WO2017133797A1 - Élément filtrant, cadre de filtre d'un élément filtrant, soufflet filtrant d'un élément filtrant et filtre - Google Patents

Élément filtrant, cadre de filtre d'un élément filtrant, soufflet filtrant d'un élément filtrant et filtre Download PDF

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Publication number
WO2017133797A1
WO2017133797A1 PCT/EP2016/073840 EP2016073840W WO2017133797A1 WO 2017133797 A1 WO2017133797 A1 WO 2017133797A1 EP 2016073840 W EP2016073840 W EP 2016073840W WO 2017133797 A1 WO2017133797 A1 WO 2017133797A1
Authority
WO
WIPO (PCT)
Prior art keywords
filter
housing
axis
bellows
seal
Prior art date
Application number
PCT/EP2016/073840
Other languages
German (de)
English (en)
Inventor
Klaus-Dieter Ruhland
Michael Kaufmann
Original Assignee
Mann+Hummel Gmbh
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Mann+Hummel Gmbh filed Critical Mann+Hummel Gmbh
Priority to DE112016006349.0T priority Critical patent/DE112016006349A5/de
Publication of WO2017133797A1 publication Critical patent/WO2017133797A1/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/0002Casings; Housings; Frame constructions
    • B01D46/0005Mounting of filtering elements within casings, housings or frames
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/10Particle separators, e.g. dust precipitators, using filter plates, sheets or pads having plane surfaces
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/52Particle separators, e.g. dust precipitators, using filters embodying folded corrugated or wound sheet material
    • B01D46/521Particle separators, e.g. dust precipitators, using filters embodying folded corrugated or wound sheet material using folded, pleated material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/56Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with multiple filtering elements, characterised by their mutual disposition
    • B01D46/62Filters 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
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D50/00Combinations of methods or devices for separating particles from gases or vapours
    • B01D50/20Combinations of devices covered by groups B01D45/00 and B01D46/00
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2265/00Casings, housings or mounting for filters specially adapted for separating dispersed particles from gases or vapours
    • B01D2265/02Non-permanent measures for connecting different parts of the filter
    • B01D2265/028Snap, latch or clip connecting means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2275/00Filter media structures for filters specially adapted for separating dispersed particles from gases or vapours
    • B01D2275/20Shape of filtering material
    • B01D2275/206Special forms, e.g. adapted to a certain housing

Definitions

  • Filter element element frame of a filter element
  • the invention relates to a filter element of a filter for in particular gaseous fluid, in particular air, in particular an internal combustion engine, in particular a motor vehicle and / or a machine which can be installed in a mounting direction, which is parallel or coaxial with a mounting axis, in a filter housing of the filter with at least one filter bellows comprising at least one filter medium, wherein the at least one filter bellows with respect to an element axis, which is perpendicular or transverse to the installation axis axially opposite sides each having a fluid flow through side, and having at least one seal which circumferentially at least with respect to the element axis partially at least in sections is arranged on a relative to the element axis radially outer peripheral side of the filter element.
  • the invention relates to an element frame of a filter element or for a filter element of a filter for particular gaseous fluid, in particular air, in particular an internal combustion engine, in particular a motor vehicle and / or a machine, wherein the element frame at least a filter bellows from at least one filter medium with respect to an element axis at least teilumfhacklich surrounds or surrounds, wherein the element axis is perpendicular or transverse to an installation axis of the filter element in a filter housing.
  • the invention relates to a filter bellows of a filter element of a filter for particular gaseous fluid, in particular air, in particular an internal combustion engine, in particular a motor vehicle and / or a machine, wherein the filter bellows has at least one filter medium, with respect to an element axis, which perpendicular or transverse to an installation axis of the filter element extends into a filter housing, axially opposite sides each having a flow-through side for fluid, and at least one seal is arranged on a relative to the element axis radially outer peripheral side of the filter bellows, which extends circumferentially at least partially contiguous with respect to the element axis.
  • gaseous fluid in particular air
  • an internal combustion engine in particular a motor vehicle and / or a machine
  • the filter bellows has at least one filter medium, with respect to an element axis, which perpendicular or transverse to an installation axis of the filter element extends into a filter housing, axially opposite sides each having
  • the invention relates to a filter for in particular gaseous fluid, in particular air, in particular an internal combustion engine, in particular a motor vehicle, with attorneyss- at least one filter housing in which at least one filter element is arranged, which has at least one filter housing at least one inlet opening for fluid to be cleaned and at least one outlet opening for purified fluid, wherein at least one filter element in an element receiving space of the at least one filter housing is or can be arranged in that it separates the at least one inlet opening from the at least one outlet opening, the filter housing having a housing body with at least one installation opening to the element receiving space, through which the at least one filter element in an installation direction which is parallel or coaxial with an installation axis, into the element receiving space the housing body can be introduced, and the at least one filter housing have at least one housing cover, with which the apparent installation opening can be closed, wherein the at least one installation opening in a bezügli a housing axis lateral lateral side of the housing body is arranged, and the at least one filter housing has at
  • the filter device comprises a pre-separator, which is designed in particular as a cyclone pre-separator, further comprises a main filter element interchangeably arranged in a housing shaft of the filter housing and a secondary filter element downstream of it in the flow direction of the fluid to be cleaned.
  • the housing shaft comprises to facilitate the pre-assembly of the main filter element in this Ein 1500stege.
  • the main filter element is designed in particular as a double-bladder filter, having a first radially inner filter bellows and a second radially outer filter bellows enclosing the latter.
  • the invention has for its object to make a filter element, an element frame of a filter element, a filter bellows of a filter element, a filter housing and a filter of the type mentioned, in which an installation of the filter element in the filter housing and / or an expansion of the filter element of the Filter housing improved, in particular can be simplified. Furthermore, a sealing effect of a sealing device between the filter element in the filter housing is to be improved. Disclosure of the invention
  • the filter element has at least one element frame in which at least one filter bellows is arranged.
  • the filter frame can be protected with the element frame. Furthermore, forces can be transmitted in particular for pressing the seal with the element frame. Thus, the filter bellows with less stress, in particular force-free, are held in the filter housing.
  • the element axis pierces the corresponding flow areas of the filter element on the axially opposite throughflow sides. The fürström vom are traversed by the fluid.
  • the element axis roughly indicates the main flow direction of the fluid through the filter element, wherein the actual flow profile of the fluid does not necessarily have to be homogeneous.
  • the main flow direction can also be referred to as the mean flow direction.
  • the element axis of the filter element may coincide with a housing axis of the filter housing.
  • the element axis and the housing axis can also be referred to as the main axis.
  • the installation axis can be perpendicular or oblique to the main axis, in particular to the element axis and / or to the housing axis. This allows the filter element to be installed from the side into the filter housing.
  • At least one filter bellows can be separably or non-detachably connected to at least one element frame.
  • the at least one element frame can be used again after an exchange of the at least one filter bellows.
  • the at least one element frame can be configured as a removable frame.
  • the at least one filter bellows can be inserted axially relative to the element axis into the at least one element frame and correspondingly removed therefrom.
  • at least one filter bellows and at least one element frame can be preassembled and replaced together.
  • At least one element frame and / or at least one filter bellows may have at least one part of at least one fixing device for holding the at least one filter bellows in the at least one element frame.
  • at least one fixing device With the at least one fixing device, at least one filter bellows in the at least one element frame are held in the correct installation position.
  • At least one fixing device can serve to prevent at least one filter bellows from falling out of the at least one element frame, in particular during knocking. The at least one filter bellows can be knocked out in such a way, without first having to be removed from the at least one element frame.
  • At least one fixing device can be realized as a positive and / or non-positive connection.
