IP Library Granted Patent US 10,589,300
Granted Patent B2
US 10,589,300 · App. 15/460,729 · Granted Mar 17, 2020

Coating system and method

Inventors: Bernard Patrick Bewlay (Niskayuna, NY); Ambarish Jayant Kulkarni (Niskayuna, NY); Byron Pritchard (Cincinnati, OH); Krzysztof Lesnicki (Niskayuna, NY); Hrishikesh Keshavan (Niskayuna, NY); Mehmet Dede (Cincinnati, OH); Larry Rosenzweig (Clifton Park, NY); Jay Morgan (Niskayuna, NY)
Assignee: GENERAL ELECTRIC COMPANY
B05B7/10B05B1/046B05B7/025B05B7/045B05B7/067B05B7/068B05B7/0876B05B7/0892B05B7/1686B05B12/00B64F5/40F01D5/005B05B13/0431F05D2230/30F05D2230/72F05D2260/80F05D2300/611
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,589,300
App. No.
15/460,729
Granted
Mar 17, 2020
Kind
B2
Abstract

An atomizing spray device includes a housing having plural inlets and one or more outlets fluidly coupled with each other by an interior chamber. The inlets include a first inlet shaped to receive a first fluid and a second inlet shaped to receive a slurry of ceramic particles and a second fluid. The interior chamber in the housing is shaped to mix the first fluid received via the first inlet with the slurry received via the second inlet inside the housing to form a mixture in a location between the inlets and the one or more outlets. The interior chamber in the housing also is shaped to direct the mixture formed inside the housing as droplets outside of the housing via the one or more outlets such that, based on a discharged amount of the first fluid in the droplets, the first fluid promotes evaporation of the second fluid as the droplets traverse from the housing toward a surface of a component.

Claims (20)

1. An atomizing spray device comprising:

a housing having plural inlets and one or more outlets fluidly coupled with each other by an interior chamber, the inlets including a first inlet shaped to receive a first fluid and a second inlet shaped to receive a slurry of ceramic particles and a second fluid, the slurry comprising at least a liquid and a solid, the housing having separate first and second conduits, the first conduit defined by a first chamber disposed in the housing, the first conduit receiving the first fluid from the first inlet, and the second conduit defined by a second chamber disposed in the housing, the second conduit receiving the slurry from the second inlet, wherein the first conduit and the second conduit are both helically shaped about a central axis of the interior chamber, with the first chamber of the first conduit extending helically around an exterior of the second chamber of the second conduit,

wherein the interior chamber in the housing is shaped to mix the first fluid received via the first inlet with the slurry received via the second inlet inside the housing to form a mixture in a location between the inlets and the one or more outlets, the interior chamber in the housing also shaped to direct the mixture formed inside the housing as droplets outside of the housing via the one or more outlets such that, based on a discharged amount of the first fluid in the droplets, the first fluid promotes evaporation of the second fluid as the droplets traverse from the housing toward a surface of a component.

2. The atomizing spray device of claim 1 , wherein the first fluid includes air.

3. The atomizing spray device of claim 1 , wherein the inlets are located in a first surface of the housing and the one or more outlets are located in a second surface of the housing that intersects the first surface.

4. The atomizing spray device of claim 1 , wherein the housing includes at least two of the outlets located in the housing to direct the mixture in opposite directions out of the housing.

5. The atomizing spray device of claim 1 , wherein the one or more outlets are located in the housing to direct the mixture in at least one direction that is perpendicular to a direction in which the first fluid or the second fluid is received into the inlets.

6. The atomizing spray device of claim 1 , wherein the one or more outlets are located in the housing to direct the mixture in at least one direction that is oriented at an acute angle relative to a direction in which the first fluid or the second fluid is received into the inlets.

7. The atomizing spray device of claim 1 , wherein the chamber in the housing is shaped to mix the first fluid and the slurry in a location that is midway between the inlets and the one or more outlets in the housing.

8. The atomizing spray device of claim 1 , wherein the chamber in the housing is shaped to mix the first fluid and the slurry in a location that is closer to the one or more outlets than the inlets.

9. The atomizing spray device of claim 1 , wherein the at least one outlet is oval-shaped.

10. The atomizing spray device of claim 1 , wherein the first and second inlets define separate openings into the chamber in the housing, with the first inlet encircling the second inlet at one end of the housing.

11. The atomizing spray device of claim 1 , wherein the one or more outlets of the housing are shaped to spray the mixture onto the surface of the component at a standoff distance of at least two centimeters.

12. An atomizing spray device comprising:

a housing having plural inlets through a first surface of the housing and one or more outlets through a different, second surface of the housing, the housing including an interior chamber that fluidly couples the inlets with the one or more outlets, the inlets including a first inlet shaped to receive a first fluid and a second inlet shaped to receive a slurry of ceramic particles and a second fluid, the slurry comprising at least a liquid and a solid, the housing having separate first and second conduits, the first conduit defined by a first chamber disposed in the housing, the first conduit receiving the first fluid from the first inlet, and the second conduit defined by a second chamber disposed in the housing, the second conduit receiving the slurry from the second inlet, wherein the first conduit and the second conduit are both helically shaped about a central axis of the interior chamber, with the first chamber of the first conduit extending helically around an exterior of the second chamber of the second conduit,

wherein the interior chamber in the housing is shaped to mix the first fluid received via the first inlet with the slurry received via the second inlet inside the housing to form a mixture in a location between the inlets and the one or more outlets, the interior chamber in the housing also shaped to direct the mixture formed inside the housing as droplets outside of the housing via the one or more outlets such that, based on a discharged amount of the first fluid in the droplets, the first fluid promotes evaporation of the second fluid as the droplets traverse from the housing toward a surface of a component.

13. The atomizing spray device of claim 12 , wherein the first fluid includes an alcohol.

14. The atomizing spray device of claim 12 , wherein the inlets are located in the first surface of the housing and the one or more outlets are located in the second surface of the housing that intersects the first surface.

15. The atomizing spray device of claim 12 , wherein the housing includes at least two of the outlets located in the housing to direct the mixture in opposite directions out of the housing.

16. The atomizing spray device of claim 12 , wherein the at least one outlet is oval-shaped.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2017
From: BEWLAY, BERNARD PATRICK; KULKARNI, AMBARISH JAYANT; PRITCHARD, BYRON; LESNICKI, KRZYSZTOF; KESHAVAN, HRISHIKESH; DEDE, MEHMET; ROSENZWEIG, LARRY; MORGAN, JAY
To: GENERAL ELECTRIC COMPANY
Reel/Frame 041598/0504 →
Continuity (3)
Continuation In Part 15368185 · Dec 2, 2016
Continuation In Part 15368242 · Dec 2, 2016
Related Publication 20180154381A1 · Jun 7, 2018
Cited By (1)
US 12,582,999