IP Library Granted Patent US 10,982,812
Granted Patent B2
US 10,982,812 · App. 15/061,767 · Granted Apr 20, 2021

Collapsible cryogenic storage vessel

Inventors: David Phillip Cadogan (Middletown, DE); John Kun Hung Lin (Middletown, DE); Jonathan Michael Hinkle (Middletown, DE); Stephen Emerson Scarborough (Seaford, DE); Joanne M. Ware (Lewes, DE); Timothy Joseph Haggerty (Cheswick, PA); Chester Lloyd Benham (Newark, DE); Donald George Sticovy (Houston, TX); Craig Lasseter (Dewinton, CA)
Assignees: ILC Dover IP, Inc.; Air Liquide Advanced Technologies U.S. LLC
F17C13/001F17C3/04F17C3/08F17C2201/0104F17C2201/018F17C2201/0123F17C2201/0147F17C2201/0166F17C2201/03F17C2201/035F17C2201/037F17C2201/054F17C2203/013F17C2203/0304F17C2203/0604F17C2203/0607F17C2203/0624F17C2203/0658F17C2203/0663F17C2203/0685F17C2205/013F17C2205/0103F17C2205/0107F17C2205/0126F17C2205/0157F17C2221/011F17C2221/012F17C2221/014F17C2221/016F17C2221/033F17C2223/0161F17C2223/033F17C2223/046F17C2225/043F17C2270/01F17C2270/0171F17C2270/02F17C2270/05Y02E60/32
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Quick Facts
Patent No.
US 10,982,812
App. No.
15/061,767
Granted
Apr 20, 2021
Kind
B2
Abstract

A design and construction method for a Collapsible Cryogenic Storage Vessel can be used for storing cryogenic liquids. The vessel provides the ability to be packed for transport in a compact state and erected at the point of use. The vessel can be used multiple times. The vessel's volume can also be adjusted during use to minimize or eliminate head space in the vessel.

Claims (54)

1. A pressure vessel capable of storing cryogenic fluids and associated gasses that is constructed from flexible materials that enable the pressure vessel to be folded for storage and transport, comprising:

a membrane fluid containment layer;

a textile based structural layer that supports fluid and gas pressure loads;

a textile based protective liner;

multiple insulation layers;

a protective membrane outer cover; and,

one or more fixtures adapted for and configured to enable filling and draining the pressure vessel with cryogenic fluid, wherein said pressure vessel is flexible and collapsible, wherein the textile based structural layer is constructed from one or more types of fibers that can withstand cryogenic temperatures and the fiber or fibers consist of at least one selected from the group consisting of Vectran, Kevlar, polyester, nylon and stainless steel.

2. The pressure vessel of claim 1 , where the layers of the pressure vessel are periodically attached to one another to cause said attached layers to move in unison.

3. The pressure vessel of claim 1 , wherein the protective membrane outer cover prevents ambient air exchange in the multiple insulation layers that could lead to condensation and reduced insulation performance.

4. The pressure vessel of claim 1 , wherein the multiple insulation layers are constructed from one or more types of fibers that can withstand cryogenic temperatures.

5. The pressure vessel of claim 4 , wherein the fibers or combinations of fibers are at least one selected from the group consisting of wool, glass fibers and aerogel.

6. The pressure vessel of claim 1 , wherein the membrane fluid containment layer includes a self-healing layer that can seal any holes that form in the membrane.

7. A pressure vessel capable of storing cryogenic fluids and associated gasses that is constructed from flexible materials that enable the pressure vessel to be folded for storage and transport, comprising:

a membrane fluid containment layer;

a textile based structural layer that supports fluid and gas pressure loads;

a textile based protective liner;

multiple insulation layers;

a protective membrane outer cover; and,

one or more fixtures adapted for and configured to enable filling and draining the pressure vessel with cryogenic fluid, wherein said pressure vessel is flexible and collapsible, wherein the textile based structural layer is a woven webbing construction made from webbings that are woven to one another to form a structural shell or net that can withstand stresses that would be induced by hydrostatic or pressurization loads that would be caused by filling of the pressure vessel with cryogenic fluid, wherein the webbings are intermittently joined.

