IP Library Granted Patent US 11,857,901
Granted Patent B2
US 11,857,901 · App. 17/563,552 · Granted Jan 2, 2024

Expansion membrane assembly and filter head in exhaust fluid filter assembly

Inventors: Bharath Siddaramanna Onkarappa (Shimoga, IN); Mrinmayee Balasaheb Pokharkar (Pune, IN); Nilesh Bhaskar Nagare (Pune, IN); Nilay Shah (Pune, IN); Christopher E. Holm (Madison, WI); Frank Wolfgang Becker (Friendship, WI); Santoshini Choudhary (Bengaluru, IN)
Assignee: CUMMINS FILTRATION IP, INC.
B01D35/30B01D29/0093B01D29/15B01D2201/304B01D2201/4053
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Quick Facts
Patent No.
US 11,857,901
App. No.
17/563,552
Granted
Jan 2, 2024
Kind
B2
Abstract

A filter assembly comprises a housing, a filter element for filtering a fluid and positionable within the housing, and an expansion membrane assembly. The expansion membrane assembly fluidly separates and is positionable between the housing and the filter element. The membrane assembly extends along an inner surface, a top surface, and an outer surface of the housing.

Claims (61)

1. A filter assembly comprising:

a housing comprising a housing inner surface, a housing outwardly facing peripheral surface substantially radially opposite the housing inner surface, and a housing top surface extending between the housing inner surface and the housing outwardly facing peripheral surface, the housing outwardly facing peripheral surface being an outermost exterior surface of the housing;

a filter element for filtering a fluid and positioned within the housing; and

an expansion membrane assembly that fluidly separates and is positioned between the housing and the filter element, the expansion membrane assembly extending along the housing inner surface, the housing top surface, and the housing outwardly facing peripheral surface of the housing, the expansion membrane assembly outwardly expandable within the housing towards the housing inner surface and a gap is defined between a portion of an outer surface of the expansion membrane assembly and a portion of the housing inner surface with the filter element radially spaced apart from an inner surface of the expansion membrane assembly.

2. The filter assembly of claim 1 , wherein the expansion membrane assembly forms a seal with the housing inner surface and the housing top surface.

3. The filter assembly of claim 1 , wherein the expansion membrane assembly comprises a membrane body and a lip, the membrane body positioned between the housing inner surface and the filter element and the lip extending along the housing outwardly facing peripheral surface.

4. The filter assembly of claim 3 , wherein the membrane body comprises a membrane side wall and a membrane bottom wall that together define an inner area of the membrane body for receiving the filter element, the membrane body comprising an extension extending radially outwardly from a top portion of the membrane side wall.

5. The filter assembly of claim 4 , wherein the extension of the membrane body extends along and directly abuts the housing top surface.

6. The filter assembly of claim 4 , wherein the lip is positioned radially outwardly relative to the membrane side wall and extends axially downwardly toward the membrane bottom wall from the extension.

7. A filter assembly comprising:

a housing;

a filter element for filtering a fluid and positioned within the housing; and

an expansion membrane assembly that fluidly separates and is positioned between the housing and the filter element, the expansion membrane assembly extending along a housing inner surface, a housing top surface, and a housing outer surface of the housing,

the expansion membrane assembly comprising a membrane body and a lip, the membrane body positioned between the housing inner surface and the filter element and the lip extending along the housing outer surface,

the membrane body comprising a membrane side wall and a membrane bottom wall that together define an inner area of the membrane body for receiving the filter element, the membrane body comprising an extension extending radially outwardly from a top portion of the membrane side wall,

wherein one of the extension of the membrane body and the housing top surface comprises at least one projection, and the other of the extension of the membrane body and the housing top surface defines at least one notch that is complementary to the at least one projection,

wherein the at least one projection fits within the at least one notch such that the expansion membrane assembly and the housing are rotationally locked together.

