IP Library Granted Patent US 9,732,234
Granted Patent B2
US 9,732,234 · App. 14/936,465 · Granted Aug 15, 2017

Acoustic paint

Inventor: Theodore W. Denney, III (San Clemente, CA)
C09D5/032C09D1/00G10K11/20
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Quick Facts
Patent No.
US 9,732,234
App. No.
14/936,465
Granted
Aug 15, 2017
Kind
B2
Abstract

An acoustic paint to be applied to the walls of a room in which a source of audible sound is located to improve the acoustic characteristics of the room and correspondingly improve the clarity (e.g., the warmth, richness and detail) of the sound that is generated by the source and detected by the ear of a listener located within the room. The acoustic paint includes a paint foundation into which is mixed a powdered piezoelectric material or a powdered non-piezoelectric crystalline material having a resonant frequency so that the powdered material will react to the sound generated within the room and thereby control the room acoustics depending upon the type of material and the resonant frequency thereof. An optional catalyst, such as an electrically conductive powdered graphite or powdered graphene, is mixed into the paint foundation. The mixture is stirred and then applied to the walls of the room by means of a brush, a roller, or the like.

Claims (12)

1. An acoustic paint to be applied to at least some of the walls of a room in which a source of audible sound is located in order to improve the acoustic characteristics of the room and thereby improve the clarity of the sound that is generated by the sound source and detected by a listener in the room, said acoustic paint comprising a paint foundation into which is mixed a finely powdered crystalline material having a particle size lying in a range between 4.0 μm to 60 μm and a resonant frequency so that the crystalline material will resonate in response to the sound generated by the source.

2. The acoustic paint recited in claim 1 , wherein said powdered crystalline material is a piezoelectric material.

3. The acoustic paint recited in claim 2 , wherein said piezoelectric material is quartz.

4. The acoustic paint recited in claim 1 , wherein said powdered crystalline material is one of a group of crystalline materials consisting of calcite, tourmaline and carborundum.

5. The acoustic paint recited in claim 1 , further comprising an electrically conductive powdered catalyst that is mixed with the crystalline material into the paint foundation so as to enhance the responsiveness of the reaction of the crystalline material to the sound generated by the source thereof.

6. The acoustic paint recited in claim 5 , wherein the electrically conductive powdered catalyst is one of either graphite or graphene.

7. A method for treating at least one wall of a room in which a source of audible sound is located for improving the acoustic characteristics of the room and the clarity of the sound that is generated by the sound source and detected by a listener within the room, said method comprising the steps of:

making an acoustic paint mixture by combining with a paint foundation a finely powdered crystalline material having a particle size lying in a range between 4.0 μm to 60 μm and a resonant frequency so that the crystalline material will resonate in response to the sound generated by the source; and

applying the acoustic paint mixture to the at least one wall of the room.

8. The method recited in claim 7 , wherein the powdered crystalline material is a piezoelectric material.

9. The method recited in claim 7 , comprising the additional step of adding an electrically conductive powdered catalyst to the mixture of said powdered crystalline material and said paint foundation prior to the step of applying said acoustic paint mixture to the at least one wall of the room.

10. The method recited in claim 9 , comprising the additional step of selecting said electrically conductive powdered catalyst from one of either graphite or graphene.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2018
From: DENNEY, THEODORE W., III
To: UEF LABS, LLC
Reel/Frame 046015/0732 →
Continuity (1)
Related Publication 20170130059A1 · May 11, 2017