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US20110017657A1 - Filter Device, Especially Liquid Filter - Google Patents

Filter Device, Especially Liquid Filter Download PDF

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Publication number
US20110017657A1
US20110017657A1 US12/810,198 US81019808A US2011017657A1 US 20110017657 A1 US20110017657 A1 US 20110017657A1 US 81019808 A US81019808 A US 81019808A US 2011017657 A1 US2011017657 A1 US 2011017657A1
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US
United States
Prior art keywords
socket
filter
filter device
section
sealing element
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US12/810,198
Inventor
Guenter Jokschas
Heike Kluson-Heßlinger
Andre Roesgen
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mann and Hummel GmbH
Original Assignee
Mann and Hummel GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mann and Hummel GmbH filed Critical Mann and Hummel GmbH
Assigned to MANN+HUMMEL GMBH reassignment MANN+HUMMEL GMBH ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: KLUSON-HESSLINGER, KEIKE, JOKSCHAS, GUENTER, ROESGEN, ANDRE
Publication of US20110017657A1 publication Critical patent/US20110017657A1/en
Abandoned legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D29/00Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor
    • B01D29/11Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with bag, cage, hose, tube, sleeve or like filtering elements
    • B01D29/13Supported filter elements
    • B01D29/15Supported filter elements arranged for inward flow filtration
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D29/00Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor
    • B01D29/11Filters with filtering elements stationary during filtration, e.g. pressure or suction filters, not covered by groups B01D24/00 - B01D27/00; Filtering elements therefor with bag, cage, hose, tube, sleeve or like filtering elements
    • B01D29/13Supported filter elements
    • B01D29/15Supported filter elements arranged for inward flow filtration
    • B01D29/21Supported filter elements arranged for inward flow filtration with corrugated, folded or wound sheets
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D35/00Filtering devices having features not specifically covered by groups B01D24/00 - B01D33/00, or for applications not specifically covered by groups B01D24/00 - B01D33/00; Auxiliary devices for filtration; Filter housing constructions
    • B01D35/005Filters specially adapted for use in internal-combustion engine lubrication or fuel systems
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2201/00Details relating to filtering apparatus
    • B01D2201/29Filter cartridge constructions
    • B01D2201/291End caps
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2201/00Details relating to filtering apparatus
    • B01D2201/34Seals or gaskets for filtering elements

