System And Method For Locking Walls Of A Storage Container
20170225824 · 2017-08-10
Inventors
Cpc classification
B65D90/008
PERFORMING OPERATIONS; TRANSPORTING
B65D88/522
PERFORMING OPERATIONS; TRANSPORTING
B65D7/30
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D88/12
PERFORMING OPERATIONS; TRANSPORTING
B65D88/52
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention discloses a novel apparatus and way for securing components of a shipping container. A locking mechanism is provided having a pin, spur gear and main gear coupled together and controlled by a handle such that rotation of the handle causes rotation of the gears and translation of a locking pin used to secure adjacent components of the container.
Claims
1. A locking mechanism for a container comprising: a lower base beam; a corner post adjacent the lower base beam having an opening; and, an adjustable locking mechanism for securing the lower base beam to the corner post comprising: a pin having a first plurality of teeth along a bottom surface of the pin; a spur gear having a second plurality of teeth and positioned such that the second plurality of teeth engage the first plurality of teeth of the pin; a main gear having a third plurality of teeth and positioned such that the third plurality of teeth engage the second plurality of teeth of the spur gear; and, a handle fixed to the main gear for rotating the main gear; wherein rotation of the handle causes the main gear to rotate, thereby rotating the spur gear which causes the pin to translate in an axial direction generally parallel to the lower base beam.
2. The locking mechanism of claim 1, wherein the container is collapsible.
3. The locking mechanism of claim 2, wherein the container further comprises a base panel, a roof panel spaced a distance from the base panel and generally parallel to the base panel, a pair of sidewalls extending between the base panel and the roof panel, the sidewall panels rotatably coupled to the base panel along a bottom edge of the sidewalls, and a door panel and front panel extending between the pair of sidewalls, the door panel and the front panel rotatably coupled to the roof panel.
4. The locking mechanism of claim 1, wherein the adjustable locking mechanism is located along an exterior surface of the lower base beam.
5. The locking mechanism of claim 1, wherein the main gear is a quarter-gear capable of rotating approximately 90 degrees.
6. The locking mechanism of claim 1, wherein the handle is capable of pivoting up to 45 degrees away from the lower base beam.
7. The locking mechanism of claim 6, wherein the handle further comprises stop pins for controlling rotational movement of the handle.
8. The locking mechanism of claim 1 further comprising a handle lock for securing the handle to the lower base beam.
9. The locking mechanism of claim 1, wherein the pin engages the corner post of the container.
10. The locking mechanism of claim 3, wherein the pin engages a receiving slot associated with the roof panel of the container.
11. The locking mechanism of claim 1, wherein the handle is prevented from rotating when in a horizontal position.
12. A method of collapsing and locking a collapsible storage container comprising: unlocking a lower base beam from one or more corner posts of the container in an erect position; collapsing sidewalls of the container towards a base panel; collapsing a front panel and door panel towards a roof panel; lowering the roof panel, front panel, and door panel towards the base panel such that a top skirt of the roof panel is in proximity to the lower base beam and a gear-driven locking mechanism; and, rotating the gear-driven locking mechanism such that a pin of the gear-driven locking mechanism engages with a portion of the roof panel thereby securing the roof panel to the base panel.
13. The method of claim 12, wherein a point of rotation causing axial movement of the pin is located lower than a bottom surface of the top skirt.
14. The method of claim 12, wherein the unlocking of the lower base beam from the corner post occurs by rotational movement of the gear-driven locking mechanism causing the pin to slide axially and disengage from the corner post.
15. A locking mechanism for a collapsible container comprising: a pin for translating axially between a locked and unlocked position, where the axial translation of the pin is parallel to a lower base beam of the collapsible container, the pin having a first plurality of teeth along a bottom surface of the pin; a spur gear having a second plurality of teeth for engagement with the first plurality of teeth of the pin; a main gear having a third plurality of teeth for engagement with the second plurality of teeth of the spur gear; and, a handle fixed to the main gear, the handle capable of pivoting outward from the lower base beam and rotatable about a pivot axis of the main gear; wherein rotation of the handle causes the main gear to rotate, thereby rotating the spur gear and moving the pin axially.
16. The locking mechanism of claim 15, wherein the pin translates into an opening in a corner post to secure the lower base beam for an erect storage container.
