Self-stacking strategically packed and collated enclosure (space) platform
11427381 ยท 2022-08-30
Inventors
Cpc classification
B65D2519/00696
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00562
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00293
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00572
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00676
PERFORMING OPERATIONS; TRANSPORTING
B65D19/385
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00796
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00273
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00338
PERFORMING OPERATIONS; TRANSPORTING
B65D2519/00044
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The Self-Stacking SPACE Platform is an enclosure for safe storage and transportation of packaged goods or products used in logistic industries which eliminates the need of conventional pallets made up of wood or plastic and provides more stability, safety, and expanded utilization of space, referred to as density within the transportation vehicles, containers and storage warehouses, allowing more goods or products being stored or transported compared to present pallets. The Self-Stacking SPACE Platforms of present invention is stackable up to 4 high which is further comprised of: a rectangular base frame having a removable flooring sheet made of a light weight material such as plastic; a corner support member welded at each corner of the base frame to insert and secure at least one corner upright member to form a structure that behaves as a box like frame to enclose the goods or merchandise placed on the SPACE platform and also behaves as a pillars while stacking two or more platforms together. The SPACE platforms of present invention further includes plurality of forklift slots configured to allow lifting of the platform using any conventional forklift; a strap loop for strapping two or more SPACE platforms when stacked together; and a forklift shield provided to prevent damage to the goods or merchandise in case a fork of the forklift misses the forklift slot.
Claims
1. A Self-stacking strategically packed and collated enclosure (SPACE) platform for storage and transportation of a packaged goods and merchandise, comprising: a rectangular base frame with a removable floor sheet; at least one corner support member welded at each corner of the rectangular base frame; and at least one corner upright member provided to be mounted within at least one corner support member and affixed using a nut-bolt assembly to form a structure that may enclose the packaged goods and merchandise safely on the SPACE platform wherein each of the at least one corner support member comprises a square socket at a top to accept and enclose the at least one corner upright member, wherein the square socket comprises a three side walls and one side open for the enclosed corner upright member to fold down onto the rectangular base frame from the open side.
2. The SPACE platform of claim 1 further comprises plurality of forklift slots attached at a bottom wall of each side of the base frame configured to allow lifting of the SPACE platform using a forklift.
3. The SPACE platform of claim 1 further comprises at least one upright shield member affixed at a top of the base frame aligned to each of the plurality of forklift slots.
4. The SPACE platform of claim 3, wherein each of the upright shield member is tilted at an angle outward to the base frame.
5. The SPACE platform of claim 3, wherein each of the upright shield member is provided to prevent damage to the packaged goods and merchandise placed in events of a fork miss any of the plurality of forklift slots.
6. The SPACE platform of claim 1 further comprises plurality of strap loops affixed at the bottom walls of each side of the base frame which is configured to allow belting of at least two SPACE platforms together when stacked.
7. The SPACE platform of claim 1, wherein a top portion of two adjacent walls of the square socket are tilted outward to guide the at least one corner upright member to allow easy insert into the SPACE platform.
8. The SPACE platform of claim 7, wherein each of the two adjacent walls of the square socket with the tilted portion further includes at least one oval shaped aperture to secure the oval shaped stud of the at least one corner upright member enclosed in the square socket.
9. The SPACE platform of claim 1, wherein the at least one corner upright member further includes an oval shaped stud welded at two adjacent sides.
10. The SPACE platform of claim 1, wherein the at least one corner support member and at least one corner upright member includes an apertures on two opposite walls, wherein the apertures of the corner support member and corner upright member aligns when the corner upright member is inserted into the corner support member.
11. The SPACE platform of claim 10, wherein the apertures of the at least one corner support member and at least one corner upright member is provided to pass a nut through the aligned holes and fasten using a bolt of the nut-bolt assembly after inserting he corner upright member into the corner support member.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1) The foregoing summary, as well as the following detailed description of the invention, is better understood when read in conjunction with the appended drawings. For the purpose of merely illustrating the invention, exemplary constructions of the invention are shown in the drawings. However, the invention is not limited to the specific methods and structures disclosed herein. The description of a method step or a structure referenced by a numeral in a drawing is applicable to the description of that method step or structure shown by that same numeral in any subsequent drawing herein.
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DETAILED DESCRIPTION OF INVENTION
(8) The present invention overcomes the aforesaid drawbacks of the above, and other objects, features and advantages of the present invention will now be described in greater detail. Also, the following description includes various specific details and are to be regarded as merely exemplary. Accordingly, those of ordinary skill in the art will recognize that: without departing from the scope and spirit of the present disclosure and its various embodiments there may be any number of changes and modifications described herein.
(9) The Self-stacking strategically packed and collated enclosure (SPACE) platform disclosed by the present invention is provided to give products heading to the market a safe, stable and easy to load solution far superior than the standard methods, wooden or plastic pallets or any other product which is being used in logistics industries. According to one embodiment, it provides valuable solutions for online merchants, brick and mortar retailers, shipping companies and last mile delivery services.
(10) According to one embodiment, the SPACE platform of present invention is capable of being utilized to sort and load online orders by the online merchants based on their zip codes on dedicated SPACE platform for said zip code destination. According to one embodiment, because of the shape and stackable feature of present SPACE platform, it allows easy streamlining of the logistics and also reduces the time and expense of getting online orders to the customers for final delivery.
(11) According to one embodiment, the SPACE platform of present invention is comprising of: a rectangular four-sided base frame with a removable floor sheet made of the plastic to be placed over the base frame. According to one embodiment, the SPACE platform of present invention further includes corner supports welded on all four corners of the base frame to accept the corner uprights, wherein a pyramid shaped male targets are fixed at the bottom of each corner support while the top is made as a rectangular shaped hollow enclosure with three side walls to secure the corner uprights at its place. A corner upright to be configured at each corner of the base frame and placed within the corner support, wherein the upright further includes a pyramid shaped female target which is provided to conform with the male target at the bottom of the corner support when two SPACE platform are stacked together to provide better stability and safety.