8. A filter assembly comprising:

a housing;

a filter element for filtering a fluid and positioned within the housing;

an expansion membrane assembly that fluidly separates and is positioned between the housing and the filter element, the expansion membrane assembly extending along a housing inner surface, a housing top surface, and a housing outer surface of the housing, the expansion membrane assembly outwardly expandable within the housing towards the housing inner surface, wherein and a gap is defined between a portion of an outer surface of the expansion membrane assembly and a portion of the housing inner surface, the expansion membrane assembly comprising a membrane body and a lip, the membrane body positioned between the housing inner surface and the filter element and the lip extending along the housing outer surface; and

a filter head, the filter head forming an inner seal with and extending along an inner surface of the membrane body and extending along the housing outer surface.

9. The filter assembly of claim 8 , wherein the filter head extends along an outer surface of the lip of the expansion membrane assembly.

10. The filter assembly of claim 8 , wherein the filter head comprises an inner extension forming the inner seal with the inner surface of the membrane body and an outer extension extending along the housing outer surface,

wherein the inner extension and the outer extension of the filter head define a slot, wherein at least a portion of the expansion membrane assembly and at least a portion of the housing are positioned within the slot.

11. The filter assembly of claim 10 , wherein the membrane body comprises an extension positioned axially between the housing top surface and a slot surface of the filter head, the slot surface positioned radially between the inner extension and the outer extension of the filter head.

12. The filter assembly of claim 11 , wherein the extension comprises a top surface and a bottom surface that are opposite each other,

wherein the top surface of the extension forms a top seal with the slot surface of the filter head, and the bottom surface of the extension forms a bottom seal with the housing top surface such that the top seal and the bottom seal are directly opposite each other through the extension.

13. The filter assembly of claim 10 , wherein an outer surface of the membrane body forms an outer seal with the housing inner surface, wherein the inner seal and the outer seal are directly opposite each other through the membrane body.

14. A filter assembly comprising:

a housing;

a filter element for filtering a fluid and positioned within the housing; and

an expansion membrane assembly that fluidly separates and is positioned between the housing and the filter element, the expansion membrane assembly extending along a housing inner surface, a housing top surface, and a housing outer surface of the housing,

the expansion membrane assembly comprising a membrane body and a lip, the membrane body positioned between the housing inner surface and the filter element and the lip extending along the housing outer surface,

wherein the membrane body comprises a membrane side wall, a membrane bottom wall, and a plurality of ribs along an outer surface of the membrane body, the plurality of ribs extending axially along the membrane side wall and radially along the membrane bottom wall.

15. A method of assembling a filter assembly comprising:

positioning an expansion membrane assembly at least partially in a housing such that the expansion membrane assembly extends along a housing inner surface, a housing top surface, and a housing outwardly facing peripheral surface of the housing, the housing outwardly facing peripheral surface being an outermost exterior surface of the housing and being substantially opposite the housing inner surface, the expansion membrane assembly outwardly expandable within the housing towards the housing inner surface and a gap is defined between a portion of an outer surface of the expansion membrane assembly and a portion of the housing inner surface; and

positioning a filter element for filtering a fluid at least partially within the expansion membrane assembly and at least partially within the housing such that the expansion membrane assembly fluidly separates and is positioned between the housing and the filter element, wherein the gap is defined between a portion of an outer surface of the expansion membrane assembly and a portion of the housing inner surface with the filter element radially spaced apart from an inner surface of the expansion membrane assembly.

16. The method of claim 15 , wherein positioning the expansion membrane assembly at least partially within the housing causes at least one of an outer seal or a bottom seal to be formed between the expansion membrane assembly and at least one of the housing inner surface and the housing top surface, respectively.

17. The method of claim 15 , wherein positioning the expansion membrane assembly at least partially within the housing causes a lip of the expansion membrane assembly to extend along the housing outwardly facing peripheral surface, and

wherein positioning the filter element at least partially within the expansion membrane assembly and at least partially within the housing positions a membrane body of the expansion membrane assembly between the housing inner surface and the filter element.

18. The method of claim 17 , wherein positioning the expansion membrane assembly at least partially within the housing causes a bottom seal to be formed between a bottom surface of an extension of the membrane body and the housing top surface.

