Filter device, in particular liquid filter
20170120167 · 2017-05-04
Inventors
- Dieter Schreckenberger (Erdmannhausen, DE)
- Christian Christian Thalmann (Speyer, DE)
- Robert Hasenfratz (Waiblingen, DE)
- Fabian Wagner (Moeglingen, DE)
- Frank Pflueger (Sachsenheim, DE)
- André Roesgen (Remshalden, DE)
Cpc classification
F02M37/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D35/005
PERFORMING OPERATIONS; TRANSPORTING
F02M37/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M37/54
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D27/106
PERFORMING OPERATIONS; TRANSPORTING
B01D36/001
PERFORMING OPERATIONS; TRANSPORTING
F02M37/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B01D27/10
PERFORMING OPERATIONS; TRANSPORTING
B01D35/00
PERFORMING OPERATIONS; TRANSPORTING
B01D36/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A filter device includes in a filter housing a hollow cylindrical filter element having frontal end plates. A port having a first sealing element is incorporated into a cover the filter housing, said sealing element being arranged coaxially relative to a second sealing element in a flow opening in the end plate.
Claims
1. A filter device for filtering as fluid, comprising: a filter housing; a cover arranged on the filter housing; a hollow cylindrical filter element arranged in an interior of the filter housing, the filter element including: a filter medium for filtering the fluid; end disks arranged on opposing axial ends of the filter medium; wherein a first end disk of the end disks has a flow opening extending through the first end disk into an interior of the filter element; a connector for supplying and conveying away fluid arranged on the cover of the filter housing; a first sealing element inserted into the connector in the cover; a second sealing element arranged in the flow opening of the first end disk; wherein the first sealing element is arranged coaxially to the second sealing element.
2. The filter device according to claim 1, wherein the first and second sealing elements have different diameters.
3. The filter device according to claim 1, wherein the first and second sealing elements are arranged axially offset to one another and axially spaced away from one another.
4. The filter device according to claim 2, wherein the sealing element in the cover has a larger diameter than the sealing element in the first end disk.
5. The filter device according to claim 4, wherein the flow opening in the first end disk forms the filtered side connector.
6. The filter device according to claim 1, wherein for the positive fit attachment of a pipe connecting piece, communicating with the flow opening, arranged on the cover of the filter housing or on a component connected to the cover is a radially oriented collar that forms an axial stop for attaching the pipe connecting piece.
7. The filter device according to claim 1, wherein the first sealing element seals radially.
8. The filter device according to claim 1, wherein the second sealing element seals radially.
9. A pipe connecting piece for a filter device according to claim 1, comprising: a common housing having: a supply channel for supplying unfiltered fluid; and a discharge channel for conveying off filtered fluid; wherein the supply channel and the discharge channel are arranged coaxially to one another and may be inserted into the connectors with the sealing elements in the filter device.
10. The pipe connecting piece according to claim 9, wherein the supply channel annularly surrounds the discharge channel.
11. The pipe connecting piece according to claim 9, further comprising: at least one non-return valve integrated into the pipe connecting piece.
12. The pipe connecting piece according to claim 9, further comprising: a pressure control valve integrated into a return channel.
13. The pipe connecting piece according to claim 9, further comprising: an air vent screw integrated into the pipe connecting piece.
14. A filter system, comprising: a filter device for filtering as fluid, comprising: a filter housing; a cover arranged on the filter housing; a hollow cylindrical filter element arranged in an interior of the filter housing, the filter element including: a filter medium for filtering the fluid; end disks arranged on opposing axial ends of the filter medium; wherein a first end disk of the end disks has a flow opening extending through the first end disk into an interior of the filter element; a connector for supplying and conveying away fluid arranged on the cover of the filter housing; a first sealing element inserted into the connector in the cover; a second sealing element arranged in the flow opening of the first end disk; and wherein the first sealing element is arranged coaxially to the second sealing element; and a pipe connecting piece comprising: a common housing having: a supply channel for supplying unfiltered fluid; and a discharge channel for conveying off filtered fluid; wherein the supply channel and the discharge channel are arranged coaxially to one another and may be inserted into the connectors with the sealing elements in the filter device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Additional advantages and useful embodiments may be found in the other claims, the description of the figures, and the drawings.
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036] In the drawings, like components are assigned like reference signs.
