The present invention relates to pallets for supporting freight, goods or other materials. More particularly, the invention relates to a pallet made of metal having integral legs. The invention, however, is also amenable to other applications.
Conventionally, pallets have been made from wood. Wood pallets are heavy and subject to warpage, splintering and splitting. Furthermore, wood pallets are not fire proof. To overcome the disadvantages found in wood pallets, pallets have been also made from plastic. Plastic pallets require a large amount of resin to be made such that they are of sufficient strength to support freight and goods. Furthermore, plastic pallets are also not fireproof.
Metal pallets have been made to overcome the shortcomings of wood and plastic pallets. Known metal pallets are manufactured as welded metal sections or metal pipe constructions or of deep-drawn components and metal sections. Typically, the welded metal constructions have a very high weight and are difficult and complicated to manufacture. Known metal pallets having deep-drawn legs are manufactured where the deep-drawn leg is substantially equal to the height of the pallet. Such a construction is difficult to manufacture, as seen in U.S. Pat. No. 4,562,718 where three separate draws are required to form the deep-drawn legs so that they have a sufficient height to allow the forks of a conventional fork lift to enter underneath the top panel of the pallet.
Accordingly, it is desirable to provide a metal pallet that overcomes the disadvantages of both wood and plastic pallets. Furthermore, it is desirable to provide a metal pallet which does not require separate and complicated draw operations to form the legs of the pallet.
A pallet, according to an embodiment of the invention, includes a metal base connected to a metal platform. The base includes a plurality of upwardly extending integral base legs formed from a metal material of the base. The platform is vertically spaced from the metal base and includes a plurality of downwardly extending integral platform legs, formed from a metal material of the platform. The platform legs align with and connect to corresponding base legs.
A method for manufacturing a metal pallet includes the following steps: providing a first metal sheet to form a base; forming a plurality of base legs out of a material of the base; providing a second metal sheet to form a platform; forming a plurality of platform legs out of a material of the platform; and connecting the base to the platform by attaching a base leg to a corresponding platform leg.
According to yet another embodiment of the invention, a metal pallet, for use with a forklift, includes a metal lower deck and a metal upper deck. The metal lower deck includes a plurality of spaced first supports integrally formed with and extending upwardly out of a plane of the lower deck. The upper deck includes a plurality of spaced second supports integrally formed with and extending downwardly out of a plane of the upper deck. The second supports define depressions in the upper deck at each second support. The first supports connect to the second supports to define fork receiving regions beneath the upper deck.
A metal pallet 10 generally includes a platform 12 that attaches to a base 14. The platform 12 can also be referred to as a top panel or upper deck and the base 14 can also be referred to as a bottom panel or lower deck. The platform 12 and the base 14 can be rectangular in configuration, similar to the configuration of the conventional pallet. Without departing from the scope of the invention, however, the upper deck and lower deck can also have another suitable geometric configuration such as square, round, trapezoidal or oval. Each panel can be made from a suitable conventional metal. In a preferred embodiment, the metal can comprise galvanized steel.
As seen in
As more clearly seen in
The shape of the depression, and therefore the shape of the leg, is dependent upon the position of the depression on the platform. As more clearly seen in
When forming the depressions, in one preferred embodiment, the depressions are created by way a deep-draw stamping process. Such a process is known to one skilled in the art and therefore need not be described with particularity. As more clearly seen in
Since the legs or supports of the platform 12 are created by forming depressions in the platform, weep holes 44 are provided at the bottom of each depression so that any liquid that may collect in the corresponding depression can drain through the weep hole. Similarly, weep holes can also be provided in the support surface 18 or elsewhere on the platform 12 to allow any liquid that accumulates on the support surface to drain through the surface.
The platform 12 can also include corrugations formed in the support surface 18. The corrugations 48, in this embodiment, run diagonally across the platform 12 to provide stiffness to the support surface 18. The corrugations can have a depth of about ½ of an inch and a width of about ½ of an inch and be formed to depend downwardly from the support surface 18. Alternatively, the corrugations could protrude upwardly from the support surface. In addition to the corrugations 48, upwardly extending dimples 50 can be formed in the platform 12. The dimples 50 can inhibit and/or minimize the shifting of items placed on the platform 12. The dimples can also serve to space a bottom surface of a package or other objects supported by the pallet 10 from the support surface 18. This may be advantageous if there is any liquid on the support surface 18, for example, rain, to prevent the bottom surface of the item from getting wet. In other words, the dimples may prove useful to prevent skidding of an item supported on the platform 12 or a worker's shoe as he walks across the pallet.