Definitions

  • the invention concerns a filter device, especially a liquid filter, such as a fuel filter or oil filter, according to the preamble of claim 1 .
  • a filter device that is used as an oil filter or a fuel filter is disclosed in DE 197 46 752 A1.
  • the filter device comprises a hollow cylindrically embodied filter element that is secured on a radially inwardly positioned support structure and is flowed through by the fluid to be purified radially from the exterior to the interior wherein the filter interior forms an axial discharge passage for the purified fluid.
  • the filter element is framed by terminal disks at the end faces that have a central cutout for discharging the fluid from the filter interior.
  • a sealing ring is inserted that is supported on an inner housing wall and separates the axial discharge space from the inflow side of the filter element.
  • Such sealing elements are mandatorily required for a flow-tight separation of raw side and clean side.
  • the invention has the object to separate with simple means and in a space-saving as well as effective way the raw side from the clean side in a filter device.
  • the filter device has in a filter housing a hollow cylindrical filter element that is to be flowed through by the fluid to be purified in radial direction.
  • the interior of the filter element forms an axial flow space.
  • At one end face of the filter element there is a terminal disk where the sealing element is arranged.
  • this sealing element is injection-molded onto an axially projecting, annular socket that is connected to the terminal disk.
  • the stability of the filter device is improved because forces in the axial direction are transmitted substantially from the socket onto the filter housing.
  • the sealing element is positioned between the end face of the socket and the inner wall of the filter housing; since this section of the sealing element is however usually very thin-walled, a tilted positioning of the filter device that could lead to leakage flows is not to be expected as a result of the deformation of the sealing element.
  • the sealing element is comprised of an injection-moldable silicone material, in particular a fluorosilicone rubber (FVMQ) that is characterized by an excellent fuel resistance, in particular by excellent diesel fuel resistance and therefore in a special way is suitable for use in fuel filters.
  • FVMQ fluorosilicone rubber
  • the socket has shaped elements that contribute to an improved adhesion of the sealing material on the socket.
  • These shaped elements change the surface of the socket and are embodied as projections or, according to a preferred embodiment, as cutouts in the wall of the socket. In the embodiment as cutouts, they can be distributed uniformly about the circumference of the socket.
  • the sealing material will deposit on the shaped elements so that an additional resistance with respect to accidental removal of the sealing material from the socket is provided.
  • the cutouts are advantageously completely filled with the sealing material so that no leakage flows through these cutouts may occur.
  • the sealing material is expediently injection-molded onto the inner side, the outer side as well as the free end face of the socket so that the best possible sealing action is achieved. Even though, it is in principle sufficient to provide the sealing material only on the inner side or only on the outer side or optionally to provide the sealing material only on the end face of the socket or on a combination of end face and inner side or outer side of the socket.
  • the annular socket in its simplest embodiment is a cylinder whose side walls and free end face form the support for the sealing material.
  • other geometries may be provided also for the socket, for example, a socket with a cylindrically shaped section and a further section angularly extending therefrom or a socket with a slantedly extending wall that is positioned at an angle to the plane at the terminal disk.
  • the sealing material may extend either about the entire inner side and outer side of the socket or, according to a further embodiment, only across a partial area of the socket, for example, on the angularly projecting section of the socket.
  • two concentric sockets are provided that are spaced apart radially from one another wherein the sealing material is injection-molded onto both sockets. Since each one of the two sealing elements is provided with a sealing line, the sealing action is improved.
  • the socket is advantageously embodied as a monolithic part of the terminal disk; both components can be manufactured of injection-moldable plastic material. Basically, it is however also possible to embody socket and terminal disk as two separate components that are connected to one another