DETAILED DESCRIPTION
[0037] Each of the figures depicts a filter device 1 that is embodied as a fluid filter for filtering fuel, for instance diesel fuel. In the exemplary embodiment according to
[0038] The discharge channel 9 of the pipe connecting piece 7 projects into the central flow opening in the end disk 5 on the filter element 3 and communicates with the interior 4, in which the filtered fluid collects. The filtered fluid is thus conveyed out of the interior 4 via the central flow opening in the end disk 5 and via the discharge channel 9 in the pipe connecting piece 7.
[0039] The pipe connecting piece 7 is embodied as a dual connector having a common housing for the supply channel 8 and the discharge channel 9. Supply channel 8 and discharge channel 9 are arranged concentric to one another, wherein the supply channel 8 has a larger diameter than the discharge channel 9 and surrounds the latter. The channels 8, 9 are connected to tubes for supplying and conveying away the fluid via connecting elements 8a and 9a.
[0040] The unfiltered fluid is supplied via the connecting element 8a and the supply channel 8 to the radially outwardly disposed surface of the filter element 3, through which fluid to be filtered flows radially from the outside to the inside. As described in the foregoing, the fluid is conveyed away from the interior 4 axially via the discharge channel 9 and the connecting element 9a and further via the connected tube.
[0041] The pipe connecting piece 7 is embodied separately from the filter device 1 and is retained on the cover 10 in a positive fit. The positive fit is effected in the direction of the longitudinal filter axis 11 via a curved collar 12 (
[0042] A connecting segment 14 is embodied integrally with the housing of the pipe connecting piece 7 and houses a positive fit pocket 15, the connecting segment 14 axially surrounding the radially outwardly oriented collar 12. In order to produce an axially positive fit connection between the pipe connecting piece 7 and the cover 10, a latch 16 is inserted into the positive fit pocket 15 in the connecting segment 14 and engages the radially outwardly oriented segment of the collar 12 according to
[0043] The radially inwardly oriented delimiting segment 13 on the cover 10 also delimits a sealing pocket 17 into which a sealing ring 18 retained on the cover 10 is inserted. In the opposing direction, the sealing ring 18 is axially supported by a centering element 19 that is arranged on the end disk 5 and into which the pipe connecting piece 7 may be inserted. The sealing pocket 17 is disposed axially at about the same height as the positive fit pocket 15, but offset radially inwardly relative to the positive fit pocket 15.
[0044] Another sealing element 20 is disposed on the central flow opening that is added to the end disk 5, the discharge channel 9 being positioned against the annular sealing element 20.
[0045] In
[0046] In the exemplary embodiment according to
[0047] Added to the housing of the pipe connecting piece 7, in the area of the connecting segment 14, is a transversely extending opening into which is inserted a rectangularly embodied latch 16 gripped by the collar 12. This results in an axial positive fit connection between the pipe connecting piece 7 and the cover 10.
[0048] The axially extending wall of the cover 10, which wall delimits the central opening, forms a support for the sealing ring 18 radially outward.
[0049] In the exemplary embodiment according to
[0050] The sealing pocket 17 for receiving the sealing ring 18 is engaged by a delimiting part 21 that is embodied integrally with the cover and forms the radially inwardly curved end segment in the area of the central opening in the cover. The delimiting part 21 is disposed offset radially inwardly relative to the collar 12. The sealing ring 18 is delimited radially outwardly by a wall 22 that is embodied integrally with the connecting segment 14 on the pipe connecting piece 7.
[0051] In the exemplary embodiment according to
[0052] In the exemplary embodiment according to
[0053] The pressure control valve 24 is a bypass valve that releases, via a spring-loaded diaphragm, a return channel 26 for the fuel for refueling when the set pressure is exceeded. The pressure control valve 24 has a negative pressure line to the intake (intake connector 25) so that the absolute fuel pressure may be altered proportionate to the intake pressure.
[0054] In the exemplary embodiment according to
[0055] In the exemplary embodiment according to
[0056] In the exemplary embodiment according to
[0057] The pipe connector pieces 7a and 7b are arranged parallel to one another and are both retained on the cover 10 in the same manner in a positive fit. The pipe connecting piece 7b with the discharge channel 9 is arranged centrically, the pipe connecting piece 7a with the supply channel 8 is parallel and offset thereto. Two offset recesses, each for receiving a pipe connecting piece 7a or 7b, are correspondingly arranged offset in the cover 10.
[0058] The positive fit connection is effected in each case using the connecting segment 14 on the pipe connecting piece, to which a lateral opening is added for inserting the rectangular latch 16. When inserted, the latch 16 engages with the collar 12 (