Microwaveable product
10589918 ยท 2020-03-17
Assignee
Inventors
Cpc classification
B65D2581/3497
PERFORMING OPERATIONS; TRANSPORTING
B65D2581/3464
PERFORMING OPERATIONS; TRANSPORTING
B65D81/3453
PERFORMING OPERATIONS; TRANSPORTING
B65D2581/3455
PERFORMING OPERATIONS; TRANSPORTING
B65D2581/3425
PERFORMING OPERATIONS; TRANSPORTING
B65D2581/3498
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A microwaveable product can include a container with an interior and a fluted first sidewall. The product can include a susceptor. The susceptor can be disposed within the container interior. The susceptor can have a fluted second sidewall. The fluted second sidewall can conform to the fluted first sidewall. A food product can be disposed in the interior. The food product can conform to the fluted second sidewall. Microwave energy can reach the food product via the susceptor.
Claims
1. A microwaveable product comprising: a container comprising a bottom and a fluted container sidewall, the fluted container sidewall extending from the container bottom to a first height; a susceptor comprising a fluted susceptor sidewall, the fluted susceptor sidewall extending along the fluted container sidewall from the container bottom to a second height, the second height being less than the first height; a food disposed within the container; a lower portion of an outer surface of the food being fluted and nested against the fluted susceptor sidewall, the lower portion of the outer surface of the food defining a closed geometry in a plane parallel to one or both of the container bottom and a bottom of the susceptor; wherein an upper portion of an outer surface of the food extends from below the second height to above the second height and is nested against the fluted container sidewall, the upper portion of the outer surface of the food being fluted and defining a closed geometry in a plane parallel to one or both of the container bottom and the bottom of the susceptor; wherein the fluted susceptor sidewall is nested against the fluted container sidewall such that the container flutes defined by the container sidewall seat the susceptor flutes defined by the susceptor sidewall.
2. The product of claim 1, wherein the container and the susceptor both contribute to defining a continuous chamber in which all of the food is disposed.
3. The product of claim 1, wherein the container further comprises a rim radially projecting from the fluted container sidewall.
4. The product of claim 3, wherein the rim is made from polymer while the fluted container sidewall is made from paper material.
5. The product of claim 1, wherein the food is exclusively disposed between the container bottom and the first height, the fluted container sidewall being fluted from the container bottom to the first height.
6. The product of claim 1 comprising a lid sealed to the container; the lid, the container, and the susceptor contributing to define a continuous chamber in which all of the food is disposed; one side of the lid being directly exposed to ambient environment, the opposing side of the lid being directly exposed to the inner chamber.
7. The product of claim 1, configured such that during microwaving of the product: the lower portion of the food is directly exposed to heat produced by the susceptor, while the upper portion of the food is not directly exposed to heat produced by the susceptor.
8. The product of claim 7, wherein the food comprises dough that is cup-shaped and meat is placed within the cup-shaped dough.
9. The product of claim 8, wherein the dough is uncooked and the meat is cooked.
10. The product of claim 1, wherein the susceptor comprises a bottom, the susceptor bottom being flushly seated against the container bottom.
11. The product of claim 1 comprising a lid sealed to the container at the first height.
12. The product of claim 11, wherein the container comprises a rim to which the lid is directly sealed.
13. The product of claim 12, wherein the container rim is polymeric to enable heat sealing between the container rim and the lid while the fluted container sidewall is non-polymeric.
14. The product of claim 13, wherein the food comprises dough.
15. The product of claim 14, wherein the dough is fluted by virtue of being pressed against the fluted susceptor sidewall.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF EXEMPLARY EMBODIMENTS
(7) Referring to
(8) According to an exemplary embodiment, as shown in
(9) Raw dough component 22 may be, for example, a non-proof Danish biscuit formula that provides a fresh-baked appeal and flavor. The make-up of raw dough component 22 may be based upon the moisture and/or fat contents of the dough and the release of moisture from the dough. Other components of food product 12 may include eggs, meat, cheese, sauces, gravies, etc. to provide a unique finished product and optimized performance of the microwaveable product. Furthermore, various types of flavored/unflavored doughs may be used as part of food product 12.
