Filter device for fluids
11484819 ยท 2022-11-01
Assignee
Inventors
- Ralf Wnuk (Bexbach/Kleinottweiler, DE)
- Hans-Josef Schmidt (Freisen, DE)
- Pascal Eric Vitte (Queensland, AU)
Cpc classification
B01D29/54
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/0446
PERFORMING OPERATIONS; TRANSPORTING
B01D2201/301
PERFORMING OPERATIONS; TRANSPORTING
B01D29/21
PERFORMING OPERATIONS; TRANSPORTING
B01D15/22
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D15/22
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A filter device for fluids has a filter housing (1), in which element receptacles (31) for a plurality of filter elements (33) are provided. The filter medium (35) of the filter elements (33) separates in the filter housing (1) a dirt side (5) from a clean side (7). The filter housing (1) can be opened for inserting and removing the filter elements (33). For the filter elements (33), a support basket (19) is provided, which can be inserted into the filter housing (1) and removed from the filter housing (1) and to which the filter elements (33) can be detachably fixed. The filter elements (33) have, in addition to the filter medium (35) for particle filtration, an adsorption medium (36).
Claims
1. A filter device for fluids, comprising: a filter housing with clean and dirty sides therein; a plurality of filter elements in the filter housing separating the clean and dirty sides, each of the filter elements having a filter medium, the filter housing being openable permitting inserting and removing of the filter elements into and out of the filter housing, the filter elements being arranged in stacks of a least two of the filter elements extending coaxially; a support basket removably mounted in the filter housing, the filter elements being detachably coupled to the support basket; a receptacle element extending within each of the stacks and having a laterally closed cylindrical shell with fluid passage points at free opposite axial end faces of the closed cylindrical shell; wherein each of the filter elements comprises a fluid-permeable supported tube arranged between the filter medium and the cylindrical shell thereof; and an adsorption medium in the receptacle element.
2. A filter device according to claim 1 wherein each element receptacle is a replaceable cartridge.
3. A filter device according to claim 1 wherein the adsorption medium comprises activated carbon.
4. A filter device according to claim 1 wherein the adsorption medium is entirely of activated carbon.
5. A filter device according to claim 1 wherein the filter medium of each of the filter element comprises a multilayered, pleated filter medium encompassing the cylindrical shell of the receptacle element.
6. A filter device according to claim 1 wherein the support basket comprises a support plate being arranged in the filter housing and separating the dirty and clean sides and comprises fluid passages therein to which the filter elements are detachably coupled, each of the fluid passages being in direct fluid communication with an inner filter cavity encompassed by the filter medium of the respective filter element.
7. A filter device for fluids, comprising: a filter housing with clean and dirty sides therein; a plurality of filter elements in the filter housing separating the clean and dirty sides, each of the filter elements having a filter medium, the filter housing being openable permitting inserting and removing of the filter elements into and out of the filter housing, the filter elements being arranged in stacks of a least two of the filter elements extending coaxially; a support basket removably mounted in the filter housing, the filter elements being detachably coupled to the support basket; a receptacle element extending within each of the stacks and having a laterally closed cylindrical shell with fluid passage points at free opposite axial end faces of the closed cylindrical shell; an adsorption medium in the receptacle element; wherein the filter housing comprises a circular cylindrical section in which the support basket is mounted and comprises an opening closed by a removable cover, the support basket being insertable in and removable from the filter housing through the opening and having a circular supporting plate sealed to a housing wall of the filter housing in an installed position of the support basket in the filter housing.
8. A filter device according to claim 1 wherein the closed cylindrical shell has axial end walls with the fluid passage points therein.
9. A filter device according to claim 8 wherein the adsorption medium fills all space inside the closed cylindrical shell between the axial end walls.
10. A filter element according to claim 7 wherein each element receptacle is a replaceable cartridge.
11. A filter element according to claim 7 wherein the adsorption medium comprises activated carbon.
12. A filter element according to claim 7 wherein the adsorption medium is entirely of activated carbon.
13. A filter element according to claim 7 wherein the filter medium of each of the filter element comprises a multilayered, pleated filter medium encompassing the cylindrical shell of the receptacle element.
14. A filter element according to claim 7 wherein each of the filter elements comprises a fluid-permeable supported tube arranged between the filter medium and the cylindrical shell thereof.
15. A filter element according to claim 7 wherein the inner filter cavity is enclosed at each axial end thereof by an end cap with an access to the inner filter cavity; and the receptacle element is replaceable in the filter cavity.
