Secondary element for a filter system and filter system with a secondary element
US-11192057-B2 · Dec 7, 2021 · US
US12011685B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12011685-B2 |
| Application number | US-202016950953-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 18, 2020 |
| Priority date | May 18, 2018 |
| Publication date | Jun 18, 2024 |
| Grant date | Jun 18, 2024 |
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A filter element for a filter system for filtering a fluid has a filter bellows arranged about a longitudinal axis and enclosing an interior of the filter element. A closed end disk is arranged at a first end of the filter element and closes off the interior of the filter element. An end disk with an opening to the interior of the filter element is arranged at a second end of the filter element oppositely positioned to the first end viewed in direction of the longitudinal axis. The closed end disk has a hollow pin projecting into the interior of the filter element in direction of the longitudinal axis. The filter system has a housing for receiving the exchangeable filter element with a housing part closable by a cover. The hollow pin of the closed end disk can be pushed onto a pin of the housing part.
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What is claimed: 1. A filter element for a filter system for filtering a fluid, the filter element comprising: a filter bellows arranged about a longitudinal axis of the filter element and enclosing an interior of the filter element; a closed end disk arranged at a first end of the filter element, wherein the closed end disk closes off the interior of the filter element with a curved surface which curves axially inwardly into the interior of the filter element; an end disk with an opening to the interior of the filter element, wherein the end disk with the opening to the interior of the filter element is arranged at a second end of the filter element, wherein the second end of the filter element is oppositely positioned to the first end when viewed in a direction of the longitudinal axis; wherein the closed end disk comprises a hollow pin which projects into the interior of the filter element in the direction of the longitudinal axis (L), the hollow pin formed as an axial inward projection at a central portion of the curved surface of the closed end disk and projecting therefrom into the interior of the filter element. 2. The filter element according to claim 1 , wherein the hollow pin comprises an inner side facing away from the interior of the filter element, wherein the inner side comprises a locking element configured to interact, in a state mounted in a housing of the filter system, with a corresponding locking element of a housing part of the housing. 3. The filter element according to claim 2 , wherein the hollow pin comprises a cross section, wherein the cross section is configured such that the locking element is arranged in a defined angle position relative to the longitudinal axis. 4. The filter element according to claim 1 , wherein the hollow pin comprises a length projecting in the direction of the longitudinal axis into the interior of the filter element, wherein the length of the hollow pin amounts to more than 20% of a total length of the filter element. 5. The filter element according to claim 1 , wherein the length of the hollow pin amounts to less than 50% of the total length of the filter element. 6. The filter element according to claim 2 , wherein the closed end disk forms an approximately wedge-shaped notch structure, the wedge shaped notch structure projecting axially away from the closed end disk in a direction towards the end disk with the opening, the wedge-shaped notch structure arranged between and spacing apart an adjacent pair of folds of the filter bellows. 7. The filter element according to claim 6 , wherein the hollow pin comprises an inner side facing away from the interior of the filter element, wherein the inner side comprises the locking element configured to interact, in a state mounted in the housing of the filter system, with the corresponding locking element of a housing part of the housing, wherein the wedge-shaped notch structure is arranged in a defined angle relationship relative to the locking element. 8. The filter element according to claim 7 , wherein a notch in the filter bellows arranged at the wedge-shaped notch structure continues through the closed end disk. 9. The filter element according to claim 1 , further comprising two cams arranged at a circumference of the closed end disk, wherein the two cams are spaced apart from each other in a circumferential direction of the closed end disk and project in a radial direction relative to the longitudinal axis. 10. The filter element according to claim 1 , wherein the end disk with the opening to the interior of the filter element comprises a bead, wherein the bead at least partially surrounds the opening to the interior of the filter element, wherein the bead projects in the direction of the longitudinal axis outwardly. 11. A filter system for filtering a fluid, the filter system comprising: a housing comprising a removable cover and a housing part closable by the cover; a filter element according to claim 1 exchangeably arranged in the housing wherein the cover is configured to be connected seal-tightly with the filter element; wherein the hollow pin of the closed end disk is configured to be pushed onto the corresponding pin of the housing part. 12. The filter system according to claim 11 , wherein the hollow pin of the closed end disk comprises an inner side comprising the locking element, wherein the pin of the housing part comprises the corresponding locking element, wherein the locking element of the hollow pin is configured to lock at the corresponding locking element of the pin of the housing part. 13. The filter system according to claim 11 , wherein the hollow pin of the housing part comprises a length in the direction of the longitudinal axis of the filter element, wherein the length of the pin of the housing part amounts to more than 20% of a total length of the filter element and to less than 50% of the total length of the filter element. 14. The filter system according to claim 11 , wherein the filter element further comprises: two cams arranged at a circumference of the closed end disk, wherein the two cams are spaced apart from each other in a circumferential direction of the closed end disk and project in a radial direction relative to the longitudinal axis away from the circumference of the closed end disk; wherein the housing part comprises receptacles for the cams arranged at a circumference of the closed end disk. 15. The filter system according to claim 11 , wherein the housing part comprises a first notch, wherein the first notch corresponds with a second notch provided at the filter element, wherein the second notch is arranged at the filter bellows and/or at the closed end disk. 16. The filter system according to claim 15 , wherein the first notch of the housing part forms a frictional locking with the second notch of the filter element. 17. The filter system according to claim 11 , wherein a bead is arranged at the end disk with the opening to the interior of the filter element, wherein the bead at least partially surrounds the opening to the interior of the filter element, wherein the cover comprises a receptacle configured to receive the bead. 18. The filter system according to claim 17 , wherein the bead is a sealing bead and wherein the receptacle is a sealing receptacle. 19. A method for assembly of a filter system according to claim 11 , the method comprising: inserting the filter element with the closed end disk leading into the housing part, with the cover removed from the housing part, substantially horizontally along the longitudinal axis; pushing the hollow pin of the closed end disk onto the pin of the housing part. 20. The method according to claim 19 , wherein the step of pushing includes resting the hollow pin of the closed end disk on the pin of the housing part. 21. The method according to claim 19 , further comprising mounting the cover on the housing, after the filter element has been inserted into the housing part, such that a seal-tight fluid connection between the cover and the filter element is realized. 22. The method according to claim 21 , further comprising establishing the seal-tight fluid connection between a clean fluid channel arranged in the cover and the interior of the filter element. 23. The method according to claim 19 , further comprising mounting
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