(10) As shown in
(11) According to one embodiment, cover 16 includes one or more tabs 28 (e.g., pull-tabs, extended portions, etc.) that extend beyond container 18 such that a user may easily grasp tab 28 and remove cover 16 from container 18 (e.g., an easy-peel type configuration). Other ways for permitting a user to remove cover 16 may be used according to various alternative embodiments. Cover 16 may also have one or more portions having graphics, text, etc., intended to provide consumers with various types of information, including ingredient information, nutritional information, preparation instructions, and so on. Other types of information may be provided on cover 16 according to various other embodiments.
(12) While cover 16 is shown in
(13) Referring further to
(14) As shown in
(15) As shown in
(16) As shown in
(17) According to an exemplary embodiment, susceptor 20 is provided as an integral part of container 18 (e.g., such that the susceptor is form-molded, cast or otherwise formed together with the container). For example, susceptor 20 may be provided as a metallic layer that is applied to or otherwise formed or laminated with container 18, such that susceptor 20 includes a layer of metallic material having a corrugated structure substantially similar to that of container 18. Further, as discussed with respect to
(18) According to various alternative embodiments, susceptor 20 may be provided as a separate component from container 18. For example, susceptor 20 may simply be inserted into the interior of container 18, or susceptor 20 may be married or bonded (e.g., chemically, mechanically, via adhesives, a combination thereof, etc.) to container 18. Providing susceptor 20 as a separate component from container 18 may improve moisture exhaust away from the surface of food product 12 by allowing moisture generated by food product 12 to travel upward along susceptor 20 and then travel back downward into the space between susceptor 20 and container 18. Alternatively, susceptor 20 may be a vented susceptor that permits moisture to escape directly through the susceptor material (e.g., through holes, apertures, perforations, slits, etc.). According to any of these embodiments, susceptor 20 and/or container 18 may be provided with an additional release layer intended to facilitate the removal and/or consumption of food product 12 from container 18 and susceptor 20 after baking.
(19) According to an exemplary embodiment, susceptor 20 (whether separate from or integral to container 18) does not extend to the full height of container 18. For example, as shown in
(20) In order to ensure consumer safety, microwaveable product 10 may further be provided with a tamper-resistant feature intended to provide evidence of tampering with product 10. For example, should a flexible cover such as cover 16 be utilized, it may be heat sealed to container 18 such that any tampering with cover 16 would be evident to a consumer. Alternatively, the entirety of product 10 may be shrink-wrapped or otherwise secured within a plastic or other type of material such that tampering would be evident to consumers. Further, one or more components of microwaveable product 10 may include functional barrier properties or features that are intended to maintain a proper environment (e.g., ambient, refrigerated, frozen, etc.) for food products. The barrier features may be customized based on the particular food product and desired environment to control the passage of oxygen, moisture, etc. to and from the food product.
(21) According to an exemplary embodiment, in order to produce microwaveable product 10, container 18 is first provided with susceptor 20 either as an integral part or separately bonded or inserted within container 18. Food product 12 is then introduced into the interior of container 18. In one embodiment, raw dough component 22 is first introduced into container 18 (e.g., in a round or other shape). Raw dough component 22 may be introduced into container 18 in a cooled state (e.g., at a temperature of less than forty degrees Fahrenheit, at ambient temperature, frozen, etc.). According to one embodiment, a manual or automated press mechanism (e.g., a pressing tool having a shape complimentary to the corrugated construction of the container/susceptor) may be used to press raw dough component 22 into container 18 such that raw dough component 22 substantially conforms to the construction of susceptor 20 and/or container 18. Pressing the raw dough into the corrugations ensures intimate contact between the dough and the susceptor material, and in conjunction with the rigidity of the container wall, provides an optimal support feature for the development and baking of the raw dough product. Pressing of the raw dough product is facilitated by the incline, or slope, of sidewall 34.
(22) After introducing raw dough component 22, frozen, fully cooked component 24 may be introduced into container 18. In some embodiments, component 24 may be raw and/or a refrigerated component. After introducing component 24, cooked or uncooked, frozen component 26 may be introduced into container 18. Upon components 22, 24, 26 being introduced into container 18, cover 16 may be coupled to container 18. Further processing, packaging, etc., may be required after securing cover 16 to container 18, after which product 10 may be provided to retail stores and offered for sale to consumers in a frozen state. It should be understood that while food product 12 is described herein as being made up of three distinct component parts 22, 24, 26, food product 12 may comprise more or fewer discrete components of the same or different types and be introduced into container 18 in more or fewer steps than as described herein.