17. The locking mechanism of claim 15, wherein the pin translates into an opening in a roof panel to secure the lower base beam to the roof panel for a storage container in a collapsed position.
18. The locking mechanism of claim 15, wherein the locking mechanism is located along an exterior surface of the lower base beam.
19. The locking mechanism of claim 18, wherein an unlocking of the lower base beam from the corner post occurs by rotating the gear-driven locking mechanism causing the pin to slide axially and disengage from the corner post.
20. The locking mechanism of claim 19, wherein the handle further comprises stop pins for controlling rotational movement of the handle and a handle lock for securing the handle to the lower base beam.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0013] The present invention is described in detail below with reference to the attached drawing figures, wherein:
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DETAILED DESCRIPTION
[0024] The present invention discloses a system and method for improving the structural connections between mating parts of a storage container. More specifically, embodiments of the present invention relate to systems and methods for improving the way beams of a container are connected to container corner posts. A discussion of the present invention follows and relates to
[0025] Referring now to
[0026] The locking mechanism 100, as shown in
[0027] As shown in
[0028] The adjustable locking mechanism 110 also comprises a main gear 130 having a third plurality of teeth 132 positioned along the perimeter of the main gear. The third plurality of teeth 132 engages the second plurality of teeth 122 of the spur gear 120. As it can be seen from
[0029] A handle 140 is coupled to the main gear 130 through attachment 142. Upon applying a force to the handle 140, the main gear 130 and spur gear 120 will rotate, thereby causing linear translation of the pin 112. More specifically, and with reference to
[0030] Prior to the handle 140 being able to rotate, a handle lock 150 is to be disengaged. The handle 140 is locked when the pin 112 is engaged in the corner post 104. The exact configuration of the handle lock 150 can vary, but may be similar to that of a door handle lock found on the doors of the container. Locking the handle 140 in place when the pin 112 is engaged provides a safety measure against accidental removal of the pin 112 from the corner post 104.
[0031] A further safety feature to prevent accidental rotation of the handle 140, and removal of pin 112, is incorporated through the shape of the handle 140. More specifically, and with respect to
[0032] Referring now to
[0033] As used herein, the term “panel” can comprise a single section or in the alternative can be comprised of multiple sections secured together by an acceptable process, such as welded together to form a weldment.
[0034] The foldable container 100 of the present invention is folded in a way such that it is capable of being stacked vertically multiple units high when not in use. The container geometry described herein permits the stacking of the containers as described in co-pending U.S. patent application Ser. No. 14/829,275.
[0035] The foldable container 100 of the present invention is fabricated from materials capable of withstanding a variety of weather elements and operating conditions. At least the exterior surfaces of the roof panel, base panel, front panel, door panel, and sidewalls are fabricated from corrugated metal, such as CorTen® steel. For example, CorTen® A, also known as A588, is an industry standard acceptable material as this material provides excellent corrosion resistance. This material capability is necessary given the harsh weather conditions experienced by the foldable container, including but not limited to salt water, sea air, rain, snow, and extreme heat and cold. Internal walls of the foldable container 100 can be corrugated metal or can be lined with other materials as desired by the owner/operator of the foldable container 100. Such container material provides the necessary protection of the internal spring assembly components whether the container is in its erect or folded state.
[0036] The present invention is applicable to a variety of standard intermodal shipping containers. For example, the folding container and associated spring assembly technology can be configured to accommodate various container lengths as used in the intermodal transport industry including, but not limited to, containers of 10 feet, 20 feet, 24 feet, 40 feet, 48 feet, and 53 feet in length.
[0037] While the invention has been described in what is known as presently the preferred embodiment, it is to be understood that the invention is not to be limited to the disclosed embodiment but, on the contrary, is intended to cover various modifications and equivalent arrangements within the scope of the following claims. The present invention has been described in relation to particular embodiments, which are intended in all respects to be illustrative rather than restrictive.
[0038] From the foregoing, it will be seen that this invention is one well adapted to attain all the ends and objects set forth above, together with other advantages which are obvious and inherent to the system and method. It will be understood that certain features and sub-combinations are of utility and may be employed without reference to other features and sub-combinations. This is contemplated by and within the scope of the claims.