The present invention relates, in general, to storage units and, more particularly, to cubbyhole, drawer, and shelving units for storing garments and other items, and to modular and reconfigurable storage systems consisting of multiple storage units coupled together.
Garment storage units, such as cubbyhole, drawer, and shelving storage units, have been in use for some time. It is sometimes desirable to combine multiple storage units into larger storage systems, such as, for example, to create larger closet organizers.
One shortcoming of certain prior art storage units is that they are incapable of being combined with other storage units to optionally form larger storage systems. Another shortcoming of certain prior art storage units is that, while they may be capable of combination with other storage units into larger systems, it is only multiple, identically configured storage units that are so combinable. Yet another shortcoming of certain prior art storage units is that they have reduced stability when combined together into larger storage systems, particularly when vertically stacking multiple instances of storage units into taller vertical towers.
Accordingly, it is an object of the present invention to provide a modular and reconfigurable storage system enabling multiple storage units to be combined into larger storage systems.
It is another object of the present invention to use common components to construct differing storage units having differing functions and capabilities.
It is a further object of the present invention to use common components, in differing orientations, to construct storage units in differing configurations, depending upon whether a particular storage unit is to be positioned in the lower or upper tier of a tower of multiple storage units.
It is yet another object of the present invention to provide enhanced stability when multiple instances of storage units are vertically stacked.
These and other objects and features of the present invention will become apparent in view of the following specification, drawings and claims.
In a modular storage system, a reconfigurable support for a storage unit comprises an end frame member having a first end and a second end. The end frame member is attachable to the storage unit in a first orientation, wherein the first end is positioned vertically above the second end, and is also attachable to the storage unit in a second orientation, wherein the second end is positioned vertically above the first end. At least one base member is attachable to the first end of the end frame member. When the end frame member is attached to the storage unit in the first orientation and the at least one base member is unattached to the end frame member, at least a portion of the first end of the end frame member serves as a raised end railing of a top surface of the storage unit. Moreover, when the end frame member is attached to the storage unit in the second orientation and the at least one base member is attached to the first end of the end frame member, at least a portion of the at least one base member serves as a load-bearing support for the end frame member and for the storage unit. The storage unit may be selected from the group comprising a shelf storage unit, a drawer storage unit, and a cubbyhole storage unit.
In a preferred embodiment, the at least one base member comprises two base members attachable to the first end of the end frame member in an opposing orientation, relative to each other. The first end of the frame member includes at least one rounded corner region. The at least one base member supports and substantially covers an outer surface of the at least one rounded corner region upon attachment of the at least one base member to the end frame member. Moreover, the at least one base member further comprises a height adjustment member.
At least one footing is attachable to the second end of the frame member, such that, when the end frame member is attached to the storage unit in the first orientation and the at least one footing is attached to the second end of the end frame member, at least a portion of the at least one footing serves as a load-bearing support for the end frame member and for the storage unit. Moreover, the at least one footing further comprises a height adjustment member.
In certain storage unit configurations of the modular storage system having vertically stacked storage units, two instances of the end frame member are stackable by placing a first end frame member in the second orientation, placing a second end frame member above the first end frame member and in the first orientation, and coupling the second end of the first end frame member to the second end of the second end frame member. In this stacking configuration, at least one coupler is employed to couple at least a portion of the second end of the first end frame member to at least a portion of the second end of the second end frame member.
Moreover, in certain storage unit configurations of the modular storage system, a storage unit has a frame comprising two end frame members disposed on opposing sides of the storage unit. The two end frame members may both be in the first orientation. Alternatively, in certain configurations, the two end frame members are both in the second orientation.
In one example of a rather fully configured storage system, eight instances of the end frame member are employed within a storage system having two towers, with each of the two towers consisting of two vertically stacked storage units. In such a system, four of the eight instances of the end frame member are in the first orientation, and four of the eight instances of the end frame member are in the second orientation. Moreover, such a system may further include two hanging rods, each being coupled at their opposing ends to a different end frame member.
In another example of a storage system having multiple storage units, four instances of the end frame member are employed within a storage system having two storage units positioned in a side by side orientation. Each of the four instances of the end frame member may in the first orientation. Moreover, each of the four instances of the end frame member may be in the second orientation. Furthermore, a hanging rod may be coupled between one end frame member of each of the two storage units.
