IP Library Granted Patent US 10,369,579
Granted Patent B1
US 10,369,579 · App. 16/121,115 · Granted Aug 6, 2019

Multi-orifice nozzle for droplet atomization

Inventors: Jeff Badovick (Ormond Beach, FL); Rafael Rodriguez (Ormond Beach, FL)
Assignee: Zyxogen, LLC
B05B7/061B05B1/06B05B1/14B05B7/06B05B7/0815
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Quick Facts
Patent No.
US 10,369,579
App. No.
16/121,115
Granted
Aug 6, 2019
Kind
B1
Abstract

The multi-orifice nozzle for droplet atomization includes a head having a plurality of liquid supply channels, a plurality of liquid supply channel entrance openings, and a plurality of liquid supply channel exit openings. A pressure cap is positioned proximate the head, the pressure cap defining a pressure chamber and a plurality of pressure chamber exit orifices defined in the pressure cap. An alignment spacer is defined on the head and interfaces with the pressure cap such that each of the plurality of pressure chamber exit orifices is aligned with a corresponding liquid supply channel exit opening of the plurality of liquid supply channel exit openings. The alignment spacer prevents relative rotation between the head and the pressure cap and space each of the plurality of pressure chamber exit orifices from the corresponding liquid supply channel exit opening of the plurality of liquid supply channel exit openings.

Claims (49)

1. A multi-orifice nozzle for droplet atomization, comprising:

a head defining an exterior head surface, the head having a plurality of liquid supply channels, a plurality of liquid supply channel entrance openings, and a plurality of liquid supply channel exit openings such that liquid enters the plurality of liquid supply channels at the liquid supply channel entrance openings and exits the plurality of liquid supply channels at the liquid supply channel exit openings;

a pressure cap positioned proximate the head, the pressure cap defining a pressure chamber;

a plurality of pressure chamber exit orifices defined in the pressure cap downstream of the plurality of liquid supply channel exit openings such that gas passing through the pressure chamber toward the plurality of pressure chamber exit orifices travels past the plurality of liquid supply channel exit openings; and

an alignment spacer defined on the head, wherein the alignment spacer interfaces with the pressure cap such that each of the plurality of pressure chamber exit orifices is aligned with a corresponding liquid supply channel exit opening of the plurality of liquid supply channel exit openings,

wherein the alignment spacer prevents relative rotation between the head and the pressure cap, and

wherein the alignment spacer spaces each of the plurality of pressure chamber exit orifices from the corresponding liquid supply channel exit opening of the plurality of liquid supply channel exit openings.

2. The multi-orifice nozzle of claim 1 , wherein:

the exterior head surface includes a frustum-shaped portion; and

the plurality of liquid supply channel exit openings are spaced on the frustum-shaped portion of the exterior head surface.

3. The multi-orifice nozzle of claim 1 , wherein the head defines a loading chamber.

4. The multi-orifice nozzle of claim 3 , wherein the plurality of liquid supply channel entrance openings are positioned adjacent the loading chamber.

5. The multi-orifice nozzle of claim 1 , wherein the plurality of liquid supply channel entrance openings have a first diameter and the plurality of liquid supply channel exit openings have a second diameter less than the first diameter.

6. The multi-orifice nozzle of claim 1 , wherein:

the head is disposed about a head axis,

the plurality of liquid supply channels are disposed about a plurality of liquid supply channel axes; and

the plurality of liquid supply channel axes are positioned at an angle greater than 0 degrees and less than 180 degrees relative to the head axis.

7. The multi-orifice nozzle of claim 1 , wherein the alignment spacer is a non-circular protrusion.

8. The multi-orifice nozzle of claim 7 , wherein the pressure cap includes an alignment spacer receiver operable to receive the alignment spacer.

9. The multi-orifice nozzle of claim 1 , wherein:

the pressure cap includes an interior pressure cap end wall axially offset from each of the plurality of liquid supply channel exit openings by a distance H;

each of the plurality of pressure chamber exit orifices includes a pressure chamber exit orifice diameter D; and

the ratio of H divided by D is less than about 0.25.

10. A liquid dispensing apparatus for droplet atomization comprising:

a dispensing body having a receiving end and a dispensing end, the dispensing body including a liquid duct and a gas duct defined in the dispensing body;

a head positioned proximate the dispensing end of the dispensing body, the head having a plurality of liquid supply channels and a plurality of liquid supply channel exit openings such that liquid travelling from the liquid duct toward the plurality of liquid supply channel exit openings passes through the plurality of liquid supply channels;

a pressure cap positioned proximate the dispensing end of the dispensing body and exterior the head relative to the dispensing body, the pressure cap defining a pressure chamber, the pressure chamber being in fluid communication with the gas duct;

a plurality of pressure chamber exit orifices defined in the pressure cap and aligned with the plurality of liquid supply channel exit openings such that gas passing from the gas duct toward the plurality of pressure chamber exit orifices travels past the plurality of liquid supply channel exit openings; and

an alignment spacer on the head, the alignment spacer operable to interface with the pressure cap such that each of the plurality of pressure chamber exit orifices is aligned with a corresponding liquid supply channel exit opening of the plurality of liquid supply channel exit openings,

wherein the alignment spacer axially spaces each of the plurality of pressure chamber exit orifices from the corresponding liquid supply channel exit opening of the plurality of liquid supply channel exit openings.

11. The liquid dispensing apparatus of claim 10 , wherein the dispensing body and the head define a loading chamber such that liquid passing from the liquid duct to the plurality of liquid supply channels passes through the loading chamber.

12. The liquid dispensing apparatus of claim 11 , wherein the head further comprises a plurality of liquid supply channel entrance openings corresponding to the plurality of liquid supply channels, the plurality of liquid supply channel entrance openings positioned adjacent the loading chamber.

13. The liquid dispensing apparatus of claim 11 , wherein the loading chamber is formed in the head.

14. The liquid dispensing apparatus of claim 10 , wherein:

the head defines an exterior head surface having a frustum-shaped portion; and

the plurality of liquid supply channel exit openings are spaced on the frustum-shaped portion of the exterior head surface.

15. The liquid dispensing apparatus of claim 10 , further comprising a pressure cap fastener operable to retain the pressure cap to the dispensing body.

16. The liquid dispensing apparatus of claim 10 , wherein:

the liquid duct is disposed about a liquid duct axis;

the plurality of liquid supply channels are disposed about a plurality of liquid supply channel axes; and

the plurality of liquid supply channel axes are positioned at an angle greater than 0 degrees and less than 180 degrees relative to the liquid duct axis.

17. The liquid dispensing apparatus of claim 10 , further comprising a holder sleeve operable to retain the dispensing body.

18. The liquid dispensing apparatus of claim 17 , further comprising:

a plurality of recesses axially spaced along the dispensing body; and

a set fastener for selectively retaining the dispensing body to the holder sleeve at an adjustable position via one of the plurality of recesses.

19. The liquid dispensing apparatus of claim 10 , wherein:

the pressure cap includes an interior pressure cap end wall axially offset from each of the plurality of liquid supply channel openings by a distance H;

each of the plurality of pressure chamber exit orifices includes a pressure chamber exit orifice diameter D; and

the ratio of H divided by D is less than about 0.25.

Assignments (2)
SECURITY INTEREST Recorded May 26, 2021
From: ZYXOGEN, LLC
To: SIRROM PARTNERS, L.P.
Reel/Frame 056357/0284 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 17, 2018
From: BADOVICK, JEFF; RODRIGUEZ, RAFAEL
To: ZYXOGEN, LLC
Reel/Frame 047190/0796 →
Cited By (1)
US 12,686,018