MODULAR STORAGE CONTAINER SYSTEM AND METHOD
20180105324 ยท 2018-04-19
Inventors
Cpc classification
B65D21/0204
PERFORMING OPERATIONS; TRANSPORTING
B65D21/0212
PERFORMING OPERATIONS; TRANSPORTING
B65D21/0223
PERFORMING OPERATIONS; TRANSPORTING
B65D11/188
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A modular storage container system includes a first container shell component having a base, a plurality of sidewalls extending around the base to define a storage chamber, an inner volume, and a flange extending around a top portion of the plurality of sidewalls. In addition, the system includes a peg and groove connector including a male part and a female part, the peg and groove connector symmetrically repeated around the flange and the base to form a plurality of connection sites. The included connection sites are useful for removably coupling the first container shell component with a second plurality of connection sites from a second container shell component. The modular storage container system allows a user to construct nestable storage configurations using a plurality of the included container shell components.
Claims
1. A modular storage container system comprising: a first container shell component having a base, a plurality of sidewalls extending around the base to define a storage chamber, an inner volume, and a flange extending around a top portion of the plurality of sidewalls; and a peg and groove connector including a male part and a female part, the peg and groove connector symmetrically repeated around the flange and the base to form a plurality of connection sites; and wherein the plurality of connection sites of the first container shell component are configured to removably couple with a second plurality of connection sites from a second container shell component.
2. The modular storage container system of claim 1, wherein the first container shell component and the second container shell component couple to form a first half and a second half of a geometrical shape.
3. The modular storage container system of claim 2, wherein the geometrical shape is configured to completely enclose a stored item.
4. The modular storage container system of claim 1, wherein the plurality of sidewalls includes at least one opening.
5. The modular storage container system of claim 4, wherein the at least one opening is repeated to form a vent pattern.
6. The modular storage container system of claim 1, wherein the second container shell component is stackable within the first container shell component.
7. The modular storage container system of claim 1, wherein the male part of the peg and groove connector is cylindrically shaped.
8. The modular storage container system of claim 1, wherein the male part of the peg and groove connector is conically shaped.
9. The modular storage container system of claim 1, wherein the plurality of connection sites is configured for horizontal coupling.
10. The modular storage container system of claim 1, wherein the plurality of connection sites is configured for vertical coupling.
11. The modular storage container system of claim 1, wherein the plurality of connection sites is configured for inverted coupling between the first container shell component and the second container shell component.
12. The modular storage container system of claim 1, wherein the first container shell component is semi-rigid.
13. The modular storage container system of claim 1, wherein the first container shell component is configured as a single contiguous piece.
14. The modular storage container system of claim 1, wherein the first container shell component comprises plastic.
15. The modular storage container system of claim 1, further comprising an auxiliary attachment.
16. The modular storage container system of claim 1, wherein the auxiliary attachment includes a peg and groove connector for coupling with at least one container shell component.
17. A modular storage container system comprising: a first container shell component having a base, a plurality of sidewalls extending around the base to define a storage chamber, an inner volume, and a flange extending around a top portion of the plurality of sidewalls; and a peg and groove connector including a male part and a female part, the peg and groove connector symmetrically repeated around the flange and the base to form a plurality of connection sites; further comprising an auxiliary attachment; wherein the plurality of connection sites of the first container shell component are configured to removably couple with a second plurality of connection sites from a second container shell component; wherein the first container shell component and the second container shell component couple to form a first half and a second half of a geometrical shape; wherein the geometrical shape is configured to completely enclose a stored item; wherein the plurality of sidewalls includes at least one opening; wherein the at least one opening is repeated to form a vent pattern; wherein the second container shell component is stackable within the first container shell component; wherein the male part of the peg and groove connector is cylindrically shaped; wherein the plurality of connection sites is configured for horizontal coupling and alternately for vertical coupling; wherein the plurality of connection sites is configured for inverted coupling between the first container shell component and the second container shell component; wherein the first container shell component is semi-rigid; wherein the first container shell component is configured as a single contiguous piece; wherein the first container shell component comprises plastic; and wherein the auxiliary attachment includes a peg and groove connector for coupling with at least one container shell component.
