PROJECT MATERIAL STORAGE AND TRANSPORTATION DEVICE AND SYSTEM
20180312296 ยท 2018-11-01
Assignee
Inventors
Cpc classification
B65D19/0077
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00333
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00293
PERFORMING OPERATIONS; TRANSPORTING
B65D19/06
PERFORMING OPERATIONS; TRANSPORTING
B65D19/385
PERFORMING OPERATIONS; TRANSPORTING
B65D88/12
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00796
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00273
PERFORMING OPERATIONS; TRANSPORTING
B65D88/022
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00044
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00666
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00562
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00701
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00676
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00631
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00497
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00323
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D19/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present device and system provide rigid, stackable storage and transportation platforms. Vertical posts interconnecting side and end beams incorporate upper and lower connection pin plates. In use, these pin plates allow connection of the platform to transport means or stacked connection to other platforms using ISO lock pins. Cross beams extending between the side beams provide additional strength.
Claims
1. A project material storage and transportation device, comprising: four vertical posts extending in parallel to each other and having a tubular configuration, each vertical post having an upper connection pin plate at an upper end thereof and a lower connection pin plate at a lower end thereof; a first side beam and a second side beam, the first side beam extending in parallel to the second side beam, the first side beam and the second side beam extending perpendicular to the vertical posts; a first end beam and a second end beam, the first end beam extending in parallel to the second end beam, the first end beam and the second end beam extending perpendicular to the vertical posts and the first side beam and the second side beam; a plurality of cross beams extending in parallel to each other and to the first end beam and the second end beam, the plurality of cross beams extending in perpendicular to the first side beam and the second side beam and to the vertical posts, wherein the first side beam and the second side beam extend along the same plane as the first end beam and the second end beam and the plurality of cross beams, wherein the vertical posts interconnect the first side beam and the second side beam with the first end beam and the second end beam, wherein the plurality of cross beams interconnect the first side beam with the second side beam.
2. The device of claim 1, further comprising a plurality of forklift channels extending from the first side beam to the second side beam, wherein the plurality of forklift channels extend through a web of the first side beam and a web of the second side beam.
3. The device of claim 1, wherein each of a plurality of tie-down anchors is located in line with a longitudinal axis of one of the plurality of cross beams.
4. The device of claim 3, wherein each of the plurality of tie-down anchors is connected to an upper surface of an upper outer flange of each of the first side beam and the second side beam.
5. The device of claim 3, further comprising a plurality of tie-down ports extending through an upper outer flange of each of the first side beam and the second side beam.
6. The device of claim 5, wherein each of the plurality of tie-down anchors is connected to an upper surface of a lower outer flange of each of the first side beam and the second side beam and located directly below one of the plurality of tie-down ports.
7. The device of claim 3, wherein each of the plurality of tie-down anchors is angled inwardly up to approximately twenty degrees from vertical.
8. The device of claim 1, wherein each of the four vertical posts further comprises at least one upper post aperture extending through an upper end of at least one sidewall.
9. The device of claim 1, wherein each of the four vertical posts further comprises at least one lower post aperture extending through a lower end of at least one sidewall.
10. The device of claim 1, further comprising at least one decking strip connected to an upper surface of at least one of the first end beam, the second end beam, or the plurality of cross beams.
11. The device of claim 10, further comprising at least one stabilizing block connected to an upper surface of the at least one decking strip.
12. The device of claim 1, further comprising a deck connected to an upper surface of at least one of the first end beam, the second end beam, or the plurality of cross beams.
13. The device of claim 12, further comprising at least one stabilizing block connected to an upper surface of the deck.
14. A project material storage and transportation device, comprising: four vertical posts extending in parallel to each other and having a tubular configuration, each vertical post having an upper connection pin plate at an upper end thereof and a lower connection pin plate at a lower end thereof; a first side beam and a second side beam, the first side beam extending in parallel to the second side beam, the first side beam and the second side beam extending perpendicular to the vertical posts; a first end beam and a second end beam, the first end beam extending in parallel to the second end beam, the first end beam and the second end beam extending perpendicular to the vertical posts and the first side beam and the second side beam; a plurality of cross beams extending in parallel to each other and to the first end beam and the second end beam, the plurality of cross beams extending in perpendicular to the first side beam and the second side beam and to the vertical posts; and at least one headboard comprising a headboard wall connected to a plurality of headboard connectors, wherein the headboard wall forms the shape of a vertical planar wall above the first end beam or the second end beam, wherein the headboard wall is removably connected to either the first side beam and the second side beam or to a pair of vertical posts by the plurality of headboard connectors, wherein the first side beam and the second side beam extend along the same plane as the first end beam and the second end beam and the plurality of cross beams, wherein the vertical posts interconnect the first side beam and the second side beam with the first end beam and the second end beam, wherein the plurality of cross beams interconnect the first side beam with the second side beam.
