IP Library › Granted Patent US 8,840,559
Granted Patent B2
US 8,840,559 · App. 12/921,175 · Granted Sep 23, 2014

Organic piezoelectric material, ultrasonic oscillator using the material, method for manufacturing the ultrasonic oscillator, ultrasonic probe, and ultrasonic medical diagnostic imaging device

Inventor: Kiyokazu Morita (Tokyo, JP)
Assignee: Konica Minolta Medical & Graphic, Inc.
A61B8/00A61B8/4483C08G18/7692B06B1/06H01L41/193C08G18/3271H01L41/45A61B8/4405C08G18/3814
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Quick Facts
Patent No.
US 8,840,559
App. No.
12/921,175
Granted
Sep 23, 2014
Kind
B2
Abstract

Provided is an organic piezoelectric material which has excellent piezoelectric property, heat resistance property in particular. An ultrasonic oscillator, which is to be used for an ultrasonic medical diagnostic imaging device which can receive high frequencies at high sensitivity and is suitable for harmonic imaging techniques, a method for manufacturing such oscillator, and an ultrasonic probe are also provided. The ultrasonic medical diagnostic imaging device is provided by sing such oscillator, method and probe. The organic piezoelectric material is characterized by containing empty particles having an average particle diameter of 10 μm or less.

Claims (26)

1. A method for producing an ultrasonic oscillator, comprising: the step of carrying out a polarization treatment to an organic piezoelectric material wherein the organic piezoelectric material comprises hollow particles having an average particle diameter of 10 μm or less,

the hollow particles are made of at least one resin selected from the group consisting of a polystyrene resin, an acrylic resin, a styrene acrylic resin, a polyethylene resin, a polypropylene resin, a polyacetal resin, a chlorinated polyether resin, polyvinyl chloride resin, a phenol-formaldehyde resin, a urea-formaldehyde resin, a melamine-formaldehyde resin, a furan resin and an unsaturated polyester resin, and the polarization treatment is carried out at one of the moments of:

before providing two electrodes on both surfaces of the organic piezoelectric material;

after providing one of the two electrodes on one of the surfaces of the organic piezoelectric material; and

after providing the two electrodes on the both surfaces of the organic piezoelectric material.

2. The method for producing the ultrasonic oscillator of claim 1 , wherein the polarization treatment is a voltage applying treatment or a corona discharge treatment.

3. The method of claim 1 , wherein the organic piezoelectric material, further comprising:

an organic polymer which contains vinylidene fluoride as a main component, or

an organic polymer which contains a compound having a urea bond or a thiourea bond in the molecule.

4. The method of claim 1 , wherein the organic piezoelectric material has an electromechanical coupling coefficient thereof of 0.3 or more.

5. An ultrasonic probe comprising an ultrasonic transmitting oscillator and an ultrasonic receiving oscillator, wherein the ultrasonic transmitting oscillator or for the ultrasonic receiving oscillator comprises an ultrasonic oscillator produced using an organic piezoelectric material, wherein the organic piezoelectric material comprises hollow particles having an average particle diameter of 10 μm or less,

the hollow particles are made of at least one resin selected from the group consisting of a polystyrene resin, an acrylic resin, a styrene acrylic resin, a polyethylene resin, a polypropylene resin, a polyacetal resin, a chlorinated polyether resin, polyvinyl chloride resin, a phenol-formaldehyde resin, a urea-formaldehyde resin, a melamine-formaldehyde resin, a furan resin and an unsaturated polyester resin.

6. The probe of claim 5 , wherein the organic piezoelectric material further comprising:

an organic polymer which contains vinylidene fluoride as a main component, or

an organic polymer which contains a compound having a urea bond or a thiourea bond in the molecule.

7. The probe of claim 5 , wherein the organic piezoelectric material has an electromechanical coupling coefficient thereof of 0.3 or more.

8. An ultrasonic medical diagnostic imaging device comprising:

an electric signal emitting circuit;

an ultrasonic probe provided with a plurality of oscillators which emit an ultrasonic wave to a test object after receiving the electric signal, and produce a received signal corresponding to a reflected wave from the test object; and

an image processing circuit which produces an image of the test object by using the received signal produced by the ultrasonic probe,

wherein the ultrasonic probe is provided with an ultrasonic transmitting oscillator and an ultrasonic receiving oscillator, and at least one of the ultrasonic transmitting oscillator and the ultrasonic receiving oscillator is an ultrasonic oscillator produced with an organic piezoelectric material wherein the organic piezoelectric material comprises hollow particles having an average particle diameter of 10 μm or less,

the hollow particles are made of at least one resin selected from the group consisting of a polystyrene resin, an acrylic resin, a styrene acrylic resin, a polyethylene resin, a polypropylene resin, a polyacetal resin, a chlorinated polyether resin, polyvinyl chloride resin, a phenol-formaldehyde resin, a urea-formaldehyde resin, a melamine-formaldehyde resin, a furan resin and an unsaturated polyester resin.

9. The device of claim 8 , wherein the organic piezoelectric material further comprising:

an organic polymer which contains vinylidene fluoride as a main component, or

an organic polymer which contains a compound having a urea bond or a thiourea bond in the molecule.

10. The device of claim 8 , wherein the organic piezoelectric material has an electromechanical coupling coefficient thereof of 0.3 or more.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2010
From: MORITA, KIYOKAZU
To: KONICA MINOLTA MEDICAL & GRAPHIC, INC.
Reel/Frame 024941/0892 →
Priority Claims (1)
JP 2008-065534 · Mar 14, 2008 · national
Continuity (1)
Related Publication 20110021916A1 · Jan 27, 2011