IP Library Granted Patent US 9,994,953
Granted Patent B2
US 9,994,953 · App. 12/702,775 · Granted Jun 12, 2018

Portable dry nanocoating machine

Inventors: Andrew Tye Hunt (Atlanta, GA); Ian Campbell (Newnan, GA); Holly E. Harris (Fairburn, GA)
Assignee: nGimat Co.
C23C16/401B05B7/06B05C11/1005Y10T428/24355
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Quick Facts
Patent No.
US 9,994,953
App. No.
12/702,775
Granted
Jun 12, 2018
Kind
B2
Abstract

Nano technologies are widely recognized as enabling enhanced and new functionality in a wide range of applications and products. Many different ways have been developed to create and apply these nanomaterials. One method for making dry nanocoatings is vapor deposition. There exists a need for a portable machine that can apply nanocoatings to a wide of range of surfaces in a wide range of locations. The present invention comprises such a portable machine that can apply nanocoatings to a wide of range of surfaces in a wide range of locations.

Claims (15)

1. The dry-deposition nanocoating machine that is portable, comprising:

a flame-based machine;

an exhaust shroud around a deposition area of the flame-based machine to remove spent deposition gasses and material;

wheels, wherein the flame-based machine is mounted on the wheels and movable by a human operator; and

an electronic control system configured to control the flame-based machine;

wherein the flame-based machine is in communication with the electronic control system and configured to apply a nanocoating layer, wherein the nanocoating layer applied by the flame-based machine has a thickness of less than 100 nanometers.

2. The dry-deposition nanocoating machine of claim 1 , where the flame-based machine is electronically powered by 2200 W or less.

3. The dry-deposition nanocoating machine of claim 2 , where the flame-based machine is electrically powered by 1600 W or less.

4. The dry-deposition nanocoating machine of claim 1 , where the flame-based machine uses no bottled oxygen.

5. The dry-deposition nanocoating machine of claim 1 , further comprising a standard, widely available pressurized fuel gas bottle to generate a pilot flame.

6. The dry-deposition nanocoating machine of claim 1 , where the flame-based machine uses no bottled inert gas.

7. The dry-deposition nanocoating machine of claim 1 , where the electronic control systems includes an auto igniter and flame sensor.

8. The dry-deposition nanocoating machine of claim 1 , further comprising an air knife to cool and direct deposition gases to a surface to be coated.

9. The dry-deposition nanocoating machine of claim 1 , where said flame-based machine uses precursors dissolved in a flammable liquid to form a primary deposition flame and vapors from which the nanocoating layer is formed.

10. The dry-deposition nanocoating machine of claim 9 , wherein the flame-based machine uses a combustion chemical vapor deposition (CCVD) process or a nanospray combustion process.

Assignments (2)
MERGER AND CHANGE OF NAME Recorded Oct 5, 2022
From: NGIMAT CO.; ENGI-MAT CO.
To: ENGI-MAT CO.
Reel/Frame 061320/0868 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 28, 2018
From: HUNT, ANDREW TYE; CAMPBELL, IAN; HARRIS, HOLLY E.
To: NGIMAT CO.
Reel/Frame 045067/0758 →
Continuity (2)
Provisional Application 61151358 · Feb 10, 2009
Related Publication 20100285230A1 · Nov 11, 2010