Handle For Heat Shrink Film
20210347513 ยท 2021-11-11
Inventors
Cpc classification
B65B21/245
PERFORMING OPERATIONS; TRANSPORTING
B65B61/14
PERFORMING OPERATIONS; TRANSPORTING
B65B11/50
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B61/14
PERFORMING OPERATIONS; TRANSPORTING
B65B11/50
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The objective of this invention is to provide a handle for carrying an article or a bundle of bottles that is more resistant to tearing and delaminating and can carry heavy loads. This is accomplished by placing a strip on the inside of the wrapping material so that the strip that forms the handle is enclosed within the wrapping material. The strip film maintains direct contact with the wrapping film. Direct contact is achieved by electrostatic bonding of the handle film on the wrapping film. Therefor more than 80% of the handle seals to the wrapping film.
Claims
1. A process for heat shrinking a film wrapped bundle or an article having a handle strip bonded to the inside of the wrapping film made from a material that seals to the heat shrinking film during the heat shrinking comprising applying a strip of plastic material that will act as a handle on a heat shrinkable wrapping film, electrostatically bonding the handle strip to the wrapping film, providing openings in the wrapping film adjacent the handle strip that would allow one to grip over the handle, film wrapping the bundle having the bonded strip over the bundle so that the strip is enclosed by the wrapping film, heat shrinking the film wrapped article causing the strip to seal to the film wrapped article.
2. A process according to claim 1 including overlapping a strip bonded wrapping film during film wrapping the article whereby the strip is sandwiched between two layers of wrapping film so that heat shrinking seals the strip to both layers of film.
3. A process according to claim 1 wherein the wrapping film and strip are made of the same material and are heat shrinkable.
4. A process according to claim 2 wherein the strip bonded film is perforated to provide a predetermined length of film for wrapping the article.
5. A process according claim wherein a flap of the strip bonded wrapping film is pushed on a conveyor.
6. A process according to claim 1 including forming a vertical curtain by joining a strip bonded wrapping film with a wrapping film.
7. A process according claim 6 including pushing a bundle through the vertical curtain and cutting the film with a hot sealing blade that joints the cut films to form a vertical curtain.
8. A process according to claim 1 where the heat shrinking seals at least 80% of the film handle to the wrapping film.
9. A process according to claim 1 includes providing materials for the strip handle film and wrapping film material that are capable to be recycled together.
10. An apparatus for heat shrinking a film wrapped bundle having a handle strip bonded to the inside of the wrapping film made from a material that seal to the heat shrinking film during the heat shrinking comprising means for applying a strip of plastic material that will act as a handle on a heat shrinkable wrapping film, means for electrostatically bonding the handle strip to the wrapping film, means for providing openings in the wrapping film adjacent the handle strip that would allow one to grip over the handle, means for film wrapping the bundle having the bonded strip over the bundle so that the strip is enclosed by the wrapping film, and means for heat shrinking the film wrapped article causing the strip to seal to the film wrapped article.
11. An apparatus according to claim 10 including means for overlapping the strip bonded wrapping film during film wrapping the article whereby the strip is sandwiched between two layers of wrapping film so that heat shrinking seals the strip to both layers of film.
12. An apparatus according to claim 11 including means for perforating the strip bonded film to provide a predetermined length of film for wrapping the article.
13. An apparatus according claim 12 including means for pushing a flap of the strip bonded wrapping film onto a conveyor.
14. An apparatus according to claim 10 including means for forming a vertical curtain by joining a strip bonded wrapping film with a wrapping film.
15. An apparatus according claim 14 including means for pushing a bundle through the vertical curtain and cutting the film with a hot sealing blade that joins the cut films to form a vertical curtain.
16. A process for heat shrinking a film wrapped bundle having a handle strip bonded to the inside of the wrapping film made from a material that forms a continuous seal between the handle strip and the film wrapping during heat shrinking comprising applying a strip of plastic material that will act as a handle on a heat shrinkable wrapping film, increasing the surface contact between the handle strip film and the film wrapping film to ensure that at least 85% of the handle strip film maintains in contact with the wrapping film. providing openings in the wrapping film adjacent the handle strip that would allow one to grip over the handle, film wrapping the bundle having the bonded strip over the bundle so that the strip is enclosed by the wrapping film, heat shrinking the film wrapped article causing the strip to form a seal where the wrapping film maintains contact with the handle strip film.
17. A process according to claim 16 includes electrostatically bonding the handle strip to the wrapping film
18. An article made by the process of claim 17
19. An article made by the process of claim 18 wherein the handle film and wrapping film can be recycled together.
Description
BRIEF DESCRIPTION OF THE DRAWING
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DETAILED DESCRIPTION OF THE INVENTION
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[0014] The strip bonded film proceeds to the film perforation unit (12) where it is perforated across the width of the bonded films to provide desired length of bonded film to wrap the article (3). Then the bonded films advances to the separation rollers (11) that separates the perforated film at the required length and advances the front edge of the bonded films shown as flap (10) on the top of transfer conveyor (7). A bundle (3) is positioned on top of flap (10). As the bundle advances on the transfer conveyor (7) the wrap arm (8) lifts the tail edge of the bonded film and covers the bundle (3) with the bonded film (21). As the transfer conveyor pushes bundle (3) onto the heat shrink tunnel conveyor (22), the tail edge of the bonded film is pushed underneath the bundle (3) to form an overlap (19) with flap (10). By adjusting the location of the flap and the length of the bonded film, the overlap (19) is usually in the center line of the package as shown in
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