The present disclosure describes a storage system and related methods. A storage system may include a plurality of components configured to be arranged in a track. The track may include at least two substantially parallel rows of components. Each of the components of the track may include a support
The present disclosure describes a storage system and related methods. A storage system may include a plurality of components configured to be arranged in a track. The track may include at least two substantially parallel rows of components. Each of the components of the track may include a support surface and a plurality of apertures configured to receive a fastener. The apertures may be used to secure the component to a support structure. Each of the components may also include a coupling component configured to couple adjacent components. The track may be configured to receive a storage container. The storage container may include a storage compartment and flange disposed at least partially around the storage compartment. The flange of the storage container may be configured to rest upon the support surfaces of at least two separate components in the track disposed on opposite sides of the storage container.
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1. A storage system, comprising: a plurality of components configured to be directly coupled together to form a track, the track comprising at least two substantially parallel rows, each of the at least two substantially parallel rows comprising at least two directly coupled components, each of the
1. A storage system, comprising: a plurality of components configured to be directly coupled together to form a track, the track comprising at least two substantially parallel rows, each of the at least two substantially parallel rows comprising at least two directly coupled components, each of the plurality of components comprising: a support surface;a receiving member;a plurality of apertures extending substantially through the component and configured to receive a fastener and to secure the component to an overhead support structure;a substantially flat surface configured to abut the support structure when the component is secured to the overhead support structure; anda coupling component configured to directly couple to an adjacent component in the track, the coupling component comprising a protruding member that is configured to directly couple with the receiving member of an adjacent component; anda storage container comprising a storage compartment and flange disposed at least partially around the storage compartment;wherein the storage container is configured to be received within the track and the flange of the storage container is configured to rest upon the support surfaces of at least two separate components in the track disposed on opposite sides of the storage container. 2. The storage system of claim 1, further comprising a spacing component configured to couple to the protruding member. 3. The storage system of claim 1, wherein the receiving member comprises a U-shaped channel. 4. The storage system of claim 1, wherein the protruding member comprises a U-shaped extension. 5. The storage system of claim 1, wherein each of the components further comprises a pair of ribs extending along a substantially flat top surface, the pair of ribs being disposed on opposite sides of the protruding member. 6. The storage system of claim 1, further comprising a spacing component configured to couple to a component at a terminating end of the track and configured to provide a substantially flat surface across a top surface of the component at the terminating end of the track. 7. The storage system of claim 1, wherein at least two of the plurality of apertures are separated by a distance of approximately 8 inches. 8. The storage system of claim 1, wherein at least one of the plurality of apertures further comprises a shoulder against which one of a washer and a head of the fastener is seated. 9. The storage system of claim 1, further comprising a plurality of fasteners configured to secure the plurality of components to an overhead support structure. 10. The storage system of claim 9, wherein the plurality of fasteners comprise one of a screw, a nail, a rivet, a bolt, and an anchor. 11. The storage system of claim 1, wherein the storage container is configured to be removed from the track only at one of a first end of the track and a second end of the track, the first end of the track and the second end of the track being disposed at opposite ends of the track. 12. The storage system of claim 1, wherein the storage container is configured to be removed from the track at any point along the length of the track by rotating the storage container with respect to the track. 13. The storage system of claim 1, wherein at least one of the plurality components is integrally formed. 14. The storage system of claim 1, wherein at least one of the plurality of components comprises a plurality of internal ribs configured to provide structural support to the support surface. 15. The storage system of claim 1, wherein each of the plurality of components has a cross-section in the shape of an inverted T. 16. The storage system of claim 1, wherein each of the support surface, the receiving member, the substantially flat surface, and the coupling component are integrally formed. 17. A storage system, comprising: a plurality of components configured to be arranged in a track, the track comprising at least two substantially parallel rows of components, each of the plurality of components comprising: a support surface;a securing component configured to secure the component to a support structure; anda coupling component configured to directly couple adjacent components in the track;a substantially flat top surface extending along a length of each component, the top surface configured to abut the support structure when the component is secured to the support structure;wherein each of the support surface, the securing component, the coupling component, and the substantially flat top are integrally formed;wherein the track is configured to receive a storage container having a flange, the flange being configured to rest upon the support surfaces of at least two separate components in the track disposed on opposite sides of the storage container. 18. The storage system of claim 17, wherein at least one of the plurality components is integrally formed.
Summa Gareth D. (Riverside MO) Reed George K. (Kansas City KS) Burt Harold S. (Kansas City KS), Apparatus for storage and retrieval of thin trays and sheets.
Welsch John H. (Moscow PA) Chapko John J. (Wilkes-Barre PA) Cohn Robert J. (Dallas PA) Dubin Daniel C. (Brecksville OH) Carver Robert J. (Nanticoke PA), Compact storage system.
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