  • fixation devices can be designed so that they can be released again if necessary.
  • At least one fixing device can be realized as a latching connection, which can be easily manufactured and connected / loosened.
  • At least one filter bellows and / or at least one element frame have at least one latching lug and / or at least one latching receptacle of a latching connection.
  • At least one element frame may have at least one handle. At the at least one handle, the filter element can be taken and transported.
  • At least one handle can be integrated into or connected to a sealing support device.
  • a manufacturing effort or a space requirement can be reduced.
  • At least one element frame can at least partially cover at least one longitudinal side and / or at least one transverse side of at least one filter bellows. In this way, the at least one corresponding side of the at least one filter bellows can be protected in a planar manner.
  • At least one element frame can surround at least one filter bellows circumferentially, in particular in a coherent manner. In this way, the stability of the filter element can be improved overall.
  • at least one element frame can be arranged on at least one throughflow side of at least one filter bellows, in particular axially with respect to the element axis. lying sides, be open. In this way, fluid can flow through the corresponding openings of the element frame.
  • At least one element frame may have at least one frame web on at least one open side. With the at least one frame web, the open side can be stabilized. Furthermore, at least one filter bellows can be supported on the at least one frame web.
  • the element frame may have approximately the same shape and size as the at least one filter bellows.
  • the filter element can be realized overall more compact and space-saving.
  • At least one element frame may comprise or consist of plastic.
  • the at least one element frame can be easily manufactured by a plastic molding process.
  • the filter element can have at least one outer side at least one sealing support device.
  • the at least one sealing support device can rest on the at least one seal with respect to the axis of the element axially facing away from the rear seal with one of the at least one seal facing element-side support surface on the at least one seal force transmitting.
  • At least one corresponding pressing device of the filter housing can act on the at least one sealing support device on the side facing away from the at least one seal.
  • a pressing force introduced by the pressing device into the at least one sealing supporting device can be transmitted to the at least one seal via the at least one sealing supporting device.
  • the at least one seal can thus be pressed with a correspondingly increased sealing force against a corresponding housing-side sealing surface. In this way, a sealing effect can be improved.
  • At least one of the at least one seal facing element-side support surface and at least one of the at least one seal facing away element-side support surface of at least one seal support device at least partially obliquely to each other.
  • the directional components of the acting forces can be adjusted according to the orientations of the at least one seal and / or the at least one housing-side sealing surface relative to the element axis or housing axis.
  • At least one element-side support surface facing the seal and at least one element-side support surface facing away from the seal in the direction perpendicular to the element axis and perpendicular to the installation axis can at least partially run obliquely relative to one another.
  • At least one section of at least one element-side support surface facing the seal and at least one section of at least one seal-facing element-side support surface may be inclined to one another at an angle of between approximately 10 ° and approximately 30 °, in particular approximately 20 °.
  • a ratio of the force to be applied during installation of the filter element in the filter housing and thereby acting by means of the at least one housing-side pressing device on the at least one sealing-supporting device acting on the at least one sealing contact force can be improved.
  • At least one section of at least one element facing support surface facing the seal can be inclined at an angle of between approximately 60 ° and approximately 80 °, in particular approximately 70 °, to the element axis, in particular to the main axis and / or the housing axis.
  • at least one section of at least one sealing element facing away from the support surface at an angle of between about 80 ° and about 100 °, in particular about 90 ° be inclined to the element axis, in particular the main axis and / or housing axis.
  • At least one part of at least one element side support surface facing the seal and at least one part of at least one element side support surface facing away from the seal of the at least one sealing support device in the direction considered perpendicular to the axis of the element and perpendicular to the installation axis form a wedge-like arrangement, wherein a tip of the wedge-like arrangement shows approximately in the installation direction.
  • At least one element-side support surface facing away from the seal can extend at least in sections parallel or obliquely to at least one flow-through surface, in particular a flow-through plane, of the filter bellows and / or parallel or obliquely to the installation axis.
  • the at least one element-side support surface facing away from the seal can be guided along a housing-side contact surface when the filter element is installed in the filter housing.
  • At least one sealing support device may be arranged on at least one longitudinal side of the filter element.
  • the sealing support device when installed in the filter housing, the sealing support device can be guided along at least one corresponding housing-side contact pressure device.
  • At least one housing-side pressing device can be arranged correspondingly inside on at least one longitudinal wall of the housing.
  • the longitudinal sides of the filter element are here the pages which extend axially on opposite sides between the flow-through and the transverse sides of the filter element with respect to a transverse axis of the filter element.
  • the longitudinal sides of the housing are correspondingly the sides which extend between the transverse sides, an inlet side and an outlet side of the housing.
  • the sides of the filter element and the filter housing are referred to, which lie axially opposite each other with respect to the installation axis.
  • One of the transverse sides of the filter housing may have at least one installation opening for the at least one filter element.
  • the housing cover can also be referred to as a maintenance cover. Through the opening of the housing cover, the components contained in the element interior, in particular the at least one filter element, installed, removed and maintained.
  • At least one element-side supporting surface of at least one sealing supporting device can lie against the at least one seal, in particular flatly, over its entire extent along the at least one longitudinal side of the filter element. In this way, a uniform surface support can be achieved.
  • at least one seal-facing element-side support surface of at least one seal support device extend only over a part along at least one longitudinal side of the filter element obliquely to at least one seal-facing element-side support surface of the at least one seal support device. In this way, a space in addition to the at least one seal facing away from the element-side support surface for other components, in particular for introducing at least one part, in particular a contact pressure, the housing cover can be used.
  • At least one sealing support device may have a sealing element facing away from the direction of installation with respect to the direction of installation, and at least one element facing rear side facing away from the seal.
  • the at least one seal can be supported in a plurality of areas which are remote from each other. So a more even sealing function can be achieved.
  • the at least one sealing support device may have a front seal-facing element-side support surface and at least one rear seal-facing element-side support surface.
  • a front seal facing away from the element-side support surface and at least one rear seal facing away element-side support surface in particular integrally into one another. Accordingly, a front seal-facing element-side support surface and at least one rear seal-facing element-side support surface can in particular merge into one another in one piece.
  • at least one front seal-facing element-side support surface and at least one rear seal-facing element-side support surface extend in a common plane or in different planes.
  • the front element-side support surfaces may be arranged in the region of the front transverse side of the at least one filter element with respect to the installation direction and / or the rear element-side support surfaces on a rear transverse side of the at least one filter element. In this way, a support in the region of the corresponding transverse side can take place.
  • At least one rear element-side support surface facing away from the seal can point towards at least one seal-facing element-side support surface with respect to the at least one front seal-facing element-side support surface. be his.
  • a corresponding part, in particular a press-on, of the housing cover can be introduced.
  • an angle of inclination between at least one front seal-facing element-side support surface and at least one front seal togewandten element-side support surface and an inclination angle between at least one rear seal facing element-side support surface and at least one corresponding at least one rear seal facing away element-side support surface may be different.
  • the support surfaces can be supported with differently directed portions of the filter housing.
  • At least one rear sealing element-side support surface remote from the seal and at least one corresponding rear seal-facing element-side support surface can extend parallel to one another at least in sections.
  • at least one seal support device can be realized on a frame extending at least partially with respect to the element axis, in particular an element frame or support frame, or as such.
  • the frame can be dimensionally stable in particular throughout. In this way, corresponding contact forces can be transmitted via the frame to the at least one seal.
  • At least one sealing support device can be separably or non-destructively separably connected to at least one filter bellows of the filter element.
  • Separable seal support device have the advantage that they can be used again when changing the filter bellows.
  • Non-separable seal support device can be made together with the at least one filter bellows and connected stably.