The platform 12 of the pallet also includes a plurality of hand hold openings 52. The openings 52 can be substantially elliptical in shape and can have a height that is approximately four inches and a width that is approximately two inches. The opening 52 can serve as a grip area for a worker's hand for safe efficient handling of the platform 12 as well as the entire pallet 10. As more clearly seen in
With reference back to
The legs of the base 14 are formed in a similar manner as the legs of the platform 12. The corner legs 76 are formed by a plurality of corner depressions 86 (
With continued reference to
Each depression 86, 88 and 92 includes a weep hole 104 that corresponds to and can align with the weep hole 44 in each depression 26, 28 and 32 of the platform 12 to allow any liquid that collects in the upper depressions to drain.
By forming the legs 16, 22 and 24 of the platform 12 and the legs 76, 82 and 84 of the base 14 and then attaching the legs of the platform to the legs of the base, complicated deep draw operations, such as the one described in U.S. Pat. No. 4,562,718, can be avoided. This is the case because the legs of the base need only be one-half the height of the pallet (a standard pallet being about 5″-6″ in height) where the legs of the platform are one-half the height of the pallet. One or several deep draw stamping operation(s) need not be made for the entire height of the pallet, or even a majority thereof. Rather, only two relatively shallower drawing operations are needed, one for the platform and one for the base. This significantly simplifies the manufacture of the pallet according to the present invention, in relation to conventional metal pallets. As a result, the cost of manufacture is also decreased. In alternative embodiments, the height of the legs of the platform can equal a dimension d, and the height of the legs of the base can equal a dimension d2 and d1+d2 can equal between 5″-6″. In one particular embodiment, d1+d2=5.6″ and d1=d2; however, many other alternatives are contemplated.
The legs 16, 22 and 24 of the platform 12 have been described as attaching to corresponding legs 76, 82 and 84 of the base; however, each platform leg need not attach to a base leg and vice versa. In some embodiments of the invention, it may be desirable to attach only a few platform legs to a few base legs while leaving other legs unattached. In other alternative embodiments of the invention, more platform legs can be provided than base legs and vice versa. As indicated above, numerous configurations are available without departing from the scope of the invention. In addition, while a base and a platform of the same general size have been described, it is conceivable that two platforms could be attached to a single, larger base in a side-by-side manner if desired. Alternatively, two bases could be attached to a single, larger in size, platform, if so desired.
The base 14 has a cruciform configuration in that the base includes four large openings 106 that are centrally located within each quadrant of the base 14. These openings reduce the amount of material used to make the base 14 as well as the overall weight of the pallet 10. The large openings 106 also allow wheels located on the forks of a typical hand lift truck to drop to the floor after entering the pallet. In one embodiment, the openings 106 can have a combined area of about one-third the total area of the base 14, thus reducing the overall weight of the pallet and the amount of material required to produce the pallet. With reference to
The base also includes corrugations 112 in the embodiment depicted. The corrugation patterns are ladder-shaped in that two longitudinal members 114 extend between adjacent base legs while a plurality of rung members 116 interconnect the two longitudinal members. The ladder-shaped design accommodates standard 2″ spaced skate wheel rollers. For example, in the embodiment depicted in the figures, the ring members 116 of the ladder configuration can be spaced approximately 2″ apart from one another. Of course, other known corrugation patterns can also be employed.
Referring back to
In an alternative embodiment depicted in
In the alternative embodiment depicted in
A pallet according to the present invention is advantageous from the standpoint of being fireproof because it is all metal, easily cleaned, reusable, and thus environmentally friendly (unlike wooden pallets). The pallet is also fully rackable and can be stackable by defining suitable locators in the in the platform 12. Because the pallet is made of metal, it does not absorb contaminants. It can also be permanently stamped for identification with a company's logo or mark.
Since the pallet is made of metal, during manufacture, its size, weight and dimensional tolerance can be very consistent throughout a production run. Moreover, its weight is substantially lower than the weight of a comparable wood pallet. Also, the pallet is compatible with major industries' conveyor systems, including skateboard rollers and pallet staging brakes or dogs. Additionally, the pallet allows for entry of a fork lift at all four sides of the pallet.
While specific embodiments of the invention have been shown and described in detail to illustrate the inventive principles, it is to be understood that the invention may be embodied in other constructions without departing from such principles. Rather, it is intended that the invention be construed as including all such modifications and alterations as come within the scope of the appended claims and the equivalents thereof.
This application claims the benefit of U.S. Provisional Patent Application Ser. No. 60/504,556, filed Sep. 19, 2003, which is incorporated by reference herein.
Number | Date | Country | |
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60504556 | Sep 2003 | US |