IP Library Granted Patent US 12708869
Granted Patent B2
US 12708869 · App. 18/132,561 · Granted Aug 18, 2026

Fluid filter retention mechanism

Inventors: Jon Tyler Immel (Chillicothe, IL); Stephen Ellis Oedewaldt (Mapleton, IL); Philip Carl Spengler (Washington, IL); Brian John Sutton (Edwards, IL); Tony Lynn Alwardt (Germantown Hills, IL)
Assignee: Caterpillar Inc.
B01D35/30B01D2201/291B01D2201/31
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Quick Facts
Patent No.
US 12708869
App. No.
18/132,561
Granted
Aug 18, 2026
Kind
B2
Abstract

An endcap for a filter element includes an annular plate member disposed adjacent an axial end surface of an annular filter medium of the filter element. A radially outer annular flange projects axially from a surface of the annular plate member. The radially outer annular flange includes a winglet feature extending radially outwardly in a cantilever fashion from an outer circumferential surface of the radially outer annular flange in a direction opposite to a direction in which the filter element is rotated during installation into a filter base of a filter system, with the winglet feature deflecting toward the outer circumferential surface of the radially outer annular flange through contact with a wedge-shaped protrusion projecting radially inwardly from an inner circumference of the filter base as the filter element is rotatably installed into the filter base, and springing back to its undeflected configuration after passing the wedge-shaped protrusion.

Claims (38)

1 . An endcap for a filter element, the endcap comprising:

an annular plate member disposed adjacent an axial end surface of an annular filter medium of the filter element;

a radially outer annular flange projecting axially from a surface of the annular plate member;

the radially outer annular flange including at least one winglet feature extending radially outwardly in a cantilever fashion from an outer circumferential surface of the radially outer annular flange in a direction such that the at least one winglet feature forms an acute angle with the outer circumferential surface on a clockwise side of the at least one winglet feature when viewed along a perspective line extending from a side of the annular plate member opposite from the annular filter medium toward the at least one winglet feature, with the at least one winglet feature being configured to deflect toward the outer circumferential surface of the radially outer annular flange through contact with a wedge-shaped protrusion projecting radially inwardly from an inner circumference of a filter base of a filter system as the filter element is simultaneously moved axially and rotatably when being threadedly engaged into the filter base, and spring back to its undeflected configuration after passing the wedge-shaped protrusion.

2 . The endcap of claim 1 , wherein the at least one winglet feature comprises two winglet features extending radially outward from diametrically opposite sides of the radially outer annular flange, and wherein the spring back of the winglet features provides one or more of tactile and auditory feedback indicative of the filter element being properly installed into the filter base.

3 . The endcap of claim 2 , wherein the two winglet features extend radially outwardly from diametrically opposite sides of the radially outer annular flange in tangentially opposite directions from each other.

4 . The endcap of claim 1 , wherein the at least one winglet feature includes a straight proximal portion connected to the radially outer annular flange and a curved distal portion.

5 . The endcap of claim 4 , wherein the curved distal portion of the at least one winglet feature curves radially inwardly from a distal end of the straight proximal portion toward the radially outer annular flange.

6 . The endcap of claim 1 , wherein the at least one winglet feature has a width that is approximately equal to the width of the radially outer annular flange.

7 . The endcap of claim 1 , wherein the annular plate member includes a centrally located flange projecting axially from the annular plate member, and the centrally located flange includes an annular seal member disposed adjacent a distal end of the centrally located flange and retained in a radially outwardly facing groove formed around an outer circumferential surface of the centrally located flange, the annular seal member being configured to provide a radially facing seal interface with respect to a radially facing surface associated with an outlet formed in the filter base.

8 . The endcap of claim 1 , wherein the annular plate member includes a radially inner annular flange projecting from the annular plate member and being configured to extend axially within an inner diameter of the annular filter medium and the radially outer annular flange is configured to overlap with a top end of a radially outer circumferential surface of the annular filter medium.

9 . The endcap of claim 1 , wherein the at least one winglet feature is molded integrally with the radially outer annular flange of the endcap.

