US20260184460A1 · App 19/547,625
VESSEL WITH HIGHLY-REFLECTIVE INTERIOR SURFACE
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Application
Classifications
IPC Classifications
CPC Classifications
Applicants
Robert Lyn Seals
Inventors
Robert Lyn Seals
Abstract
Embodiments described herein include a vessel, for example, a beverage container, configured for containing a liquid, the vessel may be formed of a metal body and includes an interior food contact surface with a pre-determined surface roughness. In embodiments, the interior food contact surface includes a mirror-like, highly-reflective finish, in embodiments, the interior food contact surface prevents taste alteration from the metal body from into the contained liquid, in embodiments, the interior food contact surface promotes cleanability and/or sterilization for vessel reuse and prevents bacterial buildup.
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Description
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001]This application is a continuation-in-part and claims priority to the U.S. patent application entitled: “VESSEL WITH INTERIOR SURFACE BARRIER LAYER”, U.S. Ser. No. 18/442,042 filed on Feb. 14, 2024 by Robert Lyn Seals, which is a continuation-in-part of United States patent application entitled: “METAL BOTTLE INTERIOR PROCESSED TO STOP NICKEL LEACHING AND TASTE ALTERING EFFECTS”, U.S. Ser. No. 16/740,435 filed on Jan. 11, 2020 by Robert Lyn Seals, all of which are fully incorporated by reference herein; this application claims priority from a provisional application of U.S. Ser. No. 63/585,600 filed on Aug. 3, 2023; and this application claims priority from a provisional application of U.S. Ser. No. 63/585,600 filed on Sep. 26, 2023.
BACKGROUND
[0002]Reusable water bottles can save consumers the cost of purchasing beverages in a new bottle and are easily refillable. Landfill disposal of single-use water bottles may be reduced through these reusable bottles. Reusable bottles are often filled and refilled with drinkable liquids, including hot, warm, or cold liquids, such as water, coffee, tea, dairy, juice, soft drinks, beer, or wine.
[0003]The consumer may encounter difficulties or time constraints in cleaning and sanitizing the reusable bottle properly, which may lead to beverage contamination and/or corrosion. The taste of the beverage might be affected by these concerns. The reusable bottle may pose potential health hazards.
SUMMARY
[0004]Embodiments described herein include a vessel, for example, a beverage container, configured to contain a liquid. The vessel may be formed of a metal body and include an interior food contact surface with a pre-determined surface roughness. In embodiments, the interior food contact surface layer includes a mirror-like, highly-reflective finish.
[0005]In an additional or alternative embodiment, the interior surface manufacturing process causes the formation of a passivation layer for the metal body vessel. The interior food contact surface finish enables sufficient resistance against corrosion of metals of the stainless steel, preventing taste alteration and enabling clean sterilization of the smooth surface configured to contact the liquid product.
[0006]The smooth interior food contact surface of the present invention is configured to contact the liquid product and increases cleanability because smoother surfaces are easier to clean and sterilize, as opposed to the bumpier satin matte or brushed stainless steel finishes that are commonly applied to reusable stainless steel bottles. Interior food contact surface roughness plays a role in vessel cleanability. Health hazards may be associated with rough surface areas as microorganisms can adhere more easily to irregular surfaces. These rough surfaces, compared to smooth surfaces, provide more surface area as well. Additionally, the rough surfaces may further hinder the effectiveness and longevity of cleaning equipment, sanitizers, and cleaning materials. The rough surfaces may provide a hospitable opportunity for microorganisms to multiply, culture, and grow. The highly-reflective surface interior, configured to contact the liquid product of the vessel, may be substantially non-porous, non-pitted, non-corroded, highly-reflective, and have a mirror-like finish.
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0016]In a following description, reference is made to the accompanying drawings, which form a part hereof, and in which is shown by way of illustration a specific example in which the invention may be practiced. It is to be understood that other embodiments may be utilized and structural changes may be made without departing from the scope of the present invention.
[0017]It should be noted that for the example descriptions that follow, a metal vessel 100 of
[0018]The terms drinking vessel, metal vessel, vessel, metal bottle beverage vessel, metallic vessel, stainless steel vessel, beverage container and container used herein are used interchangeably without any change in meaning. The measurements described herein include Imperial and Metric units wherein the measurement units and their equivalents follow measurement standards. The ranges used herein are to illustrate example measurements and dimensions and any dimensional ranges used herein are for illustrative purposes and may vary in other embodiments.
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[0020]In embodiments, the metal bottle beverage vessel 100 of
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[0022]In an embodiment, the mirror-finish oxide may form as a passivation layer on the interior food contact surface 210b of the metal vessel body 200b of
[0023]In an embodiment, the interior surface 210b of
[0024]In an embodiment, the interior food contact surface 210b of
[0025]A manufacturing process may be performed on the interior surface, which is configured to contact the liquid product, to achieve a smooth, corrosion-resistant finish, in an embodiment. In embodiments, the manufacturing process may render the interior surface 210b of
[0026]In a particular embodiment, the interior food contact surface may conform to the most reflective finish, an ASTM standard #8 mirror-like finish, or a substantially similar mirror-like finish.
[0027]In an embodiment, an acidic liquid beverage may alter and influence the taste of the liquid beverage. In an embodiment, the mirror-finished interior food contact surface 210b of
[0028]Referring to
[0029]Referring to
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[0032]An embodiment of the vessel of
[0033]In an embodiment, the mirror-like finish of the interior food contact surfaces 210b, and 220b may have a reflectivity of at least about 70% for all wavelengths greater than 1020 nm, and/or a reflectivity of at least about 60% for wavelengths of about 425 nm, in embodiments described herein.
