EP4598653A1 - Filterelement und filtervorrichtung - Google Patents
Filterelement und filtervorrichtungInfo
- Publication number
- EP4598653A1 EP4598653A1 EP23768252.1A EP23768252A EP4598653A1 EP 4598653 A1 EP4598653 A1 EP 4598653A1 EP 23768252 A EP23768252 A EP 23768252A EP 4598653 A1 EP4598653 A1 EP 4598653A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- filter
- bellows
- filter bellows
- filter element
- larger
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D39/00—Filtering material for liquid or gaseous fluids
- B01D39/14—Other self-supporting filtering material ; Other filtering material
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D46/00—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
- B01D46/0002—Casings; Housings; Frame constructions
- B01D46/0005—Mounting of filtering elements within casings, housings or frames
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D46/00—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
- B01D46/10—Particle separators, e.g. dust precipitators, using filter plates, sheets or pads having plane surfaces
- B01D46/12—Particle separators, e.g. dust precipitators, using filter plates, sheets or pads having plane surfaces in multiple arrangements
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D46/00—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
- B01D46/52—Particle separators, e.g. dust precipitators, using filters embodying folded corrugated or wound sheet material
- B01D46/521—Particle separators, e.g. dust precipitators, using filters embodying folded corrugated or wound sheet material using folded, pleated material
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D46/00—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
- B01D46/56—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with multiple filtering elements, characterised by their mutual disposition
- B01D46/62—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with multiple filtering elements, characterised by their mutual disposition connected in series
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D46/00—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
- B01D46/56—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with multiple filtering elements, characterised by their mutual disposition
- B01D46/62—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with multiple filtering elements, characterised by their mutual disposition connected in series
- B01D46/64—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with multiple filtering elements, characterised by their mutual disposition connected in series arranged concentrically or coaxially
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2239/00—Aspects relating to filtering material for liquid or gaseous fluids
- B01D2239/04—Additives and treatments of the filtering material
- B01D2239/0407—Additives and treatments of the filtering material comprising particulate additives, e.g. adsorbents
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2239/00—Aspects relating to filtering material for liquid or gaseous fluids
- B01D2239/04—Additives and treatments of the filtering material
- B01D2239/0414—Surface modifiers, e.g. comprising ion exchange groups
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2271/00—Sealings for filters specially adapted for separating dispersed particles from gases or vapours
- B01D2271/02—Gaskets, sealings
- B01D2271/022—Axial sealings
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2271/00—Sealings for filters specially adapted for separating dispersed particles from gases or vapours
- B01D2271/02—Gaskets, sealings
- B01D2271/027—Radial sealings
Definitions
- the disadvantage here is the comparatively complex structure and the associated high material usage and the associated costs for production. Furthermore, the mix of materials used results in a disposal problem, as purely thermal recycling is not possible.
- the present invention is based on the object of creating an improved filter element.
- a filter element according to the invention is in particular an air filter element for an air filter system, in particular for a cabin air filter system or an intake air filter system of a fuel cell.
- the filter element comprises two filter bellows which are arranged adjacent to one another in a predetermined flow direction such that they can be flowed through in series.
- the filter bellows each have an inflow and outflow surface and at least four side surfaces.
- the filter bellows adjoin one another in an interface area between the outflow surface of a first filter bellows and the inflow surface of a second filter bellows. In the interface area there is a circumferential seal which directly connects the two filter bellows to one another in a materially bonded manner.
- One of the filter bellows has a smaller extension in at least one direction transverse to the flow direction than the other filter bellows, the filter bellows being arranged relative to one another in the at least one direction transverse to the flow direction in such a way that along at least one edge of the larger filter bellows in the interface area there is a free space on the inflow or outflow surface of the larger filter bellows that is not covered by the smaller filter bellows.
- the circumferential seal is directly connected in a materially bonded manner to the inflow or outflow surface of the larger filter bellows.
- the mechanical load-bearing capacity of the connection between the two filter bellows is significantly improved in the filter element according to the invention.
