Container carrier
10301092 ยท 2019-05-28
Assignee
Inventors
Cpc classification
B65D71/00
PERFORMING OPERATIONS; TRANSPORTING
B65D71/504
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D71/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A flexible carrier for carrying a plurality of containers within a plurality of corresponding container receiving apertures formed in longitudinal rows and transverse ranks and a handle extending parallel to the rows of container receiving apertures. The handle is connected at attachment points along the carrier and corresponding thickened sections are included along the bands opposite the connection points.
Claims
1. A flexible container carrier for unitizing a plurality of containers comprising: a plurality of flexible bands that form an array of container receiving apertures, the array arranged in longitudinal rows and transverse ranks; a single handle formed adjacent the array of container receiving apertures, the handle connected to the flexible bands at two or more connection points; and two or more discrete thickened sections of an outside edge of each outermost flexible band, each thickened section located on a direct opposite side from a respective connection point within each transverse rank.
2. The flexible container carrier of claim 1 further comprising: a center aperture positioned within a center band between each container receiving aperture in a respective rank.
3. The flexible container carrier of claim 2 wherein the center aperture comprises an elongated oval.
4. The flexible container carrier of claim 1 further comprising: wherein the center aperture includes a width approximately equal to a width of center webs of material on each side of the center aperture.
5. The flexible container carrier of claim 1 further comprising a flap of material extending into each container receiving aperture from the center aperture.
6. The flexible container carrier of claim 1 comprising three connection points and three corresponding thickened sections.
7. The flexible container carrier of claim 1 comprising adjacent container carriers formed on each longitudinal side of the flexible container carrier to form a generally continuous string of container carriers.
8. The flexible container carrier of claim 1 further comprising a pair of oval apertures positioned between each adjacent container carrier in the generally continuous string of container carriers.
9. The flexible container carrier of claim 1 wherein each thickened section extends outwardly from an outside edge of a respective band.
10. A flexible container carrier for unitizing a plurality of containers comprising: a plurality of flexible bands that form an array of container receiving apertures, the array arranged in longitudinal rows and transverse ranks; a handle formed adjacent the array of container receiving apertures, the handle connected to the flexible bands at three connection points; two or more discrete thickened sections of each outermost flexible band, each thickened section located on a direct opposite side from a respective connection point within each transverse rank; and a center aperture positioned within a center hand between each container receiving aperture in a respective rank.
11. The flexible container carrier of claim 10 wherein the center aperture comprises an elongated oval.
12. The flexible container carrier of claim 10 further comprising a flap of material extending into each container receiving aperture from the center aperture.
13. The flexible container carrier of claim 10 comprising adjacent container carriers formed on each longitudinal side of the flexible container carrier to form a generally continuous string of container carriers.
14. The flexible container carrier of claim 10 wherein the container receiving apertures each comprise a plurality of distinct adjoining segments.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above-mentioned and other features and objects of this invention will be better understood from the following detailed description taken in conjunction with the drawings wherein:
(2)
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DESCRIPTION OF PREFERRED EMBODIMENTS
(5)
(6) Containers are preferably cans, however, bottles or any other commonly unitized container may be used with flexible carrier 10 according to this invention. The containers are preferably, though not necessarily, like-sized within a single flexible carrier 10.
(7) Each flexible carrier 10 preferably includes a single layer of flexible sheet 20 having a width and length defining therein a plurality of container receiving apertures 25, each for receiving a container. The plurality of container receiving apertures 25 are preferably arranged in two longitudinal rows and multiple longitudinal ranks so as to form an array of container receiving apertures 25, such as two rows by two ranks for a four container multipackage as shown in
(8) Traditional carriers developed for cans and bottles, grip a circumference or body of the respective container with flexible bands forming a container receiving aperture. The flexible carrier 10 of the subject invention aims to reduce area and thereby weight to minimize material and resulting waste and still maximize firm engagement with the containers. Reduction of the flexible carrier 10 area not only reduces the overall weight, but also is accomplished in such a way that it also allows the carrier to stretch out more efficiently without depending on any additional material additive, such as metallocene, to the flexible sheet material 20, which is preferably formed of a low density polyethylene.