[0034]A sample roughness or profile of the highly-reflective interior surface 210b of
| TABLE 2 | ||
|---|---|---|
| Sample | Non-Sealed Interior | Sealed Interior |
| Locations on the | Surface of the | Surface of |
| interior surface | Vessel in FIG. 2 | Vessel in FIG. 3 |
| 1 | 18.62 | 2.550 |
| 2 | 20.4 | 1.98 |
| 3 | 22.16 | 2.420 |
[0035]Table 1 illustrates comparative surface profile measurements of representative non-mirror-like interior surfaces and sealed, highly-reflective interior food contact surfaces of the vessel, measured at multiple sample locations along the interior wall. As shown, the highly-reflective interior surface exhibits a substantially reduced arithmetic average surface roughness (Ra) relative to the non-mirror-like interior surface, indicating fewer surface peaks and valleys and a smoother, more uniform profile. This reduction in surface roughness contributes to improved cleanability, reduced microbial retention, and enhanced resistance to corrosion and taste alteration compared to non-mirror-like stainless steel interior surfaces.
[0036]In embodiments, the interior food contact surface undergoes a passivation treatment during or following the polishing process, resulting in the formation of a stable oxide layer on the stainless steel surface. This passivated layer inhibits direct interaction between the liquid beverage and underlying metal constituents, thereby reducing corrosion, metal ion migration, and chemical reactivity. As a result, the passivated, mirror-like interior food contact surface promotes organoleptic neutrality by minimizing taste alteration, odor transfer, and metallic flavor impartation to the contained beverage during repeated use.
[0037]The average surface profile roughness of the vessel 200a of
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[0044]In this embodiment, the highly-reflective interior surface 700 may have an average surface roughness, Ra, as shown in the embodiment of Table 1. The average roughness, Ra, may be calculated using an arithmetic average of multiple surface point height measurements in an embodiment. Measurements, in embodiments, may indicate a surface roughness of no more than 3 microinches in an embodiment. In an embodiment, the polished interior surface may have a roughness range from about 1 microinches to up to about 10 microinches. In other embodiments, the Roughness Average of the highly-reflective interior surface may be about 2 microinches, with surface roughness at discrete areas being from about 1 microinch to about 2.5 microinches.
[0045]In alternative embodiments, the surface roughness value in micrometers may include values at and/or about 0.47 micrometers, values in the range of about 0.05 micrometers to about 0.065 micrometers in embodiments, values less than or equal to about 0.1 micrometers in embodiments, and values less than or equal to about 0.2 micrometers in embodiments.
[0046]A root-mean-squared roughness, Rq or rms, may yield a square root of a summation of the squares of multiple surface point heights of the interior surface. In an embodiment, Rq for the highly-reflective food contact interior surface is about 1.4 times the Ra in micrometers. In an embodiment, where the surface profile Ra is at most 2.5 microinches, Rq may be at most about 3.5.
[0047]The foregoing has described the principles, embodiments, and modes of operation of the embodiments. However, the embodiments should not be construed as being limited to the particular embodiments discussed. The above-described embodiments should be regarded as illustrative rather than restrictive, and it should be appreciated that variations may be made in those embodiments by workers skilled in the art without departing from the scope of the present invention as defined by the following claims.
Claims
What is claimed is:
1. A metal vessel for consumable beverages, comprising:
a metal body configured for containing a liquid beverage, the metal body including food-grade stainless steel;
an interior food contact surface formed on the metal body and defining a cavity configured to receive the liquid beverage; and
wherein the interior food contact surface includes a mirror-like, highly-reflective finish and a surface roughness selected to promote cleanability and reduce microbial adhesion during repeated beverage containment and reuse.
2. The metal vessel of
3. The metal vessel of
4. The metal vessel of
5. The metal vessel of
6. The metal vessel of
7. The metal vessel of
8. A drinking vessel for consumable beverages, comprising:
a metal body configured for containing a liquid beverage, the metal body including food-grade stainless steel;
an interior food contact surface of the metal body configured to receive the liquid beverage, the interior food contact surface having a mirror-like finish and a predetermined surface roughness;
wherein the interior food contact surfaces have a predetermined arithmetic average surface roughness ranging from 1 microinch to 2.5 microinches; and
wherein the interior food contact surface includes a mirror-like, highly-reflective finish and a surface roughness configured to promote cleanability and reduce microbial adhesion during repeated beverage containment and reuse.
9. The metal vessel of
10. The metal vessel of
11. The metal vessel of
12. The metal vessel of
13. The metal vessel of
14. The metal vessel of
15. A metal beverage container, comprising:
a metal body formed of food-grade stainless steel and defining an interior cavity configured to contain a liquid beverage;
an interior food contact surface formed on the metal body, wherein the mirror-like interior food contact surface having:
(i) a reflective finish visible to the unaided eye, and
(ii) a surface roughness selected to promote cleanability and reduce taste alteration of the liquid beverage; and
wherein the interior food contact surface is configured to reduce corrosion, metal migration, and microbial retention relative to a non-mirror-like stainless-steel interior surface.
16. The metal beverage container of
17. The metal beverage container of
18. The metal beverage container of
19. The metal beverage container of
20. The metal beverage container of