IP Library › Granted Patent US 10,787,304
Granted Patent B2
US 10,787,304 · App. 16/334,793 · Granted Sep 29, 2020

Retaining member and insulating vessel incorporating same

Inventor: Colton Bryan Haas (Houston, TX)
Assignee: Vinglacé, LLC
B65D81/3881A47G23/0241B65D23/0885B65D25/10B65D25/54B65D81/38B65D81/3876A47G2023/0275B65D23/06B65D47/40F25D3/08F25D2331/803
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Quick Facts
Patent No.
US 10,787,304
App. No.
16/334,793
Granted
Sep 29, 2020
Kind
B2
Abstract

A retaining member and a vacuum-insulated vessel are disclosed. The retaining member includes a frustoconical body, a cylindrical skirt extending from the frustoconical body, and a deformable member extending along an inner surface of the frustoconical body. The deformable member may have multiple layers. An opening extends through the frustonical body, so that the neck of a bottle may pass therethrough. The vacuum-insulated vessel includes the aforementioned retaining member and a double-walled structure, and is able to receive and secure bottles having different heights and widths. The vacuum-insulated vessel also eliminates condensation from external surfaces of a bottle positioned therein, maintains the initial temperature of the bottle, and allows a user to pour from the bottle without having to remove the bottle from the vessel.

Claims (47)

1. A vacuum-insulated vessel comprising:

a double-walled structure comprising a closed end, an open end, and a cylindrical body extending between the closed and open ends; and

a retaining member comprising

a body having an upper portion, a lower portion spaced apart from the upper portion, a frustoconical portion extending between the upper and lower portions, and an opening formed in the upper portion to receive a neck of a bottle,

a cylindrical skirt extending from the lower portion, wherein the cylindrical skirt includes an outer diameter that is less than an outer diameter of the lower portion, and

a deformable member comprising a first layer extending from the upper portion of the body, the first layer overlapping at least a portion of the opening in a radial direction to frictionally engage the neck of the bottle,

wherein the cylindrical skirt of the retaining member is frictionally secured to the internal surface of the double-walled structure so that the bottle is retained in a chamber of the double-walled structure and compressed between the deformable member and the closed end of the double-walled structure, thereby securing the bottle within the vacuum-insulated vessel so that a user can pour contents of the bottle without removing the bottle from the vacuum-insulated structure.

2. The vacuum-insulated vessel of claim 1 , wherein

the cylindrical skirt comprises a plurality of external threads formed on its external surface, and

the double-walled structure comprises a plurality of internal threads formed on the internal surface of the double-walled structure, adjacent the open end,

wherein the external threads engage the internal threads to secure the retaining member to the double-walled structure.

3. The vacuum-insulated vessel of claim 1 , wherein the deformable member comprises a circumferential edge portion at least partially extending along the upper portion of the body.

4. The vacuum-insulated vessel of claim 1 , wherein the body and the cylindrical skirt comprises a polymeric material.

5. The vacuum-insulated vessel of claim 1 , wherein

the double-walled structure comprises a metal, and

the deformable member is formed from an opaque material.

6. The vacuum-insulated vessel of claim 1 , wherein the double-walled structure further comprises:

a plurality of indentations formed in its external surface.

7. The vacuum-insulated vessel of claim 6 , wherein the indentations comprise bilateral indentations that extend from the closed end of the double-walled structure to an intermediate position between the closed end and the open end.

8. The vacuum-insulated vessel of claim 1 , further comprising a coaster secured to the closed end of the double-walled structure, wherein the coaster reduces friction between the double-walled structure and a smooth surface.

9. The vacuum-insulated vessel of claim 1 , wherein the deformable member comprises at least one concentric layer concentric with the frustoconical portion, the concentric layer comprising a resilient free end having a peripheral edge, the resilient free end having a plurality of longitudinally opening notches formed in the peripheral edge.

10. A vacuum-insulated vessel comprising:

a double-walled structure comprising a closed end, an open end and a substantially cylindrical body extending between the closed and open ends;

a retaining member for being secured to the double-walled structure, the retaining member comprising

a body comprising an upper portion, a lower portion spaced apart from the upper portion, and a frustoconical portion extending between the upper and lower portions,

a cylindrical skirt extending from the lower portion, wherein the cylindrical skirt is configured to frictionally engage an internal surface of the double-walled structure, and

a deformable member comprising a first layer extending from the upper portion, wherein

the retaining member forms an opening in the upper portion of the body to receive a neck of a bottle therethrough, and the first layer of the deformable member at least partially overlaps the opening in a radial direction to retain the neck of the bottle, and

the cylindrical skirt of the retaining member is secured to the double-walled structure, so that the bottle is secured in a chamber of the double-walled structure and compressed between the deformable member and the closed end of the double-walled structure, thereby securing the bottle within the vacuum-insulated vessel so that a user may pour contents from the bottle without removing the bottle from the vacuum-insulated vessel.

11. The vacuum-insulated vessel of claim 10 , wherein

the cylindrical skirt comprises a plurality of external threads formed on its external surface, and

the double-walled structure comprises a plurality of internal threads formed on of the internal surface of the cylindrical body, adjacent the open end,

wherein the external threads engage the internal threads so that the body can move towards and away from the double-walled structure and the retaining member can be secured to the double-walled structure.

12. The vacuum-insulated vessel of claim 10 , wherein the double-walled structure is formed from a metal, and the deformable member is formed from an opaque material.

13. The vacuum-insulated vessel of claim 10 , wherein the deformable member comprises a circumferential edge portion at least partially extending along the upper portion of the body.

14. The vacuum-insulated vessel of claim 10 , wherein at least one of the body and the cylindrical skirt comprises a substantially clear material.

15. The vacuum-insulated vessel of claim 10 , wherein the double-walled structure further comprises:

a plurality of indentations formed in its external surface, wherein the indentations extend from the closed end of the double-walled structure to an intermediate position between the closed end and the open end.

16. The vacuum-insulated vessel of claim 10 , further comprising a coaster secured to the closed end of the double-walled structure, wherein the coaster reduces friction between the double-walled structure and a smooth surface.

17. The vacuum-insulated vessel of claim 10 , wherein the deformable member comprises at least one concentric layer concentric with the frustoconical portion, the concentric layer comprising a resilient free end having a peripheral edge, the resilient free end having a plurality of longitudinally opening notches formed in the peripheral edge.

18. The vacuum-insulated vessel of claim 10 , wherein:

the lower portion has an outer diameter,

the cylindrical skirt has an outer diameter, and

the double-walled structure has an inner diameter and an outer diameter, wherein

the outer diameter of the cylindrical skirt is less than the outer diameter of the lower portion,

the outer diameter of the lower portion is substantially the same as the outer diameter of the double-walled structure, and

the outer diameter of the cylindrical skirt is less than the inner diameter of the double-walled structure.

Assignments (2)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE NAME PREVIOUSLY RECORDED AT REEL: 048644 FRAME: 0851. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT . Recorded Feb 2, 2022
From: HAAS, COLTON BRYAN
To: VINGLACE LLC
Reel/Frame 058945/0516 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2019
From: HAAS, COLTON BRYAN
To: VINGLACÉ, LLC
Reel/Frame 048644/0851 →
Continuity (4)
Continuation 15699462 · Sep 8, 2017
Provisional Application 62508151 · May 18, 2017
Provisional Application 62400736 · Sep 28, 2016
Related Publication 20190233198A1 · Aug 1, 2019