IP Library › Granted Patent US 9,440,836
Granted Patent B2
US 9,440,836 · App. 14/200,081 · Granted Sep 13, 2016

Rotary cabonator

Inventors: Victor Henry Quittner (Brighton East, AU); William J. Moore (Lilburn, GA); Jonathan Kirschner (Powder Springs, GA); Ian Stewart Fitzpatrick (Elwood, AU)
Assignee: The Coca-Cola Company
B67D1/007A23L2/54B01F3/04439B01F3/04808B67D1/0021F04B9/02A23V2002/00B01F2215/0022
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Quick Facts
Patent No.
US 9,440,836
App. No.
14/200,081
Granted
Sep 13, 2016
Kind
B2
Abstract

The present application provides a rotary carbonator for use with a beverage dispensing system. The rotary carbonator may include an off-center carbonator chamber, a rotor positioned within the off-center carbonator chamber, and a number of vanes extending from the rotor. The vanes may define within the off-center carbonator chamber a first number of vane cavities with an increasing area and a second number of vane cavities with a decreasing area. A water inlet and a gas inlet may be positioned about the first vane cavities and a carbonated water outlet may be positioned about the second vane cavities.

Claims (27)

1. A rotary carbonator for use with a beverage dispensing system, comprising:

an off-center carbonator chamber;

a rotor positioned within the off-center carbonator chamber;

a plurality of vanes extending from the rotor;

the plurality of vanes defining within the off-center carbonator chamber a first plurality of vane cavities with an increasing area and a second plurality of vane cavities with a decreasing area;

a water inlet and a gas inlet positioned about the first plurality of vane cavities; and

a carbonated water outlet positioned about the second plurality of vane cavities.

2. The rotary carbonator of claim 1 , further comprising a drive motor.

3. The rotary carbonator of claim 2 , further comprising a magnetic coupling positioned about the drive motor.

4. The rotary carbonator of claim 1 , wherein the plurality of vanes comprises a plurality of opposed pairs and wherein the plurality of opposed pairs comprises a spring therebetween.

5. The rotary carbonator of claim 1 , further comprising a stator and wherein the rotor and the stator define the off-center carbonator chamber.

6. The rotary carbonator of claim 5 , wherein an interior surface of the stator comprises a plurality of radii of curvature.

7. The rotary carbonator of claim 5 , wherein an exterior of the stator comprises a stator water pathway of the water inlet, a stator gas pathway of the gas inlet, and a stator carbonated water pathway of the carbonated water outlet.

8. The rotary carbonator of claim 1 , wherein the off-center carbonator chamber comprises a rear chamber plate and a front chamber plate.

9. The rotary carbonator of claim 8 , wherein the rear chamber plate and the front chamber plate comprise a plate water pathway of the water inlet, a plate gas pathway of the gas inlet, and a plate carbonated water pathway of the carbonated water outlet.

10. The rotary carbonator of claim 1 , further comprising a pump housing surrounding the off-center carbonator chamber.

11. The rotary carbonator of claim 10 , wherein the pump housing comprises a housing water pathway of the water inlet, a housing gas pathway of the gas inlet, and a housing carbonated water pathway of the carbonated water outlet.

12. The rotary carbonator of claim 10 , wherein the pump housing comprises a housing plate.

13. The rotary carbonator of claim 1 , wherein the first plurality of vane cavities comprises a first quadrant with the water inlet and a second quadrant with the gas inlet.

14. The rotary carbonator of claim 13 , wherein the second plurality of vane cavities comprises a third quadrant and a fourth quadrant with the carbonated water outlet.

15. A method of carbonating water on demand, comprising:

rotating a plurality of sliding vanes in an off-center carbonator chamber;

wherein the plurality of sliding vanes defines a first plurality of vane cavities with an increasing area and a second plurality of vane cavities with a decreasing area;

flowing water into the first plurality of vane cavities;

flowing carbon dioxide into the first plurality of vane cavities;

mixing the water and the carbon dioxide in the second plurality of vane cavities; and

flowing carbonated water out of the second plurality of vane cavities.

Continuity (4)
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