IP Library › Granted Patent US 11,519,432
Granted Patent B2
US 11,519,432 · App. 16/476,335 · Granted Dec 6, 2022

Method of actuation using knit-constrained pneumatics

Inventors: Wei-Chang Adam Wang (Ann Arbor, MI); Sean Ahlquist (Ann Arbor, MI)
Assignee: THE REGENTS OF THE UNIVERSITY OF MICHIGAN
F15B15/103D04B1/102D04B1/22D10B2403/0241D10B2505/20F15B2215/305
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Quick Facts
Patent No.
US 11,519,432
App. No.
16/476,335
Granted
Dec 6, 2022
Kind
B2
Abstract

A pneumatic textile system capable of transforming from a two-dimensional structure to a three-dimensional structure under pneumatic pressure is provided. The pneumatic textile system includes a seamless knit fabric having a grid configuration defining a plurality of grid areas—a first of the plurality of grid areas having a tensile strength that is different from a second of the plurality of grid areas. A pneumatic bladder member is disposed along at least a portion of a boundary between adjacent ones of the plurality of grid areas and is inflatable to exert a force on the seamless knit fabric, wherein upon inflation of the pneumatic bladder member the force is exerted on the seamless knit fabric such that the first of the plurality of grid area assumes a shape different than the second of the plurality of grid areas resulting in a three-dimensional structure transformation.

Claims (32)

1. A pneumatic textile system capable of transforming from a two-dimensional structure to a three-dimensional structure under pneumatic pressure, the pneumatic textile system comprising:

a seamless knit fabric having a grid configuration defining a plurality of grid areas, a first of the plurality of grid areas having a tensile strength that is different from a second of the plurality of grid areas; and

a pneumatic bladder member disposed along at least a portion of a boundary between adjacent ones of the plurality of grid areas, the pneumatic bladder member being inflatable to exert a force on the seamless knit fabric,

wherein upon inflation of the pneumatic bladder member the force is exerted on the seamless knit fabric such that the first of the plurality of grid area assumes a shape different than the second of the plurality of grid areas resulting in a three-dimensional structure transformation, wherein the pneumatic bladder member is disposed within a tube house slot extending along the boundary between said adjacent ones of the plurality of grid areas.

2. The pneumatic textile system according to claim 1 wherein the plurality of grid areas are configured to include diagonal grid areas having a tensile zone greater than at least one of a remaining grid area.

3. The pneumatic textile system according to claim 1 wherein the first of the plurality of grid areas has limited stretch capability in both x and y axes directions.

4. A pneumatic textile system capable of transforming from a two-dimensional structure to a three-dimensional structure under pneumatic pressure, the pneumatic textile system comprising:

a seamless knit fabric having a grid configuration defining a plurality of grid areas, a first of the plurality of grid areas having a tensile strength that is different from a second of the plurality of grid areas; and

a pneumatic bladder member disposed along at least a portion of a boundary between adjacent ones of the plurality of grid areas, the pneumatic bladder member being inflatable to exert a force on the seamless knit fabric,

wherein upon inflation of the pneumatic bladder member the force is exerted on the seamless knit fabric such that the first of the plurality of grid area assumes a shape different than the second of the plurality of grid areas resulting in a three-dimensional structure transformation, wherein the first of the plurality of grid areas has alternate miss stitches resulting in limited stretch capability in only an x axis direction.

5. A pneumatic textile system capable of transforming from a two-dimensional structure to a three-dimensional structure under pneumatic pressure, the pneumatic textile system comprising:

a seamless knit fabric having a grid configuration defining a plurality of grid areas, a first of the plurality of grid areas having a tensile strength that is different from a second of the plurality of grid areas; and

a pneumatic bladder member disposed along at least a portion of a boundary between adjacent ones of the plurality of grid areas, the pneumatic bladder member being inflatable to exert a force on the seamless knit fabric,

wherein upon inflation of the pneumatic bladder member the force is exerted on the seamless knit fabric such that the first of the plurality of grid area assumes a shape different than the second of the plurality of grid areas resulting in a three-dimensional structure transformation, wherein the seamless knit fabric is configured to include miss stitches that affect the stretch capability of the fabric.

6. The pneumatic textile system according to claim 1 wherein the seamless knit fabric is made of polyester yarn.

7. A pneumatic textile system capable of transforming from a two-dimensional structure to a three-dimensional structure under pneumatic pressure, the pneumatic textile system comprising:

a seamless knit fabric having a grid configuration defining a plurality of grid areas, a first of the plurality of grid areas having a tensile strength that is different from a second of the plurality of grid areas; and

a pneumatic bladder member disposed along at least a portion of a boundary between adjacent ones of the plurality of grid areas, the pneumatic bladder member being inflatable to exert a force on the seamless knit fabric,

wherein upon inflation of the pneumatic bladder member the force is exerted on the seamless knit fabric such that the first of the plurality of grid area assumes a shape different than the second of the plurality of grid areas resulting in a three-dimensional structure transformation, wherein the seamless knit fabric is made of a combination of polyester and nylastic yarn where the nylastic yarn is utilized to accentuate the degree of bending when inflated.

8. The pneumatic textile system according to claim 1 wherein the first of the plurality of grid areas has alternate miss stitches resulting in limited stretch capability in only an x axis direction.

9. The pneumatic textile system according to claim 1 wherein the seamless knit fabric is configured to include miss stitches that affect the stretch capability of the fabric.

10. The pneumatic textile system according to claim 4 wherein the pneumatic bladder member is disposed within a tube house slot extending along the boundary between said adjacent ones of the plurality of grid areas.

11. The pneumatic textile system according to claim 4 wherein the plurality of grid areas are configured to include diagonal grid areas having a tensile zone greater than at least one of a remaining grid area.

12. The pneumatic textile system according to claim 4 wherein the first of the plurality of grid areas has limited stretch capability in both x and y axes directions.

13. The pneumatic textile system according to claim 4 wherein the seamless knit fabric is made of polyester yarn.

14. The pneumatic textile system according to claim 5 wherein the pneumatic bladder member is disposed within a tube house slot extending along the boundary between said adjacent ones of the plurality of grid areas.

15. The pneumatic textile system according to claim 5 wherein the plurality of grid areas are configured to include diagonal grid areas having a tensile zone greater than at least one of a remaining grid area.

16. The pneumatic textile system according to claim 5 wherein the first of the plurality of grid areas has limited stretch capability in both x and y axes directions.

17. The pneumatic textile system according to claim 5 wherein the seamless knit fabric is made of polyester yarn.

18. The pneumatic textile system according to claim 7 wherein the pneumatic bladder member is disposed within a tube house slot extending along the boundary between said adjacent ones of the plurality of grid areas.

19. The pneumatic textile system according to claim 7 wherein the plurality of grid areas are configured to include diagonal grid areas having a tensile zone greater than at least one of a remaining grid area.

20. The pneumatic textile system according to claim 7 wherein the first of the plurality of grid areas has limited stretch capability in both x and y axes directions.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 9, 2019
From: WANG, WEI-CHANG ADAM; AHLQUIST, SEAN, MR.
To: THE REGENTS OF THE UNIVERSITY OF MICHIGAN
Reel/Frame 050008/0060 →
Continuity (2)
Provisional Application 62443938 · Jan 9, 2017
Related Publication 20220003251A1 · Jan 6, 2022