  • At least one sealing surface of at least one seal with respect to the element axis can run at least in sections obliquely to the installation axis and / or to the element axis.
  • the at least one seal can seal against a correspondingly inclined housing-side sealing surface.
  • At least one filter bellows extend at least partially obliquely on at least one throughflow side to the element axis. In this way, a prismatic filter bellows can be realized.
  • At least one seal may be arranged to separate a clean fluid side of the filter element from a raw fluid side.
  • at least one seal facing an outflow side of the filter element, in particular arranged on an outflow-side end face of the filter element be.
  • the at least one seal can seal directly on the clean fluid side of the filter element.
  • at least one filter bellows, in particular the filter element, viewed in the direction of the element axis have a polygonal, in particular rectangular, cross-section. In this way, a space requirement in relation to a filter surface can be improved.
  • At least one filter bellows in particular the filter element, viewed in the installation direction axially relative to the installation axis, can taper at least in the axial direction with respect to the element axis.
  • the filter with filter housing and filter element can be made more compact overall.
  • At least one filter medium can in particular be folded and / or bent in a zigzag shape.
  • the filter area can be increased in relation to the outer dimensions of the at least one filter bellows.
  • at least part of the folded edges of the pleated filter medium can extend transversely, in particular perpendicularly, to the element axis and transversely, in particular vertically, to the installation axis, at least on one throughflow side. In this way, a height in the direction of the element axis of the filter bellows in the direction of the installation axis can vary. It is possible to speak of a filter bellows with a folded filter medium with changing, in particular variable, fold heights along the installation direction.
  • an approximately wedge-shaped or prismatic filter element can be realized with the filter bellows.
  • at least one seal on at least one filter bellows in particular in the region of an end face of a filter bellows, can not be connected to the at least one filter medium so as to be non-destructively separable or separable.
  • the at least one non-destructively separable seal can become stable and / or simple with the at least one filter medium.
  • a separable seal can be replaced.
  • At least one seal may comprise or consist of elastic material.
  • at least one seal can in particular comprise or consist of foamed polyurethane (PUR).
  • At least one seal by means of a cohesive and / or non-positive and / or positive connection, in particular an adhesive connection, a welded connection, a foamed and / or cast connection, a plug connection, a latching connection or the like, be connected to the at least one filter bellows ,
  • At least one reinforcement in particular a reinforcing frame, in particular made of plastic, can be arranged, in particular embedded, on / in the at least one seal, in particular a sealing track.
  • the at least one seal can be additionally supported.
  • the at least one reinforcement can advantageously comprise or consist of plastic. In this way, the at least one reinforcement can be easily manufactured. Furthermore, the at least one reinforcement can be provided with a certain elasticity. Advantageously, the at least one reinforcement can be located in the region of the rear side of the at least one seal which is axially remote from the sealing surface of the at least one seal with respect to the element axis. In this way, at least one element-side support surface of at least one sealing support device can force-transmittingly engage there.
  • At least one sealing surface of at least one seal can extend along a sealing plane. In this way, a flat, surface seal can be realized.
  • the filter element in particular at least one seal Abstützvor- direction and / or optionally at least one element frame, on its rear relative to the installation direction axially to the mounting axis rear side at least one at least with a direction component with respect to the mounting direction axially directed Andschreibstelle.
  • At least one pressing portion can engage at least one pressing portion of at least one housing cover.
  • the filter element in particular the at least one sealing support device, can be pressed axially into the filter housing with respect to the installation axis.
  • at least one sealing support device can be clamped or clamped between at least one housing-side sealing surface and at least one pressure point. A sealing effect of the at least one seal can be further improved.
  • the filter element in particular at least one filter bellows, have at least one edge protector on at least one throughflow side.
  • the at least one edge protector With the at least one edge protector, corresponding edges and edges of the filter element, in particular at least one filter bellows and / or at least one element frame, can be protected.
  • the filter element With the edge protection, the filter element can be protected against damage, especially during knocking.
  • the filter element, in particular the filter bellows can be tapped with the flow-through side with the edge protector against a hard surface in order to free the at least one filter bellows of particles.
  • At least one edge protector can project beyond at least the filter bellows and / or optionally at least one element frame at least in the axial direction with respect to the element axis.
  • the edge protection of elastic material in particular polyurethane, be or have such material. Polyurethane can simply foamed or foamed.
  • the edge protector may extend at least in sections along an edge of the filter element, in particular of the at least one filter bellows, which is circumferential with respect to the element axis.
  • the at least one edge protector can be arranged on at least one filter bellows.
  • the edge protector can not be connected non-destructively separable with the at least one filter bellows. This may advantageously be a cohesive and / or positive and / or non-positive connection.
  • At least one edge protection on / in / on the at least one filter bellows in particular filter medium, foamed, glued, welded or the like.
  • At least one edge protector may protrude through openings of at least one possible element frame. In this way, the at least one edge protector can project beyond the element frame and protect it. At least one filter bellows can thus remain during knocking in the element frame and be protected there.
  • the at least one edge protector may have recesses for corresponding sections, in particular frame webs, of the at least one element frame.
  • the object is achieved in the frame element according to the invention in that the element frame has at least a portion of a fixing device for cooperating with at least a portion of the fixing on at least one filter bellows.
  • the at least one fixing device With the at least one fixing device, at least one filter bellows can be held in the correct installation position by means of the at least one element frame.
  • the element frame may comprise at least one seal support device.
  • at least one seal of the filter element can be supported in a force-transmitting manner.
  • the at least one sealing support device may have at least one element-side support surface facing the seal.
  • the at least one seal-facing element-side support surface can be located or arranged on a sealing back side of the at least one seal, which is axially remote with respect to the element axis sealing surface of the at least one seal with respect to the element axis. In this way, the at least one seal can be supported on its sealing back.
  • the object is achieved in the filter bellows according to the invention in that the filter bellows has at least one bellows-side part of at least one fixing means for cooperation with at least one frame-side part of the fixing device on the side of the element frame.
  • At least one bellows-side part of at least one fixing device can be realized as a projection for interacting with a corresponding receptacle as a frame-side part of the at least one fixing device or vice versa.
  • at least one receptacle and / or at least one projection can be realized on the side of the element frame.
  • the projections can each enter into a latching connection with the receptacles.
  • the recordings can be realized as grooves or depressions.
  • the projections can be realized as raised areas.
  • At least one bellows-side part and / or at least one frame-side part of at least one fixing device can be at least partially elastic.
  • the fixing can be easier, in particular with less effort, connected and optionally separated.
  • the corresponding elastic parts can be elastically deformed.
  • At least a part of the fixing device can be combined with an edge protector, in particular integrally connected thereto or formed from / with this.
  • an edge protector in particular integrally connected thereto or formed from / with this.
  • At least one sealing support device can be arranged on at least one outer side of the filter bellows, which can have at least one element facing support surface facing the seal, against which at least one seal with a sealing back side can bear force-transmitting.
  • the back of the seal can be located on the side of the at least one seal which faces away axially from the axial axis of the element axis.
  • a filter housing of a filter for in particular gaseous fluid, in particular air, in particular an internal combustion engine, in particular a motor vehicle at least one inlet opening for fluid to be cleaned and at least one outlet opening for purified fluid.
  • At least one filter element may be present in an element receiver cavities of the filter housing may be arranged so as to separate the at least one inlet opening from the at least one outlet opening.
  • the filter housing may have a housing body with at least one mounting opening to the element receiving space. By means of the at least one installation opening, the at least one filter element can be introduced into the element receiving space of the housing body in a mounting direction which runs parallel or coaxially to an installation axis.