8. A pressure vessel capable of storing cryogenic fluids and associated gasses that is constructed from flexible materials that enable the pressure vessel to be folded for storage and transport, comprising:

a membrane fluid containment layer;

a textile based structural layer that supports fluid and gas pressure loads;

a textile based protective liner;

multiple insulation layers;

a protective membrane outer cover; and,

one or more fixtures adapted for and configured to enable filling and draining the pressure vessel with cryogenic fluid, wherein said pressure vessel is flexible and collapsible, wherein the textile based structural layer comprises an overlapped webbing construction made from webbings that are woven to one another to form a structural shell or net that can withstand stresses that would be induced by hydrostatic or pressurization loads that would be caused by filling of the pressure vessel with cryogenic fluid, wherein the webbings are intermittently joined.

9. A pressure vessel capable of storing cryogenic fluids and associated gasses that is constructed from flexible materials that enable the pressure vessel to be folded for storage and transport, comprising:

a membrane fluid containment layer;

a textile based structural layer that supports fluid and gas pressure loads;

a textile based protective liner;

multiple insulation layers;

a protective membrane outer cover; and,

one or more fixtures adapted for and configured to enable filling and draining the pressure vessel with cryogenic fluid, wherein said pressure vessel is flexible and collapsible, wherein individual ones of the multiple insulation layers have seams and individual ones of the multiple insulation layers are is layered such that the seams do not overlap.

10. A pressure vessel capable of storing cryogenic fluids and associated gasses that is constructed from flexible materials that enable the pressure vessel to be folded for storage and transport, comprising:

a membrane fluid containment layer;

a textile based structural layer that supports fluid and gas pressure loads;

a textile based protective liner;

multiple insulation layers;

a protective membrane outer cover; and,

one or more fixtures adapted for and configured to enable filling and draining the pressure vessel with cryogenic fluid, wherein said pressure vessel is flexible and collapsible, wherein the multiple insulation layers contain thin flexible impermeable membranes between some or all of individual ones of the multiple insulation layers.

11. A pressure vessel capable of storing cryogenic fluids and associated gasses that is constructed from flexible materials that enable the pressure vessel to be folded for storage and transport, comprising:

a membrane fluid containment layer;

a textile based structural layer that supports fluid and gas pressure loads;

a textile based protective liner;

multiple insulation layers;

a protective membrane outer cover; and,

one or more fixtures adapted for and configured to enable filling and draining the pressure vessel with cryogenic fluid, wherein said pressure vessel is flexible and collapsible, wherein the membrane fluid containment layer is reinforced with a textile.

12. A pressure vessel capable of storing cryogenic fluids and associated gasses that is constructed from flexible materials that enable the pressure vessel to be folded for storage and transport, comprising:

a membrane fluid containment layer;

a textile based structural layer that supports fluid and gas pressure loads;

a textile based protective liner;

multiple insulation layers;

a protective membrane outer cover; and,

one or more fixtures adapted for and configured to enable filling and draining the pressure vessel with cryogenic fluid, wherein said pressure vessel is flexible and collapsible, wherein the membrane fluid containment layer is joined to at least one layer selected from the group consisting of a textile layer and a foam layer that limits a bend radius of the membrane fluid containment layer to prevent folding damage.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Jun 3, 2024
From: ANTARES CAPITAL LP, AS ADMINISTRATIVE AGENT AND COLLATERAL AGENT
To: ILC DOVER IP, INC.; ILC DOVER LP (AS SUCCESSOR-BY-MERGER TO GRAYLING INDUSTRIES, INC.); ILC ASTROSPACE, LLC
Reel/Frame 067603/0073 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 2, 2023
From: ILC DOVER IP, INC.
To: ILC ASTROSPACE, LLC
Reel/Frame 065096/0741 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2021
From: HAGGERTY, TIMOTHY JOSEPH
To: AIR LIQUIDE ADVANCED TECHNOLOGIES U.S. LLC
Reel/Frame 055573/0337 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2021
From: CADOGAN, DAVID PHILLIP; LIN, JOHN KUN HUNG; HINKLE, JONATHAN MICHAEL; SCARBOROUGH, STEPHEN EMERSON; WARE, JOANNE M.
To: ILC DOVER IP, INC.
Reel/Frame 055579/0553 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2021
From: BENHAM, CHESTER LLOYD; STOICOVY, DONALD GEORGE; LASSETER, CRAIG
To: AIR LIQUIDE ADVANCED TECHNOLOGIES U.S. LLC
Reel/Frame 055491/0471 →
SECURITY INTEREST Recorded Jan 31, 2020
From: ILC DOVER IP, INC.; ILC DOVER LP; GRAYLING INDUSTRIES, INC.
To: ANTARES CAPITAL LP, AS ADMINISTRATIVE AGENT
Reel/Frame 051686/0812 →