DEVICE FOR CLEANING LIQUIDS OR GASEOUS MEDIA AND PRECIPITATING ELEMENT FOR SAID DEVICE
20170296951 · 2017-10-19
Inventors
Cpc classification
B01D35/153
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/4023
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/4084
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/305
PERFORMING OPERATIONS; TRANSPORTING
B01D29/21
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/34
PERFORMING OPERATIONS; TRANSPORTING
F01M11/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D2201/0415
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/4046
PERFORMING OPERATIONS; TRANSPORTING
F01M13/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A device for cleaning liquids or gaseous media, having a cup-shaped or pot-shaped housing, having an exchangeable interior precipitating element, a medium inlet for medium to be cleaned, a medium outlet for cleaned medium and a housing cover, removably connected to the housing by a connection. The housing has a first circumferential connector and the housing cover has a compatible second circumferential connector, which can be engaged and disengaged by circumferential twisting relative to each other. The first connector or the second connector have at least one interruption extending in the connector axial direction and the precipitating element has at least one positioning arm which, in the installed state of the precipitating element and when the housing cover is connected to the housing, is received at least partially in the at least one connector interruption, in a position and orientation corresponding to the connector interruption.
Claims
1-26. (canceled)
27. A device for cleaning liquid or gaseous media, comprising: a cup-shaped or pot-shaped housing, having an exchangeable precipitating element situated in the device, which element separates a raw medium region and a clean medium region in the device from one another, having a medium inlet, opening into the raw medium region, for medium to be cleaned, having a medium outlet, going out from the clean medium region, for cleaned medium, a housing cover detachably connected to the housing by a connection, the housing having first circumferential connecting means and the housing cover having second circumferential connecting means fitted thereto, which connecting means can be brought into and out of engagement through rotation relative to one another in the circumferential direction, wherein, one of the first connecting means or the second connecting means has at least one connecting means interruption running in the connecting means axial direction, and wherein the precipitating element has at least one positioning arm that, in the installed state of the precipitating element and when the housing cover is connected to the housing, is received at least partly in the connecting means interruption, running in a position and orientation corresponding to the at least one connecting means interruption.
28. The device as recited in claim 27, wherein a plurality of connecting means interruptions are provided distributed around the circumference of one of the first connecting means or the second connecting means, and wherein the precipitating element has a plurality of positioning arms configured so as to fit correspondingly to the connecting means interruptions.
29. The device as recited in claim 28, wherein the connecting means interruptions of one of the first connecting means or the second connecting means and the positioning arms form a key-lock coding with each other.
30. The device as recited in claim 29, wherein at least one of: the connecting means interruptions of one of the first connecting means or the second connecting means and the positioning arms are irregularly distributed in the circumferential direction, or the connecting means interruptions of one of the first connecting means or the second connecting means have different widths from one another in the circumferential direction, and the positioning arms have a differing width, fitting thereto, in the circumferential direction.
31. The device as recited in claim 27, wherein each at least one positioning arm is detachably lockable in the associated connecting means interruption by interacting locking elements.
32. The device as recited in claim 27, wherein the precipitating element has a hollow cylindrical basic shape having a precipitating material body and having two end plates sealing this body at its ends, and wherein either each at least one positioning arm is one of connected to, or made in one piece with, one of the end plates of the precipitating element, or each at least one positioning arm is connected to the precipitating material body of the precipitating element in positionally fixed fashion in the circumferential direction and in the axial direction.
33. The device as recited in claim 27, wherein the precipitating element has a precipitating material body having a hollow cylindrical basic shape and having a supporting body situated therein, and wherein each at least one positioning arm is either connected to, or made in one piece with, the supporting body of the precipitating element.
34. The device as recited in claim 27, wherein the precipitating element has a precipitating material body formed from two partial precipitating material bodies, each having a hollow cylindrical basic shape, and wherein two end faces, facing one another, of the two partial precipitating material bodies are connected to one another via an intermediate plate, and wherein each at least one positioning arm is either connected to, or made in one piece with, the intermediate plate of the precipitating element.
35. The device as recited in claim 27, wherein between the housing and the housing cover there is situated a seal that seals these from each other when the housing cover is connected to the housing, and wherein one of the seal, or a seal bearer that bears the seal, is one of connected to, or made in one piece with, the at least one positioning arm.