  • the filter housing may have at least one housing cover.
  • the at least one reveal installation opening can be closed.
  • the at least one installation opening can be arranged in a lateral side of the housing body that is lateral with respect to a housing axis.
  • the filter housing may have at least one sealing surface for bearing at least one seal of the at least one filter element, which surrounds the housing axis at least partially circumferentially.
  • the filter housing can have at least one pressing device for a sealing support device of the at least one filter element.
  • a contact pressure force can be exerted on the at least one sealing support device.
  • at least one sealing-supporting device By means of the at least one sealing-supporting device, at least one seal of the filter element can be pressed against at least one sealing surface of the filter housing.
  • at least one pressing device can have at least one housing-side contact surface, which can be arranged on the side of the element receiving space axially opposite the at least one sealing surface with respect to the housing axis. In this way, the sealing support device and thus the filter element can be supported on the sealing surface with respect to the main axis axially opposite side.
  • At least one housing-side contact surface extend obliquely at least one sealing surface.
  • directional components of the installation forces acting during installation can contribute perpendicular to the at least one sealing surface to increase the sealing effect.
  • At least one housing-side contact surface at the same or a similar inclination angle as a corresponding non-sealing support surface of the at least one sealing support device of the filter element extend obliquely to the sealing surface of the seal.
  • the at least one sealing support device can be pressed in like a wedge between the at least one housing-side contact surface and the at least one seal.
  • the at least one seal with a greater sealing force against the at least one housing-side sealing surface are pressed.
  • At least one front housing-side contact surface can be located on the side of the housing body which is axially opposite the housing body with respect to an installation direction of the filter element in the housing body of the at least one installation opening.
  • the at least one filter element can be clamped with respect to the installation axis axially opposite sides.
  • At least one housing cover can have at least one press-on blade.
  • the at least one press-on blade can be introduced into a lateral area between the outside of the filter element and the inside of the housing body.
  • the at least one pressing blade With the at least one pressing blade, at least one filter element can be clamped in the filter housing by means of the at least one housing cover.
  • At least one press-on blade can have at least one seal-facing cover-side contact surface and / or at least one seal-facing cover-side contact surface.
  • the at least one contact pressure bar can press against a corresponding element facing away from the sealing surface of a sealing support device.
  • the at least one contact pressure bar With at least one cover-side contact surface facing away from the gasket, the at least one contact pressure bar can be supported against a corresponding rear housing-side contact surface of the housing body facing the installation opening. In the presence of both at least one seal facing cover-side contact surface and at least one seal facing away cover-side contact surface can be clamped between the corresponding seal facing away from the element-side support surface and the rear housing-side contact surface.
  • connection in particular a pivot connection, between the at least one housing cover and the housing body are mechanically relieved.
  • the at least one filter element can be braced with the support of the housing cover with the at least one press-on blade with a lower expenditure of force in the housing and be sealed by means of the at least one seal.
  • at least one seal-facing cover-side contact surface may have a complementary profile to at least one seal-facing element-side support surface of at least one seal support device of at least one filter element. In this way, the at least one seal-facing cover-side contact surface can lie flat against the at least one seal-facing element-side support surface.
  • At least one cover-side contact surface facing the seal can advantageously extend obliquely at least in sections to the mounting axis and / or at least in sections parallel to the housing-side sealing surface.
  • directional components of closing forces, in particular pivoting, of the housing cover can be directed perpendicular to the housing-side sealing surface.
  • the sealing effect can be improved.
  • at least one seal-facing cover-side contact surface may have at least one bend or at least one bend.
  • a front section in the closing pivoting direction of the housing cover in front of the at least one bend can be guided along a rear housing-side contact surface. With a rear portion behind the at least one bend, the contact pressure with the rear housing-side contact surface can "lock" as it were.
  • the housing cover each have a pressing blade on opposite longitudinal sides.
  • the at least one filter element can be clamped on opposite sides in each case with a contact pressure.
  • the filter housing may have at least one fall-out protection device, which can prevent the at least one filter element from falling out of the element receiving space when the installation opening is open.
  • the at least one fall-out protection device can simplify a change of the filter element in an overhead arrangement of the filter housing. In the overhead arrangement, the at least one mounting hole is directed spatially down.
  • the fall-out protection device prevents the at least one filter element from falling out of control when the housing cover is opened. To remove the at least one filter element, the fall protection device must be overcome separately when the housing cover is open. Because the at least one fall-out protection device is arranged on the filter housing, it is possible to dispense with a special fall-out protection device on the side of the filter element.
  • At least one fall-out protection device can have at least one projection which reduces a clear width of the installation opening at least in one direction with respect to a correspondingly directed clearance of the adjacent region of the element receiving space.
  • the said adjacent region of the element receiving space may advantageously be its widest point.
  • the widest region of the at least one filter element can be arranged.
  • the widest region of the at least one filter element can fill the widest region of the element receiving space as completely as possible.
  • the overcoming of the fall-out protection device can be effected by elastic deformation on the side of the at least one filter element and / or on the sides of the filter housing and / or by a suitable displacement of the filter element obliquely or transversely to the installation axis.
  • At least one fall-out protection device have at least one projection, in particular a web, a rib, a bead and / or a nipple, which protrudes into the installation opening.
  • a fall protection device can be easily realized.
  • At least a part of the fall-out protection device can be arranged in a region of the installation opening which faces at least one sealing surface, and / or at least part of the fall-out protection device can be arranged in a region of the installation opening which axially surrounds the at least one sealing surface with respect to the housing axis turned away. If the at least one part of the fall-out protection device is arranged on the side of the at least one sealing surface, it can act on at least one seal of the filter element.
  • a sealing lip of the at least one seal for overcoming the fall-out protection according to particular elastically deformed, in particular compressed and / or bent, are.
  • a clear width of the installation opening may be smaller than a corresponding maximum extension of the at least one filter element in its widest region in the direction of the element axis.
  • an at least partially elastic seal of the Filter element to overcome the fall protection device are deformed, so that the corresponding maximum extent of the filter element can be reduced thereby and is smaller than the inside diameter of the mounting hole.
  • a reduction in the clear width of the mounting opening compared to the clearance of the adjacent region of the element receiving space may be smaller than a maximum compressibility of the filter element in its corresponding widest range.
  • the at least one fall-out protection device can be achieved by appropriate deformation of the filter element.
  • the compressibility can be realized by the compressibility of at least one seal of the filter element.
  • the housing axis and the element axis parallel to each other or coincide.
  • the mounting axes of the filter element and the housing can coincide.
  • the installation axis and the housing axis or the element axis can be perpendicular or oblique to one another.
  • At least one sealing surface can extend at least in sections obliquely to the installation axis and / or to the housing axis.
  • At least one inlet opening and at least one outlet opening with respect to the housing axis may be arranged on axially opposite sides of the housing body.
  • the filter can be constructed linear.
  • the corresponding stages of the filter namely a pre-separator, at least one filter element according to the invention acting as a main filter element and at least one secondary filter element can be arranged in a line or a row in terms of flow.
  • Such linearly constructed filters may be referred to as "inline filters.”
  • the main flow direction of the fluid in the filter may be substantially parallel to the main axis, in particular to the element axis and the housing axis.
  • At least one installation opening for at least one filter element can be arranged in a transverse side of the housing body.
  • the at least one installation opening may extend between an end face of the housing body with the at least one inlet opening and an end face with the at least one outlet opening.
  • the at least one inlet opening and the at least one outlet opening can be realized in different sides of the housing body.
  • at least one housing cover with at least one pivoting device, in particular a hinge or joint can be pivotally attached to the housing body. In this way, the housing cover can be pivoted by means of a pivoting movement on the mounting hole.