18. The modular storage container system of claim 17, further comprising set of instructions; and wherein the system is arranged as a kit.
19. A method of using a modular storage container system, the method comprising the steps of: providing a modular storage container system including a first container shell component having a base, a plurality of sidewalls extending around the base to define a storage chamber, an inner volume, and a flange extending around a top portion of the plurality of sidewalls and a peg and groove connector including a male part and a female part, the peg and groove connector symmetrically repeated around the flange and the base to form a plurality of connection sites; placing an item for storage within a first container shell component; providing a second container shell component; and coupling the second container shell component with the first container shell component.
20. The method of claim 19, further comprising the steps of: uncoupling the second container shell component from the first container shell component; and stacking the second container shell component within the first container shell component.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0011] The figures which accompany the written portion of this specification illustrate embodiments and methods of use for the present disclosure, a modular storage container system, constructed and operative according to the teachings of the present disclosure.
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[0018] The various embodiments of the present invention will hereinafter be described in conjunction with the appended drawings, wherein like designations denote like elements.
DETAILED DESCRIPTION
[0019] As discussed above, embodiments of the present disclosure relate to receptacles and more particularly to a modular storage container system as used to provide a geometrically-shaped interlocking, nestable, and stackable container system that may be configured in a variety of arrangements.
[0020] Generally speaking, the modular storage container system provides an intelligent, interlocking, and stack-able container system for use in residential and commercial fields. The system may offer various geometrical shapes to accommodate any size wall space in a home, office, or business location. The system may also allow users to stack and connect the containers vertically and horizontally to display and store different types of products. The present invention may consume ninety-five percent of the intended applicable space and conserve ninety-three percent of storage and transportation space.
[0021] The modular storage container system may feature a plurality of special reversible and non-reversible tongue-and-groove or peg-and-groove connectors that allow the container shell components to attach horizontally, vertically, and at a variety of angles with each other. The components may also be inverted for removable coupling with other components and accessories. The system may be configured from lightweight materials including plastics, rubber, silicone, and light metals for durable use. The peg connectors included in the system may be configured as cylinders, cones, raised lines, and other shapes that allow for sturdy frictional retaining to occur. The components may include these connectors along the sides, front, back, bottom, and corners in order to provide as many configuration options as possible.
[0022] The container shell components may be inverted and paired together to form sealed enclosures for storing items. These sealed enclosures may then be combined with other sealed enclosures from the system to form rows, towers, or blocks of storage and display modules. The system may further include accessories and other module joints that allow a user to construct different designs and shapes with the shell components. The accessories may include flat top surfaces, braces, joint connectors, and other devices. The shell components may include a flange surrounding the top or bottom of each side walled containment unit. This flange may include a lip that allows for connections with peg and groove connectors from other components in the system. The shell components may also include apertures or vent patterns for storing specialty items like food or clothing.
[0023] Referring now more specifically to the drawings by numerals of reference, there is shown in
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[0025] According to one embodiment, the modular storage container system 100 may be arranged as a kit 105. In particular, the modular storage container system 100 may further include a set of instructions 107. The instructions 107 may detail functional relationships in relation to the structure of the modular storage container system 100 such that the modular storage container system 100 can be used, maintained, or the like, in a preferred manner.
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[0030] Optional steps of method of use 500 are illustrated using dotted lines in
[0031] The embodiments of the invention described herein are exemplary and numerous modifications, variations and rearrangements can be readily envisioned to achieve substantially equivalent results, all of which are intended to be embraced within the spirit and scope of the invention. Further, the purpose of the foregoing abstract is to enable the U.S. Patent and Trademark Office and the public generally, and especially the scientist, engineers and practitioners in the art who are not familiar with patent or legal terms or phraseology, to determine quickly from a cursory inspection the nature and essence of the technical disclosure of the application.