Machine for automatically filling-inflating gas cushions, notably air cushions, for packaging and use thereof for filling and inflating cushions
09764862 ยท 2017-09-19
Inventors
Cpc classification
B29C66/4312
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B1/04
PERFORMING OPERATIONS; TRANSPORTING
B31D5/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A machine for automatically inflating air cushions. The cushions have two plastic walls (21; 22) joined together around their periphery to define a closed space. The machine comprises a source of gas under pressure, and two jaws (1; 2) arranged such that they can move on a supporting structure. Each one of the jaws consists of a body (1; 3) each having a plane face (4:10) of substantially the same shape and surface area, it being possible for the faces to mate against one another in order to clamp between them the walls (21; 22) of a cushion. Each jaw comprises an aspiration channel (6; 7) opening onto its planer face. A first jaw on the inside of its body has a hollow needle (5) able to move relative to the body and capable in a certain position of having its pointed tip outside of the surface of the plane face. A second jaw within its body has a heating element (18) capable, when the two jaws are clamping between them the two walls of a cushion, of heat-welding the two walls together over a certain proportion of their contacting surface.
Claims
1. A cushion inflator comprising: a first jaw having a cylinder, a needle disposed within the cylinder and axially movable relative to the cylinder, and a first aspiration channel disposed within the first jaw adjacent to a first terminal face of the first jaw; and a second jaw having a cavity aligned to receive at least a portion of the needle, a heating element disposed within the second jaw and axially movable relative to a second terminal face of the second jaw, and a second aspiration channel disposed within the second jaw adjacent to the second terminal face of the second jaw.
2. The cushion inflator of claim 1, wherein the needle is a hollow needle connected at a first end to a source of pressurized gas, and wherein the needle has at least one opening in proximity to a second end to inject pressurized gas into a cushion.
3. The cushion inflator of claim 2, wherein the second end of the needle is axially movable from a retracted position within the cylinder to an extended position outside of the cylinder.
4. The cushion inflator of claim 1, wherein the first terminal face defines a first plurality of openings disposed annularly around the needle and in fluid communication with the first aspiration channel, and wherein the second terminal face defines a second plurality of openings disposed annularly around the heating element and in fluid communication with the second aspiration channel.
5. The cushion inflator of claim 1, wherein the heating element includes a ring-shaped surface for forming a ring-shaped weld around the needle when the needle is received in the cavity.
6. The cushion inflator of claim 5, wherein ring-shaped surface of the heating element forms the ring-shaped weld within a discontinuous weld zone of a cushion.
Description
(1) The invention will be better understood, its features and its advantages will appear more clearly, on reading the detailed description of forms of execution, given only as an example and made with reference to the appended drawings, in which:
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(13) In all of the figures, the same reference symbols will be used to indicate the same features.
(14) With reference to
(15) As can be seen in
(16) A use of a machine according to the invention defined in claim 2 proceeds in the following manner: a) the two walls 21 and 22 of a cushion, uninflated, of any shape, for example square, round, having several pockets connected together, are inserted between the jaws 3 and 11 of the machine as shown in
(17) As can be easily seen in
(18) In order to remedy this defect, provision has been made in another form of execution of the use of the machine to provide cushions having at least one location where the two walls are partly heat-sealed defining a space in communication with the rest of the volume included between the two walls. As is seen in
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(20) In another form of execution of the use of a machine according to the invention, cushions are used that consist of two walls (plastic films) defining a closed space trapping a small quantity of air preventing the two walls from sticking. The latter operation having been carried out previously before entering the machine according to the invention, for example on another machine, known to those skilled in the art. The use proceeds in the following manner: A) The two walls of a cushion having two walls that are not stuck together are positioned. B) The two jaws are moved so as to clamp between their terminal faces the two sheets of plastic forming the walls of the cushion. C) The aspiration device is activated in the channels placed in rings on the terminal faces of the two bodies forming the jaws. The two walls are then kept separated, stuck against said faces. D) A needle contained in the body of the machine having an opening at its point and moved so as to pierce only the first wall while leaving the other intact. E) The pressurized air is injected into the cushion inflating the latter. F) The jaws are brought together clamping the two walls between them while compressing the air contained in the cushion. G) In the same manner as in the use described above, the cylinder 17 contained in the body 11 of the jaw 2 is moved so as to press on the periphery of the orifice for the needle 5 to exit the body 3. The heating element is activated heat-sealing the two walls along a ring surrounding the hole of the needle preventing the air from leaving the cushion. And the use (method) ends like that previously described with respect to
(21) In yet another form of execution of a machine according to the invention for inflating cushions, on which a hole has already been made in at least one of the walls, the use will proceed in the following manner: A) The two walls of a cushion are placed between the jaws so that the hole is placed opposite the outlet orifice of the needle in the face of one of the bodies. B) The suction device is actuated, the two jaws are separated each keeping one of the walls stuck against them. D) The pressurized gas is then injected into the cushion through the outlet orifice of the needle provided in the terminal face of one of the jaws without the needle being moved.
(22) The rest of the process then unfolds as described above.
(23) It is also possible to design variants of use in which the cushion is pierced in any location, for example in a corner, or in which the cushion has a protuberance 36 (see
(24) As can be seen, all the operations described above require no human intervention. Moreover, it is possible to inflate cushions to a higher pressure than by the methods known hitherto. Finally, the piercing can be carried out at any location on the cushion, for example in a corner, in the middle, at an edge, and it is possible to inflate any shape of cushion, even having several pockets communicating with one another. The cushions obtained by a method according to the invention are more inflated, hence more rigid and can, in certain cases, replace the polystyrene shells. The inflation pressure may vary depending on the strength and the thickness of the sheets forming the walls.