  • FIG. 1 a perspective view of the lower part of a filter device with a hollow cylindrical filter element whose end face is framed by a terminal disk that is provided with a central cutout for discharging the purified fluid, wherein the central cutout is surrounded by a socket onto which sealing material is injection-molded;
  • FIG. 2 a section view of the filter device according to FIG. 1 in the area of the socket;
  • FIG. 3 a section illustration of a further embodiment according to which two sockets concentrically arranged relative to one another are provided onto which sealing material is injection-molded, respectively;
  • FIG. 4 a further embodiment in which the socket has additionally an angularly arranged section that is a support for the sealing element;
  • FIG. 5 a further embodiment in which the socket is comprised of a slantedly extending wall that is formed monolithically with the terminal disk.
  • the filter devices illustrated in the Figures are suitable for filtration of liquid or gaseous fluids, in particular for filtering fuel such as diesel fuel or oil. Also, a use, for example, as an air filter is possible.
  • the filter device 1 illustrated in FIG. 1 comprises a hollow cylindrical filter element 2 in a filter housing 3 wherein the filter element 2 is flowed through radially from the exterior to the interior by the fluid to be purified so that the outer wall surface represents the raw side and the axial interior in the filter element represents the clean side from where the purified fluid is discharged axially through the end face.
  • the axial end face of the filter element 2 is framed by a terminal disk 4 that has a central cutout 5 that communicates with the axial interior of the filter element 2 .
  • a cylindrical socket 6 is inserted that advantageously is monolithically formed with the terminal disk 4 .
  • the socket 6 is a support for a sealing element 8 that is comprised of an injection-moldable material, in particular of a silicone material such as partially fluorinated liquid silicone (FVMQ) and is injection-molded onto the socket 6 .
  • the sealing material is located on the outer side, the inner side and the free end face of the socket 6 and covers also completely the cutouts 7 in the wall of the socket 6 .
  • the cutouts 7 have the function of shaped elements that ensure improved adhesion of the sealing material on the socket 6 .
  • the selection of the sealing material depends on the fluid to be purified.
  • the aforementioned material FVMQ is used that is characterized by high fuel resistance while at the same time providing excellent injection molding properties.
  • the socket 6 is formed monolithically with the terminal disk 4 .
  • the sealing element 8 has two contact lines: on the one hand, in the area of the free end face on the socket 6 and, on the other hand, at the transition area between socket 6 and terminal disk 4 on the side facing away from the central cutout 5 . In the area of the two contact lines the sealing element 8 has a greater wall thickness.
  • a circumferentially extending ring in the area 10 of the seal support a reinforcement ring can be provided. This ring is positioned circumferentially below or on the seal 8 .
  • high-strength sealing materials or sealing materials that have a high tear resistance are also be employed.
  • a second socket 9 is provided that extends concentrically relative to the first socket 6 but in comparison to the first socket 6 has a smaller diameter. Also, the axial extension of the second socket 9 is less than that of the first socket 6 .
  • the second socket 9 is also formed as a monolithic part with the terminal disk 4 as is the first socket 6 .
  • the sealing element 8 is injection-molded onto the first socket 6 as well as onto the second socket 9 and extends along the inner side of the first socket 6 , on the inner and outer sides of the second socket 9 as well as in the intermediate area on the terminal disk 4 between first and second sockets 6 and 9 . Moreover, the two free end faces of the sockets 6 and 9 are covered with sealing material.
  • both sealing lines are located in the area of the free end faces of the sockets 6 and 9 .
  • the cylindrical socket 6 in the area of its end face is provided with a section 6 a that is radially inwardly angled at a 90 degree angle whose free end face is a support of the injection-molded sealing element 8 .
  • the socket 6 that is a monolithic part with the terminal disk 4 is angularly embodied; it is positioned relative to the plane of the terminal disk 4 at an angle deviating from 90 degrees and is oriented radially outwardly.
  • the sealing element 8 that is injection-molded on the socket 6 engages the end face of the socket as well as the inner side and the outer side and has a relatively complex cross-sectional geometry. Two sealing lines are formed by means of which the sealing element 8 is seal-tightly supported on a further component of the filter device.

