AIR FILTER WITH INTEGRATED SEAL LIP
20220370945 · 2022-11-24
Assignee
Inventors
Cpc classification
F02M35/02416
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D2265/02
PERFORMING OPERATIONS; TRANSPORTING
B01D46/0046
PERFORMING OPERATIONS; TRANSPORTING
B01D46/2414
PERFORMING OPERATIONS; TRANSPORTING
F02M35/02483
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D2265/05
PERFORMING OPERATIONS; TRANSPORTING
B01D46/0005
PERFORMING OPERATIONS; TRANSPORTING
B01D46/001
PERFORMING OPERATIONS; TRANSPORTING
B01D2277/30
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D46/24
PERFORMING OPERATIONS; TRANSPORTING
B01D46/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention is based on an air filter with a filter element (28), a substantially cylindrical filter housing (12) with an unfiltered air inlet (18) and a filtered air outlet (20) arranged substantially concentrically on a first end face of the filter housing (12), wherein an extension tube (22) projects into the interior of the filter housing (12) at the filtered air outlet (20) and the filter element (28) comprises a first end plate (24) which can be plugged onto the extension tube (22).
It is proposed that the first end plate (24) is formed of plastic and comprises a sealing lip (30) formed thereon and projecting radially inwardly, which sealing lip (30) rests against the extension tube (22) in the plugged-on state.
Claims
1. An air filter including a filter element (28), a substantially cylindrical filter housing (12) with an unfiltered air inlet (18) and a filtered air outlet (20) arranged substantially concentrically at a first end face of filter housing (12), wherein an ex-tension tube (22) projecting into the interior of the filter housing (12) and the filter element (28) at the filtered air out-let (20) comprises a first end plate (24) which can be fitted on-to the extension tube (22), wherein the first end plate (24) is made of plastic and comprises a sealing lip (30) which is integrally formed thereon and projects radially inwardly and, in the plugged-on state, bears against the extension tube (22), the first end plate (24) being produced from a non-porous plastic.
2. An air filter according to claim 1, wherein the sealing lip (30) projects radially inward and axially in the direction of the first end face from a base ring of the first end plate (24).
3. An air filter according to claim 1, wherein the first end plate (24) comprises a spacer structure (40) projecting axially in the direction of the first end face and projecting axially beyond the sealing lip (30).
4. Air filter according to claim 3, wherein the axial height of the spacer structure (40) is selected such that, in an assembled state of the filter element (28), a gap re-mains between the spacer structure (40) and the wall of the filter housing (12).
5. An air filter according to claim 1, wherein the first end plate (24) comprises a second sealing lip (42) which is integrally formed thereon and projects radially outward and, in the fitted state, bears against the attachment tube (22).
6. An air filter according to claim 1, wherein a support ring (50) arranged on a radially outer surface of the filter element (28) for radially fixing the filter element (28) in the filter housing (12).
7. An air filter according to claim 1, wherein a support ring (50) arranged on a radial outer surface of the filter element (28) for axially fixing the filter element in the filter housing (12).
8. An air filter according to claim 6, wherein the support ring (50) is formed integrally with a second end plate (46), which is arranged at the end of the filter ele-ment (28) opposite the first end plate (24).
9. An air filter according to claim 1, wherein the first end plate (24) is bonded to a filter bellows (48) of the filter element (28).
10. An air filter according to claim 1, wherein the plastic of the first end plate (24) is selected from the group consisting of Polyethylene, polypropylene, acrylonitrile butadiene styrene (ABS), Polyamide (PA), Polylactate (PLA) Polymethyl methacrylate (PMMA), Polycarbonate (PC), Polyethylene terephthalate (PET), Polyethylene (PE), Polypropylene (PP), Polystyrene (PS), polyetheretherketone (PEEK) and Polyvinyl chloride (PVC).
11. A filter element for use in an air filter (10) according to claim 1, wherein the filter element (28) comprises a first end plate (24) which is attachable to the neck tube (22) of the air filter (10), and wherein the first end plate (24) is made of plastic and comprises a sealing lip (30) which is integrally formed thereon, projects radially inwardly and, in the plugged-on state, bears against the extension tube (22).
Description
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033] A discharge wall (dip tube) is provided in the area of the unfiltered air inlet 18. In conjunction with the unfiltered air inlet 18, which enters the filter housing 12 tangentially, a swirling flow of unfiltered air is formed. This causes coarse dust particles to be separated, whereby these coarse dust particles pass downwards along the inner wall of the filter and are led into the open air via a dust discharge opening, which is closed by a known dust discharge valve.
[0034] In the filter housing 12, a safety element 26 is arranged fixed to the housing, which comprises a metal grid (in particular an expanded metal grid) and a fleece layer.
[0035] A filter element 28 is fitted over the safety element 26. This filter element 28 carries the first end plate 24 on its first end face. A radially inwardly projecting sealing lip 30 is integrally formed on the end plate 24, which, in the fitted state, rests against the extension tube 22 and engages around it in a sealing manner.
[0036] The sealing lip 30 projects from a base ring of the first end plate 24 and, in the axial section shown in
[0037] A connection piece 32 for a bend or a straight clean air outlet 20 is arranged in the inner profile of the extension tube 22, in which a maintenance switch 33 is provided. The connection piece 32 can be mounted freely in the cylindrical inner profile of the attachment pipe 22 in the circumferential direction. An end ring 34 of the safety element 26 is connected to the connection piece 32 via a snap-in connection. The attached filter element 28 prevents the latching tabs of the connection piece 32 from deflecting radially outward, so that the safety element 26 is locked to the connection piece 32.
