IP Library › Granted Patent US 10,950,779
Granted Patent B2
US 10,950,779 · App. 15/569,878 · Granted Mar 16, 2021

Piezoelectric element and device using same

Inventors: Yoshiro Tajitsu (Suita, JP); Yuhei Ono (Osaka, JP); Tomoyoshi Yamamoto (Osaka, JP); Shunsuke Kanematsu (Osaka, JP); Satoko Yoshizaki (Osaka, JP); Suguru Ozawa (Osaka, JP)
Assignees: TEIJIN LIMITED; KANSAI UNIVERSITY
H01L41/082D03D1/0088G01L1/16G06F3/0414H01L41/047H01L41/0986H01L41/1132H01L41/193H01L41/29H01L41/45
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Quick Facts
Patent No.
US 10,950,779
App. No.
15/569,878
Granted
Mar 16, 2021
Kind
B2
Abstract

The purpose of the present invention is to provide a fibrous piezoelectric element which enables a large electric signal to be drawn out by stress produced by relatively small deformation. A piezoelectric element includes a braid composed of a conductive fiber and a piezoelectric fiber. In the braid, the conductive fiber is a core, and the piezoelectric fiber is a covering fiber that covers the periphery of the conductive fiber.

Claims (19)

1. A piezoelectric element including a braid comprising a conductive fiber, an insulating fiber and piezoelectric fibers, the braid having the conductive fiber as the core, and the insulating fiber and the piezoelectric fibers being covering fibers that cover the periphery of the conductive fiber, wherein the flexural rigidity of the conductive fiber is no greater than 0.05×10 −4 N·m 2 /m, wherein the piezoelectric fibers comprise polylactic acid.

2. The piezoelectric element according to claim 1 , wherein the conductive fiber is a metal coated organic fiber.

3. The piezoelectric element according to claim 1 , wherein the piezoelectric fibers comprise poly-L-lactic acid or poly-D-lactic acid with an optical purity of 99% or greater.

4. The piezoelectric element according to claim 1 , wherein the piezoelectric fibers are uniaxially oriented and include crystals.

5. The piezoelectric element according to claim 1 , which detects the amount of stress applied to the covering fibers and/or the location at which it is applied.

6. The piezoelectric element according to claim 5 , wherein the stress to be detected is frictional force between the surfaces of the covering fibers and the surface of the contacting object.

7. The piezoelectric element according to claim 5 , wherein the stress to be detected is resistance in the direction perpendicular to the surfaces or tip sections of the covering fibers.

8. A piezoelectric sensor using the piezoelectric element according to claim 1 .

9. A device comprising:

a piezoelectric sensor according to claim 8 ,

amplification means that amplifies an electrical signal outputted from the piezoelectric sensor in response to applied pressure, and

output means that outputs the electrical signal that has been amplified by the amplification means.

10. The device according to claim 9 , the device further comprising transmission means that transmits the electrical signal that has been outputted from the output means, to an external device.

11. A device comprising:

the piezoelectric sensor according to claim 8 ,

output means that outputs an electrical signal from the piezoelectric sensor in response to applied pressure, and

transmission means that transmits the electrical signal outputted from the output means, to an external device.

12. The piezoelectric element according to claim 1 , wherein the flexural rigidity of the conductive fiber is no greater than 0.02×10 −4 N·m 2 /m.

13. The piezoelectric element according to claim 1 , wherein the conductive fiber is carbon fiber.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2023
From: TEIJIN LIMITED
To: TEIJIN FRONTIER CO., LTD.
Reel/Frame 065237/0764 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2017
From: TAJITSU, YOSHIRO; ONO, YUHEI; YAMAMOTO, TOMOYOSHI; KANEMATSU, SHUNSUKE; YOSHIZAKI, SATOKO; OZAWA, SUGURU
To: TEIJIN LIMITED; KANSAI UNIVERSITY
Reel/Frame 044158/0479 →
Priority Claims (5)
JP JP2015-093632 · Apr 30, 2015 · national
JP JP2015-093687 · Apr 30, 2015 · national
JP JP2015-093695 · Apr 30, 2015 · national
JP JP2015-257491 · Dec 28, 2015 · national
JP JP2015-257495 · Dec 28, 2015 · national
Continuity (1)
Related Publication 20180108826A1 · Apr 19, 2018