IP Library Granted Patent US 7,461,754
Granted Patent B2
US 7,461,754 · App. 11/070,759 · Granted Dec 9, 2008

Gasket for horizontal venting and related method

Assignee: DeWAL Industries
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Quick Facts
Patent No.
US 7,461,754
App. No.
11/070,759
Granted
Dec 9, 2008
Kind
B2
Abstract

There is provided a gasket element having at least one first inner layer and at least one first outer layer. Each of the at least two layers have differing material properties. The gasket element is well suited to cooperate with an ingress/egress opening of a container that in turn is well suited to retain an active pressure and/or temperature sensitive substance. The gasket element may be operatively connected to a cap element that is suitable to selectively close the at least one ingress/egress opening of the container. The cap element may be a stand alone sealing cap or may be operatively associated with a spray nozzle or the like.

Claims (47)

1. A gasket for sealing an opening in a container, and allowing gas within the container to vent substantially horizontally therethrough, the gasket comprising:

a first substantially liquid impervious layer for forming a seal between the gasket and container; and

a second porous substantially incompressible layer defining a first side, a second side, a peripheral surface extending between the first and second sides, an interior portion extending between the first and second sides and peripheral surface, and an open cell structure forming a fluid flow path extending substantially horizontally through the interior portion in fluid communication with the first layer and the peripheral surface of the second layer for venting gas substantially horizontally therethrough from an interior to an exterior of the container.

2. A gasket as defined in claim 1 , wherein at least one of the first and second layers has at least one aperture formed therethrough.

3. A gasket as defined in claim 2 , wherein the first layer defines a first aperture therethrough and the second layer defines a second aperture therethrough that is substantially aligned with the first aperture.

4. A gasket as defined in claim 1 , wherein the first layer is sufficiently porous to allow the passage therethrough of a gas, while substantially repelling the passage therethrough of a liquid.

5. A gasket as defined in claim 1 , further comprising a third layer located either (i) between the first and second layers, or (ii) on an opposite side of the second layer relative to the first layer.

6. A gasket as defined in claim 5 , wherein the third layer is located on an opposite side of the second layer relative to the first layer, and includes a foam core located between solid outer layers.

7. A gasket as defined in claim 1 , wherein the second layer is substantially formed of UHMW polyethylene.

8. A gasket as defined in claim 7 , wherein the second layer defines a porosity within the range of about 25% to about 35% open area.

9. A gasket as defined in claim 1 , wherein the first layer is substantially formed of at least one of PTFE and ePTFE.

10. A gasket as defined in claim 1 , wherein the second layer defines a porosity within the range of about 10% to about 65% open area.

11. A gasket as defined in claim 1 , wherein at least one of the first and second layers is coated with a substance that substantially repels the passage therethrough of at least one of a solvent, an oil and a petroleum-based substance.

12. A gasket as defined in claim 1 , further comprising a first layer formed substantially of at least one of PTFE and ePTFE, a second layer formed substantially of UHMW polyethylene, and a third layer located on an opposite side of the second layer relative to the first layer and including a foam core located between solid outer layers.

13. A gasket as defined in claim 12 , further comprising a fourth layer located on an opposite side of the third layer relative to the second layer and formed substantially of UHMW polyethylene, and a fifth layer located on an opposite side of the fourth layer relative to the third layer and formed substantially of at least one of PTFE and ePTFE.

14. A gasket as defined in claim 1 , wherein the first layer vents gas substantially vertically therethrough and into the fluid flow path of the second layer, and the second layer in turn vents the gas substantially horizontally through the interior portion and peripheral surface thereof to the exterior of the container.

15. A gasket for forming a seal between a container and a container closure and permitting gas to vent substantially horizontally therethrough, the gasket comprising:

first means for forming a substantially liquid-tight seal between the container and the container closure; and

second means fixedly secured between the first means and at least one of the container and the container closure, including a first side, a second side, a peripheral surface extending between the first and second sides, and an interior portion extending between the first and second sides and peripheral surface, for forming a tortuous fluid flow path extending substantially horizontally through the interior portion in communication with the first means and the peripheral surface, and for venting gas substantially horizontally through the fluid flow path in the interior portion and through the peripheral surface to an exterior of the container.

16. A gasket as defined in claim 15 , wherein the first means also is for venting a gas substantially vertically therethrough and into the tortuous fluid flow path of the second means for venting substantially horizontally therethrough.

17. A gasket as defined in claim 15 , wherein the first means is a substantially liquid impervious, compressible layer, and the second means is a porous, substantially incompressible layer.

18. A gasket as defined in claim 17 , wherein said substantially liquid impervious, compressible layer is at least one of PTFE and ePTFE.