(23) When a consumer wishes to bake (e.g., cook, heat, etc.) microwaveable product 10, the consumer may place product 10 (in a frozen state e.g., from a freezer, in a refrigerated state, in a non-refrigerated and non-frozen (e.g., ambient) state, etc.) within a microwave oven (e.g., a 1000 Watt microwave oven) and bake product 10 for an appropriate time period (e.g., for a period of about 2 minutes and 15 seconds, although baking times may vary between microwave ovens and food product/package types). According to an exemplary embodiment, preparation instructions (e.g., top removal instructions, baking time, etc.) for consumers may be provided on cover 16 and/or container 18. Upon food product 12 being fully baked, the consumer may remove cover 16, and consume food product 12 directly from container 18. Alternatively, the consumer may remove food product 12 from container 18 and place food product 12 on a separate dish (e.g., a plate, cup, bowl, etc.). According to yet another embodiment, one or more utensils (e.g., a spoon, fork, knife, or a combination thereof) may be provided with or integrated into a part of microwaveable product 10 (e.g., a spoon may be removably secured to or formed (e.g., molded, etc.) with container 18 or cover 16, etc.) to provide an all-in-one, on-the-go product for the consumer.
(24) While susceptor 20 and container 18 are shown herein as having sidewalls with corrugated constructions, it should be understood that the corrugations may also be provided on the bottom portions of one or both of susceptor 20 and container 18. Furthermore, while susceptor 20 and container 18 are shown herein as being generally shaped as cups (e.g., similar to a traditional muffin cup), various shapes and sizes may be utilized for susceptor 20 and/or container 18 according to various alternative exemplary embodiments. According to an exemplary embodiment, container 18 may have a height of approximately 2.0 inches, a diameter across the top of about 3.5 inches, and a diameter across the bottom of about 2.5 inches. The dimensions of container 18 may vary according to other embodiments.
(25) It is important to note that microwaveable product 10 shown in
(26) Furthermore, container 18 lined with susceptor 20 provides optimized heating/baking due to the corrugated/fluted structure of susceptor 20, which, in combination with food product 12 conforming to the corrugated construction of container 18 and/or susceptor 20, increases the amount of heat delivered to food product 12 (relative to non-corrugated configurations) due to the increased surface area and the heat concentrations at the folds, or pleats, between corrugations, which increase delivery of heat to food product 12. Further, the corrugated construction permits moisture released as steam from food product 12 to escape (e.g., though cover 16) and prevents reabsorbtion of moisture which can lead to a soggy, oversaturated, undesirable food product. Moisture release may be further facilitated by the slope of sidewalls 34, 44 from bottom to top (e.g., whereby the diameter of the container increases from bottom to top). Such a configuration may promote wicking of moisture that is released from the interior of a food product (e.g., to facilitate movement of moisture from below the top portion of container 18 to the top portion of container 18, so that the moisture may escape container 18).
(27) Further yet, the corrugated construction of susceptor 20 and container 18 provides a corresponding corrugated texture to the finished food product, which consumers may find more desirable than an otherwise smooth, rounded surface to the food product. Additionally, the rigidity and slope of container 18 facilitate the deposition and forming of food product 12 (in particular, raw dough component 22, prior to the addition of the remaining components) prior to baking. Also, susceptor 20 provides a browned or crisped surface for the areas of food product 12 in contact with susceptor 20.
(28) Providing a susceptor such as susceptor 20 as an integral part of container 18 also serves to reduce the number of components in the microwaveable product (e.g., by eliminating a separate susceptor component), thereby potentially reducing materials costs for the microwave packaging, reducing assembly costs for the microwaveable product, and providing the user with a single-piece container rather than a container and separate susceptor. Furthermore, container 18 may rest directly on a microwave surface without the need for additional support structures to provide clearance, etc.
