IP Library Granted Patent US 11,089,906
Granted Patent B2
US 11,089,906 · App. 16/100,153 · Granted Aug 17, 2021

Insulated food and beverage container

Inventor: Colton Bryan Haas (Houston, TX)
Assignee: Vinglacé, LLC
A47J41/0077A47J41/0088A47J41/024A47J41/026A47J41/028B65D81/3869
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Quick Facts
Patent No.
US 11,089,906
App. No.
16/100,153
Granted
Aug 17, 2021
Kind
B2
Abstract

An insulated container for food particulate and beverages is described. The insulated container includes a double-walled structure composed of a metal, and a glass structure arranged within a hollow interior of the double-walled structure. The glass structure includes a body and a sipping portion extending from the body. The sipping portion isolates the user's lips from contacting the double-walled structure. The glass structure may be repeatably removed for cleaning or replacement. The insulated structure includes a deformable flange that secures the glass structure to the double-walled structure. The insulated container may be vacuum-insulated.

Claims (78)

1. An insulated container comprising:

an insulated double-walled structure comprising a closed end, an open end, a side wall extending between the closed and open ends, and a stepped portion provided in an inner surface of the double-walled structure and extending partially from the open end towards the closed end, wherein the side wall and the closed end together form a hollow interior;

a glass structure removably arranged within the hollow interior, the glass structure comprising:

a body having an open upper end and a base end, and

a sipping portion extending from the upper end, the sipping portion comprising a sipping end and a shoulder end spaced apart from the sipping end,

wherein the sipping portion protrudes from the open end of the double-walled structure,

an outer diameter of the sipping end being less than an outer diameter of the shoulder end, and the outer diameter of the shoulder end is greater than an inner diameter of the double walled structure; and

a deformable flange extending around the body of the glass structure adjacent the upper end of the body of the glass structure and retained in the stepped portion of the double-walled structure,

wherein the deformable flange comprises a main body and a plurality of protrusions extending from the main body, and

wherein an outer diameter of the protrusions of the deformable flange is greater than the inner diameter of the double walled structure, such that the protrusions are compressed between the inner surface of the double-walled structure and an outer surface of the glass structure, thereby engaging the protrusions with the inner surface of the double-walled structure and retaining the glass structure within the hollow interior of the double-walled structure.

2. The insulated container of claim 1 , wherein the double-walled structure comprises a metal.

3. The insulated container of claim 2 , wherein the double-walled structure comprises:

a plurality of indentations formed in an external surface of the double-walled structure, wherein each indentation of the plurality of indentations extends from the closed end of the double-walled structure to an intermediate position between the closed end and the open end; and

a raised impression formed on at least one indentation of the plurality of indentations.

4. The insulated container of claim 1 , wherein

the body of the glass structure has an outer diameter, wherein

the outer diameter of the sipping end and the outer diameter of the shoulder end are greater than the outer diameter of the body.

5. The insulated container of claim 1 , wherein

for a first length along the stepped portion, the inner diameter of the double-walled structure is a first inner diameter, and

for a second length extending from the stepped portion to the closed end, the double walled structure has a second inner diameter,

wherein the first inner diameter is greater than the second inner diameter and an outer diameter of the body of the glass structure is less than the first inner diameter of the double-walled structure.

6. A vacuum-insulated container comprising:

an inner container comprising:

a first closed end;

a first open end; and

a first side wall extending between the first closed end and the first open end;

an outer container spaced apart from the inner container so that a gap is formed between each container, the outer container comprising:

a second closed end;

a second open end; and

a second side wall extending between the second closed end and the second open end, wherein

the inner container and the outer container are coupled and sealed along the first open end and the second open end,

the gap between the inner container and the outer container is evacuated of air, and

the first side wall and the first closed end together form a hollow interior, and

a stepped portion is formed in an inner surface of the inner container, the stepped portion extending partially from the first open end towards the first closed end;

a glass structure removably arranged within the hollow interior of the inner container, the glass structure comprising:

a body having an open upper end and a base end, and

a sipping portion extending from the upper end, the sipping portion comprising a sipping end and a shoulder end spaced apart from the sipping end,

wherein the sipping portion protrudes from the first open end and the second open end,

an outer diameter of the sipping end being less than an outer diameter of the shoulder end, and the outer diameter of the shoulder end is greater than an inner diameter of the inner container; and

a deformable flange extending around the body of the glass structure, adjacent the shoulder end of the sipping portion, wherein the deformable flange comprises a main body and a plurality of protrusions extending from the main body, wherein an outer diameter of the protrusions of the deformable flange is greater than the inner diameter of the inner container, such that the protrusions are compressed between the inner surface of the inner container and an outer surface of the glass structure, thereby engaging the protrusions with the inner surface of the inner container and retaining the glass structure within the hollow interior of the inner container.

