The invention relates to plastic pallets that are used to support goods and other articles. More particularly, the invention relates to multi-piece plastic pallets that are configured to receive a lifting device.
Pallets are flat transport structures that are made of wood, plastic and/or metal. Pallets are used to stably support a variety of goods that are placed on a top surface of the pallet. Pallets enable goods to be stored and/or transported using lifting devices, such as forklifts or other jacking devices.
Wood and metal pallets have many drawbacks. For example, wood pallets suffer from problems including splintering, weight fluctuations due to varying moisture content, and/or lack of hygiene due to mold and/or fungi that result from the moisture, among other problems. Metal pallets suffer from problems including high cost of manufacture, corrosion and/or bending, among other problems. While plastic pallets offer several advantages over wood and metal pallets, a need remains to increase durability and strength of plastic pallets.
Various aspects of the invention overcome at least some of these and other drawbacks of existing systems. According to one embodiment of the invention, a pallet is provided that includes two or more sections that are joined together. The pallet may include a plurality of pallet blocks that are provided to join a bottom deck and a top deck of the pallet. For example, the pallet may include a plurality of pallet blocks that are located at corners, at locations along a perimeter of the pallet between the corners, at a center of the pallet, or at other locations. The pallet blocks may include rounded corners to provide several benefits, including reduced damage during impact with lifting device prongs, fork tines, or other objects, improved aesthetic appearance and/or other benefits. According to one embodiment of the invention, the pallet blocks may be arranged to provide the pallet with four-way symmetry.
According to another embodiment of the invention, the top deck may include pallet blocks that project downwardly. The pallet blocks on the top deck may include outer sleeves and bosses or posts, among other components.
According to one embodiment of the invention, the bottom deck may include pallet blocks that project upwardly. The pallet blocks on the bottom deck may include inner sleeves, post receiving cavities and radial ribs, among other components. According to another embodiment of the invention, the post receiving cavities may be coupled to the inner sleeves by the plurality of radial ribs. The radial ribs provide many benefits, including increasing the strength and durability of pallet blocks, among other benefits.
According to one embodiment, the post may be inserted into the post receiving cavity and may protrude through an end of the post receiving cavity proximate to the bottom deck. For example, the post may extend beyond a plane that is defined by bottom portions of radial ribs that are located at a far end of the post receiving cavity proximate to the bottom deck. According to one embodiment, during insertion of the post into the post receiving cavity, the outer sleeve is fitted over the inner sleeve. According to another embodiment of the invention, the assembled pallet block includes a two layer block wall thickness formed by the outer sleeve and the inner sleeve. According to another embodiment of the invention, the radial ribs are configured to couple the inner sleeve to the post, thereby increasing the strength of the assembled pallet block by providing impact transmission, among other benefits.
According to another embodiment of the invention, the top deck and the bottom deck may be joined together using a heat staking assembly process that includes using heat and pressure to reform a tip portion of the post. According to one embodiment of the invention, after the post is inserted into the post receiving cavity to protrude through the post receiving cavity and to extend beyond a plane defined by bottom portions of the radial ribs, which are proximate to the bottom deck, the post may be heated and pressed to create a deformed post that mechanically locks the top deck and the bottom deck through the pallet blocks. According to another embodiment of the invention, the post and post receiving cavity may be mechanically fastened using other fastening mechanisms.
The invention provides numerous advantages over and avoids many drawbacks of prior systems. These and other objects, features, and advantages of the invention will be apparent through the detailed description of the embodiments and the drawings attached hereto. It is also to be understood that both the foregoing general description and the following detailed description are exemplary and not restrictive of the scope of the invention. Numerous other objects, features, and advantages of the invention should become apparent upon a reading of the following detailed description when taken in conjunction with the accompanying drawings, a brief description of which is included below.
The drawings appended hereto are intended to illustrate contemplated embodiments of the invention. The drawings are not intended to limit the invention solely to the embodiments illustrated and described.
According to one embodiment of the invention, bottom deck 12 and top deck 15 may be molded from thermoplastic or other polymer materials, including high density polyethylene (HDPE), polypropylene (PP), among other polymer materials. As may be appreciated by one of ordinary skill in the art, the polymer materials may be filled or unfilled and/or may include particulate or fibrous, natural or synthetic materials, among other features. For example, unfilled HDPE may provide improved impact strength, PP having strengtheners (i.e., long glass fibers) may provide improved structural properties and unfilled PP with random copolymers may provide improved reinforcement qualities. According to an alternative embodiment of the invention, all or less than all of bottom deck 12 and top deck 15 may be constructed from other materials including wood, metal, or other materials.
According to one embodiment of the invention, bottom deck 12 and top deck 15 may be molded from different thermoplastics or polymer materials. For example, bottom deck 12 may be molded from a first type of thermoplastic or polymer material, while top deck 15 may be molded from a second type of thermoplastic or polymer material. According to another embodiment of the invention, bottom deck 12 may be created from wood, metal or other materials, while top deck 15 may be molded from a second type of thermoplastic or polymer material.
As illustrated from the top perspective in
According to one embodiment of the invention, pallet 10 may include a plurality of pallet blocks 14 that are provided to join bottom deck 12 and top deck 15. For example, pallet 10 may include nine pallet blocks 14 that are located at corners 13, at locations 17 along a perimeter of pallet 10 between corners 13, and at a center 16 of pallet 10. One of ordinary skill in the art will readily appreciate that a greater number or fewer number of pallet blocks 14 may be provided. Pallet blocks 14 may include rounded corners to provide several benefits, including reduced damage during impact with lifting device tines or other objects, improved aesthetic appearance and/or other benefits. According to one embodiment of the invention, pallet blocks 14 may be configured to provide pallet 10 with four-way symmetry.
While specific embodiments of the invention are discussed herein and are illustrated in the drawings appended hereto, the invention encompasses a broader spectrum than the specific subject matter described and illustrated. As would be appreciated by those skilled in the art, the embodiments described herein provide but a few examples of the broad scope of the invention. There is no intention to limit the scope of the invention only to the embodiments described herein.
According to another embodiment of the invention, top deck 15 and bottom deck 12 may be joined together using a heat staking assembly process that includes providing heat and pressure to reform a tip portion of post 23. The heat staking process typically includes providing sufficient heat to a thermoplastic component to reset the thermoplastic components' memory, but not to melt the thermoplastic component.
According to yet another embodiment of the invention, post 23 and post receiving cavity 43 may be fastened together with a snapping mechanism. According to one embodiment, a tip portion of post 23 may include a tab that rides past a lower end of post receiving cavity 43 proximate to bottom deck 12. When the tab clears the lower end of post receiving cavity 43, the tab may bend outwardly to mechanically lock top deck 15 and bottom deck 12. According to another embodiment of the invention, the tab may be located on any portion of post 23 to engage post receiving cavity 43 or other components. According to an alternative embodiment of the invention, the tab may be located on the post receiving cavity 43 to engage post 23 or other component. Other fastening mechanisms will be appreciated by those skilled in the art and are intended to be encompassed by the invention.
While the preferred forms of the invention have been disclosed, it will be apparent to those skilled in the art that various changes and modifications may be made that will achieve some of the advantages of the invention without departing from the spirit and scope of the invention. For example, the system may be configured to replace the pallet block portion of the top deck with the pallet block portion of the bottom deck and vice versa. It will be apparent to those reasonably skilled in the art that other components performing the same function may be suitably substituted. Therefore, the scope of the invention is to be determined solely by the appended claims.
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