  • the at least one pressing blade can be inserted through the installation opening into a space between a longitudinal side of the at least one filter element and a corresponding longitudinal side of the filter housing.
  • the at least one pivoting device can be separable, so that the housing cover can be separated from the housing body.
  • the housing cover can be hung in particular on a hinge of the housing body.
  • the housing cover may have a sleeve portion, which can be plugged onto a bolt portion of the housing body.
  • the sleeve portion may be open on a peripheral side.
  • the sleeve portion for connecting the pivotal connection with respect to the pivot axis of the at least one pivoting device can be inserted in the radial direction on the bolt portion.
  • the sleeve section does not have to be plugged in the axial direction.
  • the housing cover can be pivoted about a pivot axis of the hinge.
  • pivoting the filter element can be pressed with the housing cover with a direction component in the installation direction and / or a direction component axially, parallel or obliquely to the housing axis.
  • the at least one seal can be pressed against the at least one housing-side sealing surface by means of the housing cover, in particular with at least one press-on blade.
  • an actuating portion may be disposed on a portion of the housing cover remote from the pivotal mounting of the housing cover on the housing body.
  • the clamping forces and contact forces be better introduced for clamping the at least one filter element in the filter housing.
  • the at least one housing cover can be fixed in its closed position to the housing body by means of a locking and / or locking device, in particular at least one tension lock and / or at least one clasp. In this way, the housing cover can be secured against self-opening.
  • At least one filter element has at least one element frame in which at least one filter bellows is arranged.
  • At least one filter element may have at least one seal support device for at least one seal.
  • the filter housing may have at least one pressing device for a sealing support device of the at least one filter element.
  • the filter housing can have at least one fall-out protection device, which can prevent the at least one filter element from falling out of the element receiving space when the installation opening is open, in an uncontrolled manner.
  • the filter can be designed as a multi-stage filter, in particular two-stage compact air filter.
  • at least one filter element may be arranged downstream of at least one particle separation device, in particular a cyclone arrangement.
  • the at least one Péroabscheide founded may be part of the filter or externally upstream of this in particular as a pre-separator.
  • An external pre-separator may be located outside of an engine compartment.
  • At least one inlet opening, at least one outlet opening and optionally a particle separation device can be arranged substantially linearly.
  • the fluid can flow through the filter substantially along, in particular, the housing axis.
  • One of the throughflow sides of the filter bellows can realize one inflow side for the fluid, the other throughflow side an outflow side.
  • the fluid flows through the filter bellows from the inflow side to the outflow side.
  • the throughflow sides can each be realized as a flow area, with the folded edges defining the corresponding flow area in the case of a folded filter bellows.
  • the filter element may be a so-called flat filter element.
  • the filter medium is not closed to a hollow body.
  • the filter element according to the invention is not annular.
  • the fürströmfit lie axially with respect to the element axis.
  • the filter medium is circumferentially closed and surrounds an interior space.
  • the filter element according to the invention may be flat or curved. In this case, an inflow side and / or an outflow side of the filter bellows for the fluid may be flat, curved or stepped.
  • the filter element can also be box-shaped.
  • the filter bellows may have approximately the shape of a polyhedron.
  • the filter bellows can be cubic, cuboid, pyramidal, prismatic, wedge-like or the like. It is not necessary that all sides, in particular peripheral sides of the filter bellows are flat. At least one side of the filter bellows may also be at least partially curved, in particular parabolic, and / or stepped. Opposite pages can be parallel. Alternatively or additionally, they may also be oblique or otherwise not parallel to each other.
  • the inflow surface and / or the outflow surface can each extend at least in sections perpendicular or obliquely to the element axis.
  • the inflow surface and the outflow surface can extend at least in sections obliquely to one another and / or at least in sections parallel to one another.
  • At least one filter bellows may have a zigzag-like and / or wavy-shaped filter medium.
  • the surface of the filter medium to be flowed through by the fluid can be increased in relation to the spatial extent of the filter bellows.
  • folding edges of the filter medium can run parallel on the opposite throughflow sides, in particular on an inflow side and / or an outflow side.
  • at least one filter bellows may have relatively deep folds and / or variable fold heights. The pleat height is the extension of a pleat of the pleated filter medium between an inflow-side fold edge and an adjacent outflow-side fold edge.
  • the pleat height that is to say the height of the filter bellows in the region of the corresponding pleat, is greater than a width and / or a length of the filter bellows perpendicular or transverse to the pleat height.
  • the filter medium may comprise filter paper, filter fleece, meltblown, woven fabric and / or other filter material suitable for filtering fluid, in particular air.
  • the filter medium can be flexible, in particular foldable or bendable.
  • the filter bellows may alternatively or additionally comprise fluid-permeable, in particular air-permeable, filter foam.
  • the filter bellows can be at least partially realized as a solid block of filter material, in particular filter foam.
  • the invention can be used in motor vehicles, construction / agricultural machinery, compressors, industrial engines or other device with internal combustion engines.
  • Vehicles in the sense of the invention may be land vehicles, watercraft and / or aircraft.
  • the motor vehicle may be a passenger car, a truck, a motorcycle, a motor coach, a tractor, an agricultural vehicle and / or a construction vehicle or the like.
  • the invention may advantageously be part of an air intake tract of an internal combustion engine.
  • the filter can be used to purify combustion air, which is supplied to the internal combustion engine.
  • the invention is not limited to an air filter of an air intake tract of an internal combustion engine of a motor vehicle. Rather, it can also be used in other types of air systems of motor vehicles or other machines, in particular agricultural or construction machinery.
  • the air filter can also be used outside the automotive industry, especially in industrial engines.
  • the filter element according to the invention the element frame according to the invention, the filter bellows according to the invention, the erfindungsge- MAESSEN filter housing and the filter according to the invention and their respective advantageous embodiments indicated features and advantages with each other and vice versa.
  • the individual features and advantages can, of course, be combined with one another, whereby further advantageous effects can be achieved that go beyond the sum of the individual effects.
  • FIG. 10 and 1 1 an exploded isometric view of the air filter of Figures 10 and 1 1 consisting of a filter bellows and an element frame;
  • Figure 16 is an isometric detailed view of the inflow side of the filter element of Figures 10 to 12;
  • FIG. 17 shows the filter housing of the air filter from FIGS. 1 to 9 in an overhead installation
  • FIG. 18 shows a detailed view of the filter housing from FIG. 17 in the region of a
  • FIGS. 19 to 25 show the air filter from FIGS. 14 and 18 in overhead mounting and corresponding detailed views in different stages of expansion of the filter element;
  • Figure 26 is an isometric view of a filter element according to a second embodiment, looking obliquely on the inflow side;
  • Figure 27 is a side view of the filter element of Figure 26;
  • Figure 28 is an isometric cross-sectional view of the filter element of the
  • FIGS. 1 to 25 show an air filter 10 of an internal combustion engine (not shown) in different representations, sections, detailed views and installation states.
  • the air filter 10 is arranged in an intake tract for combustion air of the internal combustion engine. It serves to purify the combustion air, which is supplied to the internal combustion engine for combustion.
  • the air filter 10 has an apparent filter housing 12 in which a filter element 14 is interchangeably arranged.
  • an imaginary main axis 16, an installation axis 18 and an imaginary transverse axis 20 are shown.
  • the axes 16, 18 and 20 correspond, for example, to the axes of a rectangular coordinate system.
  • the main axis 16 spans with the mounting axis 18 a longitudinal center plane, not further described, and with the transverse axis 20 a transverse center plane also not designated in any more detail.
  • the mounting axis 18 biases with the transverse axis 20 to an unspecified fürströmstoffebene.