(29) The various advantages and features discussed above with respect to
(30) Referring to
(31) Referring to
(32) Referring to
(33) According to an exemplary embodiment, container 318 may have a fluted or corrugated construction that includes a number of wave-like flutes or corrugations 346 (e.g., waves, scallops, or similar corrugations or other features). According to one embodiment, container 318 may have approximately 15 corrugations 346 extending about the perimeter of container 318. According to another embodiment, the pitch of corrugations 346 may vary, and more or less corrugations 346 may be provided (e.g., 10, 20, 30, 35, etc.). Corrugations 346 may have a depth of approximately 0.14 inches, although according to various alternative embodiments, the corrugations may have other depths (e.g., more or less than 0.14 inches, such as 0.06 inches, 0.20 inches, etc.).
(34) According to one embodiment, container 318 may include a sidewall 334 that extends between a bottom 332 and a lip portion 344. Container 318 may further include a susceptor inner portion or layer 320. Bottom 332 and sidewall 334 may be formed from a generally flat portion of paper material (e.g., a paper pulp material that may be provided in a generally circular shape), for example, via a thermoforming process where a paper material is formed around a mold portion to form the paper material into the shape of container 318. In some embodiments, susceptor 320 may be bonded or otherwise coupled or laminated to a paper material prior to forming container 318, such that sidewalls 334 and susceptor 320 are formed simultaneously during a process such as thermoforming. According to one embodiment, a paper material having a material thickness of approximately 0.025 inches (e.g., between 0.015 and 0.050 inches, between 0.020 and 0.030 inches, etc.) may be used to form sidewalls 334 and bottom 332.
(35) In one embodiment, after forming sidewall 334 and bottom 332 from a paper material, lip portion 344 (e.g., flange, rim, etc.) may be formed through an injection-molding process to form a polymer lip portion that extends about the perimeter of the paper material forming sidewall 334 and bottom 332. According to an exemplary embodiment, lip portion 344 may be made from a polypropylene material, but may be made from various other materials according to various other exemplary embodiments. Sidewall 334 may further be sloped from bottom to top, as discussed in greater detail with respect to
(36) Various modifications of the components of the microwaveable products shown according to the various exemplary embodiments may be made. For example, a susceptor having a corrugated construction may be provided separate from a corresponding container and/or cover according to an exemplary embodiment (e.g., a six ounce container and a corresponding perforated polymer cover). According to exemplary embodiments, food products may be provided having textured exterior surfaces resulting from the construction and use of a corrugated susceptor/container. According to any of these embodiments or other embodiments disclosed herein, the container, cover, susceptor and other components of the microwaveable product may be provided as either rigid or flexible components to suit a particular application. Furthermore, while the microwaveable package is shown having a generally circular cross-section, other shapes and configurations, such as square, rectangular, etc., may be used,
(37) It should be noted that the various features of the microwaveable products disclosed herein may be used in a wide variety of applications, alone, or in combination. For example, one or more features of microwaveable product 10 discussed with respect to
(38) It is important to note that the terms container, package, susceptor, and food product are intended to be broad terms and not terms of limitation. These terms may be used with any of a variety of products or arrangements and are not intended to be limited to use with particular applications.
(39) For purposes of this disclosure, the term coupled shall mean the joining of two members directly or indirectly to one another. Such joining may be stationary in nature or movable in nature. Such joining may be achieved with the two members or the two members and any additional intermediate members being integrally formed as a single unitary body with one another or with the two members or the two members and any additional intermediate member being attached to one another. Such joining may be permanent in nature or alternatively may be removable or releasable in nature. Such joining may also relate to a mechanical or fluid relationship between the two components.
(40) It is also important to note that the construction and arrangement of the elements of the microwaveable product as shown in the exemplary embodiments are illustrative only. Although only a few embodiments have been described in detail in this disclosure, those skilled in the art who review this disclosure will readily appreciate that many modifications are possible (e.g., variations in sizes, dimensions, structures, shapes and proportions of the various elements, values of parameters, mounting arrangements, materials, colors, orientations, etc.) without materially departing from the novel teachings and advantages of the subject matter recited in the claims. Accordingly, all such modifications are intended to be included within the scope of the present disclosure as defined in the appended claims. The order or sequence of any process or method steps may be varied or re-sequenced according to alternative embodiments. Other substitutions, modifications, changes and/or omissions may be made in the design, operating conditions and arrangement of the exemplary embodiments without departing from the spirit of the present disclosure.