- This is achieved, among other things, by larger contact surfaces of the integrally formed, continuous seal with the filter bellows.
- the formation of the continuous seal on the inflow or outflow surface of the larger filter bellows also improves the rigidity of the entire filter element, which improves its handling, especially during servicing.
- Free space refers to an imaginary area that remains in the interface area on the inflow or outflow surface of the larger filter element due to the smaller dimensions of one filter element in relation to the other filter element.
- the circumferential seal is installed in this imaginary free space on the finished filter element, so that the area does not remain free, but is to be understood as an aid to describing the structural design of the filter element.
- the filter element according to the invention can consist entirely of thermally recyclable materials, so that no disposal problems arise and, in particular, dismantling of individual components of the filter element in the recycling cycle is not necessary.
- the filter bellows and/or the filter element itself are each cuboid-shaped. Cuboid-shaped components can be conveniently assembled to form the filter element and allow efficient use of installation space.
- axial is understood to mean the flow direction, i.e. perpendicular to an inflow surface or side of the, for example, cuboid-shaped filter element.
- dial is understood in particular to mean a normal direction of a side surface or wall of the frame or a lateral surface of the, in particular, cuboid-shaped, filter element.
- the filter element according to the invention is suitable as a replaceable component for an air filter system, in particular for a cabin air filter system or an intake air filter system of a fuel cell, and can be installed in a filter housing, in particular one that is fixed to the vehicle.
- the circumferential seal can comprise or consist of a plastic material, in particular a foamed polyurethane or a thermoplastic elastomer.
- a plastic material in particular a foamed polyurethane or a thermoplastic elastomer.
- the aforementioned materials can be provided excellently in a liquid or pasty initial state and, with the aid of a casting shell, can be molded directly onto both filter bellows in a material-locking manner according to the invention.
- the sealing base material provided in a liquid or pasty initial state hardens in the casting shell and then forms the final material of the circumferential seal.
- the smaller filter bellows can have a smaller extension in at least one further direction transverse to the flow direction than the other filter bellows, wherein the filter bellows are arranged relative to one another in the at least one further direction transverse to the flow direction such that along at least one further edge of the larger filter bellows in the interface region there is a free space on the inflow or outflow surface of the larger filter bellows, which is not covered by the smaller filter bellows, wherein the circumferential seal in the region of the free space is directly materially connected to the inflow or outflow surface of the larger filter bellows.
- a free space remains on at least one pair of opposite edges on the inflow or outflow surface of the larger filter bellows.
- the smaller filter bellows can be bent in two different directions running transversely to the flow direction by one be offset by a predetermined amount from the pair of opposite edges of the larger filter bellows.
- the connection of the circumferential seal with the inflow or outflow surface of the larger filter bellows in the area of the free space can be designed to be completely circumferential.
- the gas filter medium can also have only one support layer that immobilizes the adsorbent provided in granulate or particle form, wherein the support layer can have a nonwoven material with a pore size that is comparatively significantly larger than the particle filter medium.
- the smaller filter bellows can have the gas filter medium.
- this has the advantage that a larger filter surface can be provided in the filter bellows with particle filter medium, which is particularly advantageous for high-separation particle filter media from the HEPA range.
- the filter bellows that has the particle filter medium can be arranged upstream of the filter bellows that has the gas filter medium.
- An air flow passing through the filter element according to the invention can first flow through the filter bellows comprising the particle filter medium and then through the filter bellows that has the gas filter medium.
- the smaller filter bellows is arranged upstream and the larger filter bellows downstream.
- the particle filter medium and/or gas filter medium can have an antimicrobial and/or antiallergenic effect.
- antimicrobial substances include zinc pyrithione or nanosilver
- antiallergenic substances include polyphenol.
