IP Library › Granted Patent US 10,969,283
Granted Patent B2
US 10,969,283 · App. 16/008,805 · Granted Apr 6, 2021

Sensing textile

Inventors: Nancy E. Brown (New Braintree, MA); Sahas Rathi (Westborough, MA); Tzuyang Yu (Lowell, MA); Xingwei Wang (Lowell, MA); Pradeep Kurup (Lowell, MA); Jackson A. Ivey (Worcester, MA)
Assignees: SAINT-GOBAIN ADFORS CANADA, LTD.; UNIVERSITY OF MASSACHUSETTS
G01L1/242B32B23/10B32B27/12G01L1/246G01N21/81G02B6/022G02B6/06G02B6/3672D10B2101/06D10B2101/12D10B2331/04D10B2401/20D10B2403/0243
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Quick Facts
Patent No.
US 10,969,283
App. No.
16/008,805
Granted
Apr 6, 2021
Kind
B2
Abstract

A sensing textile includes at least one assembly of optical fiber filaments, wherein the sensing textile has a main direction and a cross direction, and wherein the at least one assembly of optical fiber filaments is oriented at any angle measured relative to the cross direction.

Claims (25)

1. A sensing textile comprising:

at least one assembly of optical fiber filaments, wherein the sensing textile has a main direction and a cross direction, and wherein the at least one assembly of optical fiber filaments is oriented at any angle measured relative to the cross direction, wherein the at least one assembly of optical fiber filaments measures a change in a value along a length of the optical fiber filament and along a cross-section, a surface, or combination thereof of a structure adjacent to the sensing textile, the change in the value corresponding to an environmental change comprising strain, temperature, or combination thereof along the cross-section, the surface, or combination thereof of the structure, wherein the sensing textile is a flexible fabric having a width of at least 0.25 meters.

2. The sensing textile of claim 1 , wherein the at least one assembly of optical fiber filaments comprises a single-mode optical fiber, a multi-mode optical fiber, or combination thereof.

3. The sensing textile of claim 1 , wherein the at least one assembly of optical fiber filaments is in communication with an interrogator.

4. The sensing textile of claim 1 , wherein the at least one assembly of optical fiber filaments comprises a plurality of filaments that are generally parallel to each other.

5. The sensing textile of claim 1 , wherein the at least one assembly of optical fiber filaments extend generally parallel to a main direction of the sensing textile, wherein the main direction is 90° relative to the cross direction.

6. The sensing textile of claim 1 , further comprising a second assembly of filaments, wherein the second assembly of filaments comprises a plurality of filaments that are generally parallel to each other and cross over the at least one assembly of optical fiber filaments at a crossing angle.

7. The sensing textile of claim 6 , wherein the at least one assembly of optical fiber filaments and the second assembly of filaments are knit, woven, laid, or combination thereof.

8. The sensing textile of claim 7 , wherein the second assembly of filaments comprises fiber filaments of an organic material, an inorganic material, or combination thereof.

9. The sensing textile of claim 7 , wherein the second assembly of filaments comprises an optical fiber filament.

10. The sensing textile of claim 6 , wherein the sensing textile comprises a coating to provide a bond between the at least one assembly of optical fiber filaments and the second assembly of filaments.

11. The sensing textile of claim 1 , wherein the at least one assembly of optical fiber filaments comprises a monofilament.

12. The sensing textile of claim 1 , wherein the at least one assembly of optical fiber filaments comprises a glass fiber, a polymer fiber, or a blend thereof.

13. The sensing textile of claim 12 , wherein the at least one assembly of optical fiber filaments comprise the blend of the glass fiber and the polymer fiber, wherein the glass fiber is a first sensor and the polymer fiber is a second sensor, wherein the first sensor measures a first environmental change and the second sensor measures a second environmental change, wherein the first environmental change is different than the second environmental change.

14. The sensing textile of claim 1 , further comprising a first carrier.

15. The sensing textile of claim 14 , wherein the first carrier comprises a fabric, a film, or combination thereof.

16. The sensing textile of claim 14 , wherein the first carrier comprises a coating to provide a bond between the first carrier and the at least one assembly of optical fiber filaments.

17. The sensing textile of claim 1 , further comprising a second carrier overlying the at least one assembly of optical fiber filaments.

18. The sensing textile of claim 1 , wherein the at least one assembly of optical fibers further measures humidity, gas, radiation, stress, or combination thereof.

19. A sensing textile comprising:

a carrier comprising a fabric, a film, or combination thereof; and

at least one assembly of optical fiber filaments overlying the carrier, the at least one assembly of optical fiber filaments comprising a plurality of optical fiber filaments that are generally parallel to each other, wherein the sensing textile has a main direction and a cross direction, and wherein the at least one assembly of optical fiber filaments is oriented in the main direction of the sensing textile, wherein the at least one assembly of optical fiber filaments measures a change in a value along a length of the optical fiber filament and along a cross-section, a surface, or combination thereof of a structure adjacent to the sensing textile, the change in the value corresponding to an environmental change comprising strain, temperature, or combination thereof along the cross-section, the surface, or combination thereof of the structure, wherein the sensing textile is a flexible fabric having a width of at least 0.25 meters.

20. A sensing textile comprising:

at least one assembly of optical fiber filaments including a plurality of optical fiber filaments that are generally parallel to each other, wherein the sensing textile has a main direction and a cross direction, and wherein the at least one assembly of optical fiber filaments is oriented in the main direction of the sensing textile, wherein the at least one assembly of optical fiber filaments measures a change in a value along a length of the optical fiber filament and along a cross-section, a surface, or combination thereof of a structure adjacent to the sensing textile, the change in the value corresponding to an environmental change comprising strain, temperature, or combination thereof along the cross-section, the surface, or combination thereof of the structure; and

a second assembly of filaments, wherein the second assembly of filaments comprises a plurality of filaments that are generally parallel to each other and cross over the at least one assembly of optical fiber filaments at a crossing angle, wherein the sensing textile is a flexible fabric having a width of at least 0.25 meters.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2019
From: BROWN, NANCY E.; RATHI, SAHAS; IVEY, JACKSON A.
To: SAINT-GOBAIN ADFORS CANADA, LTD.
Reel/Frame 048283/0435 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 8, 2019
From: YU, TZUYANG; WANG, XINGWEI; KURUP, PRADEEP
To: UNIVERSITY OF MASSACHUSETTS
Reel/Frame 048283/0566 →
Continuity (2)
Provisional Application 62521099 · Jun 16, 2017
Related Publication 20180364115A1 · Dec 20, 2018