SUSTAINABLE VESSEL FOR INFUSING CONSUMABLE PRODUCTS
20240156296 ยท 2024-05-16
Inventors
Cpc classification
B65D85/70
PERFORMING OPERATIONS; TRANSPORTING
B65D25/16
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D25/16
PERFORMING OPERATIONS; TRANSPORTING
B65D85/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An apparatus pertains to a product preparation featuring a permeable body comprising an extraction chamber(s), along with a flexible, free-motion mechanism structure appropriately coupled to the body. The apparatus is equipped with a sealing mechanism at an opening, allowing for the insertion of a predetermined portion of ingredients. In some embodiments, to enhance filtration, a sleeve filter may be inserted within the container. When the container is submerged in a vessel to a level suitable for extracting a beverage, it securely affixes to the inner wall of the vessel through the flexible structure. The depth within a vessel is adjustable to control the product quality.
Claims
1. A sustainable container to prepare consumable products through extraction comprising: a permeable body with a defined internal space; a body opening with a mechanism to seal it; a permeable filter sleeve designed to fit within the interior space of the body; a flexible three-dimensional structure, comprised of numerous flexible elements strategically coupled to the body to approximately surround its periphery for contact within its designated space, is intended to expand and contract randomly, responding dynamically to forces or stimuli; ingredients are placed inside the sleeve within the container, then immersed in a liquid within a common vessel and firmly secured to the interior surface of the vessel by the flexible structure.
2. A sustainable container to prepare consumable products through extraction comprising: a body with permeable surface that defines an interior space; a body opening with a sealing mechanism; a flexible three-dimensional structure, comprised of numerous flexible elements strategically coupled to the body to approximately surround its periphery for contact within its designated space, is intended to expand and contract randomly, responding dynamically to forces or stimuli; ingredients are placed and sealed within the container, thereafter the container is submerged in liquid within a vessel and secured to the interior surface using the flexible structure.
3. The container according to claim 1, is configured with a design accommodates components varying in geometric or character shapes, sizes within desired ranges, volume with variable capacities, and being fabricated from materials selected from the group consisting of food safe materials.
4. The container according to claim 1, features a strategically distributed permeability across specific portions of its surface according to a definite design, in order to enhance the efficiency of the infusion process and achieve a desired expression.
5. The container according to claim 1, wherein the cover mechanism may utilize various suitable attachment methods such as couplings, magnetic force, hinges, screws, clamps, slide mechanisms, or flip mechanisms.
6. The flexible structure of claim 1 comprises a plurality of three or higher flexible elements with diverse designs, features, lengths and thicknesses, having substantial dynamic independent flexibilities, and proper distribution, wherein the flexible structure is strategically coupled to the container to surround its periphery.
7. The flexible structure according to claim 1, is permanently or conditionally suited to be strategically coupled to the body of the container.
8. The container according to claim 2, wherein the container is configured with a design allowing for components varying in geometric or desired character shapes, sizes of variable ranges, variable volume capacities, and being fabricated from materials selected from the group consisting of food safe materials.
9. The container according to claim 2, features a strategically distributed permeability across specific portions of its surface according to a definite design, in order to enhance the efficiency of the infusion process and achieve a desired expression.
10. The container according to claim 2, wherein the cover mechanism may utilize any suitable attaching method such as couplings, magnetic force, hinging, screwing, clamping, sliding mechanisms, and flipping mechanisms.
11. The flexible structure of claim 2 comprises a plurality of three or higher flexible elements with varied designs, features, lengths and thicknesses, having substantial dynamic independent flexibilities, and strategic distribution, wherein the flexible structure is suitably coupled to the container to secure within a vessel, the flexible structure is strategically coupled to the container to surround its periphery.
12. The flexible structure according to claim 2, is permanently or conditionally suited to be strategically coupled to the body of the container.
Description
BRIEF DESCRIPTION OF FIGURES
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DETAILED DESCRIPTION
[0046] Various apparatuses or methods will be described below to provide examples of the invention. The invention is not limited to apparatuses or methods having all of the features of any one apparatus or method described below or to features common to multiple or all of the apparatuses described below. The invention proposes a concept which may reside in a combination or sub-combination of the apparatus elements, mechanisms, methods, or steps described below. It is possible that an apparatus described below is not an example of the proposed invention. The applicant, inventor, and/or owner reserve all rights in any invention disclosed in an apparatus or method described below that is not proposed in this document and do not abandon, disclaim or dedicate to the public any such invention by its disclosure in this document.
