The wire stand of the present invention includes an upper rim of wire steel in a substantially rectangular configuration, a lower rim of wire steel of similar configuration and a pair of wire legs with each formed as an integral unit with each wire leg affixed at one end thereof to the upper rim and affixed to the lower rim such that the upper rim and lower rim lie in substantial parallel alignment to one another and extending below the lower rim to maintain the lower rim a fixed distance above the support upon which the stand is placed.
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1. A wire chafing stand comprising an upper a first rim of wire steel which forms a closed geometrical configuration circumscribing a first surface area, a lower rim of wire steel forming a closed geometrical configuration circumscribing a second surface area with said first surface area being larger than said second surface area and having a plurality of at least two wire legs with each wire leg having two upright sections interconnected to one another at a location below the lower rim in a configuration forming a base support for the stand to rest upon with each upright section extending upwardly from said base support to form an angle equal to or greater than 90° with respect to a horizontal plane through said base support and being affixed to the upper first rim adjacent one end thereof and to said lower rim at a relatively equal distance below the point of attachment to said upper rim and further comprising a plurality of offsets located either in said upright sections of said wire legs or in said upper first rim for laterally displacing each wire leg relative to said upper first rim to facilitate the nesting of a multiplicity of stands into one another without significant wedging.
6. A wire chafing stand comprising an upper rim of wire steel which forms a closed geometrical configuration circumscribing a first surface area, a lower rim of wire steel forming a closed geometrical configuration circumscribing a second surface area with said first surface area being larger than said second surface area and having two wire legs for supporting said stand at opposite ends thereof with each wire leg being of unitary construction having two upright sections of substantially equal length with the upright sections being interconnected to one another in a generally “U” shaped configuration below said lower rim to form a base support for the stand to rest upon and being interconnected to one another adjacent the upper rim for defining a handle for the wire chafing stand and being welded at predetermined locations to the upper and lower rims such that the upper and lower rims lie in substantial parallel alignment to one another and with each upright section extending upwardly from the base support to form an angle equal to or greater than 90° with respect to a horizontal plane through said base support and further comprising a plurality of offsets located in said upright sections of said wire legs which separate the upright sections into segments lying in different planes relative to one another for laterally displacing each wire leg relative to said upper rim so as to facilitate the nesting of a multiplicity of stands into one another without significant wedging.
2. A wire chafing stand as defined in
3. A wire chafing stand as defined in claim 2 7 wherein said upper and lower rims first and second rim form a geometry selected from the class consisting of square, oval and rectangular configurations.
4. A wire chafing stand as defined in
5. A wire chafing stand as defined in
0. 7. A wire chafing stand as defined in claim 1 further comprising a second rim of wire steel located below said first rim with said second rim circumscribing a second surface area smaller than said first surface area and with said upright sections being affixed to said second rim at a relatively equal distance below their attachment to the first rim.
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This application is a continuation-in-part of U.S. patent application Ser. No. 08/864,562 filed May 28, 1997 now U.S. Pat. No. 5,921,513 and relates to a wire chafing stand which is nestable and stackable for compact storage and transportation.
A chafer is a device for maintaining pre-cooked food at a remote location relative to the kitchen where the food is cooked. The chafer is supported upon a transportable wire stand hereinafter referred to as a “wire chafing stand” and is preferably composed of steel. The wire chafing stand of the present invention is a relatively simple structure having an upper rim and a lower rim interconnected to each other by means of wire legs. The wire legs are preferably welded to the upper and lower rims at the corners of the structure with the wire legs extending below the lower rim so that they also function as bottom supports to keep the stand level with the ground and to maintain the lower rim at a predetermined height above ground level for placement of chafing fuel heaters for the chafing dish in the stand.
Wire chafing stands are transported and stored nested together in multiple units. Presently, wire chafing stands permit the stands to be partially nested into one another when stacked i.e., the stands nest only to a limited extent. The cost of storage and transportation has a direct relationship to the vertical height of a stack of nested wire stands. Accordingly, for wire stands with only limited nesting capability the transportation cost for transporting such wire stands over long distances becomes a significant factor in its selling price. This, in turn, reduces the ability to compete over large geographical areas where transportation cost and/or storage cost become too large. Although many solutions have been proposed which permit deep nesting of multiple stands to reduce the vertical column height of a stack of nested stands such prior solutions were dependent upon complicated wire stand designs which otherwise increase the cost of fabrication and cause the stand to be unwieldy structurally as well as esthetically. An even further problem of significance relates to the ease of removal of the wire stands from one another after nesting. Generally if the wire stands are tightly nested they tend to wedge into one another and are then difficult to separate. Thus it is important that when nesting multiple wire stands that the wire stands do not wedge and are readily separable from one another.
The wire chafing stand of the present invention permits multiple wire chafing stands to be nested and readily separated from one another without causing wedging. Moreover the wire chafing stand of the present invention when nested yields a substantial reduction in column height relative to the column height of an equivalent number of nested wire chafing stands of a conventional design. In addition, the wire chafing stand of the present invention is easy to fabricate and is of simple construction.
