IP Library Granted Patent US 10,744,438
Granted Patent B2
US 10,744,438 · App. 15/752,145 · Granted Aug 18, 2020

Systems and methods for attaching and retaining a filter element on a rotating shaft

Inventors: Chirag D. Parikh (Madison, WI); Christopher E. Holm (Madison, WI); Bradley A. Smith (Columbus, IN)
Assignee: CUMMINS FILTRATION IP, INC.
B01D46/0004B01D45/14B01D46/003B01D46/009B01D46/0056B01D46/2411B01D46/26F01M11/03F01M13/00F01M13/04F01M2011/038F01M2013/0422F01M2013/0438
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Quick Facts
Patent No.
US 10,744,438
App. No.
15/752,145
Granted
Aug 18, 2020
Kind
B2
Abstract

An attachment and retaining mechanism is described for removably attaching a rotating filter element to a rotating shaft. The rotating filter element includes a filter media that is driven by a drive mechanism that rotates the rotating shaft. The filter element is removably attached to the rotating shaft such that the filter element and filtration system can be periodically replaced and/or serviced. In some arrangements, the drive shaft includes a D-shaped section that interacts with a mating section of the filter element sleeve of the rotating filter element. In other arrangements, the drive shaft includes at least one flat drive surface.

Claims (77)

1. A filtration system, comprising:

a housing having an inlet and an outlet;

a drive mechanism including a drive shaft with a flat section;

a rotating filter element positioned within the housing and in fluid communication with the inlet and the outlet, the rotating filter element configured to separate a suspended liquid from a fluid received through the inlet, the rotating filter element including:

a first endplate,

a second endplate,

filter media positioned between the first endplate and the second endplate, and

a filter element sleeve or bushing positioned within an interior space defined by the filter media and configured to receive the drive shaft, the filter element sleeve or bushing having a projection that projects radially inward, the projection interacting with the flat section of the rotating shaft so as to transfer rotation from the rotating shaft to the rotating filter element.

2. The filtration system of claim 1 , wherein the projection includes a raised planar face that makes surface area contact with the flat section of the rotating shaft during rotation of the rotating shaft.

3. A filtration system comprising:

a housing having an inlet and an outlet;

a drive mechanism including a drive shaft with a flat section;

a rotating filter element positioned within the housing and in fluid communication with the inlet and the outlet, the rotating filter element configured to separate a suspended liquid from a fluid received through the inlet, the rotating filter element including:

a first endplate,

a second endplate,

filter media positioned between the first endplate and the second endplate, and

a filter element sleeve or bushing configured to receive the drive shaft, the filter element sleeve or bushing having a projection that projects radially inward, the projection interacting with the flat section of the rotating shaft so as to transfer rotation from the rotating shaft to the rotating filter element,

wherein the filter element sleeve or bushing includes a relief section that provides a radius on an inside corner of the projection.

4. The filtration system of claim 3 , wherein the drive shaft includes a chamfer adjacent to the flat section.

5. The filtration system of claim 1 , further comprising an o-ring positioned in a necked down portion of the drive shaft.

6. The filtration system of claim 1 , wherein the rotating filter element is a rotating coalescer.

7. The filtration system of claim 6 , wherein the fluid received through the inlet is crankcase blowby gas of an internal combustion engine, and wherein the suspended liquid includes oil or aerosol.

8. A filtration system comprising:

a housing having an inlet and an outlet;

a drive mechanism including a drive shaft with a flat section, wherein the drive shaft includes a chamfer adjacent to the flat section;

a rotating filter element positioned within the housing and in fluid communication with the inlet and the outlet, the rotating filter element configured to separate a suspended liquid from a fluid received through the inlet, the rotating filter element including:

a first endplate,

a second endplate,

filter media positioned between the first endplate and the second endplate, and

a filter element sleeve or bushing configured to receive the drive shaft, the filter element sleeve or bushing having a projection that projects radially inward, the projection interacting with the flat section of the rotating shaft so as to transfer rotation from the rotating shaft to the rotating filter element.

9. The filtration system of claim 1 , further comprising a snap ring positioned in a necked down portion of the drive shaft.

10. The filtration system of claim 1 , wherein the drive shaft comprises a plurality of flat sections including the flat section, the plurality of flat sections forming a hexagonal cross-sectional shape at a drive section of the drive shaft.

11. A filtration system comprising:

a housing having an inlet and an outlet;

a drive mechanism including a drive shaft with a flat section,

the drive shaft comprising a plurality of flat sections including the flat section, the plurality of flat sections forming a hexagonal cross-sectional shape at a drive section of the drive shaft, wherein the drive shaft comprises a plurality of chamfers connecting adjacent flat sections of the plurality of flat sections;

a rotating filter element positioned within the housing and in fluid communication with the inlet and the outlet, the rotating filter element configured to separate a suspended liquid from a fluid received through the inlet, the rotating filter element including:

a first endplate,

a second endplate,

filter media positioned between the first endplate and the second endplate, and

a filter element sleeve or bushing configured to receive the drive shaft, the filter element sleeve or bushing having a projection that projects radially inward, the projection interacting with the flat section of the rotating shaft so as to transfer rotation from the rotating shaft to the rotating filter element.