- the circumferential seal can be directly connected in a material-locking manner to the at least partially circumferential frame element of the smaller filter bellows. This further improves the mechanical load-bearing capacity of the connection between the two filter bellows and also has a beneficial effect on the rigidity of the filter element as a whole. Furthermore, in designs in which the smaller filter bellows has the gas filter medium, a reduced tendency for adsorbent particles present in the gas filter medium to be discharged can be achieved by "enclosing" the smaller filter bellows with the frame element.
- the direct material-locking connection of the surrounding seal can be a foaming process, which is an established process on a large industrial scale, particularly when polyurethane is used as the starting material.
- the larger filter bellows can have sealed pleat front edges, in particular in the form of a fluid-tight bonding of the spaces between the pleats and/or at least one frame element attached to the pleat front edges. The sealed front edges prevent the filter medium of the larger filter bellows from bypassing.
- a spacer element can be present in the interface area, which specifies a distance between the two filter bellows in the flow direction.
- the spacer element can extend in particular with at least one component transversely to a fold longitudinal extension of at least one of the filter bellows in order to enable optimal support at as many contact points as possible.
- a distance between the two filter bellows is generally advantageous in order to achieve an even flow through both filter bellows.
- the spacer element not only serves to support the two filter elements against each other, but also fulfills a stabilizing function for the filter element as a whole.
- the spacer element can comprise a trace of adhesive applied to a plurality of pleat tips of at least one of the filter bellows, at least one thread glued to the pleat tips and/or a grid arranged in the interface area.
- the grid can consist of a plastic material and in particular be provided as an injection-molded part; this makes it possible to achieve a particularly good stiffening effect of the spacer element.
- the grid can have a collar section that runs at least partially around the larger filter bellows and projects radially over the larger filter bellows.
- the collar section of the grid runs all the way around.
- the collar section of the grid can in particular be embedded in a material of the circumferential seal, preferably foamed with a material of the circumferential seal.
- the collar section of the grid can in particular be completely surrounded by the material of the circumferential seal.
- the collar section of the grid can in particular extend at least partially in the plane in which the interface area is located. In embodiments, however, the collar section of the grid can also be at least partially offset from the plane of the interface area, in particular to internally stiffen a sealing area of the circumferential seal. In embodiments, the collar portion of the grid can be angled in a direction pointing towards the larger filter bellows.
- the collar section is made of one piece with the material of the grid and can be manufactured in a common process step with the grid.
- At least one section of the grid can extend radially beyond the collar section and form an at least partially running protruding edge beyond the circumferential seal.
- the protruding edge runs all the way around.
- the protruding edge is in particular made in one piece with the material of the grid and/or the collar section and can be manufactured in a common process step with the grid and/or the collar section.
- the collar section and/or the overhanging edge preferably consist of a stiffer material than the circumferential seal, in particular of a plastic material, in particular of an injection-moldable plastic material.
- the overhanging edge additionally stiffens the filter element; on the other hand, at least one fastening device can be formed on it, by means of which the filter element can be held in a filter housing.
- the fastening device can be, for example, a tab that comprises at least one fastening element, for example a screw-through opening or a snap element.
- the filter bellows can have different pleat spacings, wherein a pleat spacing of the smaller filter bellows can be larger than a pleat spacing of the larger filter bellows.
- a pleat spacing in the filter bellows comprising the gas filter medium can be larger than a pleat spacing in the filter bellows comprising the particle filter medium.
- a further aspect of the present invention relates to a filter device, in particular a cabin air filter system or an intake air filter system of a fuel cell.
- the filter device comprises a filter housing with two housing parts, of which at least one has a filter element receiving space in which a filter element according to the invention is arranged.
- the filter housing has at least one circumferential housing sealing surface against which a circumferential seal of the filter element rests sealingly.
- Fig. 1 is an isometric view of a filter element according to the invention
- Fig. 6 is a longitudinal sectional view of a filter device according to the invention.
- the folded filter medium of the first filter bellows 1 is provided with a side band 131 on each of its fold front edges 15' (see Fig. 4) and with a head band 141 on each of its end folds.
