IP Library Granted Patent US 10,998,488
Granted Patent B2
US 10,998,488 · App. 14/439,394 · Granted May 4, 2021

Piezoelectric stack

Inventors: Tetsuya Komeda (Gojo, JP); Yuki Yamanaka (Gojo, JP); Yoshiro Tajitsu (Suita, JP)
Assignees: Valqua, Ltd.; A School Corporation Kansai University
H01L41/193D06N3/0006D06N3/0011D06N3/0056D06N3/047H01G7/02H01G7/028H01L41/0533H01L41/45D06N2201/029D06N2203/044D06N2205/20D06N2209/04D06N2213/02
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Quick Facts
Patent No.
US 10,998,488
App. No.
14/439,394
Granted
May 4, 2021
Kind
B2
Abstract

A piezoelectric stack includes a porous resin sheet, and a surface coating layer disposed on an exterior surface of the porous resin sheet, the exterior surface including at least one of a front surface and a back surface of the porous resin sheet, the surface coating layer having a volume resistivity of not less than 1×10 13 Ω·cm, the porous resin sheet and the surface coating layer having different elastic moduli.

Claims (18)

1. A piezoelectric stack comprising:

a piezoelectric sheet comprising a nonwoven fabric or a woven fabric formed of fibers comprising an organic polymer, and

a surface coating layer disposed on an exterior surface of the piezoelectric sheet, the exterior surface including at least one of a front surface and a back surface of the piezoelectric sheet,

the surface coating layer having a volume resistivity of not less than 1×10 13 Ω·cm, the piezoelectric sheet and the surface coating layer having different elastic moduli,

wherein the nonwoven fabric and the woven fabric are other than a stretched porous film,

wherein a coefficient of variation of the diameters of the fibers is not more than 0.7, and

wherein an average fiber diameter of the fibers is 0.05 to 1.3 μm.

2. The piezoelectric stack according to claim 1 , wherein the difference in elastic modulus between the piezoelectric sheet and the surface coating layer is not less than 10 MPa.

3. The piezoelectric stack according to claim 1 , wherein the surface coating layer has a relative dielectric constant of 2 to 100.

4. The piezoelectric stack according to claim 1 , wherein the surface coating layer covers the front and back surfaces and end surfaces of the piezoelectric sheet.

5. The piezoelectric stack according to claim 1 , wherein the piezoelectric sheet has a porosity of not less than 60%.

6. The piezoelectric stack according to claim 1 , wherein the organic polymer is an organic polymer free from a molecular dipole or a crystal dipole.

7. The piezoelectric stack according to claim 1 , wherein the organic polymer is polytetrafluoroethylene.

8. A piezoelectric stack comprising:

a piezoelectric sheet comprising a nonwoven fabric or a woven fabric formed of fibers comprising an inorganic material, the piezoelectric sheet having a porosity of not less than 60%, wherein the nonwoven fabric and the woven fabric are other than a stretched porous film, and wherein an average fiber diameter of the fibers is 0.05 to 0.9 μm, and

a surface coating layer disposed on an exterior surface of the piezoelectric sheet, the exterior surface including at least one of a front surface and a back surface of the piezoelectric sheet,

the surface coating layer having a volume resistivity of not less than 1×10 13 Ω·cm, the piezoelectric sheet and the surface coating layer having different elastic moduli.

9. The piezoelectric stack according to claim 8 , wherein the surface coating layer is disposed on the front and back surfaces and end surfaces of the piezoelectric sheet.

Assignments (2)
CHANGE OF NAME Recorded Nov 8, 2018
From: NIPPON VALQUA INDUSTRIES, INC.
To: VALQUA, LTD.
Reel/Frame 047455/0209 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2015
From: KOMEDA, TETSUYA; YAMANAKA, YUKI; TAJITSU, YOSHIRO
To: NIPPON VALQUA INDUSTRIES, LTD.; A SCHOOL CORPORATION KANSAI UNIVERSITY
Reel/Frame 035526/0811 →
Priority Claims (3)
JP 2012-240411 · Oct 31, 2012 · national
JP 2013-027856 · Feb 15, 2013 · national
JP 2013-144507 · Jul 10, 2013 · national
Continuity (1)
Related Publication 20150295163A1 · Oct 15, 2015