower film web from the film source to the forming station and further to the sealing station; wherein the film source comprises a holding mandrel for receiving the lower film supply roll, and a film storage device configured to accommodate a variable length of the lower film web and to regulate a film tension of the lower film web, wherein the holding mandrel and the film storage device are arranged one above the other in a vertical direction, and wherein the film source further comprises a gluing table, which is movable between a use position and a stowed position, the gluing table providing, in the use position, a working surface oriented parallel to a path of the lower film web and being, in the stowed position, distanced from the path of the lower film web.

2. The thermoforming packaging machine according to claim 1, wherein the film source comprises a frame having attached thereto the holding mandrel and the film storage device.

3. The thermoforming packaging machine according to claim 1, wherein the film storage device comprises a dancer.

4. The thermoforming packaging machine according to claim 1, wherein the film storage device comprises deflection elements for deflecting the lower film web.

5. The thermoforming packaging machine according to claim 4, wherein the deflection elements comprise at least one stationary deflection element and at least one movable deflection element.

6. The thermoforming packaging machine according to claim 1, wherein the film source is configured so that the lower film web enters the film storage device on a first side of the holding mandrel and exits the film storage device on an opposite, second side of the holding mandrel when the lower film supply roll is received in the film source.

7. The thermoforming packaging machine according to claim 1, wherein the holding mandrel is configured to receive the lower film supply roll thereon in a non-rotatable manner.

8. The thermoforming packaging machine according to claim 1, wherein the film source has a drive unit for driving the holding mandrel, so as to unwind the lower film web.

9. The thermoforming packaging machine according to claim 8, wherein the drive unit is configured to drive the holding mandrel for continuously and uniformly unwinding the lower film web.

10. The thermoforming packaging machine according to claim 1, wherein the film storage device is arranged above the holding mandrel.

11. The thermoforming packaging machine according to claim 1, wherein the film storage device is arranged below the holding mandrel.

12. The thermoforming packaging machine according to claim 1, wherein the film source, the forming station and the sealing station are arranged linearly one after the other in a production line.

13. The thermoforming packaging machine according to claim 1, wherein the forming station and the sealing station are arranged linearly one after the other in a production line and the film source is arranged laterally offset relative to the production line.

14. The thermoforming packaging machine according to claim 1, wherein the gluing table is provided along the path of the lower film web between the holding mandrel and the film storage device.

15. The thermoforming packaging machine according to claim 1, wherein the gluing table is movable between the use position and the stowed position by rotation about an axis.

16. The thermoforming packaging machine according to claim 15, wherein the axis is a vertical axis.

17. A thermoforming packaging machine comprising: a film source for receiving a lower film supply roll and providing a lower film web unwound from the lower film supply roll; a forming station for forming packaging troughs in the lower film web by thermoforming; a sealing station for closing the packaging troughs by sealing an upper film to the lower film web; and a conveying device configured to convey the lower film web from the film source to the forming station and further to the sealing station; wherein the film source comprises a gluing table that is movable between a use position and a stowed position, the gluing table providing, in the use position, a working surface oriented parallel to a path of the lower film web and being, in the stowed position, distanced from the path of the lower film web.

18. The thermoforming packaging machine according to claim 17, wherein the film source comprises a holding mandrel configured to receive the lower film supply roll.

19. The thermoforming packaging machine according to claim 17, wherein the film source comprises a film storage device configured to accommodate a variable length of the lower film web and to regulate a film tension of the lower film web.

20. The thermoforming packaging machine according to claim 17, wherein the gluing table is movable between the use position and the stowed position by rotation about an axis.

Description

BRIEF DESCRIPTION OF THE DRAWINGS

(1) In the following, embodiments according to the present disclosure will be explained in more detail, making reference to the figures.

(2) FIG. 1 shows a schematic top view of a thermoforming packaging machine according to an embodiment in which the film source, the forming station and the sealing station are arranged linearly one after the other in a production line;

(3) FIG. 2 shows a schematic top view of a thermoforming packaging machine according to another embodiment in which the forming station and the sealing station are arranged linearly one after the other in a production line and the film source is arranged laterally offset relative to the production line;

(4) FIG. 3 shows a schematic sectional view of a film source according to an embodiment in which the film storage device is arranged above the holding mandrel; and

(5) FIG. 4 shows a schematic sectional view of a film source according to another embodiment in which the film storage device is arranged below the holding mandrel.

DETAILED DESCRIPTION

(6) FIGS. 1 and 2 show different embodiments of a thermoforming packaging machine 1. The thermoforming packaging machine 1 comprises in both embodiments a film source 3 for providing a lower film web 5. The thermoforming packaging machine 1 additionally comprises a forming station 7, a sealing station 9 and a cutting station 11. A machine frame 13 of the thermoforming packaging machine 1 has provided thereon a conveying device 15 conveying the lower film web 5 from the film source 3 to the forming station 7, further to the sealing station 9 and still further to the cutting station 11. For this purpose, the conveying device 15 may, for example, comprise continuously circulating chains on both lateral sides of the lower film web 5, the chains having clamping elements 17 which grip the lower film web 5.