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  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Engineering & Computer Science (AREA)
  • Combustion & Propulsion (AREA)
  • Filtration Of Liquid (AREA)
  • Fuel-Injection Apparatus (AREA)

Abstract

A filter device comprises a hollow cylindrical filter element in a filter housing. The fluid that is to be purified is to radially flow through the filter element. The interior of the filter element forms an axial flow chamber for the fluid. An end plate is arranged on the front side of the filter element. An annular neck, onto which a sealing element is injection-molded, is connected to the end plate.

Description

    TECHNICAL FIELD
  • The invention concerns a filter device, especially a liquid filter, such as a fuel filter or oil filter, according to the preamble of claim 1.
  • PRIOR ART
  • A filter device that is used as an oil filter or a fuel filter is disclosed in DE 197 46 752 A1. The filter device comprises a hollow cylindrically embodied filter element that is secured on a radially inwardly positioned support structure and is flowed through by the fluid to be purified radially from the exterior to the interior wherein the filter interior forms an axial discharge passage for the purified fluid. The filter element is framed by terminal disks at the end faces that have a central cutout for discharging the fluid from the filter interior. In the central cutout of the terminal disk a sealing ring is inserted that is supported on an inner housing wall and separates the axial discharge space from the inflow side of the filter element. Such sealing elements are mandatorily required for a flow-tight separation of raw side and clean side.
  • SUMMARY OF THE INVENTION
  • The invention has the object to separate with simple means and in a space-saving as well as effective way the raw side from the clean side in a filter device.
  • This object is solved according to the invention with the features of claim 1. The dependent claims provide expedient further embodiments.
  • The filter device has in a filter housing a hollow cylindrical filter element that is to be flowed through by the fluid to be purified in radial direction. The interior of the filter element forms an axial flow space. At one end face of the filter element there is a terminal disk where the sealing element is arranged. According to the invention, this sealing element is injection-molded onto an axially projecting, annular socket that is connected to the terminal disk.
  • With this embodiment different advantages are achieved. By injection-molding the sealing element separate assembly steps are no longer required that in an embodiment of the sealing element as its own component, in particular as a sealing ring, would be otherwise required. In the embodiment according to the invention, it is instead sufficient to injection-mold, before mounting the filter device, the sealing material onto the annular socket; subsequently, the filter element including sealing disk and socket together with the injection-molded sealing element can be inserted into the filter housing. Leakage flows caused by mounting are prevented in this way.
  • Moreover, the stability of the filter device is improved because forces in the axial direction are transmitted substantially from the socket onto the filter housing. This means that the sealing element is positioned between the end face of the socket and the inner wall of the filter housing; since this section of the sealing element is however usually very thin-walled, a tilted positioning of the filter device that could lead to leakage flows is not to be expected as a result of the deformation of the sealing element.
  • According to an advantageous embodiment, the sealing element is comprised of an injection-moldable silicone material, in particular a fluorosilicone rubber (FVMQ) that is characterized by an excellent fuel resistance, in particular by excellent diesel fuel resistance and therefore in a special way is suitable for use in fuel filters.
  • According to a further advantageous embodiment, the socket has shaped elements that contribute to an improved adhesion of the sealing material on the socket. These shaped elements change the surface of the socket and are embodied as projections or, according to a preferred embodiment, as cutouts in the wall of the socket. In the embodiment as cutouts, they can be distributed uniformly about the circumference of the socket. During the injection molding step, the sealing material will deposit on the shaped elements so that an additional resistance with respect to accidental removal of the sealing material from the socket is provided. In case of the cutouts in the wall of the socket, the cutouts are advantageously completely filled with the sealing material so that no leakage flows through these cutouts may occur.
  • The sealing material is expediently injection-molded onto the inner side, the outer side as well as the free end face of the socket so that the best possible sealing action is achieved. Even though, it is in principle sufficient to provide the sealing material only on the inner side or only on the outer side or optionally to provide the sealing material only on the end face of the socket or on a combination of end face and inner side or outer side of the socket.
  • The annular socket in its simplest embodiment is a cylinder whose side walls and free end face form the support for the sealing material. However, other geometries may be provided also for the socket, for example, a socket with a cylindrically shaped section and a further section angularly extending therefrom or a socket with a slantedly extending wall that is positioned at an angle to the plane at the terminal disk. The sealing material may extend either about the entire inner side and outer side of the socket or, according to a further embodiment, only across a partial area of the socket, for example, on the angularly projecting section of the socket.
  • According to yet another advantageous embodiment, two concentric sockets are provided that are spaced apart radially from one another wherein the sealing material is injection-molded onto both sockets. Since each one of the two sealing elements is provided with a sealing line, the sealing action is improved.