10 . A filter element, comprising:

an annular filter medium;

an endcap including an annular plate member disposed adjacent an axial end surface of the annular filter medium;

a radially outer annular flange projecting axially from a surface of the annular plate member;

the radially outer annular flange including at least one winglet feature extending radially outwardly in a cantilever fashion from an outer circumferential surface of the radially outer annular flange in a direction such that the at least one winglet feature forms an acute angle with the outer circumferential surface on a clockwise side of the at least one winglet feature when viewed along a perspective line extending from a side of the annular plate member opposite from the annular filter medium toward the at least one winglet feature, with the at least one winglet feature being configured to deflect toward the outer circumferential surface of the radially outer annular flange through contact with a wedge-shaped protrusion projecting radially inwardly from an inner circumference of a filter base of a filter system as the filter element is simultaneously moved axially and rotatably when being threadedly engaged into the filter base, and spring back to its undeflected configuration after passing the wedge-shaped protrusion.

11 . The filter element of claim 10 , wherein the at least one winglet feature comprises two winglet features extending radially outwardly from diametrically opposite sides of the radially outer annular flange, and wherein the spring back of the winglet features provides tactile and auditory feedback indicative of the filter element being properly installed into the filter base.

12 . The filter element of claim 11 , wherein the two winglet features extend radially outwardly from diametrically opposite sides of the radially outer annular flange in tangentially opposite directions from each other.

13 . The filter element of claim 10 , wherein the at least one winglet feature includes a straight proximal portion connected to the radially outer annular flange and a curved distal portion.

14 . The filter element of claim 13 , wherein the curved distal portion of the at least one winglet feature curves radially inwardly from a distal end of the straight proximal portion toward the radially outer annular flange.

15 . The filter element of claim 10 , wherein the at least one winglet feature has a width that is approximately equal to the width of the radially outer annular flange.

16 . The filter element of claim 10 , wherein the annular plate member includes a centrally located flange projecting axially from the annular plate member, and the centrally located flange includes an annular seal member disposed adjacent a distal end of the centrally located flange and retained in a radially outwardly facing groove formed around an outer circumferential surface of the centrally located flange, the annular seal member being configured to provide a radially facing seal interface with respect to a radially facing surface associated with an outlet formed in the filter base.

17 . The filter element of claim 10 , wherein the annular plate member includes a radially inner annular flange projecting from the annular plate member and being configured to extend axially within an inner diameter of the annular filter medium and the radially outer annular flange is configured to overlap with a top end of a radially outer circumferential surface of the annular filter medium.

18 . The filter element of claim 10 , wherein the at least one winglet feature is molded integrally with the radially outer annular flange of the endcap.

19 . A filter system, comprising:

a filter base configured for connection of the filter system to a vehicle or other machine, the filter base including:

an inlet port for introduction of unfiltered fluid,

an outlet port for discharge of filtered fluid,

a wedge-shaped protrusion projecting radially inwardly from an inner circumferential surface of the filter base, and

a backstop protrusion circumferentially spaced from the wedge-shaped protrusion and projecting radially inwardly from the inner circumferential surface of the filter base; and

a filter cartridge containing an annular filter medium being connected to the filter base,

a top endcap of the filter cartridge is disposed at one axial end of the annular filter medium,

the top endcap includes a radially outer annular flange projecting axially from the top endcap,

the radially outer annular flange includes at least one winglet feature extending radially outwardly in a cantilever fashion from an outer circumferential surface of the radially outer annular flange in a direction such that the at least one winglet feature forms an acute angle with the outer circumferential surface on a clockwise side of the at least one winglet feature when viewed along a perspective line extending from a side of the top endcap opposite from the annular filter medium toward the at least one winglet feature,

the at least one winglet feature is configured to deflect toward the outer circumferential surface of the radially outer annular flange through contact with the wedge-shaped protrusion as the filter cartridge is simultaneously moved axially and rotatably when being threadedly engaged into the filter base, and

the at least one winglet feature is configured to spring back to its undeflected configuration after passing the wedge-shaped protrusion and before contacting the backstop protrusion.

20 . The filter system of claim 19 , wherein the at least one winglet feature comprises two winglet features extending radially outwardly from diametrically opposite sides of the radially outer annular flange, and wherein the spring back of the winglet features provides tactile and auditory feedback indicative of the filter element being properly installed into the filter base.