Packaging for a group of at least two containers made of plastics material
10486371 ยท 2019-11-26
Assignee
Inventors
Cpc classification
B29C66/1312
PERFORMING OPERATIONS; TRANSPORTING
B29C65/02
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8432
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/712
PERFORMING OPERATIONS; TRANSPORTING
B29C66/8322
PERFORMING OPERATIONS; TRANSPORTING
B29C65/76
PERFORMING OPERATIONS; TRANSPORTING
B29C66/54
PERFORMING OPERATIONS; TRANSPORTING
B29C66/131
PERFORMING OPERATIONS; TRANSPORTING
B65D21/0208
PERFORMING OPERATIONS; TRANSPORTING
B29C66/21
PERFORMING OPERATIONS; TRANSPORTING
B29C65/7841
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B29C66/71
PERFORMING OPERATIONS; TRANSPORTING
B65B61/02
PERFORMING OPERATIONS; TRANSPORTING
B29C66/53461
PERFORMING OPERATIONS; TRANSPORTING
B29C65/7861
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65B9/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The containers are thermoformed in groups, filled, and closed. Then, the containers are separated, and placed adjacent to one another in such a manner that segments of their respective rims face each other and define between them a line of separation. On said line, at least one spot weld is formed that forms a breakable connection between the facing rim segments.
Claims
1. A method of forming, filling, and sealing a group of at least two containers made of plastics material, the method comprising: thermoforming containers from the same sheet of plastics material, each container comprising a body and a rim that defines an opening; filling the containers; subsequently closing the containers by placing lids across their openings; and subsequently separating the containers by cutting them out individually from the sheet; wherein, after the containers have been separated, the method further comprises: placing the containers adjacent to one another in such a manner that peripheral edges of segments of their respective rims face each other and define between them a line of separation between the adjacent containers; and forming at least one spot weld on the line of separation, the at least one spot weld forming a breakable connection between the peripheral edges of the facing rim segments.
2. A method according to claim 1, wherein, with the rim of each container defining an opening, the at least one spot weld is formed on the line of separation between the adjacent containers, from those faces of the rims of the containers that face in the direction that is opposite from the direction in which their openings face.
3. A method according to claim 1, wherein at least two spot welds are formed in a spaced-apart manner on the line of separation.
4. A method according to claim 1, wherein the spot weld extends over only a fraction of the thickness of the facing rims.
5. A method according to claim 1, wherein the spot weld is formed by locally melting the plastics material.
6. A method according to claim 1, wherein the plastics material comprises polypropylene.
7. A method according to claim 1, wherein the lids are membrane seals placed over the openings of the containers in a continuous strip, and wherein the seals are cut out while the containers are being separated.
8. An installation for forming, filling, and sealing containers, the installation comprising: a thermoforming station suitable for thermoforming containers from a sheet of plastics material, each container comprising a body and a rim that defines an opening; a conveyor for conveying the thermoformed containers in groups of at least two adjacent containers connected together via a portion of the sheet; a filling station for filling the containers; a sealing station for closing the containers, the sealing station being downstream from the filling station in the direction in which the containers are conveyed; and a cutting station suitable for cutting out the containers individually from the sheet so as to separate them, the cutting station being downstream from the sealing station in the direction in which the containers are conveyed; wherein, downstream from the cutting station in the direction in which the containers are conveyed, the installation further comprises means for placing the adjacent containers of the group in such a manner that peripheral edges of segments of their respective rims face each other and define between them a line of separation between the adjacent containers; and wherein the installation further comprises a welding tool suitable for forming at least one spot weld on the line of separation, the at least one spot weld forming a breakable connection between the peripheral edges of the facing rims.
9. An installation according to claim 8, comprising at least one welding electrode and means for applying the electrode against those faces of the rims of the containers that face in the direction opposite from the direction in which their openings face.
10. An installation according to claim 9, comprising at least two welding electrodes that are spaced apart.
11. An installation according to claim 8, comprising means for maintaining the groups of containers separate in such a manner that, for each group, the facing rims of the containers are accessible via their faces that face in the direction opposite from the direction in which the openings of the containers face.
12. An installation according to claim 8, wherein the lids are membrane seals placed over the openings of the containers in a continuous strip, and wherein the cutting station is suitable for cutting out the seals while the containers are being separated.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention can be well understood and its advantages appear more clearly on reading the following detailed description of an embodiment shown by way of non-limiting example. The description refers to the accompanying drawings, in which:
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DETAILED DESCRIPTION
(10) Firstly, the container-manufacturing installation shown diagrammatically in
(11) In the example shown, the containers are thermoformed from a continuous strip 10. In the meaning of the present description, it will be considered, generally, that the containers are thermoformed from a sheet of thermoplastic material. This sheet may be in the form of a continuous strip, as shown in
(12) The containers are, in particular, suitable for containing a foodstuff, such as yoghurt, compote, or the like. Thus, the filling station 20 injects such a foodstuff into the containers, in the desired proportions.
(13) Although
(14) In conventional manner, the cutting station 24 comprises cutting blades 24A and a counter-tool 24B that co-operates with the faces of the rims of the containers that face away from the cutting blades 24A. As can be seen more clearly in
(15) On exiting from the cutting station 24, the containers are conveyed to the packaging device 26 by a conveyor 28 suitable for conveying them individually. For example, a conveyor of the walking beam type is used. In conventional manner, such a conveyor includes firstly means for supporting the containers and secondly transport means that take hold of the containers and that carry them forward over one step and then put them down on supports disposed in a downstream region.
(16) By way of example,
(17) When, as in the example shown in
(18) In
(19) While the containers are held in this manner, in accordance with the invention, spot welds are formed in such a manner as to interconnect two containers whose rim segments are facing each other. In the example shown in
(20) In the meaning of the present invention, a spot weld is a highly localized zone, in which, by welding, a bridge is established between the facing rims of two containers. The length l (see
(21) With reference to
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(23) In addition, the bottom face of the plate 38 may be arranged in such a manner as to center the containers of the same group and to hold them laterally. To this end, the plate 38 has a plurality of centering members. Firstly, these members include a centering core 38A that projects under the bottom face of the plate 38 to co-operate with the free zone Z between the rims of the four adjacent containers visible in
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(25) The choice of a group of four containers is merely an example, and that is why the present texts refers more generally to a group of at least two containers. In addition, conventionally, a row of containers that is transverse to the advance direction F comprises more than two containers, e.g. eight containers. Thus, even for groups of four containers, a holding plate 38 can cover two containers in the direction F and cover the entire row in the transverse direction.
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(27) As indicated above, the spots welds are advantageously formed by electrodes. Thus, the welding is advantageously performed by locally melting the plastics material, without adding any external material. In addition,
(28) In
(29) The plastics material in which the containers are thermoformed is advantageously polypropylene, which is a material that offers good protection of the contents of the containers (it offers a barrier to water vapor that is greater than the barrier offered by polystyrene), and is easy to recycle. In addition, the cost of polypropylene is less than the cost of polystyrene. However, unlike polystyrene, polypropylene does not tend to break under the effect of the folding. By forming localized spot welds as described above, the invention nevertheless makes it possible to form grouped-together containers having connections between them that are breakable, thereby enabling them to be used individually. Since the spot welds are added to containers that are initially separate, the forces involved are not merely folding forces, but rather they are also traction forces, which make it possible to achieve the desired breaking.
(30) It should be apparent that the foregoing relates only to the preferred embodiments of the present application and the resultant patent. Numerous changes and modification may be made herein by one of ordinary skill in the art without departing from the general spirit and scope of the invention as defined by the following claims and the equivalents thereof.