  • the longitudinal center plane runs parallel to the plane of the drawing.
  • the flow medium level and the transverse center plane run perpendicular to each other and perpendicular to the longitudinal center plane, in the figures a and 2 also perpendicular to the plane.
  • An installation direction of the filter element 14 in the filter housing 12 is shown by an arrow 22.
  • the mounting direction 22 is coaxial with the installation axis 18. It is understood that some of the aforementioned axes and some of the aforementioned levels may also be inclined relative to each other in other embodiments of the invention.
  • the main axis 16 With the element axis of the filter element 14 and the housing axis of the filter housing 12 together.
  • reference numeral 16 is therefore used for the element axis and the housing axis, depending on the representation. It is understood that in each case the corresponding axis is meant.
  • the filter housing 12 is made of plastic.
  • the filter housing 12 comprises a housing body 24 and a housing cover 26.
  • the housing body 24 has an element accommodating space 28 for the filter element 24.
  • An air outlet space 30 adjoins the element accommodating space 28 with respect to the air flow through the air filter 10 downstream.
  • the air flow in, through and out of the air filter 10 is indicated in FIGS. 1 to 3 by arrows 32.
  • an outlet 34 connects, to which the air line of the intake is connected.
  • the receiving space 28 On the air inlet side, the receiving space 28 has an inlet opening 36.
  • the inlet opening 36 extends over the entire inflow side of the air filter 10. It extends parallel to the fürströmstoffebene.
  • a cyclone arrangement 38 Upstream of the inlet opening 36, a cyclone arrangement 38 is arranged as a pre-separator for particles from the air.
  • the element receiving space 28 On its outflow side, has an outlet opening 40.
  • the outlet opening 40 extends in a plane parallel to the transverse axis 20 and obliquely to the flow-through center plane, ie obliquely to the plane of the inlet opening 36.
  • the element receiving space 28, the outlet opening 40 and the inlet opening 36 each have a rectangular cross section viewed in the direction of the main axis 16.
  • a not further interest secondary filter element 42 is arranged in the air outlet space 30 .
  • the secondary filter element 42 completely covers the outlet opening 40.
  • the outlet opening 40 is surrounded by a housing-side sealing surface 44.
  • the housing-side sealing surface 44 faces the element receiving space 28. It is circumferentially connected with respect to the skin axis 16.
  • a sealing plane 45 of the housing-side sealing surface 44 extends parallel to the transverse axis 20 and obliquely to the fürströmstoffebene by an angle 47 of about 20 °.
  • the transverse sides of the housing body 24 and the filter element 14 extend in the embodiment on opposite sides of the transverse center plane.
  • longitudinal sides of the housing base body 24 of the filter element 14 run on opposite sides of the longitudinal center plane.
  • the longitudinal sides of the housing body 24 and the filter element 14 each extend between the respective lateral sides and the inflow side and the outflow side.
  • the housing body 24 has closed longitudinal walls 48.
  • the respective front longitudinal wall 48 of the housing body 24 is at least partially cut to release a view into the interior of the filter housing 12.
  • the housing body 24 On a rear transverse side with respect to the installation direction 22, the housing body 24 has an installation opening 46 for the filter element 14.
  • the housing body 24 has a closed transverse wall 50 on the transverse side which is axially opposite with respect to the installation axis 18.
  • the mounting hole 46 has viewed in the installation direction 22 has an approximately rectangular cross-section.
  • the element receiving space 28 tapers in the installation direction 22 from the installation opening 46 to the opposite transverse wall 50 in its extension with respect to the main axis 16.
  • the element receiving space 28 has approximately the shape of a rectangular trapezium, wherein the oblique leg of the trapezium of the outlet opening 40 faces.
  • a bolt portion 52 of a hinge-like pivot connection 54 is arranged next to the installation opening 46.
  • the pivot connection 54 serves to connect the housing cover 26 to the housing cover 24.
  • the bolt section 52 is located on the side of the housing body 24 facing the outflow side. 26.
  • the bolt section 52 and thus the pivot axis of the pivot connection 54 extend parallel to the transverse axis 20.
  • the fall protection device 56 can be seen in detail in particular in Figure 18.
  • the fall protection device 56 is realized as a web, which protrudes as a projection in the mounting hole 46.
  • the fall protection device 56 extends approximately parallel to the transverse center plane over the entire width of the installation opening 46 in the direction of the transverse axis.
  • the fall protection device 56 reduces a clear width 58 of the installation opening 46 in the direction of the main axis 16 as compared to the adjacent area of the element receiving space 28.
  • the housing body 24 has two pressing devices 60.
  • the contact pressure devices 60 are located with respect to the transverse axis 20 axially opposite inner sides of the longitudinal walls 48.
  • the pressing devices 60 are mirror-symmetrical with respect to the longitudinal center plane, so that in the following example only one of the two pressing devices 60 will be described.
  • the pressing device 60 is realized as a projection, which rises on the corresponding longitudinal wall 48 with respect to the transverse axis 20 to axially inside.
  • the pressing device 60 has a front housing-side contact surface 62 and a rear housing-side contact surface 64 viewed in the installation direction 22.
  • the rear housing-side contact surface 64 is located near the installation opening 46.
  • the front housing-side contact surface 62 is arranged in the vicinity of the transverse wall 50.
  • a housing-side guide surface 66 extends.
  • the contact surfaces 62 and 64 and the guide surface 66 face the housing-side sealing surface 44.
  • the housing-side contact surfaces 62 and 64 and the housing-side guide surface 66 each extend with a direction component parallel to the transverse axis 20.
  • the front housing-side contact surface 62 and the rear housing-side contact surface 64 each extend with the perpendicular direction component approximately parallel to fürströmstoffebene, ie parallel to mounting axis 18th
  • the front housing-side contact surface 62 and the rear housing-side contact surface 64 are each inclined at about the same angle as the angle 47, ie by about 20 ° to the sealing plane 45.
  • the rear housing-side contact surface 64 is viewed in the direction of the main axis 16 at a greater distance from the fürströmstoffebene and the mounting axis 18 than the front housing-side contact surface 62.
  • the housing-side guide surface 66 extends correspondingly obliquely to fürströmstoffebene.
  • the housing cover 26 comprises a closure section 68, which forms the transverse side of the housing cover 26.
  • An edge of the closure section 68 running around the installation axis 18 extends in a complementary manner to a corresponding edge surrounding the inlet opening 36 of the housing body 24.
  • the closure portion 68 is in the closed position of the housing cover 26 close to the inlet opening 36 and closes it.
  • a sleeve portion 70 which forms the cover-side part of the pivot connection 54.
  • the sleeve section 70 extends parallel to the transverse axis 20.
  • the sleeve section 70 is open on a peripheral side facing the inlet side of the filter housing 12, so that the sleeve section 70 can be plugged onto the bolt section 52 in the radial direction for connecting the pivot connection 54.
  • the sleeve section 70 facing away from the housing cover 26 has an operating portion 72. At the operating portion 72, the housing cover 26 can be actuated to close or open.
  • the housing cover 26 has two Anpressthroter 74 for pressing a seal 76 of the filter element 14 against the housing-side sealing surface 44.
  • the Anpress- swords 74 are identical and arranged mirror-symmetrically to the longitudinal center plane.
  • the pressing blade 74 extends substantially parallel to the installation axis 18 and to the main axis 16, ie parallel to the longitudinal center plane.
  • the pressing blade 74 merges integrally into the closure section 68 within the edge of the closure section 68.
  • the pressing blade 74 extends through the installation opening 46 in the element receiving space 28.