  • The socket is advantageously embodied as a monolithic part of the terminal disk; both components can be manufactured of injection-moldable plastic material. Basically, it is however also possible to embody socket and terminal disk as two separate components that are connected to one another
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • Further advantages and expedient embodiments may be taken from the additional claims, the figure description, and the drawings. It is shown in:
  • FIG. 1 a perspective view of the lower part of a filter device with a hollow cylindrical filter element whose end face is framed by a terminal disk that is provided with a central cutout for discharging the purified fluid, wherein the central cutout is surrounded by a socket onto which sealing material is injection-molded;
  • FIG. 2 a section view of the filter device according to FIG. 1 in the area of the socket;
  • FIG. 3 a section illustration of a further embodiment according to which two sockets concentrically arranged relative to one another are provided onto which sealing material is injection-molded, respectively;
  • FIG. 4 a further embodiment in which the socket has additionally an angularly arranged section that is a support for the sealing element;
  • FIG. 5 a further embodiment in which the socket is comprised of a slantedly extending wall that is formed monolithically with the terminal disk.
  • EMBODIMENTS OF THE INVENTION
  • In the Figures the same components are identified with same reference numerals.
  • The filter devices illustrated in the Figures are suitable for filtration of liquid or gaseous fluids, in particular for filtering fuel such as diesel fuel or oil. Also, a use, for example, as an air filter is possible.
  • The filter device 1 illustrated in FIG. 1 comprises a hollow cylindrical filter element 2 in a filter housing 3 wherein the filter element 2 is flowed through radially from the exterior to the interior by the fluid to be purified so that the outer wall surface represents the raw side and the axial interior in the filter element represents the clean side from where the purified fluid is discharged axially through the end face. The axial end face of the filter element 2 is framed by a terminal disk 4 that has a central cutout 5 that communicates with the axial interior of the filter element 2. In the central cutout 5 a cylindrical socket 6 is inserted that advantageously is monolithically formed with the terminal disk 4. In the wall of the socket 6 a plurality of cutouts 7 are provided that are distributed uniformly about the circumference and penetrate the wall. The socket 6 is a support for a sealing element 8 that is comprised of an injection-moldable material, in particular of a silicone material such as partially fluorinated liquid silicone (FVMQ) and is injection-molded onto the socket 6. The sealing material is located on the outer side, the inner side and the free end face of the socket 6 and covers also completely the cutouts 7 in the wall of the socket 6. The cutouts 7 have the function of shaped elements that ensure improved adhesion of the sealing material on the socket 6.
  • The selection of the sealing material depends on the fluid to be purified. For use as a diesel fuel filter, advantageously the aforementioned material FVMQ is used that is characterized by high fuel resistance while at the same time providing excellent injection molding properties.
  • As illustrated in the section view of FIG. 2, the socket 6 is formed monolithically with the terminal disk 4. The sealing element 8 has two contact lines: on the one hand, in the area of the free end face on the socket 6 and, on the other hand, at the transition area between socket 6 and terminal disk 4 on the side facing away from the central cutout 5. In the area of the two contact lines the sealing element 8 has a greater wall thickness. In order to design the seal to be more resistant with regard to high pressure peaks, in a supplemental embodiment a circumferentially extending ring in the area 10 of the seal support a reinforcement ring can be provided. This ring is positioned circumferentially below or on the seal 8. There is also the possibility to employ high-strength sealing materials or sealing materials that have a high tear resistance.
  • In the embodiment according to FIG. 3, on the terminal disk 4 a second socket 9 is provided that extends concentrically relative to the first socket 6 but in comparison to the first socket 6 has a smaller diameter. Also, the axial extension of the second socket 9 is less than that of the first socket 6. The second socket 9 is also formed as a monolithic part with the terminal disk 4 as is the first socket 6. The sealing element 8 is injection-molded onto the first socket 6 as well as onto the second socket 9 and extends along the inner side of the first socket 6, on the inner and outer sides of the second socket 9 as well as in the intermediate area on the terminal disk 4 between first and second sockets 6 and 9. Moreover, the two free end faces of the sockets 6 and 9 are covered with sealing material.
  • There are a total of two sealing lines between the sealing element 8 and the filter housing or the components of the housing; both sealing lines are located in the area of the free end faces of the sockets 6 and 9.
  • In the embodiment according to FIG. 4, the cylindrical socket 6 in the area of its end face is provided with a section 6 a that is radially inwardly angled at a 90 degree angle whose free end face is a support of the injection-molded sealing element 8.
  • In the embodiment according to FIG. 5 the socket 6 that is a monolithic part with the terminal disk 4 is angularly embodied; it is positioned relative to the plane of the terminal disk 4 at an angle deviating from 90 degrees and is oriented radially outwardly. The sealing element 8 that is injection-molded on the socket 6 engages the end face of the socket as well as the inner side and the outer side and has a relatively complex cross-sectional geometry. Two sealing lines are formed by means of which the sealing element 8 is seal-tightly supported on a further component of the filter device.

