Filter element and fluid filter with radial vent hole

US11266930B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11266930-B2
Application numberUS-201816196192-A
CountryUS
Kind codeB2
Filing dateNov 20, 2018
Priority dateFeb 27, 2014
Publication dateMar 8, 2022
Grant dateMar 8, 2022

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A filter element for filtering a fluid is provided with a first end disc and a second end disc. An annularly arranged filter medium is held between the first and second end discs. The filter medium can be flowed through by a fluid to be filtered in a radial direction relative to a longitudinal axis of the filter element from an exterior of the filter element to an interior of the filter element. A fluid outlet socket is connected to the filter medium and extends away from the filter medium in an axial direction past the first end disc. The fluid outlet socket is provided with a wall and at least one vent hole extending through the wall in the radial direction. A fluid filter is provided with a filter housing and with the afore described filter element that is arranged in the filter housing.

First claim

Opening claim text (preview).

What is claimed is: 1. A filter element for filtering a fuel, comprising: an annular filter medium radially surrounding a longitudinal axis and radially spaced away from the longitudinal axis, the longitudinal axis extending through an open interior of the annular filter medium, wherein axial, as used herein, is a direction parallel to the longitudinal axis, wherein radial, as used herein, is a direction transverse to the longitudinal axis; a first end disc having an axial outer side and an axially inner side, the axial inner side arranged directly on a first axial end of the annular filter medium, the first end disc having a central opening; a second end disc arranged directly on an opposite second axial end of the annular filter medium; wherein the an annular filter medium is held between the first and second end discs, wherein the annularly arranged filter medium is configured to be flowed through by the fuel to be filtered in a radial direction from a radial outer side of the annular filter medium to radial inner side interior of the annular filter medium; a tubular fluid outlet socket formed as an annular wall arranged at the central opening and projects axially outwardly away from the annular filter medium at an exterior of the filter element at the axial outer side of the first end disc, the tubular fluid outlet socket having a fluid outlet opening extending axially through an interior of the tubular fluid outlet socket; the axially projecting annular wall of the fluid outlet socket having at least one vent hole formed as a through hole into and extending radially through the axially projecting annular wall from a radially inner surface to a radially outer surface of the annular wall of the tubular fluid outlet socket, the at least one vent hole having a first open end in the radially outer surface of the axially extending annular outer wall, and an opposite second open end in the radially inner surface of the annular wall of the tubular fluid outlet socket and at the fluid outlet opening at the interior of the tubular fluid outlet socket, both the first and second open ends of the at least one vent hole arranged at the axial outer side of the first end disc; an annular collar arranged on the radially outer surface of the axially extending annular wall, the annular collar positioned at the axial outer side of the first end disc; wherein the annular collar has at least one interruption arranged at the at least one vent hole such that the at least one vent hole opens through the annular collar. 2. The filter element according to claim 1 , further comprising a particle filtering medium that is arranged at the at least one vent hole. 3. The filter element according to claim 2 , wherein the particle filtering medium is arranged fluidically downstream of the vent hole. 4. The filter element according to claim 3 , wherein the particle filtering medium is a final water separation pipe arranged in the interior of the filter element, wherein the final water separation pipe is configured to effect final separation of water contained in the fluid. 5. The filter element according to claim 4 , wherein the fluid outlet socket is monolithically formed together with the final water separation pipe. 6. The filter element according to claim 1 , wherein the at least one vent hole is several vent holes arranged spaced apart from each other in a circumferential direction of the tubular fluid outlet socket about the longitudinal axis and extending in a radial direction through the circumferential wall of the tubular fluid outlet socket. 7. A fluid filter comprising: a filter housing; and a filter element according to claim 1 arranged in the filter housing. 8. The fluid filter according to claim 7 , wherein the filter housing comprises: a cover part comprising a centrally arranged fluid outlet, wherein the fluid outlet is fluidically connected with the tubular fluid outlet socket of the filter element, wherein the cover part comprises several inlet openings for the fluid; and wherein the several inlet openings are arranged around the outlet opening. 9. The fluid filter according to claim 8 , wherein the at least one vent hole is several vent holes arranged spaced apart from each other in a circumferential direction of the tubular fluid outlet socket about the longitudinal axis and extending in a radial direction through the circumferential wall of the fluid outlet socket; and wherein the inlet openings each have correlated therewith one of said several vent holes, respectively. 10. A filter element for filtering a fuel, comprising: an annular filter medium radially surrounding a longitudinal axis and radially spaced away from the longitudinal axis, the longitudinal axis extending through an open interior of the annular filter medium, wherein axial, as used herein, is a direction parallel to the longitudinal axis, wherein radial, as used herein, is a direction transverse to the longitudinal axis; a first end disc having an axial outer side and an axially inner side, the axial inner side arranged directly on a first axial end of the annular filter medium, the first end disc having a central opening; a second end disc arranged directly on an opposite second axial end of the annular filter medium; wherein the annular filter medium is held between the first and second end discs, wherein the annular filter medium is configured to be flowed through by the fuel to be filtered in a radial direction relative to a longitudinal axis of the filter element from a radial outer side of the annular filter medium to radial inner side interior of the annular filter medium; wherein the first end disc forms a tubular fluid outlet socket formed as an annular wall surrounding the central opening and projecting axially outwardly from the axial outer side of the first end disc, the central opening of the first end disc extending axially through an interior of the tubular fluid outlet socket; the axially projecting annular wall of the tubular fluid outlet socket having at least one vent hole formed as a through hole into and extending radially through the annular wall from a radially inner surface to a radially outer surface of the annular wall of the tubular fluid outlet socket, the at least one vent hole having a first open end in the radially outer surface of the axially projecting annular wall, and an opposite second open end in the radially inner surface of the annular wall of the tubular fluid outlet socket and at the fluid outlet opening at the interior of the tubular fluid outlet socket, both the first and second open ends of the at least one vent hole arranged at the axial outer side of the first end disc; an annular collar arranged on the radially outer surface of the axially extending annular wall, the annular collar positioned at the axial outer side of the first end disc; wherein the annular collar has at least one interruption arranged at the at least one vent hole such that the at least one vent hole opens through the annular collar. 11. The filter element according to claim 10 , further comprising: a particle filtering medium arranged in an interior of the annular filter medium and interposed between the at least one vent hole and the fluid outlet opening, wherein the particle filtering medium is configured to effect final separation of water from the fuel.

Assignees

Inventors

Classifications

  • B01D36/001Primary

    Filters in combination with devices for the removal of gas, air purge systems · CPC title

  • arranged concentrically or coaxially · CPC title

  • Construction of the casing · CPC title

  • B01D35/005Primary

    Filters specially adapted for use in internal-combustion engine lubrication or fuel systems · CPC title

  • with projections extending in a radial outward direction, e.g. for use as a guide, spacing means · CPC title

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What does patent US11266930B2 cover?
A filter element for filtering a fluid is provided with a first end disc and a second end disc. An annularly arranged filter medium is held between the first and second end discs. The filter medium can be flowed through by a fluid to be filtered in a radial direction relative to a longitudinal axis of the filter element from an exterior of the filter element to an interior of the filter element…
Who is the assignee on this patent?
Mann & Hummel Gmbh
What technology area does this patent fall under?
Primary CPC classification B01D36/001. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Mar 08 2022 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).