IP Library Granted Patent US 11,401,087
Granted Patent B2
US 11,401,087 · App. 16/539,043 · Granted Aug 2, 2022

Vented grooved foam liner with a foil layer for temporary venting

Inventor: Stephen Bernard Kleyn (Hudsonville, MI)
Assignee: Selig Grand Rapids LLC
B65D51/16B32B3/266B32B3/30B32B5/18B32B15/046B32B15/085B65D41/045B32B2435/02
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Quick Facts
Patent No.
US 11,401,087
App. No.
16/539,043
Granted
Aug 2, 2022
Kind
B2
Abstract

A vented grooved foam liner cap system for attachment to a container, including a vented foam liner having a grooved distal side that can be actuated from an open state to a sealed state within a cap of a container by a sealing mechanism. A method of equilibrating pressure and sealing a container, by venting contents of a container through the vented grooved foam liner cap system attached to the container, and after the contents have cooled to a desired temperature, stopping venting, thereby providing pressure equilibration to the container, and sealing the container by activating a sealing mechanism in the vented grooved foam liner cap system.

Claims (25)

1. A vented grooved foam liner cap system for attachment to a container, comprising:

a vented foam liner having a grooved distal side that can be actuated from an open state to a sealed state within a cap of a container by deforming at least one groove on the grooved distal side by a sealing mechanism.

2. The vented grooved foam liner cap system of claim 1 , wherein said container is filled with a substance chosen from the group consisting of a liquid and solid.

3. The vented grooved foam liner cap system of claim 1 , wherein said vented foam liner includes a membrane vent applied to a flat proximal side that allows transmission of air and prevents contents in said container from escaping.

4. The vented grooved foam liner cap system of claim 1 , wherein said vented foam liner is resealable.

5. The vented grooved foam liner cap system of claim 1 , wherein said grooved distal side is grooved covering at least a portion of said grooved distal side.

6. The vented grooved foam liner cap system of claim 1 , wherein said sealing mechanism includes a foil layer between said grooved distal side and an inner surface of said cap.

7. The vented grooved foam liner cap system of claim 6 , wherein said foil layer includes a laminated polymer sealing layer on at least one side of said foil layer.

8. The vented grooved foam liner cap system of claim 6 , wherein said laminated polymer sealing layer is made of polypropylene on a distal side of said foil layer, and wherein said laminated polymer sealing layer is made of low density polyethylene on a proximal side of said foil layer.

9. The vented grooved foam liner cap system of claim 6 , wherein while in a cooling state, said foil layer rests on top of said vented foam liner and under said cap, and with an induction sealing process said foil layer melts grooves of said grooved distal side closed, seals itself to said vented foam liner, and seals itself to said cap.

10. A method of equilibrating pressure and sealing a container, including the steps of:

venting contents of a container through a vented grooved foam liner cap system attached to the container; and

after the contents have cooled to a desired temperature, stopping venting, thereby providing pressure equilibration to the container, and sealing the container by activating a sealing mechanism in the vented grooved foam liner cap system.

11. The method of claim 10 , wherein the vented grooved foam liner cap system includes a vented foam liner having a grooved distal side that can be actuated from an open state to a sealed state within a cap of a container by the sealing mechanism.

12. The method of claim 11 , wherein the vented foam liner includes a membrane vent applied to a flat proximal side that allows transmission of air and prevents contents in the container from escaping.

13. The method of claim 10 , wherein said step of activating a sealing mechanism is further defined as a foil layer melting grooves of the grooved distal side closed, sealing the foil layer to the vented foam liner, and sealing the foil layer to the cap, thereby fully sealing the container.

14. The method of claim 13 , wherein said melting step is actuated by induction heating.

15. A liner system for temporarily venting a container, the system comprising:

a liner including a top side having a grooved upper surface and a lower side, the liner defining an aperture extending between the top side and the lower side, the aperture extending to at least one groove in the grooved upper surface;

a venting membrane covering the aperture; and

an induction heating layer positioned adjacent the liner to provide heat to the grooved upper surface during a heating process to actuate the grooved upper surface from an open state to a sealed state.

16. The liner system of claim 15 wherein the liner comprises a foam layer.

17. The liner system of claim 15 wherein the liner bottom side comprises a liner surface area and the venting membrane has a venting membrane surface area that is less than the liner surface area.

18. The liner system of claim 15 further comprising a polymer layer between the grooved upper surface and the induction heating layer.

19. The liner system of claim 15 wherein the induction heating layer heats at least a portion of the grooved upper surface to melt at least one groove.

Assignments (3)
CHANGE OF NAME Recorded May 27, 2022
From: PERFORMANCE SYSTEMATIX LLC
To: SELIG GRAND RAPIDS LLC
Reel/Frame 060043/0500 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 21, 2021
From: PERFORMANCE SYSTEMATIX, INC.
To: PERFORMANCE SYSTEMATIX LLC
Reel/Frame 056336/0724 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 13, 2019
From: KLEYN, STEVE
To: PERFORMANCE SYSTEMATIX, INC.
Reel/Frame 050036/0199 →
Continuity (2)
Provisional Application 62718161 · Aug 13, 2018
Related Publication 20200047959A1 · Feb 13, 2020
Cited By (1)
US 12,679,611