IP Library Granted Patent US 11,806,648
Granted Patent B1
US 11,806,648 · App. 18/308,305 · Granted Nov 7, 2023

Filter assembly

Inventors: David P. Cooper (Dowagiac, MI); Mark C. Graff (Michigan City, IN); James C. L. Guarino (Kalamazoo, MI); Chad Rotter (Saugatuck, MI); Daniel Louis Sigmund (Golden, CO); Steven J. Kuehl (Sylva, NC); Joseph R. Peters (St. Joseph, MI); Justin Glasgow (Sulphur Springs, TX)
Assignee: Whirlpool Corporation
B01D15/30B01D2201/16B01D2201/302
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Quick Facts
Patent No.
US 11,806,648
App. No.
18/308,305
Granted
Nov 7, 2023
Kind
B1
Abstract

A filter unit includes a body portion that receives a water filter. An engaging portion is coupled to the body portion. A bypass actuator rotates relative to the engaging portion to rotationally and axially operate a bypass valve of a fluid manifold. The bypass actuator drives axial engagement of the engaging portion with a valve assembly of the fluid manifold. The bypass actuator extends through the body portion and the engaging portion.

Claims (30)

1. A filter unit, comprising:

a body portion configured to receive a water filter;

an engaging portion coupled to the body portion, wherein the engaging portion includes:

a first projection defining an inlet; and

a second projection defining an outlet; and

a bypass actuator extending through the body portion and the engaging portion, wherein the bypass actuator includes:

an actuating end positioned between the inlet and the outlet, wherein the actuating end defines an interlock for engaging a bypass valve of a fluid manifold and an interface for engaging retaining features of the fluid manifold, and wherein the interface includes a helical section;

an operating end positioned at an opposing end of the body portion relative to the actuating end, wherein rotation of the operating end causes rotation of the actuating end; and

a shaft coupled to the actuating end and the operating end, wherein the bypass actuator is configured to rotate relative to the engaging portion and the body portion to rotationally and axially operate the bypass valve, and wherein the bypass actuator is further configured to drive axial engagement of the engaging portion with a valve assembly of the fluid manifold.

2. The filter unit of claim 1 , wherein the engaging portion is configured to selectively engage the fluid manifold in an engaged state, and wherein fluid is configured to flow through a bypass channel of the fluid manifold when the engaging portion is in the engaged state, and wherein rotation of the bypass actuator in the engaged state is configured to operate the bypass valve of the fluid manifold and also axially operate the engaging portion relative to the valve assembly during operation from the engaged state to an installed state, and further wherein the fluid is configured to flow through the water filter when the engaging portion is in the installed state.

3. The filter unit of claim 1 , wherein the bypass actuator, the inlet, and the outlet define a collinear arrangement.

4. The filter unit of claim 1 , wherein the bypass actuator is independently rotatable relative to the engaging portion and the body portion, and wherein the engaging portion is fixed with respect to the body portion.

5. The filter unit of claim 1 , further comprising:

a sleeve extending through the body portion, wherein the bypass actuator extends through the sleeve.

6. The filter unit of claim 1 , wherein the bypass actuator is axially fixed with respect to the engaging portion and the body portion.

7. The filter unit of claim 1 , wherein the operating end includes a knob, and wherein the actuating end includes a fastener.

8. The filter unit of claim 7 , wherein the fastener defines a sloped groove extending from a distal end toward a proximal end of the fastener, and wherein the sloped groove includes the helical section.

9. The filter unit of claim 7 , wherein the fastener includes a radial flange, and wherein a cover is disposed proximate to the radial flange and is coupled to the engaging portion to retain the fastener in an axial position relative to the engaging portion.

10. The filter unit of claim 7 , wherein the fastener defines a first sloped groove and a second sloped groove, wherein an opening of the first sloped groove at a distal end of the fastener is on an opposing side of the fastener relative to an opening of the second sloped groove.

11. The filter unit of claim 1 , wherein the body portion includes a lobe extending along a length thereof.

12. The filter unit of claim 1 , wherein the bypass actuator is configured to drive simultaneous and proportional rotational and axial movement of the bypass valve.

13. The filter unit of claim 2 , wherein the operating end includes a knob, and wherein the actuating end includes a fastener.

14. The filter unit of claim 13 , wherein the fastener defines a first sloped groove and a second sloped groove, wherein an opening of the first sloped groove at a distal end of the fastener is on an opposing side of the fastener relative to an opening of the second sloped groove.

15. The filter unit of claim 14 , wherein the bypass actuator is independently rotatable relative to the engaging portion and the body portion, and wherein the engaging portion is fixed with respect to the body portion.

16. The filter unit of claim 15 , wherein the bypass actuator is axially fixed with respect to the engaging portion and the body portion.

17. The filter unit of claim 16 , wherein the bypass actuator is configured to drive simultaneous and proportional rotational and axial movement of the bypass valve.

18. The filter unit of claim 17 , wherein the bypass actuator, the inlet, and the outlet define a collinear arrangement.

19. The filter unit of claim 18 , further comprising:

a sleeve extending through the body portion, wherein the bypass actuator extends through the sleeve.

20. The filter unit of claim 19 , wherein the body portion includes a lobe extending along a length thereof.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2023
From: COOPER, DAVID P.; GRAFF, MARK C.; ROTTER, CHAD; SIGMUND, DANIEL LOUIS; KUEHL, STEVEN J.; PETERS, JOSEPH R.; GLASGOW, JUSTIN
To: WHIRLPOOL CORPORATION
Reel/Frame 063687/0235 →
Continuity (2)
Continuation PCTIB2022054007 · Apr 29, 2022
Provisional Application 63182175 · Apr 30, 2021
Cited By (3)
US 1,084,220 US 12,371,347 US 12,539,475