36. The device as recited in claim 35, wherein the seal is situated, as a sealing ring, either radially externally on the seal bearer or axially at the end face on the seal bearer.
37. The device as recited in claim 36, wherein the seal is either molded onto the seal bearer, or is placed onto the seal bearer as a separately produced component.
38. The device as recited in claim 35, wherein each at least one positioning arm, the seal bearer, and the seal are formed in one piece with one another from a thermoplastic elastomer.
39. The device as recited in claim 27, wherein the connection between the housing and the housing cover having the first connecting means and the second connecting means is formed by an axial region of overlap of the housing and housing cover having one of interacting screw threadings or interacting bayonet connection elements.
40. The device as recited in claim 27, comprising one of an oil filter, a fuel filter, or an oil mist separator of an internal combustion engine of a motor vehicle.
41. A precipitating element for a device as recited in claim 27, the device having a housing and having a housing cover connected detachably to the housing, the housing having first circumferential connecting means and the housing cover having second circumferential connecting means fitting thereto, which can be brought into and out of engagement through rotation relative to one another in the circumferential direction, and the precipitating element configured to be received exchangeably in the device, wherein the precipitating element has at least one positioning arm that, in the installed state of the precipitating element and when the housing cover is connected to the housing, is configured to be received in a connecting means interruption that is provided in one of the first connecting means or the second connecting means, running in the axial direction of the connecting means.
42. The precipitating element as recited in claim 41, wherein the precipitating element has a plurality of positioning arms that are configured so as to fit correspondingly to a plurality of connecting means interruptions.
43. The precipitating element as recited in claim 42, wherein the positioning arms are at least one of distributed irregularly in the circumferential direction have a different width from one another in the circumferential direction.
44. The precipitating element as recited in claim 41, wherein each at least one positioning arm has locking elements that are detachably lockable with locking elements provided in the associated connecting means interruption.
45. The precipitating element as recited in claim 41, wherein the precipitating element has a hollow cylindrical basic shape having a precipitating material body and two end plates that cover this body at its ends, and wherein each at least one positioning arm is one of connected to, made in one piece with one of the end plates of the precipitating element, or connected in a positionally fixed fashion to the precipitating material body of the precipitating element in the circumferential direction and in the axial direction.
46. The precipitating element as recited in claim 41, wherein the precipitating element has a precipitating material body having a hollow cylindrical basic shape and having a supporting body situated therein, and that each at least one positioning arm is either connected to, or made in one piece with, the supporting body of the precipitating element.
47. The precipitating element as recited in claim 41, wherein the precipitating element has a precipitating material body formed from two partial precipitating material bodies each having a hollow cylindrical basic shape, and wherein two end faces, facing one another, of the two partial precipitating material bodies are connected to one another via an intermediate plate, and that each at least one positioning arm is either connected to, or made in one piece with, the intermediate plate of the precipitating element.
48. The precipitating element as recited in claim 27, wherein either a seal, or a seal bearer that bears a seal, is either connected to, or made in one piece with, the at least one positioning arm, the housing and the housing cover being sealable against one another by the seal when they are connected to one another in the installed state of the precipitating element.
49. The precipitating element as recited in claim 48, wherein the seal is situated, as a sealing ring, either radially externally on the seal bearer or axially at the end face on the seal bearer.
50. The precipitating element as recited in claim 49, wherein the seal is either molded onto the seal bearer or is placed onto the seal bearer as a separately produced component.
51. The precipitating element as recited in claim 48, wherein each at least one positioning arm, the seal bearer, and the seal are formed in one piece with one another from a thermoplastic elastomer.
52. The precipitating element as recited in claim 27, comprising one of an oil filter insert of an oil filter, a fuel filter insert of a fuel filter, or an oil mist separator insert of an oil mist separator, of an internal combustion engine of a motor vehicle.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0035] In the following, exemplary embodiments of the present invention are explained on the basis of a drawing.
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0077] In the following description of the Figures, identical parts in the various Figures of the drawing are always designated with the same reference characters, in order to avoid having to provide a new explanation for each reference character for each Figure of the drawing.