15. The device of claim 14, wherein the headboard wall is connected to a first headboard leg and to a second headboard leg by angled headboard supports extending therebetween, and wherein the first headboard leg and the second headboard leg extend along longitudinal axes of the first side beam and the second side beam, respectively, the plurality of headboard connectors extending from a lower surface of the first headboard leg and a lower surface of the second headboard leg through a plurality of tie-down ports extending through an upper outer flange of each of the first side beam and the second side beam.
16. The device of claim 15, wherein each of the plurality of headboard connectors has at least one aperture extending therethrough holding a removable headboard pin, said headboard pin extending beyond a perimeter of the tie-down port.
17. The device of claim 14, wherein each of the plurality of headboard connectors extends from one side of the headboard wall perpendicular to the plane of the headboard wall.
18. A project material storage and transportation system, comprising: at least a first project material storage and transportation device and a second project material storage and transportation device, each project material storage and transportation device comprising: four vertical posts extending in parallel to each other and having a tubular configuration, each vertical post having an upper connection pin plate at an upper end thereof and a lower connection pin plate at a lower end thereof, a first side beam and a second side beam, the first side beam extending in parallel to the second side beam, the first side beam and the second side beam extending perpendicular to the vertical posts, a first end beam and a second end beam, the first end beam extending in parallel to the second end beam, the first end beam and the second end beam extending perpendicular to the vertical posts and the first side beam and the second side beam, a plurality of cross beams extending in parallel to each other and to the first end beam and the second end beam, the plurality of cross beams extending in perpendicular to the first side beam and the second side beam and to the vertical posts, wherein the first side beam and the second side beam extend along the same plane as the first end beam and the second end beam and the plurality of cross beams, wherein the vertical posts interconnect the first side beam and the second side beam with the first end beam and the second end beam, wherein the plurality of cross beams interconnect the first side beam with the second side beam; and at least four connection pins.
19. The system of claim 18, wherein the first project material storage and transportation device is located atop the second project material storage and transportation device such that each connection pin is located between one of the four vertical posts of the first project material storage and transportation device and one of the four vertical posts of the second project material storage and transportation device.
20. The system of claim 19, wherein each of the at least four connection pins extends through one of the lower connection pin plates of the first project material storage and transportation device and one of the upper connection pin plates of the second project material storage and transportation device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION
[0016] In the present description, certain terms have been used for brevity, clearness and understanding. No unnecessary limitations are to be applied therefrom beyond the requirement of the prior art because such terms are used for descriptive purposes only and are intended to be broadly construed. The different systems and methods described herein may be used alone or in combination with other systems and methods. Various equivalents, alternatives and modifications are possible within the scope of the appended claims. Each limitation in the appended claims is intended to invoke interpretation under 35 U.S.C. 112, sixth paragraph, only if the terms means for or step for are explicitly recited in the respective limitation.
[0017] The present application provides a material platform 100 for project material storage and transportation. As seen in
[0018] A plurality of cross beams 121 also extend from side beam 110a to side beam 110b, located between and parallel to end beams 120a and 120b. While the present embodiment of platform 100 includes nine cross beams 121, other embodiments may include different numbers of cross beams 121. As seen in
[0019] The side beams 110a and 110b, end beams 120a and 120b, cross beams 121, and vertical posts 130 are interconnected through welding. In the present embodiment of platform 100 shown in
[0020] In certain embodiments, two forklift channels 111 extend through the web of side beam 110a, cross the space between side beams 110a and 110b, and extend through the web of side beam 110b. Forklift channels 111 do not extend beyond the outer flanges of side beams 110a and 110b. Each forklift channel 111 extends perpendicular to parallel side beams 110a and 110b and is located between and parallel to pairs of cross beams 121. Forklift channels 111 have a tubular rectangular configuration for receipt of the prongs of a forklift. Forklift channels 111 may be manufactured from steel, with or without a surface finish, such as, but not limited to, paint, enamel, or zinc galvanization, and are connected to the webs of parallel side beams 110a and 110b through welding.
[0021] In certain embodiments, multiple tie-down ports 112 extend through the upper outer flange of each of side beams 110a and 110b. Additional tie-down ports 112 may extend through the upper outer flange of each of end beams 120a and 120b. A tie-down anchor 113 is located on the upper surface of each lower outer flange directly below each tie-down port 112, whether on side beams 110a and 110b or on end beams 120a and 120b. In other embodiments lacking tie-down ports 112, tie-down anchors 113 may otherwise be located atop the upper outer flanges of side beams 110a and 110b and/or end beams 120a and 120b.