- the side bands 131 and head bands 141 represent a circumferential frame element which encloses the folded filter medium 15 of the first filter bellows 1.
- the filter element 10 further comprises a circumferential seal 3, which connects both filter bellows 1, 2 and is directly integrally formed thereon, in particular foamed thereon.
- the second filter bellows 2 has sealed pleat front edges 25', which are implemented in the form of a fluid-tight bonding of fold interspaces 251 (see Fig. 4).
- a frame element applied to the pleat front edges 25' of the filter medium of the second filter bellows 2 can also be provided for sealing the pleat front edges.
- the first filter bellows 1 is smaller than the second filter bellows 2, where “smaller” refers to its dimensions transverse to the flow direction D.
- Fig. 2 shows the filter element 10 according to the invention in a plan view, with the first filter bellows 1 at the top.
- Fig. 3 shows a section in the section plane AA shown in Fig. 2, which runs parallel to the short sides 14,24 of the filter element 10.
- the internal structure of the filter element 10 can be seen, in particular the connection of the two filter bellows 1,2 by the circumferential seal 3.
- the filter bellows 1,2 border in an interface area S between the outflow surface 12 of the first filter bellows 1 and the Inflow surface 21 of the second filter bellows 2.
- the filter bellows 1, 2 are held at a predetermined distance from one another in the flow direction D by a spacer element 26.
- the spacer element 26 extends transversely to the longitudinal extent of the folds of at least one of the filter bellows 1, 2.
- the spacer element 26 is in particular a trace of adhesive applied to a plurality of fold tips 27 of the second filter bellows 2 or a thread glued to the fold tips 27.
- first filter bellows 1 Since the first filter bellows 1 is smaller than the second filter bellows 2, a free space F remains on opposite edges of the larger filter bellows 2 on its inflow surface 21 in the interface area S, which is not covered by the first filter bellows 1.
- the smaller first filter bellows 1 is arranged offset in such a way that a free space F is present on the opposite edges of the larger second filter bellows 2, wherein in particular the respective free spaces F on the opposite edges of the larger second filter bellows 2 have the same dimensions.
- the circumferential seal 3 is directly materially connected to the inflow surface 21 of the larger filter bellows 2. Furthermore, the circumferential seal 3 is directly materially connected to the side surfaces 13, 14 (see Fig. 4) of the first, smaller filter bellows 1 and to the side surfaces 23, 24 (see Fig. 4) of the second, larger filter bellows 2.
- the two filter bellows 1, 2 are therefore connected to each other via the circumferential seal 3.
- connection is made both via the respective side surfaces 13, 14, 23, 24 of the two filter bellows 1, 2 and via the inflow surface 21 of the second filter bellows 2, the contact surface of the circumferential seal 3 with the filter bellows 1, 2 is maximized, which contributes to a mechanically very resilient connection.
- the connection via the respective side surfaces 13, 14, 23, 24 of the two filter bellows 1, 2 and via the inflow surface 21 of the second filter bellows 2 is preferably completely circumferential.
- a sealing region 31 which, in an assembled state of the filter element 10, comes into contact with at least one housing-side sealing surface.
- Fig. 4 which shows the filter element 10 in a side view in a projection direction along the short side surfaces 14,24, the connection of the spacer element 26 with the fold tips 27 of the second filter bellows 2.
- the circumferential seal 3 therefore has a first longitudinal leg 33 which is connected to the side surface 14 of the first filter bellows 1. More precisely, the first longitudinal leg 33 is connected to a headband 141 present on the side surface 14, which is present on an end fold of the folded filter medium of the first filter bellows 1. Furthermore, the circumferential seal 3 has a second longitudinal leg 34 which is connected to the side surface 24 of the second filter bellows 2. More precisely, the second longitudinal leg 34 is connected to an end fold of the filter medium of the second filter bellows 2. Finally, the circumferential seal 3 also has a transverse leg 32 which is connected to the inflow surface 21 of the second filter bellows 2.
