The present disclosure relates to food preparation, and more specifically, to an assembly and method of use thereof for preparation foods such as meat product into particular shapes.
The statements in this section merely provide background information related to the present disclosure and may not constitute prior art.
There is a need for a compact assembly and method of producing shaped food products during preparation. This includes the shaping of ground or chopped meat.
The inventor hereof has succeeded at designing assemblies and methods of use for a food preparation assembly capable of shaping food products such as a chopped or ground meat, by way of example, into various desired shapes in a cost effective manner and wherein such assembly is cost effective and easily stored by the user.
According to one aspect, a food preparation assembly and method with a selectable assembled tower assembly has a plurality of food mold bodies stacked together. Each food mold body has an outer body and a through molding cavity with each having a different predefined molding shape. The tower assembly includes a plurality of food molding plungers with each having a shape that is substantially similar to one of the predefined shapes of each molding cavity and each of the plurality of food molding plungers being selectable positioned and inserted within the correspondingly shaped molding cavity when assembled in the assembled tower assembly. The tower assembly can be selectable disassembled into separately usable food mold bodies with separately usable food molding plungers during use by a user in preparing molding food and reassembled into the tower assembly after use for storage.
In another aspect, an assembly having a plurality of food mold bodies with each having an outer body and a through cavity with a different predefined molding shape. The assembly also includes a plurality of molding plungers with each having a top side with a handle and a bottom plunger body having a shape substantially similar to a different one of the predefined shapes of one of the plurality of mold bodies and dimensioned for insertion into the similarly shaped mold body cavities, and a bottom molding surface for contacting the food when placed within the cavity.
According to another aspect, a food preparation assembly includes a base plate having a substantially planar profile with a top molding surface and a bottom molding surface, at least one of the top and bottom molding surface include a mating feature proximate to a perimeter. The assembly also includes an outer mold body having a bottom surface with a mating feature couplable to the mating feature of the base plate and having a cavity with a first predefined shape. The assembly further includes a plurality of inner mold bodies with each configured for usable placement and selective retention within the cavity of the outer mold body and each having a predefined inner moldable shape cavity of a different molding shape. Also included is a plurality of molding plungers with each having a top side with a handle and a bottom plunger body that has a shape substantially similar to a different one of the moldable shaped cavities of one of the inner mold bodies, and each having a bottom molding surface.
According to another aspect, a food preparation method includes placing a mold body at least one of a working surface or a base placed upon the working surface, the mold body having a cavity with a predefined shape and placing a food product in the cavity of the mold body. The method includes placing a mold plunger onto the food product within the mold body cavity with the plunger having a shape that is substantially similar to that and which conforms to the shape of the predefined shape of the mold body. The method thereafter includes applying downward molding pressure to a handle of the mold plunger, removing the mold plunger after applying the downward molding pressure, and removing the mold body from about the molded food product.
According to yet another aspect, a food preparation method includes placing a base on a working surface, placing an outer mold body on the working surface, wherein the outer mold body has a cavity for receiving an inner mold body with a molding cavity shape, and placing an inner mold body with the molding cavity shape within the cavity of the outer mold body. The method also includes placing a food product in the molding cavity of the inner mold body, placing a mold plunger onto the food product within the inner mold body cavity. The plunger has a shape that is substantially similar to that and which conforms to the shape of the predefined molding cavity shape of the inner mold body. The method also includes applying downward molding pressure to a handle of the mold plunger, removing the mold plunger after applying the downward molding pressure, and removing the inner mold body from about the molded food product.
Further aspects of the present disclosure will be in part apparent and in part pointed out below. It should be understood that various aspects of the disclosure may be implemented individually or in combination with one another. It should also be understood that the detailed description and drawings, while indicating certain exemplary embodiments, are intended for purposes of illustration only and should not be construed as limiting the scope of the disclosure.
It should be understood that throughout the drawings, corresponding reference numerals indicate like or corresponding parts and features.
The following description is merely exemplary in nature and is not intended to limit the present disclosure or the disclosure's applications or uses.