19. A method of assembling a filter assembly comprising:

positioning an expansion membrane assembly at least partially in a housing such that the expansion membrane assembly extends along a housing inner surface, a housing top surface, and a housing outer surface of the housing, the expansion membrane assembly outwardly expandable within the housing towards the housing inner surface and a gap is defined between a portion of an outer surface of the expansion membrane assembly and a portion of the housing inner surface;

positioning a filter element for filtering a fluid at least partially within the expansion membrane assembly and at least partially within the housing such that the expansion membrane assembly fluidly separates and is positioned between the housing and the filter element, wherein the gap is defined between a portion of an outer surface of the expansion membrane assembly and a portion of the housing inner surface with the filter element radially spaced apart from an inner surface of the expansion membrane assembly, wherein

positioning the expansion membrane assembly at least partially within the housing causes a lip of the expansion membrane assembly to extend along the housing outer surface,

positioning the filter element at least partially within the expansion membrane assembly and at least partially within the housing positions a membrane body of the expansion membrane assembly between the housing inner surface and the filter element, and

positioning the expansion membrane assembly at least partially within the housing causes a bottom seal to be formed between a bottom surface of an extension of the membrane body and the housing top surface; and

attaching the housing to a filter head such that the filter head extends along the housing outer surface and along an inner surface of the membrane body, thereby causing an inner seal to be formed between the filter head and the inner surface of the membrane body.

20. The method of claim 19 , wherein attaching the housing to the filter head causes a top seal to be formed between a top surface of the extension of the membrane body and a slot surface of the filter head such that the top seal and the bottom seal are opposite each other through the extension.

21. A filter sub-assembly comprising:

a filter element for filtering a fluid; and

an expansion membrane assembly surrounding the filter element,

the expansion membrane assembly comprising a membrane body and a lip, the membrane body positioned around an outer surface of the filter element and the lip extending away from the membrane body,

the membrane body comprising a membrane side wall and a membrane bottom wall that together define an inner area of the membrane body for receiving the filter element, the membrane body comprising an extension extending radially outwardly from a top portion of the membrane side wall, the lip extending axially from a bottom surface of the extension toward the membrane bottom wall and positioned radially outward relative to the extension,

wherein the extension of the membrane body comprises at least one projection or at least one notch that extends in an axial direction to allow for rotational locking.

22. A filter sub-assembly comprising:

a filter element for filtering a fluid; and

an expansion membrane assembly surrounding the filter element,

the expansion membrane assembly comprising a membrane body and a lip, the membrane body positioned around an outer surface of the filter element and the lip extending away from the membrane body and radially spaced out from an outer surface of the membrane body to form a gap between the lip and the membrane body,

the membrane body comprising a membrane side wall, a membrane bottom wall, and a plurality of ribs along the outer surface of the membrane body, each of the plurality of ribs extending axially along the membrane side wall and radially along the membrane bottom wall.

Assignments (4)
CHANGE OF NAME Recorded Dec 30, 2025
From: CUMMINS FILTRATION IP, INC.
To: ATMUS FILTRATION IP INC.
Reel/Frame 074136/0472 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2022
From: HOLM, CHRISTOPHER E.; BECKER, FRANK WOLFGANG
To: CUMMINS FILTRATION IP, INC.
Reel/Frame 060158/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2022
From: CUMMINS TECHNOLOGIES INDIA PRIVATE LIMITED
To: CUMMINS FILTRATION IP, INC.
Reel/Frame 060158/0107 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2022
From: ONKARAPPA, BHARATH SIDDARAMANNA; POKHARKAR, MRINMAYEE BALASAHEB; NAGARE, NILESH BHASKAR; SHAH, NILAY; CHOUDHARY, SANTOSHINI
To: CUMMINS TECHNOLOGIES INDIA PRIVATE LIMITED
Reel/Frame 060158/0234 →
Continuity (3)
Continuation PCTUS2020040222 · Jun 30, 2020
Provisional Application 62869232 · Jul 1, 2019
Related Publication 20220118385A1 · Apr 21, 2022