IP Library Granted Patent US 8,728,248
Granted Patent B2
US 8,728,248 · App. 13/226,709 · Granted May 20, 2014

Adjustable filter system for a dishwashing appliance

Inventors: Joel Charles Boyer (Louisville, KY); John Dries (Louisville, KY)
Assignee: General Electric Company
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Quick Facts
Patent No.
US 8,728,248
App. No.
13/226,709
Granted
May 20, 2014
Kind
B2
Abstract

An adjustable filter system for a dishwashing appliance is provided. More specifically, a filter system is provided whereby the relative amount of fluid filtered by two different filters can be selectively controlled during operation of the dishwashing appliance. Flow can be directed primarily to one filter or the other depending upon the size of the soil particles expected at certain times during the cleaning process. Selection can be e.g., based on the temperature of fluid used in the appliance or determined by a controller.

Claims (52)

1. A dishwashing appliance, comprising:

a cabinet defining a wash chamber for the receipt of articles for washing, the wash chamber having a sump portion, the sump portion having an opening;

a pump configured for the receipt of a fluid to be recirculated into the wash chamber of said cabinet, said pump having an inlet;

a first filter located in the sump portion and configured for filtering fluid from the wash chamber prior to feeding such fluid to the inlet of said pump;

a second filter removably received in the opening in the sump portion and configured for filtering fluid from the wash chamber prior to feeding such fluid to the inlet of said pump;

a valve located in the sump portion and positioned upstream of the inlet of said pump, said valve comprising

a fixed annular portion that defines a first aperture for the flow through of fluid from said first filter;

a rotatable annular portion that encircles the second filter and defines a second aperture for the flow through of fluid from said first filter, the rotatable annular portion being rotatable relative to the fixed annular portion and located adjacent to the fixed annular portion such that the first aperture and the second aperture can be selectively aligned for the flow therethrough of fluid; and

an actuator connected with said rotatable annular portion and configured for rotating the rotatable annular portion relative to the fixed annular portion to determine the amount of alignment of the first aperture and the second aperture such that the relative amounts of fluid flowing through said first filter and said second filter may be selectively determined.

2. A dishwashing appliance as in claim 1 , wherein said actuator comprises a wax motor.

3. A dishwashing appliance as in claim 1 , wherein the rotatable annular portion comprises gear teeth along a circumferential edge of the rotatable annular portion, and wherein said actuator comprises

an electric motor having a shaft extending towards the rotatable portion of said valve;

a spur gear attached to the shaft of said electric motor, said spur gear positioned in contact with the gear teeth of the rotatable annular portion such that said electric motor can rotate the rotatable annular portion relative to the fixed annular portion.

4. A dishwashing appliance as in claim 1 , wherein said first filter comprises a grate located at the bottom of the wash chamber that defines a plurality of apertures for the pass through of the fluid.

5. A dishwashing appliance as in claim 4 , wherein said grate surrounds an opening into which said second filter is removably received.

6. A dishwashing appliance as in claim 5 , wherein said second filter defines a housing having a window for the flow therethrough of fluid, said second filter also comprising a filter media positioned at the window.

7. A dishwashing appliance as in claim 1 , wherein said first filter is configured for the removal of relatively larger particles from the fluid circulated through the wash chamber, and wherein said second filter is configured for the removal of relatively smaller particles from the fluid circulated through the wash chamber.

8. A dishwashing appliance as in claim 1 , wherein said actuator is activated by the transfer of heat to or from said actuator so as to cause the rotation of the rotatable annular portion of said valve.

9. A dishwashing appliance as in claim 1 , further comprising:

at least one controller in communication with said actuator, said controller configured for causing said actuator to rotate at one or more predetermined times during a wash cycle, a rinse cycle, or both.

10. A dishwashing appliance as in claim 1 , wherein said first filter is equipped for filtering relatively larger soil particles from fluid received from the wash chamber while said second filter is equipped for filtering relatively smaller soil particles from fluid received from the wash chamber, and wherein said appliance further comprises:

a controller in communication with said actuator, said controller configured for controlling the actuator so that the first aperture and the second aperture are aligned during a wash cycle of the appliance, said controller further configured for controlling the actuator so that the first aperture and the second aperture are not aligned during at least a portion of a rinse cycle of the appliance.

11. A dishwashing appliance as in claim 1 , wherein said first filter is equipped for filtering relatively larger soil particles from fluid received from the wash chamber while said second filter is equipped for filtering relatively smaller soil particles from fluid received from the wash chamber, and wherein said appliance further comprises:

a controller in communication with said actuator, said controller configured for controlling the actuator to adjust the ratio of the amounts of fluid flowing through said first filter and said second filter during the operation of the appliance.

12. A dishwashing appliance as in claim 1 , wherein said first filter is equipped for filtering relatively larger soil particles from fluid received from the wash chamber while said second filter is equipped for filtering relatively smaller soil particles from fluid received from the wash chamber, and wherein said appliance further comprises:

a controller in communication with said actuator, said controller configured for causing the actuator to rotate the rotatable annular portion so that a substantial portion of fluid flows through the first filter during a wash cycle of the appliance, said controller also configured for causing the actuator to rotate the rotatable annular portion so that a substantial portion of fluid flows through the second filter during at least part of a rinse cycle of the appliance.

