IP Library Granted Patent US 8,800,314
Granted Patent B2
US 8,800,314 · App. 12/910,109 · Granted Aug 12, 2014

Misting ice maker for cup-shaped ice cubes and related refrigeration appliance

Inventor: Alan Joseph Mitchell (Louisville, KY)
Assignee: General Electric Company
F25C1/12F25C5/005F25C2700/04F25C1/22
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Quick Facts
Patent No.
US 8,800,314
App. No.
12/910,109
Granted
Aug 12, 2014
Kind
B2
Abstract

An ice cube maker includes an ice-making compartment having side walls, at least one rod-shaped conductor extending distally into the compartment through one of the side walls, and a cooling device for cooling the conductor to a temperature sufficient to form ice on the conductor. A misting system includes a reservoir for water and a nebulizer for creating a liquid mist from water in the reservoir and introducing the liquid mist into the ice-making compartment so that a portion of the liquid mist freezes on the conductor to form a cup-shaped ice cube thereon. A return conduit connects a drain of the ice-making compartment and the reservoir for transferring liquid mist not freezing on the conductor to the reservoir.

Claims (37)

1. An ice cube maker comprising:

an ice-making compartment having side walls;

at least one rod-shaped conductor extending distally into the compartment through one of the side walls;

a cooling device for cooling the conductor to a temperature sufficient to form ice on the conductor;

a misting system including a reservoir for water, a pumping device for creating a liquid mist from water in the reservoir and introducing the liquid mist into the ice-making compartment so that a portion of the liquid mist freezes on the conductor to form a cup-shaped ice cube thereon; and

a return conduit connecting a drain of the ice-making compartment and the reservoir for transferring liquid mist not freezing on the conductor to the reservoir.

2. The ice cube maker of claim 1 , wherein the portion of the rod-shaped conductor that extends into the ice-making compartment has a length no more than three times its width.

3. The ice cube maker of claim 2 , wherein the rod-shaped conductor portion is substantially cylindrical.

4. The ice cube maker of claim 1 , further including a heater for the ice-making compartment side walls for heating the side walls to a temperature sufficient to prevent the liquid mist from freezing on the side walls.

5. The ice cube maker of claim 1 , further including a heater for heating the rod-shaped conductor to a temperature sufficient to harvest the cup-shaped ice cube from the rod-shaped conductor.

6. The ice cube maker of claim 1 , wherein the misting system includes a controller, a water source and a low water sensor in the reservoir, the controller causing the misting system to fill the reservoir via the water source when the low water sensor signals a low water condition in the reservoir.

7. The ice cube maker of claim 6 , wherein the controller initiates ice cube harvest by causing a heater to heat the rod-shaped conductor when the low water sensor senses the low water condition.

8. The ice cube maker of claim 6 , wherein the misting system includes a high water sensor in the reservoir, the controller causing the water source to stop supplying water to the reservoir when the high water sensor signals a high water condition.

9. The ice cube maker of claim 8 , wherein the low water sensor and the high water sensor are located on the reservoir such that an amount of water needed to take the water reservoir from a low water condition to a high water condition is substantially equal to the amount of water needed to create a desired amount of ice in an ice cube harvest.

10. The ice cube maker of claim 1 , wherein the side walls include a bottom wall movable between an ice-forming position and an ice-dispensing position.

11. The ice cube maker of claim 10 , further including an ice bucket, the ice bucket disposed for receiving ice cubes from the ice making compartment when the bottom wall is in the ice-dispensing position.

12. An ice cube maker comprising:

an ice-making compartment having side walls;

at least one rod-shaped conductor extending distally into the compartment through one of the side walls;

a cooling device for cooling the conductor to a temperature sufficient to form ice on the conductor;

a misting system including a reservoir for water, a pumping device for creating a liquid mist from water in the reservoir and introducing the liquid mist into the ice-making compartment so that a portion of the liquid mist freezes on the conductor to form a cup-shaped ice cube thereon; and

a return conduit connecting a drain of the ice-making compartment and the reservoir for transferring liquid mist not freezing on the conductor to the reservoir;

the misting system including a water source for filling the reservoir in case a low water sensor signals a low water condition in the reservoir, the water source filling the reservoir until a high water condition is reached, the amount of water needed to create a desired amount of ice in an ice cube harvest being substantially equal to the difference between the high water condition and low water condition.

13. The ice cube maker of claim 12 , wherein a heater heats the rod-shaped conductor when the low water condition occurs.

14. The ice cube maker of claim 12 , further including a heater for the ice making compartment side walls for heating the side walls to a temperature sufficient to prevent the liquid mist from freezing on the side walls.

15. A refrigeration appliance comprising:

a refrigerated compartment;

an ice-making compartment within the refrigerated compartment and having side walls;

at least one rod-shaped conductor extending distally into the compartment through one of the side walls;

a cooling device for cooling the conductor to a temperature sufficient to form ice on the conductor;

a misting system including a reservoir for water, a pumping device for creating a liquid mist from water in the reservoir and introducing the liquid mist into the ice-making compartment so that a portion of the liquid mist freezes on the conductor to form a cup-shaped ice cube thereon; and

a return conduit connecting a drain of the ice-making compartment and the reservoir for transferring liquid mist not freezing on the conductor to the reservoir.

16. The refrigeration appliance of claim 15 , further including a heater for the ice-making compartment side walls for heating the side walls to a temperature sufficient to prevent the liquid mist from freezing on the side walls.

17. The refrigeration appliance of claim 15 , further including a heater for heating the rod-shaped conductor to a temperature sufficient to harvest the cup-shaped ice cube from the rod-shaped conductor.

18. The refrigeration appliance of claim 15 , wherein the misting system includes a controller, a water source and a low water sensor in the reservoir, the controller causing the misting system to fill the reservoir via the water source when the low water sensor signals a low water condition in the reservoir.

19. The refrigeration appliance of claim 18 , wherein the controller initiates ice cube harvest by causing a heater to heat the rod-shaped conductor when the low water sensor senses the low water condition.

20. The refrigeration appliance claim 18 , wherein the misting system includes a high water sensor in the reservoir, the controller causing the water source to stop supplying water to the reservoir when the high water sensor signals a high water condition.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2016
From: GENERAL ELECTRIC COMPANY
To: HAIER US APPLIANCE SOLUTIONS, INC.
Reel/Frame 038967/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 22, 2010
From: MITCHELL, ALAN JOSEPH
To: GENERAL ELECTRIC COMPANY
Reel/Frame 025180/0956 →
Continuity (1)
Related Publication 20120096890A1 · Apr 26, 2012