The wire chafing stand of the present invention comprises an upper rim of wire steel which forms a closed geometrical configuration circumscribing a first surface area, a lower rim of wire steel forming a closed geometrical configuration circumscribing a second surface area with said first surface area being larger than said second surface area and having a plurality of wire legs of equal length affixed at one end thereof to the upper rim and affixed to the lower rim at an equal location substantially approximate the opposite end of each wire leg such that the upper rim and lower rim lie in substantial parallel alignment to one another with the wire legs extending equal distances below the lower rim to uniformly support the stand at each opposing end thereof and with each wire leg having an indent (hereinafter “offset”) located adjacent the upper end thereof which laterally displaces each leg relative to the point of attachment of said leg with the upper rim of the stand so that the wire legs of one wire stand can substantially nest within another wire stand without significant wedging.
In an alternative embodiment of the present invention the wire chafing stand comprises an upper rim of wire steel which forms a closed geometrical configuration circumscribing a first surface area, a lower rim of wire steel forming a closed geometrical configuration circumscribing a second surface area with said first surface area being larger than said second surface area and having a plurality of wire legs of equal length affixed at one end thereof to the upper rim and affixed to the lower rim at an equal location substantially approximate the opposite end of each wire leg such that the upper rim and lower rim lie in substantial parallel alignment to one another with the wire legs extending equal distances below the lower rim to uniformly support the stand at each opposing end thereof and with either said upper rim of said stand or said wire legs having an offset at the point of interconnection therebetween to facilitate nesting of multiple wire chafing stands.
In a further alternative embodiment of the present invention the wire chafing stand comprises an upper rim of wire steel which forms a closed geometrical configuration circumscribing a first surface area, a lower rim of wire steel forming a closed geometrical configuration circumscribing a second surface area with said first surface area being larger than said second surface area and having a plurality of wire legs of equal length affixed at one end thereof to the upper rim and affixed to the lower rim at an equal location substantially approximate the opposite end of each wire leg such that the upper rim and lower rim lie in substantial parallel alignment to one another with the wire legs extending equal distances below the lower rim to uniformly support the stand at each opposing end thereof and with each of said wire legs being a unitary continuous having an extended portion defining a handle for the wire chafing stand.
Other advantages of the present invention will become apparent from the following detailed description of the invention when read in conjunction with the accompanying drawings of which:
Referring now in detail to
Four wire legs 16 are welded at their upper ends 18 to the upper rim 12 at each of the four corners of the stand 10 and are welded to the lower rim 14 so that each wire leg 16 extends below the lower rim 14 by a substantially equal distance such that the lower rim 14 is maintained at a fixed height above the support level upon which the stand 10 rests. The stand 10 supports a chafing dish (not shown) which is suspended from the upper rim 14 above the lower rim 12. A plurality of additional wire rods 21 are affixed to the lower rim 14 and intersect each other at right angles forming a wire grid network which supports a plurality of chafing fuel heaters (not shown) for keeping the chafing dish warm. The wire rods 21 may be bent for forming symmetrical undulations along the length of each wire rod 21 which intersect to provide recessed spaces 23 and 24 for placement of the chafing fuel heaters. The bending of the wire rods 21 to form recessed areas 23 and 24 is a conventional arrangement.
Each wire leg 16 is preferably bent from a single straight wire rod into a somewhat “U” shaped configuration having two sides 19 and a base 20 with the sides 19 extending outwardly from the base 20 of the leg 16. The upper end 18 of each of the sides 19 is welded to the upper rim 12. The lower rim 14 is then welded to each side 19 of the wire leg 16 at a fixed distance above the base 20. The base 20 of each wire leg 16 should lie in a horizontal plane substantially level with the ground. The sides 19 may extend from the base 20 at right angles or may be slanted as shown in the figures forming an included oblique angle with the base 20 of up to 130°. The interconnected corners connecting the sides 19 and the base 20 may be left somewhat rounded as a result of the bending operation.
To readily facilitate nesting between wire stands 10 each side 19 of each wire leg 16 includes at least one offset 30 located near the upper end 18 of the wire leg 16 which displaces the side 19 of the wire leg 16 laterally. The offset 30 may be formed by a bending or crimping operation or by stamping the leg in a press at a location adjacent the upper ends of each of the wire legs 16. The offset 30 indents the wire leg 16 so as to cause a lateral displacement of each side 19 of each wire leg 16 in a substantially horizontal direction from a predetermined location below the upper rim 12. This enables the wire legs 16 of a single wire chafing stand 10 to readily nest within another wire chafing stand 10 without interference and minimizes one wire stand 10 from wedging within another. The length “L” of the offset 30 is a control varible as is the distance of the offset 30 from the upper rim 12. The offset 30 forms an oblique angle resulting in the length “L” being proportional to the horizontal displacement caused by the offset 30.
The first embodiment of the present invention as shown in
The second embodiment of the present invention is shown in
Another embodiment is shown in
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