IP Library › Granted Patent US 11,491,680
Granted Patent B2
US 11,491,680 · App. 15/773,244 · Granted Nov 8, 2022

Method and apparatus for perforating a film of plastic material

Inventors: Roberto Pellengo Gatti (San Pietro Mosezzo, IT); Maurizio Gnappa (San Pietro Mosezzo, IT)
Assignee: No. EL. S.R.L.
B26F1/26B26F3/004B26F3/06B29C55/06B29C2793/0045B29L2007/008B32B3/085B32B3/16
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Quick Facts
Patent No.
US 11,491,680
App. No.
15/773,244
Granted
Nov 8, 2022
Kind
B2
Abstract

A method for perforating a film of plastic material in which the film is perforated whilst it is slid through a perforating device by a plurality of pressurised hot gas jets having a temperature above the melting temperature of the main film, in which the hot gas jets are correlated with the sliding speed of the main film, and in which reinforcing bands obtained from an auxiliary film of plastic material are connected to the perforated main film, making the reinforcing bands adhere between parallel rows of base holes. During perforating, the main film of plastic material is pressed against a perforating template, making the main film of plastic material instantaneously penetrate openings of the perforating template by said hot gas jets. A hot gas perforating device and a suitable apparatus for perforating and stretching a film of plastic material are also provided.

Claims (23)

1. A method for perforating a film of plastic material, wherein a main film is perforated whilst it is slid through a perforating device, and wherein reinforcing bands are formed from an auxiliary film made of plastic material, and wherein said reinforcing bands are connected and made to adhere between parallel rows of base holes of the main film; and subsequently the perforated main film with the reinforcing bands is stretched in a longitudinal sliding direction, wherein:

a pressurised hot gas source is provided, having a temperature above the melting temperature of the main film;

a plurality of pressurised hot gas jets correlated with a sliding speed of the main film is generated sequentially; and

the main film of plastic material is perforated by pressing the main film of plastic material against a perforating planar template, which is stationary with respect to the plurality of hot gas jets and opposite to the perforating device, and the main film of plastic material is made to instantaneously penetrate openings of the perforating planar template by said plurality of hot gas jets,

wherein the plurality of pressurized hot gas jets is controlled by an actuating element of a valve device for cyclically connecting the pressurized hot gas source to the pressurized hot gas jets in synchronism with an advancement movement of the main film,

wherein said actuating element of the valve device comprises a plurality of rotating shutters operationally connected to a mechanical system to synchronize said advancement movement of said main film and

wherein said actuating element of a valve device is driven by a single motor and is operatively connected with the advancement of the main film.

2. The method for perforating a film made of plastic material according to claim 1 , wherein the main film is not stretched before perforating.

3. The method for perforating a film made of plastic material according to claim 2 , wherein the main film is stretched before perforating, with a prestretch percentage comprised between more than 0% and 200%.

4. The method for perforating a film made of plastic material according to claim 3 , wherein the main film is stretched further, with a stretch percentage comprised between 100% and 400% with respect to the prestretched main film, following adhesion of the reinforcing bands.

5. The method for perforating a film made of plastic material according to claim 1 , wherein the auxiliary film is cut into strips and the reinforcing bands are formed by folding the side edges of the strips of auxiliary film, before adhesion to the main film.

6. The method for perforating a film made of plastic material according to claim 1 , wherein the main film has a thickness between 10-40 μm.

7. The method for perforating a film made of plastic material according to claim 1 , wherein the auxiliary film has a thickness between 10-40 μm.

8. The method for perforating a film made of plastic material according to claim 1 , wherein the reinforcing bands has a width comprised between 5-25 mm.

9. The method for perforating a film made of plastic material according to claim 1 , wherein the longitudinal pitch between the holes of the rows of base holes is equal to or greater than 20 mm and the transverse pitch between rows of contiguous holes is equal to or greater than 50 mm.

10. The method for perforating a film made of plastic material according to claim 1 , wherein a ratio A 1 /A 2 between a perforated area and a non-perforated area of the main film is equal to or greater than 0.1.

11. The method for perforating a film made of plastic material according to claim 1 , wherein stretching and applying the reinforcing bands occur by moving the main film at an advancement speed that is of 200 m/min.

12. A method for perforating a film of plastic material, wherein a main film is perforated whilst it is slid through a perforating device, and wherein reinforcing bands are formed from an auxiliary film made of plastic material, and wherein said reinforcing bands are connected and made to adhere between parallel rows of base holes of the main film; and subsequently the perforated main film with the reinforcing bands is stretched in a longitudinal sliding direction, wherein:

a pressurised hot gas source is provided, having a temperature above the melting temperature of the main film;

a plurality of pressurised hot gas jets correlated with a sliding speed of the main film is generated sequentially; and

the main film of plastic material is perforated by pressing the main film of plastic material against a perforating planar template which is stationary with respect to the plurality of hot gas jets and opposite to the perforating device, and the main film of plastic material is made to instantaneously penetrate openings of the perforating planar template by said jets of hot gas wherein the main film is stretchable or heat-shrinkable,

wherein the plurality of pressurized hot gas jets is controlled by an actuating element of a valve device for cyclically connecting the pressurized hot gas source to the pressurized hot gas jets in synchronism with an advancement movement of the main film, wherein said actuating element of the valve device comprises a plurality of rotating shutters operationally connected to a mechanical system to synchronize said advancement movement of said main film; and

wherein said actuating element of a valve device is driven by a single motor and is operatively connected with the advancement of the main film.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 3, 2018
From: PELLENGO GATTI, ROBERTO; GNAPPA, MAURIZIO
To: NO.EL. S.R.L.
Reel/Frame 045704/0263 →
Priority Claims (1)
IT UB2015A005364 · Nov 9, 2015 · national
Continuity (1)
Related Publication 20180319034A1 · Nov 8, 2018