12. The filtration system of claim 10 , wherein the filter element sleeve or bushing comprises a plurality of projections including the projection, the plurality of projections forming a hexalobular keyway that receives the drive section of the drive shaft.

13. A filtration system comprising:

a housing having an inlet and an outlet;

a drive mechanism including a drive shaft with a flat section;

the drive shaft comprising a plurality of flat sections including the flat section, the plurality of flat sections forming a hexagonal cross-sectional shape at a drive section of the drive shaft,

a rotating filter element positioned within the housing and in fluid communication with the inlet and the outlet, the rotating filter element configured to separate a suspended liquid from a fluid received through the inlet, the rotating filter element including:

a first endplate,

a second endplate,

filter media positioned between the first endplate and the second endplate, and

a filter element sleeve or bushing configured to receive the drive shaft, the filter element sleeve or bushing having a projection that projects radially inward, the projection interacting with the flat section of the rotating shaft so as to transfer rotation from the rotating shaft to the rotating filter element,

the filter element sleeve or bushing comprising a plurality of projections including the projection, the plurality of projections forming a hexalobular keyway that receives the drive section of the drive shaft,

wherein the filter element sleeve or bushing comprises a relief section positioned between each adjacent projection of the plurality of projections.

14. The filtration system of claim 1 , wherein the drive shaft comprises at least one of a flat section, a projection, or a keyway at a drive section of the drive shaft.

15. The filtration system of claim 14 , wherein the filter element sleeve or bushing comprises a keyway that receives the drive section of the drive shaft.

16. A rotating filter element comprising:

a first endplate,

a second endplate,

filter media positioned between the first endplate and the second endplate, and

a filter element sleeve or bushing positioned within an interior space defined by the filter media and configured to receive a drive shaft of a filtration system when the rotating filter element is installed in the filtration system, the filter element sleeve or bushing having a projection that projects radially inward, the projection interacting with a rotating shaft of the filtration system so as to transfer rotation from the rotating shaft to the rotating filter element, the rotating filter element configured to separate a suspended liquid from a fluid.

17. The rotating filter element of claim 16 , wherein the projection comprises a raised planar face that makes surface area contact with a flat section of the rotating shaft during rotation of the rotating shaft.

18. A rotating filter element comprising:

a first endplate,

a second endplate,

filter media positioned between the first endplate and the second endplate, and

a filter element sleeve or bushing configured to receive a drive shaft of a filtration system when the rotating filter element is installed in the filtration system, the filter element sleeve or bushing having a projection that projects radially inward, the projection interacting with a rotating shaft of the filtration system so as to transfer rotation from the rotating shaft to the rotating filter element, the rotating filter element configured to separate a suspended liquid from a fluid,

wherein the filter element sleeve or bushing comprises a relief section that provides a radius on an inside corner of the projection.

19. The rotating filter element of claim 16 , wherein the rotating filter element is a rotating coalescer.

20. The rotating filter element of claim 19 , wherein the fluid comprises crankcase blowby gases and the suspended liquid comprises oil or aerosol.

21. The rotating filter element of claim 16 , wherein the filter element sleeve or bushing comprises a plurality of projections including the projection, the plurality of projections forming a hexalobular keyway that receives a drive section of the drive shaft.

22. A rotating filter element comprising:

a first endplate,

a second endplate,

filter media positioned between the first endplate and the second endplate, and

a filter element sleeve or bushing configured to receive a drive shaft of a filtration system when the rotating filter element is installed in the filtration system, the filter element sleeve or bushing having a projection that projects radially inward, the projection interacting with a rotating shaft of the filtration system so as to transfer rotation from the rotating shaft to the rotating filter element, the rotating filter element configured to separate a suspended liquid from a fluid,

the filter element sleeve or bushing comprising a plurality of projections including the projection, the plurality of projections forming a hexalobular keyway that receives a drive section of the drive shaft,

wherein the filter element sleeve or bushing comprises a relief section positioned between each adjacent projection of the plurality of projections.

Assignments (2)
CHANGE OF NAME Recorded Dec 29, 2025
From: CUMMINS FILTRATION IP, INC.
To: ATMUS FILTRATION IP INC.
Reel/Frame 074104/0842 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2018
From: PARIKH, CHIRAG D.; HOLM, CHRISTOPHER E.; SMITH, BRADLEY A.
To: CUMMINS FILTRATION IP, INC.
Reel/Frame 044992/0920 →
Continuity (2)
Provisional Application 62211505 · Aug 28, 2015
Related Publication 20180236387A1 · Aug 23, 2018