IP Library Granted Patent US 11,033,843
Granted Patent B2
US 11,033,843 · App. 16/885,020 · Granted Jun 15, 2021

Press-in filter spud that is free to spin

Inventors: Russell A. Sutherland (Modesto, CA); Bradley W. Harbur (Modesto, CA)
Assignee: Parker-Hannifin Corporation
B01D35/306B01D27/08B01D2201/291B01D2201/347B01D2201/4023B01D2201/4092
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Quick Facts
Patent No.
US 11,033,843
App. No.
16/885,020
Granted
Jun 15, 2021
Kind
B2
Abstract

A filter element, filter head, a filter system and methods of assembling or mounting a filter element to a filter head are provided. The filter element and filter head have cooperating axially undulating sealing regions. The filter head has a spud that has a non-cylindrical region that extends through a non-circular opening in the filter element to communicate a central bore of the spud with a central cavity defined by filter media of the filter element. The method includes angularly aligning the undulating sealing regions by inserting the non-cylindrical region of the spud through the non-circular opening of the filter element.

Claims (32)

1. A filter system comprising:

a filter head including:

a first port and a second port;

a threaded filter mounting interface that includes a mounting thread;

an axially extending spud, the spud having a bore therethrough in operable fluid communication with the first port, the spud having a first axially extending portion defining a non-cylindrical outer surface, the spud having a second axially extending portion defining a first axially undulating and radially facing sealing region, the second axially extending portion being axially offset from the first axially extending portion;

a spin-on filter element comprising:

an outer housing including:

an outer shell;

a threaded attachment member secured to the outer shell, the threaded attachment member including a mounting thread that defines a rotational axis, the threaded attachment member and outer shell defining an internal shell cavity;

an element subassembly secured within the internal shell cavity, the element subassembly including:

a tubular ring of filter media extending between first and second ends and surrounding an internal media cavity;

a first end cap attached to the first end,

a central opening extending through the first end cap in fluid communication with the internal media cavity, the central opening defining a non-circular periphery, and

a seal member attached to the first end cap and surrounding the central opening of the first end cap, the seal member having an axially undulating and radially facing sealing region;

wherein:

the first axially undulating and radially facing sealing region of the filter head engages the axially undulating and radially facing sealing region of the spin-on filter element;

the threaded attachment member threadedly engages the threaded filter mounting interface; and

the first axially extending portion of the spud extends through the central opening of the element subassembly with the bore of the spud in fluid communication with the internal media cavity; and

wherein the mounting thread of the threaded filter mounting interface is axially spaced relative to the first axially extending portion of the spud a first distance and the mounting thread of the threaded attachment member is axially spaced relative to the central opening of the element subassembly a second distance less than the first distance such that the first axially extending portion of the spud extends into the central opening before the mounting thread of the filter head engages the mounting thread of the spin-on filter element.

2. The filter system of claim 1 , wherein the non-cylindrical outer surface of the spud cooperates with the non-circular periphery of the central opening such that insertion of the first axially extending portion of the spud into the central opening angularly aligns the first axially undulating and radially facing sealing region of the filter head with the axially undulating and radially facing sealing region of the spin-on filter element.

3. A method of mounting a spin-on filter element to a filter head, the filter head includes a threaded filter mounting interface that includes a mounting thread, an axially extending spud, the spud having a bore therethrough in operable fluid communication with a first port of the filter head, the spud having a first axially extending portion defining a non-cylindrical outer surface, the spud having a second axially extending portion defining a first axially undulating and radially facing sealing region, the second axially extending portion being axially offset from the first axially extending portion, the spin-on filter element includes an outer housing including an outer shell, a threaded attachment member secured to the outer shell, the threaded attachment member including a mounting thread that defines a rotational axis, the threaded attachment member and outer shell defining an internal shell cavity, an element subassembly secured within the internal shell cavity, the element subassembly includes a tubular ring of filter media extending between first and second ends and surrounding an internal media cavity, a first end cap attached to the first end, a central opening extending through the first end cap in fluid communication with the internal media cavity, the central opening defining a non-circular periphery, and a seal member attached to the first end cap and surrounding the central opening of the first end cap, the seal member having an axially undulating and radially facing sealing region, wherein the mounting thread of the threaded filter mounting interface is axially spaced relative to the first axially extending portion of the spud a first distance and the mounting thread of the threaded attachment member is axially spaced relative to the central opening of the element subassembly a second distance less than the first distance such that the first axially extending portion of the spud extends into the central opening before the mounting thread of the filter head engages the mounting thread of the spin-on filter element, the method comprising:

angularly aligning the first axially undulating and radially facing sealing region of the filter head with the axially undulating and radially facing sealing region of the spin-on filter element by inserting the first axially extending portion of the spud into the central opening with the non-cylindrical outer surface angularly oriented with the non-circular periphery of the central opening; and

engaging the mounting thread of the spin-on filter element with the mounting thread of the filter head

wherein the non-cylindrical outer surface of the first axially extending portion of the spud is axially inserted into the central opening and angularly aligned and engaged with the non-circular periphery of the central opening prior to the step of engaging the mounting thread of the spin-on filter element with the mounting thread of the filter head.

4. The method of claim 3 , wherein:

engaging the mounting thread of the spin-on filter element with the mounting thread of the filter head includes rotating the outer housing of the spin-on filter element relative to the threaded filter mounting interface; and

wherein rotating the outer housing rotates the spud relative to the threaded filter mounting interface.

5. The method of claim 3 , wherein:

engaging the mounting thread of the spin-on filter element with the mounting thread of the filter head includes rotating the outer housing of the spin-on filter element relative to the threaded filter mounting interface; and

further including preventing rotation of the element subassembly relative to the threaded filter mounting interface during the step of engaging by angularly engaging the spud with the central opening, the spud being angularly fixed relative to the threaded filter mounting interface.

6. The method of claim 3 , wherein the spud is axially inserted into the central opening prior to the step of engaging the mounting thread of the spin-on filter element with the mounting thread of the filter head.

7. The method of claim 3 , further comprising radially engaging the first axially undulating and radially facing sealing region of the filter head with the axially undulating and radially facing sealing region of the spin-on filter element to prevent fluid bypass between the spud and the seal member.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2022
From: PARKER-HANNIFIN CORPORATION
To: PARKER INTANGIBLES LLC
Reel/Frame 059900/0975 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2020
From: SUTHERLAND, RUSSELL A.; HARBUR, BRADLEY W.
To: PARKER-HANNIFIN CORPORATION
Reel/Frame 052876/0601 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2020
From: SUTHERLAND, RUSSELL A.; HARBUR, BRADLEY W.
To: PARKER-HANNIFIN CORPORATION
Reel/Frame 052766/0157 →
Continuity (3)
Continuation PCTUS2018063329 · Nov 30, 2018
Provisional Application 62594419 · Dec 4, 2017
Related Publication 20200282349A1 · Sep 10, 2020
Cited By (3)
US 1,059,543 US 1,059,544 US 1,103,334