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[0079] In housing 10, a precipitating element 3 is exchangeably situated, which element is made up of a precipitating material body 30 and an upper end plate 31 and a lower end plate 32 that enclose precipitating material body 30 at the end faces. Precipitating element 3 is plugged onto a pipe socket-shaped medium outlet 15, via a central perforation in lower end plate 32. Radially externally from medium outlet 15, in the floor of housing 10 there is provided a medium inlet 12 that opens into a raw medium region 13 radially outside precipitating element 3. A clean medium region 14 is situated radially inward from precipitating material body 30.
[0080] Here, a plurality of positioning arms 4 are made in one piece with upper end plate 30, of which one is visible at left in
[0081] As is shown in
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[0083] The configuration of connecting means interruption 23 and of positioning arms 4 can be varied within broad limits, and can advantageously be used to form a key-lock coding in order to permit only particular, suitable precipitating elements 3 to be installed in device 1.
[0084] Radially inward from the circumferential wall of housing 10 there is situated raw medium region 13, followed, further radially inward, by precipitating material body 13 of precipitating element 3. At left in
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[0086] On the radial outer end of positioning arms 4, these arms go over in one piece into a seal bearer 50 on whose downward-oriented side, in the axial direction, there is situated a seal 5 in the form of a sealing ring, which is, for example, molded or glued on. In this exemplary embodiment, seal 5 is thus an integral component of precipitating element 3, so that when precipitating element 3 is exchanged in the context of maintenance of device 1, seal 5 is automatically also changed along with it and renewed while being necessarily correctly positioned.
[0087] In its further parts, device 1 corresponds to the exemplary embodiment described above, to whose description reference is accordingly made.
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[0095] Here, seal bearer 50 forms a separate unit together with seal 5.
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[0098] Here, a plurality of, specifically three, positioning arms 4, distributed around the circumference, are realized in one piece with intermediate plate 33, which arms extend radially outward through connecting means interruptions 22 in first connecting means 20 of housing 10, and which center precipitating element 3 in device 1 and fix it in the circumferential direction.
[0099] Radially outwardly, positioning arms 4 go over in one piece into seal bearer 50, which bears seal 5 on its lower side. In the assembled state of device 1, seal 5 with seal bearer 50 is clamped in axially sealing fashion between housing cover 11 and sealing collar 16 on housing 10.
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[0102] Positioning arms 4 here run in the direction from bottom to top through connecting means interruptions 22 in connecting means 20 on housing 10. At their upward-pointing end region, positioning arms 4 are realized in one piece with circumferential seal bearer 50, which for its part bears on its upper side seal 5, which seals housing 10 and housing cover 11 from one another when they are connected to one another.
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[0104] Characteristic for this exemplary embodiment is that only a single positioning arm 4 is provided, which here is realized in one piece with upper end plate 31 of precipitating element 3, and extends at first obliquely and then vertically downward therefrom. Here, positioning arms 4 run through a connecting means interruption 23 in connecting means 21 on the inner circumference of housing cover 11.
[0105] In precipitating element 3, specifically in the interior of precipitating material body 30, here there is situated a hollow cylindrical, grid-shaped supporting body 34 that protects precipitating material body 30 from collapsing during operation when there is a flow in the radial direction from the outside to the inside.
[0106] Annular peripheral seal bearer 50 is connected in one piece to the axially lower end region of positioning arm 4, said bearer having on its outer circumference seal 5 in the form of a sealing ring having a rectangular cross-section. In the assembled state of device 1, visible in
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[0109] In the previously described exemplary embodiments, connecting means 20 on housing 10 and connecting means 21 on housing cover 11 are interacting screw threadings. In
[0110] Here, three positioning arms 4, distributed around the circumference, are provided; the number of these arms can of course also be smaller or greater. Positioning arms 4 are fashioned in one piece with bearing ring 41, which is fixed on the outer circumference of precipitating material body 30 of precipitating element 3. In addition, a holding arm 42 is assigned to each positioning arm 4, and is made in one piece therewith, the holding arm extending upward in the axial direction from positioning arm 4 up to upper end plate 31 of precipitating element 3, and being connected to the edge thereof, for example by welding or gluing or locking.