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[0048] The flexible structure 20 adapted to flex liberally and decompress to snugly secure the pod within the interior surface of a vessel. The structure can be provisionally or permanently coupled to the pod without interfering with its main function. It is appropriately free to react flexibly in random motion to accommodate the interior of variable vessels without limitations. A cover or seal 18 is utilized to dispense ingredients into and remove them from the pod. The cover or seal 18 can be coupled to the pod and secured using a variety of suitable mechanisms such as a flip cover, a twist, a slide, a screw, a hinge, or clamp or any commonly known mechanism.
[0049] The body 12 of pod 10 may include a permeable sidewall 34 that defines an interior space, and also may contain permeable top and bottom. An opening 28 may be defined at one end of body 12, but not limited to that, and a flange 26 for added durability may extend around the periphery of the opening 28 for easy handling and strength, a lever 32 is utilized for handling. The flexible structure 20 is appropriately coupled to the pod 10.
[0050] The Pod design is suitable to incorporate common or unique shapes such as geometrical shapes, sports shapes, commercial brand shapes, logos and popular characters shapes and such. The pod is also suitable to incorporate and utilize brand names and logos for promotion or brand recognition.
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[0055] A neutral binder material may be used within sachets 40 without adding any measurable flavor, odor, sensory, health benefit, or function to the consumable product. After the ingredients are disposed into sachet 40, a drawstring or other common sealing mechanism 36 may be utilized to properly seal the sachet opening.
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[0057] When the structure 20 pressed against the interior of a vessel 30, it triggers the decompression of the flexible elements within. This action snugly secures the pod within a vessel, effectively preventing shaking, splashing and rattling.
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[0061] The diverse flexible structure designs depicted in the drawings serve as suggested examples that can be modified in various ways to achieve a similar outcome of securing the pod inside a vessel. All the illustrated designs of flexible structures are labeled as Numeral 20. The flexible structure consists of assembled components to form variable mechanical structure for securing the pod within a vessel.
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[0064] In another aspect, the sleeve insert 14 referenced in
[0065] Moreover, the characteristics of the chambers can influence the density, cohesion, delayed release, and other physical properties of ingredient 16.
[0066] Pod 10 is made of a size, shape and configuration for use in a common vessel 30 for preparing consumable products. Typically, hot or cold liquid is added within a vessel 30 to submerge pod 10, which can contain various ingredients 16. The quality of the finished product is determined by the duration of the extraction process. Brewing products via infusion and extraction represents the most practical and efficient method of achieving desirable results, such as obtaining a concentrated strength and desired temperature of the finished product. This extraction may be facilitated via a pod design featuring permeable bottom, top, sides, or any necessary combination thereof.
[0067] Ingredient 16 may include soluble or insoluble material, preferably insoluble. Ingredients 16 are provided in a dry state, but may be in other suitable states. Insoluble ingredients may include tea leaves, coffee grounds, herbs, or other ingredients that are adapted for forming a consumable product by extraction or infusion. Ingredient 16 may also include active ingredients such as foaming agents, natural health additives, regulated drugs, or other soluble or insoluble ingredients.
[0068] Alternatively, active or functional ingredients, or food flavors, may be added separately from the main ingredients to enhance certain flavors in the final product.
[0069] All embodiments, including pods, capsules, and incorporated design elements, are made from appropriate materials that are heat and corrosion resistant as well as conform to the guidelines of food safe materials.
[0070] The pod is being adapted to regulate the quality of consumable product based on immersion time in the liquid. The immersion time is managed by the pod's depth placement within the vessel, which directly corresponds to the duration of immersion. A higher placement within the vessel results in a lighter drink, as the liquid decreases due to consumption. conversely, a deeper placement equates to an extended immersion time and a stronger drink. The pod can be adjusted using the lever 32.
[0071] The proposed pod can be designed in a myriad of shapes, designs, and sizes, encompassing sports figures, geometrical figures, commercial brand emblems, logos, and popular characters. The pod may integrate and utilize brand names and logos as a means of promotion and enhancing brand recognition.
[0072] While the preceding description provides examples of one or more processes or apparatuses, it's important to note that other processes or apparatuses may also fall within the scope of this concept.
[0073] It's essential for those skilled in the field to appreciate that this invention is not necessarily restricted to the specific details of the foregoing mentioned illustrative embodiments. The present invention has the potential to encompass various other embodiments or specific forms without losing its fundamental nature or essential attributes thereof.