In one exemplary embodiment, a food preparation assembly and method with a selectably assembled tower assembly has a plurality of food mold bodies stacked together. Each food mold body has an outer body and a through molding cavity with each having a different predefined molding shape. The tower assembly includes a plurality of food molding plungers with each having a shape that is substantially similar to one of the predefined shapes of each molding cavity and each of the plurality of food molding plungers being selectably positioned and inserted within the correspondingly shaped molding cavity when assembled in the assembled tower assembly. The tower assembly can be selectably disassembled into separately usable food mold bodies with separately usable food molding plungers during use by a user in preparing molding food and reassembled into the tower assembly after use for storage.
In one embodiment, a food preparation assembly including a base plate having a substantially planar profile with a top molding surface and a bottom molding surface, at least one of the top and bottom molding surface include a mating feature proximate to a perimeter. The assembly also having a mold body having a bottom surface with a mating feature couplable to the mating feature of the base plate and having a cavity with a predefined molding shape and a molding plunger having a top side with a handle and a bottom plunger body having a shape substantially similar to the predefined shape of the mold body, and a bottom molding surface.
Examples of these embodiments are shown in the Figures as will be addressed below by way of examples. As shown in these exemplary figures, there can be multiple mold bodies and molding plungers, each having a different mold shape. Wherein there is a first mold body having a first predefined molding shape, and the molding plunger is a first molding plunger, then the assembly can include a second mold body having a bottom surface with a mating feature couplable to the mating feature of the base plate and having a cavity with a second predefined molding shape for receiving a molding plunger, the second predefined shape being different than the first defined shape and a second molding plunger having a top side with a handle and a bottom plunger body having a shape substantially similar to the second predefined molding shape of the second mold, and a bottom molding surface.
For ease of stacking of such, the molding plungers with the handle can have a vertical dimension that is substantially equivalent or slightly less than the vertical dimension of the mold body. The assembly can be configured and dimensioned to be assembled with the first mold body selectively mounted onto the top molding surface of the base plate with the first molding plunger positioned within the cavity thereof and the second mold body selectively mounted to a top surface of the second mold body with the second molding plunger positioned within the cavity thereof.
While shown in some of the figures as an octagon outer shape, the outer shape can be any shape including an octagon, a circle, an oval, a triangle, a square or a rectangle. Wherein the molding shapes of one or more of the mold body molding cavities and mating molding plunger is shown in the figures by way of example as a large patty circle, a small patty or slider circle, a rib, and a chop, these shapes can be any shape.
As shown, the base plate, when provided, can include a drip trough feature about a periphery on at least the first side or the second side. Each first molding surface of the base plate can be substantially smooth and the opposite side or second molding surface of the base plate can be different texture such as a chopped or cross-checked pattern or texture.
Further, the food mold plunger can be a fixed shape or can include an attachment mechanism or means for attaching a molding surface as shown in
In one embodiment of use of such an assembly, a food preparation method includes placing a base on a working surface and placing a mold body on the base, the mold body having a cavity with a predefined shape. The method includes placing a food product in the cavity of the mold body and placing a mold plunger onto the food product within the mold body cavity, the plunger has a shape that is substantially similar to that and which conforms to the shape of the predefined shape of the mold body. The method also includes applying downward molding pressure to a handle of the mold plunger, removing the mold plunger after applying the downward molding pressure, and removing the mold body from about the molded food product.
The method can also include that prior to the step of placing the base on the working surface, disassembling a stack of a plurality of mold bodies with each having a differently shaped molding cavity, each stacked on top of each other and all of which are stacked on top of the base, and further removing a plurality of molding plungers from each of the molding cavities with each having a shape that conforms substantially with a different one of the shaped molding cavities.