(7) In the forming station 7, packaging troughs are formed into the lower film web 5 by thermoforming. The forming station 7 may comprise a forming tool upper part and a forming tool lower part between which the lower film web 5 is thermoformed. Between the forming station 7 and the sealing station 9, products to be packaged are fed into the packaging troughs. In the sealing station 9, the filled packaging troughs are closed by sealing-on an upper film. For this purpose, the sealing station 9 may comprise a sealing tool upper part and a sealing tool lower part, which seal between them the upper film onto the lower film web. In the cutting station 11, the sealed packages are separated from the film web.

(8) Both in the embodiment according to FIG. 1 and in the embodiment according to FIG. 2, the forming station 7, the sealing station 9 and the cutting station 11 are arranged linearly one after the other in a production line extending along a production direction P. The embodiments according to FIGS. 1 and 2 differ from one another in how the film source 3 is arranged in relation to the production line. In the embodiment shown in FIG. 1, the film source 3 is also arranged in the production line, linearly upstream of the forming station 7, the sealing station 9 and the cutting station 11. In the embodiment according to FIG. 2, however, the film source 3 is arranged laterally offset relative to the production line. This allows the thermoforming packaging machine 1 to be configured with shorter dimensions along the production direction P, or an additional working station can be provided along the production direction P while maintaining a similar length of the thermoforming packaging machine 1. In FIG. 2, such an additional working station is provided in the form of a preheating station 19 for preheating the lower film web 5 before it arrives at the forming station 7. Below the preheating station 19, there is a deflection device, which deflects the lower film web 5 from the direction, in which it exits the film source 3, into the production direction P. Such a deflection device is described e.g., in DE 10 2018 204 044 A1.

(9) FIG. 3 shows a sectional view of the film source 3 according to an embodiment. The film source 3 shown in FIG. 3 may be used together with the embodiment according to FIG. 1 or together with the embodiment according to FIG. 2.

(10) The film source 3 comprises a frame 21 configured separately from the machine frame 13. Alternatively, the frame 21 of the film source 3 may be configured as part of the machine frame 13.

(11) The film source 3 comprises a holding mandrel 23 for receiving thereon a lower film supply roll 25. The lower film supply roll 25 could be received on the holding mandrel 23 such that it is rotatable relative to the holding mandrel 23. In this case, the lower film web 5 could be unwound by the forward movement of the conveying device 15. However, in particular in the case of larger lower film supply rolls 25, it will be advantageous if the lower film supply roll 25 is non-rotatably connected to the holding mandrel 23 and the holding mandrel 23 is driven by means of a drive unit 27 for unwinding the lower film web 5.

(12) The film source 3 further comprises a film storage device 29 attached to the frame 21. The film storage device 29 comprises a plurality of stationary deflection elements 31, in particular stationary deflection rollers, and a plurality of movable deflection elements 33, in particular movable deflection rollers. As shown in FIG. 3, the lower film web 5 moves along a path defined by the deflection elements 31, 33. In the illustrated embodiment, the movable deflection elements 33 are movable together. To this end, the movable deflection elements 33 are attached to a support element 35 on both sides of the lower film web 5. The support elements 35 are movable in a guide structure 37 of the frame 21. The movable deflection elements 33 arranged on the support elements 35 form a dancer 39. In the illustrated embodiment, the dancer 39 is preloaded by its weight in the guide structures 37 of the frame 21 to a lower position at which the film storage device 29 accommodates an increased length of the lower film web 5. Alternatively, the dancer 39 could be preloaded by a preloading element, such as a preload spring.

(13) The dancer 39 regulates a film tension of the lower film web 5. If the film tension decreased, the dancer 39 would move downwards, thus compensating for the decreasing film tension. If the film tension increased, the dancer 39 would be pulled upwards, thus releasing an additional length of the lower film web 5, whereby the increased film tension would be compensated for. By continuously and uniformly rotating the holding mandrel 23, the drive unit 27 may, for example, continuously unwind the lower film web 5 at a constant unwinding rate. Variations in the film tension of the lower film web 5 that would occur during continuous unwinding of the lower film web 5, if e.g., the forming station 7, the sealing station 9 and the cutting station 11 were operating in a clocked mode, are compensated for by the film storage device 29.

(14) In the embodiment according to FIG. 3, the film storage device 29 is provided above the holding mandrel 23. The film source 3 may thus be provided with a compact structural design and placed close to the forming station 7.

(15) FIG. 4 shows an alternative embodiment of the film source 3. Also the embodiment of FIG. 4 may be used both in the embodiment according to FIG. 1 and in the embodiment according to FIG. 2. The embodiment according to FIG. 4 differs from the embodiment according to FIG. 3 only insofar as the film storage device 29 is not provided above the holding mandrel 23, but is provided below the holding mandrel 23. Also in this case, the film source 3 may be provided with a compact structural design and placed particularly close to the forming station 7.

(16) In the illustrated embodiments, the film source 3 further comprises a gluing table 41. The gluing table 41 is rotatable about a vertical axis 43 between a use position and a stowed position. In the figures, the use position of the gluing table 41 is shown in solid lines and the stowed position is shown in dashed lines. In the use position, the gluing table provides a working surface 45 oriented parallel to the path of the lower film web 5. The working surface 45 may be used for gluing the leading end of the new lower film web 5 to the trailing end of the previously processed lower film web 5, when the lower film supply roll is exchanged. It will be expedient to carry out the gluing of the film ends before the end of the lower film web 5 arrives at the film storage device 29. In the stowed position shown in dashed lines in the figures, the gluing table 41 has been rotated away from the path of the lower film web 5 in comparison with the use position.