Claims (12)

1-11. (canceled)
12. A liquid filter device for filtering oil or fuel, comprising:
a filter housing;
a hollow cylindrical filter element arranged in said filter housing and having an axial direction, wherein a fluid to be filtered flows radially through said filter element;
wherein an interior of said filter element (2) forms an axial flow space for said fluid after filtering;
said filter element further comprising
a terminal disk arranged at an axial end face of the filter element;
an axially projecting annular socket secured to said terminal disk, said annular socket including an axially outward projecting annular wall surrounding an open central portion; and
a sealing element arranged on said annular socket over at least a portion of said annular wall, said sealing element operative to form a seal between said terminal end disk and said filter housing to seal between a raw side and a clean side of said filter element;
wherein said sealing element comprises sealing material injection-molded onto said axially projecting annular socket.
13. The filter device of claim 12, wherein said sealing material is comprised of a silicone material.
14. The filter device of claim 13, wherein said silicone material is a fluorine-silicone-rubber (FVMQ).
15. The filter device of claim 12, wherein said annular socket includes shaped elements formed thereon and configured to improve adhesion of said sealing element to said annular socket.
16. The filter device of claim 15, wherein said shaped elements are embodied as cutouts formed into said annular wall of said socket.
17. The filter device of claim 12, further comprising:
a second axially projecting annular socket secured to said terminal disk and arranged concentrically to said first socket, said second annular socket including an axially outward projecting annular wall surrounding an open central portion; and
a sealing element arranged on said second annular socket over at least a portion of said annular wall, said sealing element operative to form a seal between said terminal end disk and said filter housing;
wherein said sealing element is injection-molded onto said second annular socket.
18. The filter device of claim 12, wherein
said socket includes a section extending at an angle to said axial direction and onto which section said sealing material is injection-molded.
19. The filter device of claim 12, wherein
said socket including a first axially extending section and a second section connected to said first section and extending at an angle relative to said first section, said second section extending perpendicularly relative to said first axially extending section.
20. The filter device of claim 18, wherein said socket includes a section configured to support said sealing element at a non-perpendicular and non-zero angle relative to said terminal disk.
21. The filter device of claim 12, wherein said sealing material arranged onto an inner side, an outer side, and a free end face of said socket.
22. The filter device of claim 12, wherein said socket is formed monolithically with said terminal disk.
US12/810,198 2007-12-21 2008-12-18 Filter Device, Especially Liquid Filter Abandoned US20110017657A1 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE202007018076U DE202007018076U1 (en) 2007-12-21 2007-12-21 Filter device, in particular liquid filter
DE202007018076.4 2007-12-21
PCT/EP2008/067904 WO2009080706A1 (en) 2007-12-21 2008-12-18 Filter device, especially liquid filter

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
PCT/EP2008/067904 A-371-Of-International WO2009080706A1 (en) 2007-12-14 2008-12-18 Filter device, especially liquid filter

Related Child Applications (1)

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US14/335,898 Division US10137390B2 (en) 2007-12-14 2014-07-19 Filter device, especially liquid filter

Publications (1)

Publication Number Publication Date
US20110017657A1 true US20110017657A1 (en) 2011-01-27

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ID=40545964

Family Applications (3)

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US12/810,198 Abandoned US20110017657A1 (en) 2007-12-21 2008-12-18 Filter Device, Especially Liquid Filter
US14/335,898 Active 2030-06-12 US10137390B2 (en) 2007-12-14 2014-07-19 Filter device, especially liquid filter
US16/199,804 Abandoned US20190160398A1 (en) 2007-12-14 2018-11-26 Filter Device, Especially Liquid Filter