This can include prior to the placing the mold plunger, selectively attaching a molding surface body to an upper body of the molding plunger that defines a top handle such as shown in
In another embodiment a food preparation assembly includes a base plate having a substantially planar profile with a top molding surface and a bottom molding surface, at least one of the top and bottom molding surface include a mating feature proximate to a perimeter. The assembly includes an outer mold body having a bottom surface with a mating feature couplable to the mating feature of the base plate and having a cavity with a first predefined shape and an inner mold body configured for usable placement and selective retention within the cavity of the outer mold body and having a moldable shape cavity. The assembly also includes a molding plunger having a top side with a handle and a bottom plunger body having a shape substantially similar to the moldable shape cavity of the inner mold body, and a bottom molding surface. Examples of these embodiments are shown in
In some embodiments, a second inner mold body configured for usable placement and selective retention within the cavity of the outer mold body and having a second moldable shape cavity that is different from the shape of the first moldable shape cavity and a second molding plunger having a top side with a handle and a bottom plunger body having a shape substantially similar to the moldable shape cavity of the second inner mold body, and a bottom molding surface.
In some embodiment, the assembly includes the second molding plunger with the handle has a vertical dimension that is substantially equivalent or slightly less than the vertical dimension of the outer mold body. This enables the stacking and compact assembly when the not in use.
In one embodiment of use of such an assembly, a food preparation method includes placing a base on a working surface and placing a mold body on the base, the mold body having a cavity with a predefined shape. The method includes placing a food product in the cavity of the mold body and placing a mold plunger onto the food product within the mold body cavity, the plunger have a shape that is substantially similar to that and which conforms to the shape of the predefined shape of the mold body. The method also includes applying downward molding pressure to a handle of the mold plunger, removing the mold plunger after applying the downward molding pressure, and removing the mold body from about the molded food product.
In another embodiment of a method of use of this embodiment of the assembly, a food preparation method includes placing a base on a working surface, placing an outer mold body on the working surface, wherein the outer mold body has a cavity for receiving an inner mold body with a molding cavity shape, and placing an inner mold body with the molding cavity shape within the cavity of the outer mold body. The method also includes placing a food product in the molding cavity of the inner mold body and placing a mold plunger onto the food product within the inner mold body cavity, the plunger have a shape that is substantially similar to that and which conforms to the shape of the predefined molding cavity shape of the inner mold body. The method further includes applying downward molding pressure to a handle of the mold plunger, removing the mold plunger after applying the downward molding pressure and removing the inner mold body from about the molded food product.
The method can include after removing the inner mold body from the molded food product, removing the inner mold body from the outer mold body.
This can also include placing a second inner mold body configured for usable placement and selective retention within the cavity of the outer mold body and having a second moldable shape cavity that is different from the shape of the first moldable shape cavity; placing a second food product in the second molding cavity of the second inner mold body; placing a second molding plunger having a top side with a handle and a bottom plunger body having a shape substantially similar to the moldable shape cavity of the second inner mold body; applying a second downward molding pressure to a handle of the second mold plunger; removing the second mold plunger after applying the second downward molding pressure; and removing the second inner mold body from about the second molded food product.
In some embodiment, the method includes after removing the second inner mold body from the second molded food product, removing the second inner mold body from the second outer mold body.
Referring now to the various exemplary embodiments as illustrated in the Figures.
As also will be addressed below and as is shown in the comparison of
Each of the base plate 102, the mold 104, out mold body 110 and inner mold shape insert 112 and the plunger 106 can be formed of any type of suitable material for handling and processing of food products, such as raw meats, by way of example.
As described above, each of the different shaped mold cavities 114 as shown in
When describing elements or features and/or embodiments thereof, the articles “a”, “an”, “the”, and “said” are intended to mean that there are one or more of the elements or features. The terms “comprising”, “including”, and “having” are intended to be inclusive and mean that there may be additional elements or features beyond those specifically described.
Those skilled in the art will recognize that various changes can be made to the exemplary embodiments and implementations described above without departing from the scope of the disclosure. Accordingly, all matter contained in the above description or shown in the accompanying drawings should be interpreted as illustrative and not in a limiting sense.
It is further to be understood that the processes or steps described herein are not to be construed as necessarily requiring their performance in the particular order discussed or illustrated. It is also to be understood that additional or alternative processes or steps may be employed.
This application claims the benefit of U.S. Provisional Application No. 62/069,933, filed on Oct. 29, 2014, the disclosure of which is incorporated herein by reference.
Number | Date | Country | |
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62069933 | Oct 2014 | US |