7. The vacuum-insulated container of claim 6 , wherein the inner container and the outer container are formed from a metal.

8. The vacuum-insulated container of claim 6 , wherein the outer container comprises:

a plurality of indentations formed in an external surface of the outer container, wherein each indentation of the plurality of indentations extends from the second closed end to an intermediate position between the second closed end and the second open end of the outer container; and

a raised impression formed on at least one indentation of the plurality of indentations.

9. The vacuum-insulated container of claim 6 , wherein

for a first length along the stepped portion, the inner diameter of the inner container is a first inner diameter and, for a second length extending from the stepped portion to the first closed end, the inner container has a second inner diameter, wherein the first inner diameter is greater than the second inner diameter.

10. The vacuum-insulated container of claim 6 wherein

the body of the glass structure has an outer diameter,

the outer diameter of the sipping end and the outer diameter of the shoulder end are greater than the outer diameter of the body,

the outer diameter of the sipping end and the outer diameter of the shoulder end are greater than an inner diameter of the double-walled structure, and

the outer diameter of the sipping end is less than the outer diameter of the shoulder end.

11. The vacuum-insulated container of claim 10 , wherein the deformable flange has an inner diameter and an outer diameter, wherein

the inner diameter of the deformable flange is substantially the same size as the outer diameter of the body of the glass structure, and

the outer diameter of the deformable flange includes the plurality of protrusions.

12. A vacuum-insulated container comprising:

an inner container comprising:

a first closed end;

a first open end; and

a first side wall extending between the first closed end and the first open end;

an outer container spaced apart from the inner container so that a gap is formed between each container, the outer container comprising:

a second closed end;

a second open end; and

a second side wall extending between the second closed end and the second open end, wherein

the inner container and the outer container are coupled and sealed along their respective open ends,

the gap between the inner container and the outer container is evacuated of air,

the first side wall and the first closed end together form a hollow interior, and

a stepped portion is formed in an inner surface of the inner container, the stepped portion extending partially from the first open end towards the first closed end;

a glass structure removably arranged within the hollow interior of the inner container, the glass structure comprising

a body having an open upper end and a base end, and

a sipping portion extending from the upper end, the sipping portion including a sipping end and a shoulder end spaced apart from the sipping end,

wherein the sipping portion protrudes from the first open end and the second open end,

an outer diameter of the sipping end being less than an outer diameter of the shoulder end, and the outer diameter of the shoulder end is greater than an inner diameter of the inner container;

a gasket secured between the glass structure and the inner container, wherein the gasket is adjacent the shoulder end of the glass structure; and

a deformable flange extending around the body of the glass structure, adjacent the gasket, wherein the deformable flange comprises a main body and a plurality of protrusions extending from the main body, wherein an outer diameter of the protrusions of the deformable flange is greater than the inner diameter of the inner container, such that the protrusions are compressed between the inner surface of the inner container and an outer surface of the glass structure, thereby engaging the protrusions with the inner surface of the inner container and retaining the glass structure within the hollow interior of the inner container.

13. The vacuum-insulated container of claim 12 , wherein the gasket comprises:

a plurality of threads extending along the inner surface of the gasket and along the outer surface of the gasket,

wherein the threads are configured to engage with corresponding threads of the glass structure and corresponding threads of the inner container.

14. The vacuum-insulated container of claim 12 , wherein the inner container and the outer container are each formed from stainless steel.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE CORRECT APPLICANT NAME PREVIOUSLY RECORDED AT REEL: 046609 FRAME: 0132. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Oct 11, 2022
From: HAAS, COLTON BRYAN
To: VINGLACE LLC
Reel/Frame 061640/0373 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2018
From: HAAS, COLTON BRYAN
To: VINGLACÉ, LLC
Reel/Frame 046609/0132 →
Continuity (2)
Provisional Application 62653185 · Apr 5, 2018
Related Publication 20190307292A1 · Oct 10, 2019
Cited By (5)
US 1,114,446 US 1,121,383 US 12,440,066 US 12,484,736 US 12,503,294