  • the pressing blade 74 is located between the corresponding longitudinal wall 48 of the housing body 24 and the outside of the filter element 14 on the one hand and between the seal 76, the filter element 14 and the pressing device 60th the housing body 24 on the other.
  • the contact pressure 74 has a seal facing cover-side contact surface 78.
  • the seal facing cover-side contact surface 78 is located on the sleeve portion 70 of the pivot connection 54 facing side of the contact blade 74.
  • the seal facing cover-side contact surface 78 is in the closed state of the housing cover 26 of the housing-side sealing surface 44 and facing the seal 76. It then runs parallel to the transverse axis 20 and obliquely to the installation axis 18 at an angle which corresponds to the angle 47 of approximately 20 °.
  • the housing-side sealing surface 44 and the seal-facing cover-side contact surface 78 extend in the closed state of the housing cover 26 parallel to each other.
  • the seal-facing cover-side contact surface 78 is in the closed state at a distance from the housing-side sealing surface 44, which corresponds to a corresponding extent of the seal 76 and a sealing Abstützvor- direction 82 of the filter element 14 there.
  • the press-on blade 74 On the side facing the gasket facing the lid-side contact surface 78, the press-on blade 74 has a cover-side contact surface 80 facing away from the seal.
  • the cover-side contact surface 80 facing away from the seal faces the inflow side of the filter housing in the closed state of the housing cover 26.
  • a closure portion 68 facing the rear portion of the seal facing away from the cover-side contact surface 80 then runs approximately parallel to the mounting axis 18 and parallel to the transverse axis 20. This section is then flat on the rear housing-side contact surface 64 of the housing body 24 from. After a bend, the rear portion of the seal facing away from the cover-side contact surface 80 integrally into a front portion over.
  • the front portion of the seal facing away cover-side contact surface 80 extends approximately tangentially to the pivot axis of the pivot connection 54th
  • the filter element 14 comprises a filter bellows 88, which is inserted in an element frame 90.
  • the filter element 14 will be described in more detail below with reference to FIGS. 10 to 12.
  • the filter bellows 88 has a zig-zag folded filter medium 92.
  • the filter bellows 88 is viewed in the direction of the main axis 16 rectangular. Viewed in the direction of the transverse axis 20, the filter bellows 88 has approximately the shape of a rectangular trapezoid.
  • An inflow side 94 of the filter bellows 88 runs parallel to the flow-through center plane, ie perpendicular to the main axis 16.
  • An outflow side 96 extends parallel to the transverse axis 20 and obliquely to the throughflow plane, ie obliquely to the inflow side 94.
  • the filter bellows 88 tapers in the direction of installation 22 as viewed towards its front transverse side.
  • the folded edges of the filter medium 92 on the inflow side 94 and the outflow side 96 each extend parallel to the transverse axis 20.
  • the fold edges respectively clamp on the inflow side 94 and the outflow surface on the outflow side 96.
  • the heights of the folds of the folded filter medium 92 in the direction of the main axis 16 decrease from the rear transverse side of the filter bellows 88 with respect to the installation direction 22 to the front transverse side thereof.
  • the filter bellows 18 thus has variable pleat heights.
  • the outflow side 96 is surrounded by the seal 76.
  • the seal 76 is made of polyurethane. She is elastic.
  • the seal 76 is foamed on the end face of the filter medium 92.
  • the seal 76 extends beyond the filter medium 92 with respect to the main axis 16 radially outward and in the axial direction.
  • An outflow-side sealing lip of the seal 76 forms a sealing surface 98 which is circumferentially connected with respect to the main axis 16. The sealing surface 98 rests against the housing-side sealing surface 44 in the installed state.
  • a reinforcing frame 100 made of plastic in the sealing track of the seal 76 is embedded on the sealing surface 98 with respect to the main axis 16 axially remote from the rear side of the seal 76.
  • the reinforcing frame 100 extends parallel to the sealing plane 44 and parallel to the sealing surface 98.
  • the reinforcing frame 100 is circumferentially continuous with respect to the major axis 16.
  • One of the sealing surface 98 with respect to the main axis 16 axially remote seal rear side 102 of the seal 76 extends in a plane parallel to the plane of the sealing surface 98.
  • an edge protector 104 is further attached on the inflow side 94 of the filter bellows 88.
  • the edge protector 104 is made of polyurethane and is foamed to the filter medium 92.
  • the edge protector 104 extends circumferentially contiguous along the upstream edge of the filter bladder 88 with respect to the major axis 16.
  • the edge protector 104 projects beyond the filter medium 92 with respect to the main axis 16 in the axial direction.
  • the edge protector 104 On the longitudinal sides of the filter bellows 88, the edge protector 104 has a latching nose 106 approximately in the center.
  • the locking lugs 106 are parts of a latching connection 108 between the filter bellows 88 and the element frame 90.
  • the latching lugs 106 are each integrally formed from the material of the edge protector 104.
  • the locking lugs 106 are thus combined with the edge protector 104.
  • the locking lugs 106 extend on opposite longitudinal sides of the filter bellows 88 in each case in the direction of the transverse axis 20 outwards and parallel to the installation axis 18.
  • the edge protection 104 has two recesses 10 each.
  • the recesses 1 10 serve to insert each of a frame web 1 12 of the element frame 90th
  • the element frame 90 is made of plastic.
  • the element frame 90 has a relative to the main axis 16 circumferentially integrally connected, rectangular peripheral wall, which consists of mutually parallel longitudinal walls 1 14 and transverse walls 1 16. On the inflow side and the outflow side of the element frame 90 is open.
  • the outer shape of the element frame 90 otherwise corresponds approximately to the outer shape of the filter bellows 88th
  • the element frame 90 On the outflow side, the element frame 90 has the seal support device 82.
  • the seal support device 82 is arranged on the outflow edge of the element frame 90.
  • the sealing support device 82 extends on the outside of the filter element 14 with respect to the main axis 16 circumferentially contiguous.
  • the sealing support device 82 is integrally connected to the longitudinal walls 1 14 and the transverse walls 1 16.
  • one leg of the sealing support device 82 extends on the outer sides of the longitudinal walls 1 14.
  • the legs of the sealing support devices 82 are identical in a larger shape and arranged mirror-symmetrically with respect to the longitudinal center plane. in the One of the legs of the seal support devices 82 will be described in greater detail below by way of example.
  • the leg of the sealing support device 82 forms on its side facing the outflow side a corresponding section of a seal-facing element-side support surface 1 18.
  • the entire seal-side element-side support surface 1 18 extends circumferentially contiguous in a plane with respect to the main axis 16.
  • the plane of the seal-facing element-side support surface 1 18 extends parallel to the transverse axis 20 and obliquely to fürströmstoffebene.
  • the angle of inclination of the plane of the seal-facing element-side support surface 1 18 to fürströmstoffebene corresponds to the inclination angle of the sealing rear side 102 of the filter bellows 88 to fürströmstoffebene. Both angles of inclination correspond to the angle 47 of the housing-side sealing plane 45 to fürströmstoffebene.
  • each leg of the sealing support device 82 has a view in installation direction 22 front seal facing away from the element support surface 120 and a rear seal facing away element-side support surface 122.
  • the rear seal facing away from the element-side support surface 122 is located next to the rear transverse wall 1 16.
  • the front seal facing away element-side support surface 120th can be found next to the front bulkhead 1 16.
  • the rear seal facing away from the element-side support surface 122 and the front seal facing away from the support surface 120 are respectively facing the inflow side of the filter element 14.
  • the front seal facing away from the element-side support surface 120 extends parallel to the seal facing element-side support surface 1 18.