16. A filter element according to claim 7 wherein the closed cylindrical shell has axial end walls with the fluid passage points therein.
17. A filter element according to claim 16 wherein the adsorption medium fills all space inside the closed cylindrical shell between the axial end walls.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Referring to the drawings that form a part of this disclosure and that are schematic and not to scale:
(2)
(3)
DETAILED DESCRIPTION OF THE INVENTION
(4)
(5) The filter arrangement includes a basket 19 as a support for a number of filter candles 21, which are not all numbered in the drawing, and is located between the dirt-sided inflow chamber 5 and the clean-sided outflow chamber 7. The basket 19 can be inserted into the housing 1 via the opening 13 and can be removed again therefrom if necessary. As a support element for the filter candles 21, the basket 19 has a circular supporting plate 23. When the basket 19 is inserted into its functional position in the housing 1, supporting plate 23 abuts on a contact ring 25 projecting from the interior of the housing 1. A collar 27 of the mounting plate 23 is sealed at the contact ring 25. In the housing 1, the supporting plate 23 separates the dirt-sided inflow chamber 5 from the clean-sided outflow chamber 7. To hold the basket 19 in contact with the contact ring 25, a plurality of rod-shaped downholders 29 are attached to the cover 15 and extend axially from the cover 15 through the outflow chamber 7 to the supporting plate 23.
(6) The supporting plate 23 has a fluid passage 31 for every filter candle 21, only some of which are numbered in
(7) The filter candle 21, partially shown in an individual representation in
(8) For an easy stacking of the filter elements 33 on top of each other, the end caps at one end are shaped differently from those at the other end in that a first type of end cap 41 has a shape complementary to a second type of end cap 43. More specifically, the end cap 41 of the first type each has a funnel 47, which encompasses the cap opening 45, axially projecting and widening conically towards the outside. On the interior of that funnel, there is an O-ring 49. The end cap 43 of the second type has an axially projecting annular body 51 adjoining the opening 45. That annular body 51 forms an outer cone for a matching engagement within the funnel 47 of the end cap 41 of the first type. Therefore, when the individual elements 33 are simply assembled to form the filter candle 21, an axial-radial seal is formed each between of the end caps 41, 43. In
(9) The filter candles 21 can be detachably fixed to the fluid passages 31 of the supporting plate 23 of the basket 19 by a connecting device or connector 53, which has a conical ring 63 that is bolted to the supporting plate 23 using bolts 67. To the conical ring 63, a shell 40 is attached, to which one end of a connecting rod 55 is fixed. The connecting rod 55 extends in axial direction beyond the lower end of a filter candle 21 to be fixed. In the area of the corresponding end, the connecting rod 55 is provided with a handle 69. Handle 69 is spring-supported via a disc spring package 54 to keep the stacked filter elements 33 together and in position on the supporting plate 23.
(10) The handle 69 is provided at the lower free end of the connecting rod 55 on the spring package 54 to hold the concerning filter candles 21 in position such that the elements 33 are mutually sealed at the end caps 41, 43 and the end cap 41 of the uppermost element 33 is connected to the fluid passage 31 of the supporting plate 23 in a fluid conveying manner via an additional conical ring 63. The clean-sided filter cavity 37 is connected to the outflow chamber 7 via the fluid passage 31 and is connected to the dirt-sided inflow chamber 5 via the filter medium 33 of the filter candles 21, but is sealed in any other way.
(11) When the basket 19 together with used filter candles 21 is lifted out of the housing 1 for a replacement, for instance by attaching a lifting means to lifting eyes, and is deposited in a position, in which the underside of the basket 19 is freely accessible, the filter candles 21 can be released by releasing the handle 69. As
(12) As shown in particular in
(13) In other respects, viewed in the direction of
(14) According to the illustration of
(15) In operation, the filter candle 21 with its individual filter elements 33 together with the assignable filter media 35 are flowed through from the outside towards the inside. In the process, any particle contamination in the fluid flow is cleaned off by the respective filter medium 35. The fluid stream then cleaned of particulate contaminants. After passing through the perforated support tube 48, the fluid stream enters an annular space 66 between the support tube 48 and the shell 40. The fluid located in the gap-shaped annular space 66 then flows, as seen in the viewing direction of
(16) While one embodiment has been chosen to illustrate the invention, it will be understood by those skilled in the art that various changes and modifications can be made therein without departing from the scope of the invention as defined in the claims.