(9) A representative package resulting from flexible carrier 10 includes a plurality of unitized containers. Flexible carriers 10 are generally applied to containers by stretching flexible sheet 20 surrounding container receiving apertures 25 around container, and requiring the stretched carrier 10 to recover, thereby providing a tight engagement.
(10) A preferred carrier configuration includes two distinct parallel rows of container receiving apertures 25. Each rank preferably includes two container receiving apertures 25 (one for each row in the carrier 10). Preferably, each of the carriers 10 shown in
(11) As shown in
(12) Container receiving apertures 25 are preferably formed in a geometry that results in a uniform application of the carrier 10 to containers to produce a tight unitization of containers within flexible carrier 10. Such a result is difficult when material within the flexible carrier 10 is minimized as shown and described herein.
(13) As described above, container carrier 10 according to a preferred embodiment of the invention includes a series of interconnecting flexible bands 30 that define the plurality of container receiving apertures 25. Bands 30 are stretchable around respective containers during application and recoverable around container following application. Specifically, in the described configuration, the flexible sheet 20 forms bands 30 defining container receiving apertures 25 wherein the bands 30 in an interior of the carrier 10 include outer edges that are not strictly parallel with each other.
(14) As shown in
(15) As shown in
(16) The addition of the connection points 80 and the corresponding thickened sections 90 enable the carrier 10 to function as if it is symmetrical when being stretched on the applicator. In that manner, the stresses on both outer bands 30 of the carrier 10 elongate similarly. As such, the carrier 10 can be fed onto the applicator with the handle 50 located on either side without fear of having high stress areas which may overstretch or neck down prematurely.
(17) The flexible container carrier 10 preferably further comprises a center aperture 70 positioned within a center band 30 between each container carrier 25 in a respective rank. Although the center aperture 70 may comprise other desired shapes, as shown in
(18) The flexible container carrier 10 therefore includes flaps 60 of material extending into each container receiving aperture 25 from the center aperture 70. Preferably, each such flap 60 extends into a container receiving aperture 25 from an inner portion of each container receiving aperture 25. These flaps 60 form a desirable configuration in a center band 30 of the carrier following application to containers and preferably prevent inversions in that web which would jeopardize a sturdy package and the aesthetics of the package.
(19) In embodiments of the invention, weight reduction is accomplished by taking material out of the central regions of the carrier 10, which upon normal stretching, is usually under little or no stress. The effective band width which undergoes stretching is also increased as compared to similar products. As much as 77% of the bands periphery adjacent to the aperture is stretched to some degree, as compared to about 70% on a similar design without using this concept. This makes this carrier design less apt to overstretch in critical areas.
(20) The resulting aperture shape is also quite different than on prior designs, with 15 distinct adjoining segments. This is required in order to maximize the effective band width (stretchable) used as well as to reduce the area.
(21) A width of the center band is also reduced to a minimum with the addition of the center aperture 70 which takes out unused material. This is possible since the center bands 30 function is to separate the containers in the transverse direction and thus provide a thin buffer zone which helps keep the containers from rubbing against one another laterally. Even in its reduced state, the subject configuration still accomplishes this. The center aperture 70 and resulting flaps 60 also reduce the chance for center web inversions and helps prevent can abrasion.
(22) Another center band function is to help hold onto the containers so they do not pull out when lifted by one container only. By dividing the center bands into two segments or flaps 60, the carrier 10 more firmly holds to the container being lifted since it is free to move with the container.
(23) Generally speaking, container multipack carriers have been designed using conventional aperture shapes (oval, round, rectangular, & triangular) & sizes. This design breaks that rule in order to provide the most area to allow stretching. It also allows there to be minimal area or weight in order to be more competitive in the market. Right now we have several versions of the SAC carrier worldwide. This design will replace all of them.
(24) While in the foregoing specification this invention has been described in relation to certain preferred embodiments thereof, and many details have been set forth for purpose of illustration, it will be apparent to those skilled in the art that flexible carrier 10 and package 100 susceptible to additional embodiments and that certain of the details described herein can be varied considerably without departing from the basic principles of the invention.