- the rigidity of the entire filter element 10 is advantageously significantly increased.
- the arrangement of the spacer element 26 in the interface area S is further beneficial to the rigidity, in particular with regard to bending about an axis transverse to the flow direction D.
- Fig. 6 finally shows an installation state of the filter element 10 according to the invention in a filter housing 4 of an air filter system 100, in particular a cabin air filter system or an intake air filter system of a fuel cell.
- the filter housing 4 comprises two housing parts 41, 42, which together define a filter element receiving space.
- the lower housing part 41 can be a housing pan and the upper housing part 42 can be a housing cover.
- Both the first housing part 41 and the second housing part 42 provide circumferential sealing surfaces 411, 421, against which the sealing area 31 of the circumferential seal 3 of the filter element 1 is in sealing contact.
- the sealing area 31 of the circumferential The seal 3 is clamped axially between the housing parts 41, 42 via respective axial contact surfaces facing the sealing surface 411 of the first housing part 41 and the sealing surface 421 of the first housing part 42.
- at least one of the housing parts 41, 42 has a circumferential rib which presses on the respective axially directed contact surface of the sealing area 31.
- a filter element 10 according to the invention is shown in a longitudinal sectional view according to a further embodiment.
- the filter element 10 essentially corresponds to the filter element 10 shown in Figs. 1 to 5, so that the features, combinations of features and their specific technical advantages described in relation to this filter element 10 and to the filter device 100 of Fig. 6 are transferable. Only the differences will be discussed below.
- the spacer element 26 comprises a grid 26", which is present in the interface area S between the two filter bellows 1, 2.
- the grid 26' is fluid-permeable and in particular has a large number of grid openings, between which grid webs extend, which rest on respective fold tips of the filter bellows 1, 2 pointing towards the interface area S in order to space the filter bellows 1, 2 apart in a predetermined manner.
- the grid 26" has a circumferential collar section 261 which projects radially over the larger filter bellows 2.
- the collar section 261 of the grid 26" is embedded in the material of the circumferential seal 3, in particular foamed with the material of the circumferential seal 3.
- the collar section 261 of the grid 26" is in particular completely, i.e. on all sides, surrounded by the material of the circumferential seal 3.
- the collar section 261 of the grid 26" extends with a first section in the plane in which the interface area S lies. In a second section, the collar section 261 is angled relative to the plane of the interface area S in order to internally stiffen a sealing area 31 of the circumferential seal 3. According to the exemplary embodiment, the collar section 261 of the grid 26" is angled in a direction pointing towards the larger filter bellows 2. The angled second section can have a bend, curvature or kink.
- the collar section 261 is made of one piece with the material of the grille 26" and is manufactured in particular in a common process step together with the grille 26".
- the grid 26" with the collar section 261 formed thereon is first provided and then the two filter bellows 1, 2 are arranged on it.
- the two filter bellows 1, 2 are connected by foaming or casting the circumferential seal 3, whereby the sealing section 31 is also formed and the collar section 261 is surrounded by the material of the circumferential seal 3.
- the foaming or casting can be carried out using a foaming or casting mold which has a negative contour of the circumferential seal 3.
- At least a section of the grid 26" can extend radially beyond the collar section 261 and form an at least partially circumferential overhang edge 262 beyond the circumferential seal 3, which is shown in the longitudinal sectional view of the embodiment according to Fig. 8.
- the overhang edge 262 is not surrounded by the material of the circumferential seal 3 and is in particular exposed. In particular, the overhang edge 262 runs completely along the circumferential seal 3.
- the overhang edge 262 is made in one piece with the material of the grid 26" and the collar section 261 and can be produced in a common process step with the grid 26" and the collar section 261.
- the overhang edge 262 is in particular designed as a collar and angled relative to a plane of the interface region S.
- the overhang edge 262 is in particular angled in a direction opposite to the angled second section of the collar section 261.