[0111] Each positioning arm 4 here extends through a connecting means interruption 22 in connecting means 20 on housing 10, as can be seen at the upper right in
[0112] Here, the separate, annular seal bearing 50 having seal 5 attached on its lower side runs radially externally from positioning arms 4, without being connected thereto.
[0113] Alternatively to the representation shown in
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[0117] Seal bearer 50 with seal 5 runs radially externally to positioning arms 4. Seal bearer 50 and seal 5 can form a separate unit not connected to positioning arms 4. Alternatively, seal bearer 50 can be connected to or made in one piece with positioning arms 4.
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[0121] Connecting means interruptions 22, running in the axial direction, here intersect first connecting means 20, running essentially in the circumferential direction, these connecting means here again being realized as bayonet connection elements, as is shown in
[0122] Via this continuous contour formed by ramp 43 and first connecting means 20, when housing cover 11 is attached and is rotated relative to housing 10, in each case the second connecting means 21 situated in housing cover 11 can be guided into their position corresponding to the closed position of housing cover 11, as is illustrated in
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[0124] In housing 10, a precipitating element 3 is exchangeably situated that is made up of a hollow cylindrical precipitating material body 30, here not having end plates. Radially externally to medium outlet 15, in the floor of housing 10 there is provided a medium inlet 12 that opens into a raw medium region 13 radially outside precipitating element 3. Radially inwardly from precipitating material body 30 there is situated a clean medium region 14.
[0125] In the interior of precipitating material body 30 there is situated a supporting body 34 that protects precipitating material body 30 from collapsing during operation when there is a flow radially from the outside to the inside. At its upper end face, supporting body 34 is closed by an end wall 35, which here is made in one piece with the rest of supporting body 34. With the lower end of supporting body 34, precipitating material body 30 is plugged onto a pipe socket-shaped medium outlet 15 that is situated centrally at bottom in housing 10.
[0126] Here, a plurality of positioning arms 4 are made in one piece with the upper end of supporting body 34, of which arms one is visible at left in
[0127] Each positioning arm 4 runs through a connecting means interruption 23 in second connecting means 21 on housing cover 11. An outer end of positioning arms 4 here lies immediately above seal 5 in connecting means interruption 23. Via positioning arms 4, precipitating element 3 is centered in device 1, and is fixed in rotationally fixed fashion in the circumferential direction.
[0128] At its free end, positioning arms 4 go over in one piece into an annular circumferential seal bearer 50 that bears seal 5 on its outer circumference.
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[0130] In this embodiment of device 1 as well, the configuration of connecting means interruptions 23 and positioning arms 4 interacting there with can be varied within broad limits, and can advantageously be used to form a key-lock coding in order to permit the installation only of particular, suitable precipitating elements 3 in device 1.
[0131] Radially inwardly from the circumferential wall of housing 10 there is situated raw medium region 13, followed radially further inward by precipitating material body 30 of precipitating element 3. In the center of
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[0138] In other respects, the example shown in
[0139] As is apparent from the foregoing specification, the invention is susceptible of being embodied with various alterations and modifications which may differ particularly from those that have been described in the preceding specification and description. It should be understood that I wish to embody within the scope of the patent warranted hereon all such modifications as reasonably and properly come within the scope of my contribution to the art.
LIST OF REFERENCE CHARACTERS
[0140] 1 device [0141] 10 housing [0142] 11 housing cover [0143] 12 medium inlet [0144] 13 raw medium region [0145] 14 clean medium region [0146] 15 medium outlet [0147] 16 sealing collar on 10 [0148] 2 connection between 10 and 11 [0149] 20 first connecting means on 10 [0150] 21 second connecting means on 11 [0151] 22 connecting means interruption in 20 [0152] 23 connecting means interruption in 21 [0153] 24 locking element in 23 [0154] 3 precipitating element [0155] 30 precipitating material body [0156] 30′, 30″ partial precipitating material body [0157] 31 (upper) end plate at the cover [0158] 32 (lower) end plate remote from the cover [0159] 33 intermediate plate [0160] 34 supporting body in 3 [0161] 35 end wall [0162] 4 positioning arm(s) [0163] 40 free end of 4 [0164] 41 bearer ring [0165] 42 holding arms between 31 and 41 [0166] 43 ramp [0167] 44 locking element on 4 [0168] 5 seal [0169] 50 seal bearer