While the present invention is susceptible of embodiment in many different forms, there is shown in the drawings and will herein be described in detail, several specific embodiments, with the understanding that the present disclosure is intended as an exemplification of the principles of the present invention and is not intended to limit the invention to the embodiments illustrated.
An embodiment of the present reconfigurable modular storage system 10 is shown in
Referring to
Body 210 further includes two reinforced panels 212, and ten storage cubbyholes 213. Reinforced panels 212 may include a paperboard, cardboard, wire frame, or other suitable internal stiffener sandwiched between upper and lower layers of fabric, and positioned between opposing sleeves 211 of body 210.
With further reference to
Referring to
Body 310 further includes four reinforced panels 312 and two opposing side panels 313. Reinforced panels 312 may include a paperboard, cardboard, wire frame, or other suitable internal stiffener sandwiched between upper and lower layers of fabric, and positioned between opposing sleeves 311 of body 310. As shown in
Referring to
Referring to
Moreover, and as shown in
As shown in
Upon complete insertion of insert region 62 through an associated open tubular end 54 of elongated U-shaped member 53 of end frame member 50, shoulder 61 rests adjacent second end 52 of end frame member 50, and fastener aperture 63 of coupler 60 is axially aligned with two opposing fastener apertures 56 of elongated U-shaped member 53. This, in turn, permits a single fastener to be inserted though a first fastener aperture 56 of end frame member 50, fastener aperture 63 of coupler 60, and a second fastener aperture 56 of end frame member 50, thereby further securing coupler 60 to an end frame member 50. Upon securing each to two opposing insert regions 62 to an associated end frame member 50 in this manner, two opposing open tubular ends 54 of two end frame members 50 are secured together. By using two couplers 60 in this manner, each with two opposing open tubular ends 54 of two end frame members 50, two end frame members 50 of two storage units are secured together in a vertically stacked, tower arrangement.
Although, in the embodiment of
Moreover, when so configured, and with reference to
Footer 70 further includes height adjustment member 74, having a foot pad and a threaded shaft that is received by a threaded bottom aperture of footing 70. By adjusting the degree of threaded insertion of the shaft of height adjustment member into the threaded bottom aperture of footing 70, the overall height of footing 70 may be adjusted. Accordingly, any of the four footings associated with a particular stand-alone storage unit may be adjusted in order to level the overall storage unit as desired.
In addition to stand-alone storage units and the fully configured modular storage unit of
Base member 80 is shown in further detail in
To securely attach base member 80 to a corner of first end 51 of end frame member 50, a fastener is extended axially through fastener aperture 85, and is then coupled to first end 51, such as by engaging a threaded aperture of end frame member 50. As shown in
As can be seen, the use of end frame member 50 within reconfigurable modular storage unit is quite versatile. Firstly, a common end frame member 50 design is employed, in opposing pairs, to construct each of shelving storage unit 100, cubbyhole storage unit 200, and drawer storage unit 300. Moreover, end frame member 50 may be used in differing (i.e., reverse) orientations, depending upon whether it is being used to construct a stand-alone storage unit, an upper tier storage unit of a vertically stacked tower, or a lower tier storage unit of a vertically stacked tower.
In particular, when a pair of end frame members 50 are employed to construct either a stand-alone storage unit, or the upper storage unit of a vertically stacked tower, they are oriented with their first ends 51 towards the top and their second ends 52 towards the bottom, as shown, for example, in the shelving storage units 100 of
In addition, when a pair of end frame members are instead employed to construct a lower storage unit of a vertically stacked tower, they are oriented with their second ends 52 towards the top and their first ends 51 towards the bottom, as shown, for example, in the cubbyhole storage unit 200 and drawer storage unit 300 of
Many modifications and variations of the present invention are possible in light of the above teachings. It is therefore to be understood that within the scope of the appended claims, the invention may be practiced other than as specifically described. Various modifications, changes and variations may be made in the arrangement, operation and details of construction of the invention disclosed herein without departing from the spirit and scope of the invention. The present disclosure is intended to exemplify and not limit the invention.
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