FILTER DEVICE
20220274036 · 2022-09-01
Inventors
- Gerhard STEHLE (Konstanz, DE)
- Michael SAKRASCHINSKY (St. Ingbert, DE)
- Sven Peter WOZNIAK (Konstanz, DE)
- Dirk SCHÖNFELD (Apolda, DE)
- John Otto (Spicheren, FR)
- Alexander WOHLERS (Saarburg, DE)
- Alexander BACKES (Marpingen, DE)
- Klaus MORGENS (Trier, DE)
- Florentin VAN UFFELEN (Kressbronn a.B., DE)
- Marco TASSONE (Saarbrücken, DE)
- Markus Stefan WALEK (Salem, DE)
Cpc classification
B01D2201/0423
PERFORMING OPERATIONS; TRANSPORTING
B01D35/153
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/4084
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/305
PERFORMING OPERATIONS; TRANSPORTING
F02M37/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D35/0276
PERFORMING OPERATIONS; TRANSPORTING
F02M37/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01M11/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M37/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D2201/309
PERFORMING OPERATIONS; TRANSPORTING
B01D29/232
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/0446
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/301
PERFORMING OPERATIONS; TRANSPORTING
F02M37/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D2201/4007
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/295
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D29/23
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A filter device having a filter housing (1), in which a replaceable filter element (7) is accommodated and which has a cover part (2), wherein the element material (9) of the filter element (7) extends between two end caps (13, 14) of the latter, is characterized in that the filter housing (1), which is formed as an outlet pipe (3), extends between both end caps (13, 14) as well.
Claims
1. A filter device having a filter housing (1), in which a replaceable filter element (7) is accommodated and which has a cover part (2), wherein the element material (9) of the filter element (7) extends between two end caps (13, 14) of the latter, characterized in that the filter housing (1), which is formed as an outlet pipe (3), extends between both end caps (13, 14) as well.
2. The filter device according to claim 1, characterized in that a slot-like annular guide (37, 80) is provided in each of the end caps (13, 14) to form a receiving for the associated end (38) of the outlet pipe (3), wherein said annular guides (37, 80) at least partially contact wall parts on the inner and outer circumferences of the outlet pipe (3).
3. The filter device according to claim 1, characterized in that the annular guide in an end cap (13, 14), preferably at the end cap (13) assigned to the cover part (2), allows axial play for the assigned end (38) of the outlet pipe (3).
4. The filter device according to claim 1, characterized in that a support tube (11) extending on the outside of the element material (9) between the end caps (13, 14), has a support structure of longitudinal spars (55) and transverse spars (53) that leave fluid passages open and of which at least the longitudinal spars (55) support the element material (9) on the inner circumference in an orientation in parallel to the longitudinal axis of the filter element (7) and as spacers form a free space (57) between the element material (9) and the outlet pipe (3).
5. The filter device according to claim 1, characterized in that the support tube (11) consists of individual sub-segments (49), which can be latched together in succession using latching means, and in that the two outer sub-segments (49) have latching means (47, 51) towards their free outer ends for latching to the respective assignable end cap (13, 14).
6. The filter device according to claim 1, characterized in that the end cap (13) assigned to the cover part (2), can be latched to the inside (19) of the cover part (2) by latching bars (28).
7. The filter device according to claim 1, characterized in that the outlet pipe (3) is formed having one or more layers and is provided with passages (5, 6).
8. The filter device according to claim 1, characterized in that the unfiltered matter is supplied to the inside (35) of the filter element (7) via the lower end cap (14) facing away from the cover part (2), and in that the filtrate is discharged via the outside of the filter element (7) towards the outlet pipe (3).
9. The filter device according to claim 1, characterized in that in the cover part (2) a bypass valve (67) is integrated, which, in the open state, establishes a fluid path to the interior (17) of the cover part (2) via an opening (62) of the end cap (13) assigned to the cover part (2), and in that the end cap (13) has in the vicinity of its circumferential rim passages (73), which open out into the free space (57) on the inside of the outlet pipe (3).
Description
[0014] The invention is explained in detail with reference to the drawings below. In the drawings:
[0015]
[0016]
[0017]
[0018]
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[0020]
[0021]
[0022] In
[0023]
[0024] In accordance with the elasticity properties of the plastic material forming the end cap 32, the sealing lip 72 is elastically flexible and therefore adapts to the outside of the pipe socket 58 with sealing force. In the circumferential area adjoining the peripheral rim 64 radially outwards, the end cap 14 forms a recessed channel 74, in which between an outer peripheral rim 76 and an inner annular body 78 a slot-shaped annular space 80 is formed, in which the outlet pipe 3 is received in an inserted manner. Bonding can be used to secure the outlet pipe 3 in the annular space 80. On its underside, the end cap 14 continues downwards, adjoining to the recess 70, in a channel-like section 82, at the end of which the sealing lip 72 is formed. The channel section 82, in conjunction with a guide sleeve 84, forms the guide for the pipe socket 58, which extends through the opening 56 of the end cap 14 into the inner filter cavity 35 when the filter element 7 is fitted. The sleeve 84 has above its lower end 86 an annular flange 88 projecting radially outwards and is received in the opening 56 of the end cap 14 such that the annular flange 88 is fittingly arranged in the recess 70. The other upper end of the sleeve 84 has an inward crimp 90, which forms a stop body for the upper end rim 60 of the pipe socket 58, and thus an end stop limiting the insertion motion of the pipe socket 58 when the filter element 7 is inserted. To form an insertion aid when the filter element 7 is placed in position, the end cap 14 has, as a guide device adjoining the lower end of the opening 56, a ring of integrally formed, circumferentially distributed, wing-like guide ridges 92 projecting axially downwards, the radially inner rims of which form guide surfaces 94, which have a conical upward and inward course. Therefore, the guide surfaces 94 together form a type of insertion funnel, which facilitates the placement of the filter element 7 onto the pipe socket 58.
[0025] In the same way, as the annular space 80 forms a slot guide for the lower end of the outlet pipe 3 at the lower end cap 14, an annular space 37 is also formed on the upper end cap 13, between an outer peripheral rim 39 of the end cap 13 and an annular body 41 projecting axially from the underside of the end cap 13, as an annular guide, into which the upper end 38 of the outlet pipe 3 can be inserted. Radially further inward, a wall part 43 projecting coaxially downward from the bottom of the end cap 13, forms the enclosure for the upper end of the element material 9 and the upper end of the support tube 11. As with the lower end cap 14, a latching notch 45 is provided on the wall part 43 for latching the support tube 11 and a latching lug 47 is provided on the support tube 11, latching the support tube 11 to the end cap 13.
[0026] As can be seen most clearly from
[0027] The upper end cap 13 has a central opening 61 that forms a possible passage from the filter cavity 35 to the interior 17 of the cover part 2, but is normally closed by the closing body 63 of a bypass valve located in the cover interior 17. The bypass valve has a guide sleeve 67 projecting coaxially from the bottom 19 of the cover part 2, wherein in said guide sleeve 67 a stem 69 of the closing body 63 is guided in a displaceable manner. A compression spring 71 surrounding the sleeve 67, wherein said compression spring 71 is clamped between the bottom 19 of the cover part and the disc-shaped closing body 63 of the bypass valve and pre-loads the latter into the closed position. As most clearly shown in
[0028] In case of the guide for the outlet pipe 3, formed by the wing-like strips 55, the outlet pipe 3 can be formed from a thin-walled material sheet, for instance in the form of a plastic sheet. With particular advantage, a multilayer design can be provided. For instance, a two-layer structure can improve the outflow behavior and promote the degassing of air from the fluid. As