[0022] In the present embodiment, each tie-down anchor 113 is configured as an upside-down U-shape with two flanges extending from either leg of the U-shape. The two flanges are welded to the upper surface of the lower or upper outer flange of side beams 110a and 110b or end beams 120a and 120b. To prevent damage to or warping of platform 100, tie-down anchors 113 on side beams 110a and 110b are located in line with the longitudinal axes of cross beams 121. In certain embodiments, tie-down anchors 113 may be angled inwardly (i.e., toward the web of the beam it is connected to) up to approximately twenty degrees from vertical to reduce strain on the weld during use and reduce the likelihood of tide-down anchors 113 catching on external objects.
[0023] As shown in
[0024] In the embodiment shown in
[0025] Referring again to
[0026] Each vertical post 130 also includes an upper connection pin plate 133 with an upper connection pin port 134, and a lower connection pin plate 135 with a lower connection pin port 136. Upper connection pin plate 133 and lower connection pin plate 135 have identical configurations. Upper connection pin plate 133 is welded across the open upper end of vertical post 130; lower connection pin plate 135 is welded across the open lower end of vertical post 130. During use of a given platform 100, as seen in
[0027] Referring now to
[0028] In the embodiment shown in
[0029] In the embodiment shown in
[0030] As seen in
[0031] A plurality of headboard connectors 154 removably link headboard 150 to platform 100. At least one headboard connector 154 extends vertically from the bottom surface of each headboard leg 153a and 153b through tie-down ports 112 in each side beam 110a and 110b. Each headboard connector 154 is sized to be received by tie-down ports 112. Each headboard pin 155 extends through an aperture in a headboard connector 154 and beyond a perimeter of the respective tie-down port 112 to prevent removal of headboard connectors 154 from tie-down ports 112. Removal of the headboard pins 155 allows a user to lift headboard 150 and remove it from platform 100.
[0032] The headboard wall 151 and headboard supports 152a and 152b are sheet metal welded to each other and to headboard legs 153a and 153b. Headboard legs 153a and 153b and headboard connectors 154 are tubular with a square or rectangular cross-section. Headboard wall 151, headboard supports 152a and 152b, headboard legs 153a and 153b, headboard connectors 154, and headboard pins 155 may be manufactured from steel, with or without a surface finish, such as, but not limited to, paint, enamel, or zinc galvanization.
[0033] In another embodiment, headboard 150 includes only headboard wall 151 with a plurality of headboard connectors 154. Each headboard connector 154 extends from one side of the headboard wall, perpendicular to the plane of headboard wall 151. The headboard wall 151 and headboard connectors 154 are sheet metal welded to each other. Headboard wall 151 and headboard connectors 154 may be manufactured from steel, with or without a surface finish, such as, but not limited to, paint, enamel, or zinc galvanization. In this embodiment, headboard connectors 154 extend horizontally into upper post apertures 131 and/or lower post apertures 132, interlocking headboard 150 with vertical posts 130.
[0034] To facilitate such an interlocking configuration, upper post apertures 131 and/or lower post apertures 132 may have a shape that tapers or forms a narrowed section toward the bottom, such as, but not limited to, a keyhole or oval shape. Headboard connectors 154 may have a T- or L-shaped configuration, with the arms of the T or a leg of the L entering through the wider end of upper post aperture 131 or lower post aperture 132 and descending to be caught by the narrower bottom section. Such upper post apertures 131 and/or lower post apertures 132 can be placed through any of the four sidewalls of vertical posts 130, provided that each pair of vertical posts 130 to support a headboard 150 have upper post apertures 131 and/or lower post apertures 132 along the same plane.
[0035] As seen in
[0036] Before stacking, the lower portions of connection pins 137 are placed in each upper connection pin port 134 of second platform 100b. First platform 100a is then maneuvered atop second platform 100b using a forklift, RTCH, or other transportation means such that the footprints of platforms 100a and 100b completely overlap. First platform 100a is then lowered until the upper portion of connection pins 137 extend through each lower connection pin port 136 in first platform 100a. Users can then actuate each connection pin 137 to securely connect first and second platforms 100a and 100b together. System 200 may be transported in the same manner as platform 100, provided that the transportation means is capable of carrying the combined weight.
[0037] In the foregoing description, certain terms have been used for brevity, clearness, and understanding. No unnecessary limitations are to be inferred therefrom beyond the requirement of the prior art because such terms are used for descriptive purposes and are intended to be broadly construed. Any different configurations, systems, and method steps described herein may be used alone or in combination with other configurations, systems, and method steps. It is to be expected that various equivalents, alternatives, and modifications are possible within the scope of the appended claims.