SPACER FOR NESTABLE CONTAINERS
20200108974 ยท 2020-04-09
Inventors
Cpc classification
International classification
Abstract
An improved nestable container arrangement. The arrangement involves the use of a spacer. The spacer is configured to fit between adjacent nested containers to keep a sufficient amount of space between adjacent top ends of the container to prevent the formation of a tight seal between the containers. The spacers are available as an aftermarket device and so can be retro-fitted to virtually any type of nestable containers. The radius of curvature of the spacer is adjustable. The spacers are held in position by a small amount of adhesive.
Claims
1. A device for allowing the-jam free nesting of containers comprising: a substantially rectangular main body of unitary construction having upper and lower abutment surfaces, the main body formed of two hingedly attached halves and initially having a predetermined radius of curvature; a hinge formed between said two halves, said hinge formed centrally of said main body and including a gap for allowing for adjusting said radius of curvature; a lattice work of support members formed in said main body, with at least some of said support members extending from said upper to said lower abutment surfaces; a quantity of adhesive positioned on a rear surface of the device to allow the device to be removably positioned on one of said containers; whereby positioning at least one of said devices on each of said containers prevents the formation of airlock between vertically adjacent containers when vertically stacked.
2. The device of claim 1 wherein the radius of curvature is zero.
3. The device of claim 1 wherein the adhesive is a peel and stick type.
4. The device of claim 1 wherein a lattice of compression reducing support members extends from a front to a rear face of the device.
5. A method of stacking two or more nestable containers having a vertical surface comprising the steps of: providing a removable spacer device having upper and lower abutment surfaces and a central hinge said central hinge including a gap allowing for bi-directional bending of said spacer device, said spacer device having an adjustable radius of curvature, and placing said spacer device on at least one of said two containers to produce a first container with a spacing device, said first container having a predetermined radius of curvature; positioning said spacer device proximate an upper edge of the vertical surface of said first container and adjusting the radius of curvature of said spacer device to conform to said predetermined radius of curvature, and attaching the spacer device to said first container; placing the container with the spacer device within a lowermost container, and lowering said spacer device container into said lowermost container until said lower abutment surface comes into contact with said lowermost container, and; providing additional containers with spacer elements for stacking.
6. The method of claim 5 including the step of depressing a central portion of a top side of the device to cause a central portion of a bottom side of the device to come into contact with said vertical surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Various other objects, features, and attendant advantages of the present invention will become more fully appreciated as the same becomes better understood when considered with the accompanying drawings, in which like reference characters designate the same or similar parts throughout the several views, and wherein:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0023] Referring now to
[0024] As can be seen, the device 10 has a unitary construction and thus can be formed using injection molding or similar technique. The device 10 is preferably formed from a high strength rigid plastic or polymer, but any sufficiently strong, rigid material will be effective. While the device 10 is rigid, it is important that compressing the device 10 in the vertical direction (from top to bottom) be made especially difficult as it is essentially the vertical spacing between containers 24 that is being limited by the device 10 and method of the invention. To that end, a lattice of support members 26, 28 are molded into the device 10. Horizontal support members 26 extend laterally from side to side of the device 10 while regularly spaced vertical members 28 extend from the upper 20 to the lower 22 abutment surfaces. The abutment surface 20 engages the lower 23 surface of the annular flange 27 positioned about the opening of most cylindrical containers 24. The device 10 is placed in this position to allow the container 24 to be nested into position within a lower container 24, but prevents full insertion of one container 24 into another. Lower abutment surface 22 engages the upper edge 29 of the lower container 24 and serves to prevent the full insertion of the upper 24 container into the adjacent lower container 24, thereby avoiding vacuum lock or air lock. The device 10 will still be effective even if the container 24 has no flange 27 as the lower abutment surface 22 will come into contact with the top edge 29 of the lower container 24 in a stack of nested containers 24 as will be explained in more detail later. Both the horizontal 26 and vertical 28 members extend from the front 30 to the rear face 32 of the device 10. The vertical members 28 help prevent compression of the device 10 from top to bottom, and this action is greatly aided by horizontal support members 26 as the two form a lattice which strengthens the device 10 against compression in either direction. The use of the lattice structure allows the device 10 to be nearly as strong as a solid block of material but with greatly reduced cost and weight. A centrally positioned indicia panel 34 is formed in the front face 30 of the device, the panel providing space for positioning a product logo or instructional information about the device 10, the indicia panel 34 useful as a push tab when applying the device 10 to a container. A recess 38 is formed in the rear face of the device 10, which recess terminates at panel 34, the recess 38 including sidewall 40. Sidewall 40, support members 26, 28, and panel 34 are all of the same thickness so that during manufacture the cooling or curing time for all portions of the device 10 are the same, thereby reducing manufacturing cost and time.
[0025] The device 10 as shown is designed to be used aftermarket with any containers 24 the user may have provided. The device 10 may also be reused and positioned on another container 24. Again, nestable containers 24 with flat sides can be accommodated by making the device 10 flat. While larger containers 24 will of course typically have a larger radius of curvature than smaller containers the device 10 may be designed with a curvature corresponding to a large sized (5 gallon) bucket which would allow it to be effective with containers in the 1 to 5 gallon range, depending of course upon the height of the cylindrical vessel (as height affects curvature for any given volume). This is so because the device 10 is supplied with adhesive material 50 positioned on the rear face 32 of the device 10 so that a device 10 not matching the curvature of the intended container 24 will stay in position even though not perfectly flush mounted by way of adhesive 50. The adhesive 50 may be of the peel and stick type. Alternatively, the device 10 could use a suction cup arrangement or other mechanical means to ensure the device 10 remains in position, which would increase the complexity and cost of the device 10 but allow for it to be reused indefinitely. Using adhesive 50 allows for the device 10 to be reused once or twice, which is sufficient since the device 10 would be used for the life of the container 24. Of course, additional adhesive could be applied by the user in the event that the device 10 is reused, the key point being that the type of adhesive initially used is not intended to permanently fix the device 10 in position. If the radius of curvature of the device 10 is too small (i.e., the container to which it is applied has a large radius of curvature), only the laterally displaced side edges 52 of the device 10 will be in contact with the container 24 and thus the user will be instantly aware that the device 10 will not be effective for that size and shape of container 24. In accordance with a preferred use of the device 10, at least about 20% of the rear face 32 and its adhesive 50 needs to be in contact with the container 24 in order for the device to be effective. The devices 10 may also be made to exactly match the curvature of standard sized containers 24, or sold in packs having a range of curvatures. As previously mentioned, the device 10 may be made flat so that nestable containers having flat sides (i.e., having a rectangular profile as in, for example, certain wastebaskets). In this case the radius of curvature of the device 10 would be zero.
[0026] In use, the device 10 is positioned on the top edge of a nestable container 24 in the position as shown in
[0027] An alternative embodiment is shown in