Family Applications After (2)

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US14/335,898 Active 2030-06-12 US10137390B2 (en) 2007-12-14 2014-07-19 Filter device, especially liquid filter
US16/199,804 Abandoned US20190160398A1 (en) 2007-12-14 2018-11-26 Filter Device, Especially Liquid Filter

Country Status (5)

Country Link
US (3) US20110017657A1 (en)
EP (1) EP2222382B1 (en)
DE (1) DE202007018076U1 (en)
PL (1) PL2222382T3 (en)
WO (1) WO2009080706A1 (en)

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US20100258491A1 (en) * 2009-04-08 2010-10-14 Mann+Hummel Gmbh Filtering device for fluids, in particular for fuel
US20110173937A1 (en) * 2008-07-22 2011-07-21 Donaldson Company, Inc. Air cleaner assembly; components therefor; and, methods
US8453848B2 (en) 2004-04-13 2013-06-04 Donaldson Company, Inc. Filter cartridge for liquid filtration; assembly; and, methods
US8714142B2 (en) 2007-08-02 2014-05-06 Donaldson Company, Inc. Crankcase ventilation filter assembly; components; and methods
JP2014520659A (en) * 2011-07-08 2014-08-25 ハイダック フィルターテヒニク ゲゼルシャフト ミット ベシュレンクテル ハフツング Filter element for filter device
US8864866B2 (en) 2011-10-26 2014-10-21 Donaldson Company, Inc. Filter assemblies; components and features thereof; and, methods of use and assembly
US20140373325A1 (en) * 2012-03-27 2014-12-25 Hydac Filtertechnik Gmbh Arrangement for forming a seal
DE102014011785A1 (en) 2013-12-12 2015-06-18 Mann + Hummel Gmbh Multi-stage water-separating filter element with bayonet connection and fuel filter with such a filter element
US9067161B2 (en) 2012-11-29 2015-06-30 Donaldson Company, Inc. Filter cartridges; features and methods of assembly; air cleaner assemblies; and, filter cartridge combinations
US9089804B2 (en) 2012-11-19 2015-07-28 Donaldson Company, Inc. Filter arrangements; components; assemblies; and, methods
TWI498146B (en) * 2013-06-21 2015-09-01 Maxtec Plastics Inc Quick change fool-proved keyed water filter assembly
US20150292448A1 (en) * 2012-11-19 2015-10-15 Donald Company, Inc. Filter arrangments; components; assemblies; and methods
US9238189B2 (en) 2007-07-20 2016-01-19 Donaldson Company, Inc. Air cleaner arrangements with internal and external support for cartridge; components; and, methods
US9387425B2 (en) 2011-10-26 2016-07-12 Donaldson Company, Inc. Filter assemblies; components and features thereof; and, methods of use and assembly
US9586166B2 (en) 2006-10-06 2017-03-07 Donaldson Company, Inc. Air cleaner replaceable filter cartridges; and, methods
US20170208654A1 (en) * 2014-05-19 2017-07-20 Siemens Aktiengesellschaft Power supply for a non-linear load with multilevel matrix converters
US9752474B2 (en) 2007-06-14 2017-09-05 Donaldson Company, Inc. Filter arrangements; components; and, methods
US10253737B2 (en) 2013-12-12 2019-04-09 Mann+Hummel Gmbh Filter element with multi-stage water-separating action and with bayonet connection, and fuel filter having a filter element of said type
US10279302B2 (en) 2005-02-04 2019-05-07 Donaldson Company, Inc. Filter elements; air filter arrangements; and, methods
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DE202007018076U1 (en) 2009-05-07
WO2009080706A1 (en) 2009-07-02
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US20150014239A1 (en) 2015-01-15
US10137390B2 (en) 2018-11-27
EP2222382A1 (en) 2010-09-01
PL2222382T3 (en) 2015-03-31

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