The invention relates to storage and transport containers, and more particularly, to storage and transport containers for storing and transporting cargo such as, but not limited to vehicle tires and/or wheels.
There is a need to package large quantities of different sized vehicle wheels for transport. The primary means of transportation are shipping containers and as secondary loads in vehicles, such as pick up trucks, humvees, tractor trailers, etc. Therefore the wheels need to be packaged on an apparatus that is moveable and transportable because packaging of the wheels may occur prior to loading containers or trucks. The wheel weights may range from about 50 lbs to about 1000 lbs or more, thus the apparatus needs to be strong enough to support heavy loads. Additionally, there is a need to maximize the available space inside of the shipping container or truck (or other vehicle carrying a secondary load) by volume. A new regulation for Government Agencies who ship wheels is that the wheels should be stored vertically to extend the life of the wheels while in storage. It has been determined that flat packing of wheels on top of each other cause the wheels to deteriorate in storage.
Currently, the commercial practice of packing wheels for shipping in trucks is to have them individually loaded and off loaded by people. This is time intensive, and risks injury to those loading and unloading the wheels. For other transport, wheels are packed flat on wooden pallets and then secured to the pallet for transport. Using pallets often leads to flat stacking of wheels in violation of government regulations.
Thus there is a need for a wheel storage and transport device that overcomes the above listed and other disadvantages.
The disclosed invention relates to a storage and transport container comprising: a lower front member; a first post attached to the first end of the lower front member; a second post attached to the second end of the lower front member; a floor front member attached to the first post and the second post, and located below the lower front member; a rotatable gate rotatably attached to the lower front member, and lockably attachable to the first post and the second post; a first tab extending from the first post, with a first hole located in the first tab; a first spring loaded gate lock attached to the rotatable gate, the first spring loaded gate lock comprising a first gate locking member configured to generally constantly be forced into a locked position by the spring and configured to slide into the first hole in order to lock the first spring loaded gate lock, the first gate locking member comprising a chamfered end configured to automatically move into an unlocked position by the first tab pushing on the chamfered end when the first spring loaded gate is rotated closed, until the chamfered end is aligned with the first hole, whereupon the first gate locking member automatically is pushed into the hole by the spring and thus locks the first spring loaded gate lock with respect to the first post.
The invention also relates to a storage and transport container comprising: a first post; a second post; a third post; a fourth post; a first lower side member attached to the first post and the fourth post; a second lower side member attached to the second post and the third post; a first lower bar attached to the first lower side member and the second lower side member; a second lower bar attached to the first lower side member and the second lower side member, the second lower bar generally parallel to the first lower bar, and at least about 15.5 inches from the first lower bar, center to center; a first post member slideably attached to the first post, and configured to extend out of and retract into the first post, the first post member comprising a plurality of first member holes located along the length of the first post member; a second post member slideably attached to the second post, and configured to extend out of and retract into the second post, the second post member comprising a plurality of second member holes located along the length of the second post member; a third post member slideably attached to the third post, and configured to extend out of and retract into the third post, the third post member comprising a plurality of third member holes located along the length of the third post member; a fourth post member slideably attached to the fourth post, and configured to extend out of and retract into the fourth post, the fourth post member comprising a plurality of fourth member holes located along the length of the fourth post member; a first top side member attached to the first post member and the fourth post member; a second top side member attached to the second post member and the third post member; a first top bar attached to the first top side member and the second top side member, and generally parallel to the first and second lower bars; a second top bar attached to the first top side member and the second top side member, the second top bar generally parallel to the first top bar, and at least about 20.5 inches from the first top bar, center to center, and generally parallel to the first and second lower bars; a first spring loaded lock in communication with the first post, the first spring loaded lock comprising: a first post hole, the first pole hole configured to be aligned with at least one of the first member holes; a first locking member configured to slide though the first post hole and at least one first member hole aligned with the first post hole; where depending on which of the first member holes the first locking member has slid through, the first post member can be extended or retracted into the first post; a second spring loaded lock in communication with the second post, the second spring loaded lock comprising: a second post hole, the second pole hole configured to be aligned with at least one of the second member holes; a second locking member configured to slide though the second post hole and at least one second member hole aligned with the second post hole; where depending on which of the second member holes the second locking member has slid through, the second post member can be extended or retracted into the second post; a third spring loaded lock in communication with the third post, the third spring loaded lock comprising: a third post hole, the third pole hole configured to be aligned with at least one of the third member holes; a third locking member configured to slide though the third post hole and at least one third member hole aligned with the third post hole; where depending on which of the third member holes the third locking member has slid through, the third post member can be extended or retracted into the third post; a fourth spring loaded lock in communication with the fourth post, the fourth spring loaded lock comprising: a fourth post hole, the fourth pole hole configured to be aligned with at least one of the fourth member holes; a fourth locking member configured to slide though the fourth post hole and at least one fourth member hole aligned with the fourth post hole; where depending on which of the fourth member holes the fourth locking member has slid through, the fourth post member can be extended or refracted into the fourth post; where the storage and transport container is configured such that the first, second, third and fourth post members can be extended and retracted with respect to the first, second and third, and fourth posts respectively, such that that first and second top bars and the first and second lower bars can abut an object being stored and/or transported in the container.
The present disclosure will be better understood by those skilled in the pertinent art by referencing the accompanying drawings, where like elements are numbered alike in the several figures, in which:
The container 10 comprises an adjustable top 262 and base 266. The adjustable top 262 can be extended and retracted into the base 266. In one embodiment, the top can be extended to so that the container has a height of about 6 feet, and the top can be lowered so the container has a height of about 3.5 feet. Of course, the container can be sized to be larger or smaller. The adjustable top 262 comprises the first post member 30, second post member 34, third post member 38, fourth post member 42, first top bar 54, second top bar 58, first adjustable top side member 46, second adjustable top side member 50, top front member 142, and top rear member 154. The base 266 comprises first post 14, second post 18, third post 22, fourth post 26, front rotatable gate 98, first top side member 186, and second top side member 198.
This invention has many advantages. The top portion of the container can be raised and lowered to fit different wheel sizes for transportation and/or storage of different wheel sizes. The portion of the container may lock the wheels in place during transportation, and may be locked in place by four spring loaded locks. The portion of the container can be raised and lowered, and locked in place, to different heights with respect to the lower portion of the container. Wheels or other items being stored and transported may be locked into place by lowering the top portion of the container on to the top of the wheels or other items. The top portion of the container may be locked in place by four spring loaded locks. The spring loaded locks may be located in each corner of the bottom portion of the container. The two top bars may secure the wheel(s) inside the container during transportation. The wheel may be centered on the two lower bars. The container may have a hinged front gate with spring loaded locks, one at each top corner of the gate. The locking bars have a chamfer, so that when the front gate is closed the spring loaded locks automatically engage. The front gate can be slammed close and it will be locked automatically. The container has self-centering stacking corners, that make it relatively to stack and center the containers on top of one another.
It should be noted that the terms “first”, “second”, and “third”, and the like may be used herein to modify elements performing similar and/or analogous functions. These modifiers do not imply a spatial, sequential, or hierarchical order to the modified elements unless specifically stated.
While the disclosure has been described with reference to several embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the disclosure. In addition, many modifications may be made to adapt a particular situation or material to the teachings of the disclosure without departing from the essential scope thereof. Therefore, it is intended that the disclosure not be limited to the particular embodiments disclosed as the best mode contemplated for carrying out this disclosure, but that the disclosure will include all embodiments falling within the scope of the appended claims.
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