- the overhanging edge 262 stiffens the filter element 10 on the one hand; on the other hand, a fastening device can be formed on the overhanging edge 262, by means of which the filter element 10 can be held in a filter housing.
- the fastening device can be, for example, a tab that comprises at least one fastening element, for example a screw-through opening or a snap element, which is not shown figuratively, however. Reference symbols used
Landscapes
- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Filtering Of Dispersed Particles In Gases (AREA)
- Air-Conditioning For Vehicles (AREA)
Abstract
Description
Claims
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102022125471.2A DE102022125471A1 (de) | 2022-10-04 | 2022-10-04 | Filterelement und Filtervorrichtung |
| PCT/EP2023/074565 WO2024074258A1 (de) | 2022-10-04 | 2023-09-07 | Filterelement und filtervorrichtung |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| EP4598653A1 true EP4598653A1 (de) | 2025-08-13 |
Family
ID=88016186
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP23768252.1A Pending EP4598653A1 (de) | 2022-10-04 | 2023-09-07 | Filterelement und filtervorrichtung |
Country Status (7)
| Country | Link |
|---|---|
| US (1) | US20250222384A1 (de) |
| EP (1) | EP4598653A1 (de) |
| JP (1) | JP2025532354A (de) |
| KR (1) | KR20250086614A (de) |
| CN (1) | CN119998022A (de) |
| DE (1) | DE102022125471A1 (de) |
| WO (1) | WO2024074258A1 (de) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102024124181A1 (de) * | 2024-08-23 | 2026-02-26 | Mann+Hummel Gmbh | Filterelement |
Family Cites Families (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US5891207A (en) * | 1994-01-06 | 1999-04-06 | Hks Co., Ltd. | Engine intake-air filter apparatus |
| JP5593187B2 (ja) * | 2010-10-01 | 2014-09-17 | アイリスオーヤマ株式会社 | 空気清浄機用フィルタ |
| ITTO20131038A1 (it) | 2013-12-18 | 2015-06-19 | Cornaglia G Off Met Spa | Elemento filtrante multistrato e suo metodo di realizzazione |
| DE102014004220A1 (de) * | 2014-03-25 | 2015-10-01 | Mann + Hummel Gmbh | Innenraumluftfilterelement |
| DE102017219009A1 (de) * | 2017-10-24 | 2019-04-25 | Mahle International Gmbh | Filterverbund zum Verbau in einem Fahrzeug |
| EP3520878B1 (de) | 2018-02-01 | 2020-11-04 | Carl Freudenberg KG | Filterelement und verwendung eines solchen filterelements |
| DE102020131697A1 (de) * | 2020-11-30 | 2022-06-02 | Mann+Hummel Gmbh | Filter, insbesondere Innenraumfilter eines Kraftfahrzeugs, Verwendung eines Filterelements in dem Filter, Filterelement und Kraftfahrzeug |
-
2022
- 2022-10-04 DE DE102022125471.2A patent/DE102022125471A1/de active Pending
-
2023
- 2023-09-07 EP EP23768252.1A patent/EP4598653A1/de active Pending
- 2023-09-07 CN CN202380070811.6A patent/CN119998022A/zh active Pending
- 2023-09-07 WO PCT/EP2023/074565 patent/WO2024074258A1/de not_active Ceased
- 2023-09-07 JP JP2025519599A patent/JP2025532354A/ja active Pending
- 2023-09-07 KR KR1020257010352A patent/KR20250086614A/ko active Pending
-
2025
- 2025-03-28 US US19/093,597 patent/US20250222384A1/en active Pending
Also Published As
| Publication number | Publication date |
|---|---|
| US20250222384A1 (en) | 2025-07-10 |
| CN119998022A (zh) | 2025-05-13 |
| JP2025532354A (ja) | 2025-09-29 |
| KR20250086614A (ko) | 2025-06-13 |
| WO2024074258A1 (de) | 2024-04-11 |
| DE102022125471A1 (de) | 2024-04-04 |
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