13. A dishwashing appliance, comprising:

a cabinet defining a wash chamber for the receipt of articles for washing, the wash chamber having a sump portion, the sump portion having an opening;

a pump configured for the receipt of a fluid to be recirculated into the wash chamber of said cabinet, said pump having an inlet;

a first filter located in the sump portion and configured for filtering fluid from the wash chamber prior to feeding such fluid to the inlet of said pump;

a second filter positioned in the opening in the sump portion and configured for filtering fluid from the wash chamber prior to feeding such fluid to the inlet of said pump, the second filter having a fluid inlet positioned to receive fluid from the sump portion that does not flow into the first filter;

a valve located at the opening in the sump portion and positioned upstream of the inlet of said pump, said valve comprising

a fixed annular portion that defines a first aperture for the flow through of fluid from said first filter;

a rotatable annular portion that defines a second aperture for the flow through of fluid from said first filter, the rotatable annular portion being rotatable relative to the fixed annular portion and located adjacent to the fixed annular portion such that the first aperture and the second aperture can be selectively aligned for the flow therethrough of fluid; and

an actuator connected with said rotatable annular portion and configured for rotating the rotatable annular portion relative to the fixed annular portion to determine the amount of alignment of the first aperture and the second aperture such that the relative amounts of fluid flowing through said first filter and said second filter may be selectively determined.

14. A dishwashing appliance, comprising:

a cabinet defining a wash chamber for the receipt of articles for washing, the wash chamber having a sump portion, the sump portion having an opening;

a pump configured for the receipt of a fluid to be recirculated into the wash chamber of said cabinet, said pump having an inlet;

a grate located in the sump portion, the grate defining a first filter for filtering fluid from the wash chamber prior to feeding such fluid to the inlet of said pump;

a second filter positioned in the opening in the sump portion and configured for filtering fluid from the wash chamber prior to feeding such fluid to the inlet of said pump;

a valve located at the opening in the sump portion and positioned upstream of the inlet of said pump, said valve comprising

a fixed annular portion that defines a first aperture for the flow through of fluid from said first filter;

a rotatable annular portion that defines a second aperture for the flow through of fluid from said first filter, the rotatable annular portion being rotatable relative to the fixed annular portion and located adjacent to the fixed annular portion such that the first aperture and the second aperture can be selectively aligned for the flow therethrough of fluid; and

an actuator configured for rotating the rotatable annular portion relative to the fixed annular portion to determine the amount of alignment of the first aperture and the second aperture such that the relative amounts of fluid flowing through said first filter and said second filter may be selectively determined.

15. A dishwashing appliance as in claim 14 , further comprising:

at least one controller in communication with said actuator, said controller configured for operating said actuator at one or more predetermined times during a wash cycle, a rinse cycle, or both.

16. A dishwashing appliance as in claim 14 , wherein said first filter is equipped for filtering relatively larger soil particles from fluid received from the wash chamber while said second filter is equipped for filtering relatively smaller soil particles from fluid received from the wash chamber, and wherein said appliance further comprises:

a controller in communication with said actuator, said controller configured for controlling the actuator so that the first aperture and the second aperture are aligned during a wash cycle of the appliance, said controller further configured for controlling the actuator so that the first aperture and the second aperture are not aligned during at least a portion of a rinse cycle of the appliance.

17. A dishwashing appliance as in claim 14 , wherein said first filter is equipped for filtering relatively larger soil particles from fluid received from the wash chamber while said second filter is equipped for filtering relatively smaller soil particles from fluid received from the wash chamber, and wherein said appliance further comprises:

a controller in communication with said actuator, said controller configured for controlling the actuator to adjust the ratio of the amounts of fluid flowing through said first filter and said second filter during the operation of the appliance.

18. A dishwashing appliance as in claim 14 , wherein said first filter is equipped for filtering relatively larger soil particles from fluid received from the wash chamber while said second filter is equipped for filtering relatively smaller soil particles from fluid received from the wash chamber, and wherein said appliance further comprises:

a controller in communication with said actuator, said controller configured for causing the actuator to rotate the rotatable annular portion so that a substantial portion of fluid flows through the first filter during a wash cycle of the appliance, said controller also configured for causing the actuator to rotate the rotatable annular portion so that a substantial portion of fluid flows through the second filter during at least part of a rinse cycle of the appliance.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2016
From: GENERAL ELECTRIC COMPANY
To: HAIER US APPLIANCE SOLUTIONS, INC.
Reel/Frame 038969/0228 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 7, 2011
From: BOYER, JOEL CHARLES; DRIES, JOHN
To: GENERAL ELECTRIC COMPANY
Reel/Frame 026864/0917 →
Continuity (1)
Related Publication 20130056029A1 · Mar 7, 2013