IP Library Granted Patent US 11,187,469
Granted Patent B2
US 11,187,469 · App. 16/228,281 · Granted Nov 30, 2021

Tunable wicking structures and a system for a wicking structure

Inventor: Matthew Karesh (Cincinnati, OH)
Assignee: General Electric Company
F28D15/046A61M16/18F28D15/0233
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Quick Facts
Patent No.
US 11,187,469
App. No.
16/228,281
Granted
Nov 30, 2021
Kind
B2
Abstract

Various systems and methods are provided for a tunable wicking structure. In one example, the tunable wicking structure comprises a micro wicking element comprising a plurality of powder particles, each powder particle of the micro wicking element being partially joined to at least one other powder particle of the micro wicking element, and wherein a plurality of channels are formed between partially joined powder particles of the micro wicking element for drawing liquid through the micro wicking element via capillary action. The tunable wicking structure may also include a macro wicking element including a lattice structure formed by a grid of lines of material, the lattice structure including pores formed between the lines of material, in which the powder particles are disposed.

Claims (29)

1. A wicking structure, comprising:

a macro wicking element including a lattice structure formed by a grid of solid material, the lattice structure including pores formed between the grid of solid material;

a first micro wicking element including powder particles distributed within the pores of the lattice structure;

a second micro wicking element that includes further powder particles without an associated lattice structure, and wherein each of the lattice structure, the first micro wicking element, and the second micro wicking element extending across an entirety of a width of the wicking structure.

2. The wicking structure of claim 1 , wherein each powder particle of the first micro wicking element is partially joined to at least one other powder particle of the micro wicking element, and wherein a plurality of channels are formed between partially joined powder particles of the first micro wicking element for drawing liquid through the micro wicking element via capillary action, the wicking structure having one or more tunable parameters to adjust capillary action capabilities of the wicking structure.

3. The wicking structure of claim 1 , further comprising an encapsulation structure disposed around an outer surface of the macro wicking element.

4. The wicking structure of claim 1 , wherein a porosity of the wicking structure is continuously variable along at least one dimension of the wicking structure.

5. The wicking structure of claim 1 , wherein the grid of solid material forming the lattice structure has a same material composition as the powder particles distributed within the pores of the lattice structure and wherein a size, shape, spacing, and/or distribution of the solid material is uniform throughout the lattice structure.

6. The wicking structure of claim 1 , wherein the wicking structure is a wick of a vaporizer of an anesthesia machine.

7. The wicking structure of claim 1 , wherein the powder particles of the first micro wicking element are distributed uniformly throughout the pores of the lattice structure.

8. The wicking structure of claim 1 , wherein the powder particles of the first micro wicking element are distributed non-uniformly throughout the pores of the lattice structure.

9. The wicking structure of claim 1 , wherein the wicking structure lacks an encapsulation structure at least along a top face and a bottom face of the wicking structure.

10. The wicking structure of claim 9 , wherein the wicking structure includes the encapsulation structure surrounding the wicking structure along an outer perimeter from the top face to the bottom face of the wicking structure.

11. The wicking structure of claim 10 , wherein the bottom face is configured to be immersed in a liquid and the top face is open to a vapor reservoir of an anesthesia machine.

12. A system comprising:

a liquid reservoir for a vaporizer of an anesthesia machine;

a heating element coupled to a region of the liquid reservoir; and

a wick disposed in the region of the liquid reservoir, a bottom face of the wick configured to be immersed in liquid within the liquid reservoir, the wick comprising:

a first micro wicking element including a plurality of powder particles, each powder particle of the first micro wicking element being partially joined to at least one other powder particle of the first micro wicking element to form a plurality of channels for drawing liquid from the liquid reservoir through the first micro wicking element toward the heating element via capillary action, the plurality of channels having a continuously variable size along a dimension of the first micro wicking element; and

a macro wicking element including a lattice structure formed by a grid of solid lines of material, the lattice structure including pores formed between the solid lines of material, the pores including further powder particles that are partially joined to one another to form a second micro wicking element.

13. A wicking structure comprising:

a micro wicking element comprising a plurality of powder particles, each powder particle of the micro wicking element being partially joined to at least one other powder particle of the micro wicking element, a plurality of channels being formed between partially joined powder particles of the micro wicking element for drawing liquid through the micro wicking element via capillary action; and

an encapsulation structure disposed around an outer surface of the micro wicking element, wherein the plurality of powder particles comprises a first subset of powder particles and a second subset of powder particles, each powder particle of the first set of powder particles being only partially joined to the respective at least one other powder particle of the micro wicking element and not joined to any other structure, and each powder particle of the second set of powder particles being further partially joined to the encapsulation structure.

14. The wicking structure of claim 13 , wherein the wicking structure is a wick of a vaporizer of an anesthesia machine, and wherein the micro wicking element lacks the encapsulation structure along a top face and a bottom face of the micro wicking element.

15. The wicking structure of claim 13 , wherein the powder particles of the micro wicking element are distributed uniformly throughout the wicking structure.

16. The wicking structure of claim 13 , wherein the powder particles of the micro wicking element are distributed non-uniformly throughout the wicking structure.

17. The wicking structure of claim 16 , wherein a size of channels formed between the powder particles of the micro wicking element continuously change along at least one dimension of the wicking structure.

18. The system of claim 12 , wherein that the first micro wicking element and the macro wicking element each extend across an entirety of a width of the wick.

19. The system of claim 12 , wherein the wick further comprises an encapsulation structure disposed around an outer surface of at least the first micro wicking element.

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded May 8, 2025
From: GENERAL ELECTRIC COMPANY
To: GE PRECISION HEALTHCARE LLC
Reel/Frame 071225/0218 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2018
From: KARESH, MATTHEW
To: GENERAL ELECTRIC COMPANY
Reel/Frame 047836/0052 →
Continuity (1)
Related Publication 20200200487A1 · Jun 25, 2020
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