(12) According to one embodiment, the SPACE platform of present invention further comprises a forklift slots mounted at the bottom wall of the base frame and configured to allow lifting of the SPACE platform using the conventional fork-lift; at least one upright shield member configured at the top of all four sides of the base frame with an inclined top at an angle of 45 degree outward to the base frame which is provided to prevent damage to the cartons and other delicate goods which needs to be handled with care; and a plurality of strap loops also attached at the bottom wall of the base frame beside the forklift slots which are configured to allow belting two SPACE platforms together when stacked for shipping, hence increasing stability and safety during transportation.
(13) According to one embodiment, the base of the Self-Stacking SPACE Platform is fixed at the bottom of the platform to allow the packages or products to be stacked directly over the base plate and enclosed within the Self-Stacking SPACE Platform. Further, according to one another embodiment of the present Self-Stacking SPACE Platform the base of the enclosure module is removable allowing the flooring of the platform to be removed when not in use. Moreover, perforated plastic sheets are used as a removable base plate that is necessary to allow water to drain through the base. Furthermore, fork-lifting of the Self-Stacking SPACE Platform is possible even when no pallet is placed inside since the base comprises a fork slots on all four side as mentioned above.
(14) According to one embodiment, the top of the corner upright is made as a female pocket or target of the shape of inverse pyramid while the bottoms of each corner support members are made as a male pocket or target of the shape of pyramid which sits and conform within the female pocket at the top of the other SPACE platform when two SPACE platforms are stacked over each other. This secure sitting of pyramid shaped male target within the female pocket when stacked increases stability and rigidity of the platforms. This method of stacking has been tested to allow secure and stable stacking of up to four Self-Stacking SPACE platforms according to present embodiment and may vary according to the load type, weight and the material being used in manufacturing of the Self-Stacking SPACE Platform. Most preferably, the material is selected from the powder coated steel, aluminum, iron, or alloy made therefrom, but without departing from scope of the invention, any metal can be used that allows reusability of the Self-Stacking SPACE Platform and non-hazardous to the environment and eliminates the need of wood or plastic.
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(16) According to present embodiment, the corner support member 106 is made as a square socket at the top to accept and secure the corner upright members 108 and enclose it from three sides while keeping one side open as to allow the corner support members 108 to be lifted up from the square socket and dropped onto the frame for storing or during return shipment of the SPACE platforms. According to one embodiment, the corner upright member 108 of present invention further includes an inverse pyramid shaped socket which is configured to allow rigid and secure stacking of SPACE platforms.
(17) According to one embodiment, the SPACE platform of present invention further includes plurality of forklift slots 112 and strap loops 116 affixed at the bottom wall of each side of the base frame 102. According to one embodiment, the forklift slots are provided to allow easy lifting of the SPACE platform 100 using any conventional forklift. According to one embodiment, the strap loops are configured to allow strapping of belting at least two SPACE platforms together when stacked for shipping.
(18) According to one embodiment of present invention, plurality of forklift shields 114 are affixed aligned to each forklift slots 112 over all the sides of the base frame 102 of the SPACE platform. The forklift shields 114 according to one embodiment of present invention is provided to protect the merchandise and/or cartons placed on the SPACE platform 100 from being damaged in the event the fork misses the forklift slot 112.
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(20) According to one embodiment, the bottom end of each corner support member 106 is provided with bottom extending pyramid shaped target 118 which is provided to sit within the female inverse pyramid shaped socket 110 of corner upright members of another SPACE platform 100 when stacked together on each other. According to one embodiment, the Pyramid and inverse pyramid shape of the mala target and female socket provide additional locking capacity, stability and rigidity to the SPACE platforms 100 when stacked.
(21) The base frame 102 further includes a net structure made of plurality of bars 120 affixed in horizontal and vertical placements. According to one embodiment, the SPACE platform further includes a nut-bolt assembly 124 provided to fasten the corner upright member 108 with the corner support member 106 for additional safety. According to one embodiment, the corner support member 106 and the corner upright member both includes equal-centric holes on any two opposite walls that allows nut of the nut-bolt assembly 124 pass from one side and extend out to another side through the corner upright member secured in the corner support member, wherein the bolt of the nut-bolt assembly 124 is secured on the extending thread of the nut thus fixing the corner upright member 108 tightly within the corner support member 106 preventing its movement.
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(23) According to one embodiment, top portions 126 of two adjacent walls of the corner support members 106 are tilted at 45 degrees in outward direction which is designed to guide the corner upright member 108 into position and also to make it easier to insert the upright into the corner support member 106. According to one embodiment, an oval shaped aperture 128 is provided in both the adjacent walls having the tilted top portion 126 which is configured to secured oval shaped studs of the corner upright member 108 when inserted within the corner support member 106. Additionally, pair of eccentric holes 130 in two opposite walls of the corner support member 106 which is configured to allow nut of the nut-bolt assembly to pass through the corner support member 106.
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(25) The foregoing description of the specific embodiments will so fully reveal the general nature of the embodiments herein that others can, by applying current knowledge, readily modify and/or adapt for various applications such specific embodiments without departing from the generic concept, and, therefore, such adaptations and modifications should and are intended to be comprehended within the meaning and range of equivalents of the disclosed embodiments. It is to be understood that the phraseology or terminology employed herein is for the purpose of description and not of limitation. Therefore, while the embodiments herein have been described in terms of preferred embodiments, those skilled in the art will recognize that the embodiments herein can be practiced with modification within the spirit and scope of the embodiments as described herein.