19. A gasket as defined in claim 17 , wherein said porous, substantially incompressible layer is formed of UHMW polyethylene.

20. A gasket as defined in claim 19 , wherein said layer defines a porosity within the range of about 10% to about 65% open area.

21. A gasket as defined in claim 19 , wherein said layer defines a porosity within the range of about 25% to about 35% open area.

22. A gasket as defined in claim 19 , wherein the thickness of said layer is within the range of about 3 mils to about 25 mils.

23. A gasket as defined in claim 15 , further comprising third means located either (i) between the first means and the second means, or (ii) on an opposite side of the second means relative to the first means, for resiliently compressing the gasket between the container and the container closure.

24. A gasket as defined in claim 23 , wherein the third means is a layer including a foam core located between solid outer layers.

25. A gasket as defined in claim 23 , wherein the third means is located on an opposite side of the second means relative to the first means, and includes a foam core located between solid outer layers.

26. A method comprising the steps of:

providing a container defining an opening and adapted to contain a substance that is at least one of pressure and temperature sensitive;

providing a closure for closing the opening of the container;

providing a gasket defining at least one porous, substantially compressible, liquid impervious first layer, and at least one porous substantially incompressible second layer defining a first side, a second side, a peripheral surface extending between the first and second sides, an interior portion extending between the first and second sides and peripheral surface, and an open cell structure forming a fluid flow path extending through the interior portion;

interposing the gasket between the closure and the opening with the gasket coupled in fluid communication between the interior and the exterior of the container;

compressing the at least one first layer of the gasket and forming a substantially liquid-tight seal with the gasket between the interior and the exterior of the container; and

venting gas from the interior to the exterior of the container substantially horizontally through the fluid flow path extending through the interior portion of the at least one porous substantially incompressible second layer.

27. A method as defined in claim 26 , further comprising at least one of (i) increasing the overall thickness of the at least one porous substantially incompressible second layer to increase the flow rate of gas vented therethrough, and (ii) decreasing the overall thickness of the at least one porous substantially incompressible second layer to decrease the flow rate of gas vented therethrough.

28. A method comprising the following steps:

storing a liquid that is at least one of pressure and temperature sensitive in a container including a body defining a chamber receiving therein the liquid, a container closure in fluid communication with the chamber, and a gasket including a first substantially liquid impervious layer forming a liquid-tight seal between the container closure and the container, and a second substantially incompressible layer defining a first side, a second side, a peripheral surface extending between the first and second sides, an interior portion extending between the first and second sides and peripheral surface, and an open cell structure forming a fluid flow path extending substantially horizontally through the interior portion; and

venting gas from the chamber substantially horizontally through the open cell structure of the interior portion of the second layer and, in turn, through a peripheral surface of the second layer of the gasket to the exterior of the container.

29. A method as defined in claim 28 , wherein the venting step includes venting gas from the chamber substantially vertically through the first layer of the gasket and into the second layer of the gasket, and venting gas in the second layer of the gasket substantially horizontally through the open cell structure of the interior portion of the second layer and, in turn, through the peripheral surface of the second layer of the gasket to the exterior of the container.

30. A method as defined in claim 29 , further comprising the step of substantially repelling the passage of liquid through the first layer of the gasket.

31. A gasket for sealing an opening in a container, and allowing gas within the container to vent therethrough, the gasket comprising:

a first substantially liquid impervious layer for forming a seal between the gasket and container; and

a second porous substantially incompressible layer defining a first side, a second side, a peripheral surface extending between the first and second sides, an interior portion extending between the first and second sides and peripheral surface, and an open cell structure extending substantially horizontally throughout the interior portion and forming a fluid flow path therethrough in fluid communication with the first layer and the peripheral surface of the second layer for allowing gas to vent from an interior to an exterior of the container substantially horizontally through the interior portion.

32. A gasket as defined in claim 31 , further comprising further comprising a third layer located either (i) between the first and second layers, or (ii) on an opposite side of the second layer relative to the first layer.

33. A gasket as defined in claim 32 , wherein the third layer is located on an opposite side of the second layer relative to the first layer, and includes a foam core located between solid outer layers.

Assignments (3)
SECURITY INTEREST Recorded Feb 20, 2017
From: DEWAL INDUSTRIES, LLC
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 041299/0989 →
CERTIFICATE OF CONVERSION Recorded Feb 13, 2017
From: DEWAL INDUSTRIES, INC.
To: DEWAL INDUSTRIES, LLC
Reel/Frame 041694/0403 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2005
From: WALSH, EDWARD D.
To: DEWALL INDUSTRIES
Reel/Frame 016577/0382 →
Continuity (2)
Provisional Application 6054984400 · Mar 3, 2004
Related Publication 20050248097A1 · Nov 10, 2005