Machine and methods for the manufacture of air-filled cushions
View Patent ↗A device and method are disclosed for forming air filled cushions. The device includes a drive mechanism to move inflatable tubing through the apparatus, and an injector, optionally including an outlet, located continuously within, or within a portion of, the tubing. This arrangement can permit the formation of air filled cushions in a continuous stream. Also disclosed is a roll of plastic tubing that is sealed transversely at a succession of intervals, with each pair of seals stopping just short of a longitudinal center line of the tubing. Such tubing might be used in conjunction with the apparatus, the central gap between the seals allowing passage of the injector.
1. A machine for the production of air filled cushions, comprising:
a drive mechanism that moves layers of plastic through the machine along a predefined path;
a film holder configured to hold a supply of the layers of plastic, the holder located so that drive mechanism draws the plastic film from the supply holder along the path;
an injector having an outlet located adjacent to the path that injects air between the layers so that the drive mechanism moves the layers with respect to the injector; and
a sealing mechanism comprising first and second sealing portions having an operating position in which the sealing portions are disposed on opposite sides of the layers in the path and pressed together thereagainst to provide sufficient pressure for sealing the layers together to seal off the injected air;
wherein the first and second sealing portions are associated to move between the operating position and a standby position, in which standby position the sealing portions are separated from each other, releasing the layers of the plastic in the path, and the drive mechanism is associated with the sealing mechanism to move together between the operating and standby positions.
2. The machine of claim 1 , wherein the first sealing portion comprises a heat sealer, which has an operating position in heating association with the plastic, and a standby position in which it is removed from the plastic.
3. The machine of claim 1 , wherein the sealing mechanism is located downstream of the outlet to weld the plastic layers together longitudinally.
4. The machine of claim 1 , wherein the layers of plastic are associated as plastic tubing.
5. The machine of claim 4 , wherein the machine is adapted for use with plastic tubing having two rows of transverse, parallel welds, the welds of each row extending toward a longitudinal centerline of the tubing from a respective one of the side edges, a weld of one row being generally co-linear with a weld of the other row, with an unwelded section between them, and, in use, the injector member is located generally within the unwelded section, whereby at least one outlet of the separator member is operative to inflate portions of the plastic tubing defined by adjacent welds in each row.
6. The machine of claim 1 , further comprising a perforator located downstream of the sealing mechanism, the perforator configured to perforate the plastic layers longitudinally.
7. The machine of claim 6 , in which the heat sealer includes a driven belt, and the perforator is arranged on one of the rollers which support the belt.
8. The machine of claim 1 , wherein the injector has an inlet and is provided with a cutter, upstream of the inlet, to cut a surface of the plastic layers, allowing the layers to pass around the inlet.
9. The machine of claim 8 , further comprising a perforator located downstream of the cutter, the perforator configured to perforate the plastic layers longitudinally.
10. In combination, a machine of claim 1 and a roll of plastic to be inflated that includes the layers sealed transversely at a succession of spaced intervals along its length by of seals.
11. The machine of claim 1 , wherein in the standby position, the first sealing portion is spaced away from the layers.
12. The machine of claim 1 , further comprising a first belt that extends around the first sealing portion, and presses against the layers in the path in the operating position.
13. The machine of claim 12 , wherein the drive mechanism comprises a drive wheel in driving association with the first belt and another wheel in supportive association with the first belt, and said another wheel, first belt, and first belt sealing portion are associated to pivot about the drive wheel between the operating and standby positions.
14. The machine of claim 12 , wherein the entire first belt is spaced away from the path in the standby position to release the layers of the plastic in the path.
15. The machine of claim 12 , further comprising a second belt that extends around the second sealing portion, and presses against the layers in the path in the operating position.
16. The machine of claim 1 , wherein the first sealing portion is associated with the second sealing portion for pivoting between the operating and standby positions.
17. The machine of claim 2 , wherein the sealing mechanism is a heat sealer, and the machine is configured for maintaining the first portion heated when in the standby position.
18. The machine of claim 1 , wherein the driving mechanism is operable to drive the layers over the injector during the injection.
19. The machine of claim 1 , wherein the supply holder comprises an unwind shaft or a cradle to hold the layers of plastic as roll.
20. The machine of claim 1 , wherein the supply holder comprises a box.