[0038] When assembling the entire filter, the safety element 26 is first inserted, then the filter element 28 is slid over it and the housing cover 16 is put on.
[0039] The filter housing 12 further comprises a dust discharge opening 36 with a dust discharge valve 38 attached thereto (
[0040]
[0041] The first end plate 24 includes a second sealing lip 42 formed thereon and projecting radially outwardly at an angle toward the first end face of the filter housing 12, which sealing lip 42 abuts an inner surface of a separation tube 44 when mounted.
[0042]
[0043] The filter element 28 includes a second end plate 48 disposed at the end of the filter element 28 opposite the first end plate 24. Like the first end plate 24, the second end plate 48 is formed from plastic and is bonded to a filter bellows 48 of the filter element 28, which is formed from cellulose.
[0044] The second end plate 24 includes a support ring 50 disposed on a radially outer surface of the filter element 28 for radially and axially securing the filter element 28 in the filter housing 12.
[0045] The support ring 50 is integrally formed with the second end plate 46. The support ring 50 includes an outer ring 52 connected to an inner ring 56 by radially extending ribs 54. The ribs 54 are arranged obliquely in the direction of the cyclone flow and delimit a dust collection area 58 in front of the dust discharge opening 36 and the dust discharge valve 38.
[0046] The support ring 50 is adapted to rest on a shoulder 60 on the inner periphery of the housing base 14 in an assembled state (
[0047] At an upper edge of the housing base 14, there are retaining tabs 62 having projections 64 projecting radially inward that are disposed at a height to engage around the support ring 50 when the support ring 50 rests on the shoulder 60.
[0048] The housing cover 16 has a tapered inner surface 66 at its lower edge, which is shaped such that when the cover is in the mounted configuration, deflection of the retaining tabs 62 in a radially outward direction is blocked by the inner surface 66. The support ring 50 is therefore fixed axially between the shoulder 60 and the projections 64.
[0049] Due to the taper of the inner surface 66, the retaining tabs 62 are deflected radially inwardly when the housing cover 16 is mounted, and the support ring 50 is radially fixed between the inner surfaces of the retaining tabs 62.
[0050] Since the support ring 50 is formed integrally with the second end plate 46, which is arranged at an end of the filter element 28 facing the housing cover 16, direct force transmission from the second end plate 46 to the housing base 14 is made possible when the support ring 50 is fixed. A groove for receiving a sealing ring (not shown) is also provided at the lower edge of the housing cover 16.
[0051] A connecting screw 68 is provided in the housing cover 16 for connecting the housing cover 16 to the second end plate 46 of the filter element 28. For this purpose, the second end plate 46 comprises an internal thread in which the external thread of the connecting screw 68 engages. When the connecting screw 68 is tightened, the housing cover 16 is pulled in the direction of the housing base 14 by force transmission over the support ring 50, which is axially fixed between the shoulder 60 and the projections, provided that the projections of the retaining tabs 62 engage over the upper edge of the support ring 50. If the filter element 28 is only incompletely inserted and the projections 64 of the retaining tabs 62 abut the radially outer surface of the support ring 50, the retaining tabs 62 are deflected outwardly to such an extent that the housing cover 16 cannot be fitted.
[0052] The connecting screw 68 comprises an inner part and an outer part connected by a ratchet coupling forming a torque limiting mechanism 73.
[0053]
[0054] Further, the holding member 72 comprises at least two base structures 78, each disposed below the claw-like second structures 76, for fixing the holding member 72 to a mounting target structure (not shown). The two ends of the holding member 72 are connected by two side walls 80, the lower edge of which facing the mounting target structure is straight and the arcuate upper edge of which follows the curvature of the filter housing 12, so that the filter housing 12 rests on the upper edge in the mounted state.
[0055] A length of the holding member 72 in the circumferential direction of the filter housing 12 is smaller than the circumference of the filter housing 12. In the exemplary embodiment shown in
[0056] The holding member 72 can be elastically deformed to create the positive connection between the first structures 74 and the second structures 76, whereby the base structures 78 are tilted against each other, and after snapping the first structures 74 and the second structures 76 into place, the base structures 78 are in their aligned assembly target position. By screwing the holding member 72 into screw holes 82 of the base structures 78 on the mounting target structure, elastic deformation of the holding member 72 necessary to release the positive connection is blocked and a secure connection of the air filter 10 to the mounting target structure is established.
[0057] A bending direction of the elastic deformation necessary to make the positive connection is opposed to a curvature direction of the outer periphery of the filter housing 12.
[0058] The claw-like second structures 76 are hollow structures each having an opening into which the first structures 74, which are configured as projections, engage.
[0059] A central structure 82 of the holding member 72, in the longitudinal direction of the holding member 72, interacts with a projection 74 on the filter housing 12, which is located midway between the two projections 74, which engage in the openings of the second structures 76. The central structure 82 serves to center the holding member 72.
[0060] The holding member 72 has end walls 84 in each of its end regions which, when assembled, extend substantially in parallel with the radial and axial directions of the filter housing 12 and which are adapted to engage behind flanks of the two outer first structures 74 remote from a center of the holding member 72.
[0061]
[0062] In
[0063]
[0064]