  • the front seal facing away from the element-side support surface 120 extends at an angle to the seal facing element-side support surface 1 18, which corresponds to the angle 47 between the sealing plane 45 of the housing-side sealing surface 44 and the fürströmstoffebene.
  • the seal-facing element-side support surface 18 and the respective section of the front seal-facing support surface 120 in the direction of the transverse axis 20 form a wedge shape whose tip points in the installation direction 22.
  • the sealing support device 82 forms two pressure points 124 for the respective pressure portions 84 of the housing cover 26.
  • a handle 126 is provided in the region of the rear transverse wall 16 of the element frame 90. On the handle 126, the filter element 14 can be taken, carried and pulled out of the filter housing 12.
  • each longitudinal wall 1 14 has a latching receptacle 128 of the latching connection 108.
  • the locking receptacles 128 are located on the inner sides of the longitudinal walls.
  • the locking recesses 128 are approximately complementary to the locking lugs 106 of the filter bellows 88.
  • the two frame webs 12 extend parallel to the transverse axis 20 between the two longitudinal walls 14.
  • the frame webs 12 are located on the Inflow side 94 of the filter element 14th
  • the extent of the filter element 14 in the region of the rear transverse side in the direction of the main axis 16 is greater than the inside width 58 of the installation opening 46 of the filter housing 12.
  • the filter bellows 88 with its inflow side 94 is inserted into the outflow side of the element frame 90 first.
  • the bellows-side latching lugs 106 lock the latching connection 108 with the corresponding frame-side latching receptacles 128.
  • the edge protection 104 projects through the inflow-side opening of the element frame 90 and projects beyond it in the axial direction with respect to the main axis 16.
  • the locking webs 1 12 each extend through the corresponding recesses 1 10 of the edge protector 104.
  • the dichtungszuge-turned element-side support surface 1 18 of the element frame 90 is applied flat against the seal back 102 of the seal 76.
  • the filter bellows 88 is held in the element frame 90.
  • the filter element 14 can thus be beaten to knock the filter bellows 88 with the edge protector 104 against a hard surface.
  • the filter bellows 88 does not have to be removed from the element frame 90 for this purpose.
  • the detent connection 108 can be disconnected if the filter bellows 88 are pulled out of the element frame 90, for example for maintenance or replacement.
  • the element frame 90 can then be reused with a new filter bellows 88.
  • the assembly of the air filter 10 is explained in more detail below with reference to FIGS 5 to 9.
  • the assembled filter element 14 is, as shown in FIG. the transverse side of which in the installation direction 22 is inserted axially to the installation axis 18 through the installation opening 46 into the element receiving space 28 of the housing body 24.
  • the front sealing faces 120 facing away from the sealing support device 82 slide along the housing-side guide surface 66 of the pressing devices 60 and are thus guided into their end position.
  • the wedge-like arrangement of the sealing support device 82 with the seal 76 on the one hand and the wedge-shaped arrangement of the housing-side sealing surface 44 and the front housing-side contact surface 62 on the other hand cause the seal 76 is pressed during installation with increasing pressure against the housing-side sealing surface 44 in the front region ,
  • the sleeve section 70 of the housing cover 26 is placed with its open longitudinal side on the bolt section 52 of the housing body 24.
  • the housing cover 26 is held over the installation opening 46 in such a way that the contact springs 74 project in part through the installation opening 46.
  • the housing cover 26 is pushed in the direction of the main axis 16, indicated in Figure 8 by an arrow 130, to the inflow side.
  • the sleeve portion 70 and the bolt portion 52 connect to the pivot connection 54th
  • the housing cover 26 is pivoted about the pivot axis of the pivot connection 54 to the housing body 24, which is indicated in the figure 9 with an arrow 132.
  • the housing cover 26 first the front tangential sections of the seal facing away from the lid-side contact surfaces 80 of the respective pressure plates 74 slide along the corresponding rear housing-side contact surfaces 64 of the housing-side contact pressure devices 60.
  • the rear, parallel to the mounting axis 18 portions of the seal facing away cover-side contact surfaces 80 force transmitting to the rear housing-side contact surfaces 64 respectively.
  • the closed housing cover 26 is fixed to the housing body 24 with the tension locks 86. By tensioning the tension locks 86, the housing cover 26 is pressed further against the housing body 24. The leverage effect ensures that the pressure Swords 74 reinforced in the space between the pressing devices 60 and the sealing support devices 82 are pressed.
  • the filter element 14 is clamped in the housing body 24 via the sealing support device 82 with the aid of the pressure swords 74 and the pressure devices 60.
  • the seal facing cover-side contact surfaces 78 lie flat against the respective rear sealing faces facing away from the support 122.
  • the front housing-side contact surfaces 62 on the surface of the corresponding front sealing facing away from the support surfaces 120 of the seal support device 82 at. Both on the side of the air inlet opening 36 and on the side of the transverse wall 50, the seal 76 is pressed uniformly against the housing-side sealing surface 44 with the aid of the press-on blades 74, the pressing devices 60 and the sealing support device 82.
  • the seal 76 faces the clean air side of the filter element 14 and seals it against the dirty air side.
  • the respective wedge-like construction of the pressure swords 74, the front area of the sealing support device 82 in the installation direction 22 and the housing-side sealing surface 44 in relation to the pressing devices 60 makes it possible to use corresponding installation forces in the installation direction 22 for increasing sealing forces perpendicular to the sealing plane 45.
  • the air filter 10 is shown in an overhead mounting, in which the mounting hole 46 is directed spatially down.
  • the tension locks 86 are first released. Then, the housing cover 26 is pivoted downward about the axis of the pivotal connection 54, as shown in FIGS. 21 and 22. Subsequently, the housing cover 26 is pushed away from the inlet side of the filter housing 12 in the direction of the main axis 16, so that the sleeve portion 70 of the pivot connection 70 is separated from the bolt portion 52. The housing cover 26 is completely removed.
  • the fall protection device 56 of the housing body 24 blocks, as shown in Figures 23 and 24, the sealing lip of the seal 76. The fall protection device 56 prevents the filter element 14 uncontrolled from falling out of the housing body 24 spatially down.
  • FIGS. 26 to 28 show a filter element 14 according to a second exemplary embodiment. Those elements that are similar to those of the first embodiment of Figures 1 to 25 are provided with the same reference numerals.
  • the second exemplary embodiment differs from the first exemplary embodiment in that, in the second exemplary embodiment from FIGS. 26 to 28, the sealing support device 28 is fastened directly to the filter bellows 88. In the second embodiment, no replaceable element frame is provided.
  • the filter element 14 is prefabricated together with the filter bellows 88 and the seal support device 82 and replaced.

Landscapes

  • Chemical & Material Sciences (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Filtering Of Dispersed Particles In Gases (AREA)

Abstract

L'invention concerne un élément filtrant (14) d'un filtre (10) en particulier pour fluide gazeux, en particulier de l'air, en particulier d'un moteur à combustion interne, en particulier d'un véhicule à moteur et/ou d'une machine, ainsi qu'un cadre d'élément filtrant, un soufflet filtrant d'élément filtrant et un filtre. L'élément filtrant (14) peut être monté, dans un sens de montage qui s'étend parallèlement ou coaxialement à l'axe de montage (18), dans un boîtier de filtre (12) du filtre (10). L'élément de filtre (14) comprend au moins un soufflet filtrant (88) présentant au moins un médium filtrant (92). Ledit au moins un soufflet filtrant (88) présente, sur des faces axialement opposées par rapport à un axe d'élément (16) lequel s'étend perpendiculairement ou transversalement à l'axe de montage (18), dans chaque cas une face de passage (94, 96) pour le fluide. L'élément filtrant (14) comprend au moins un joint d'étanchéité (76) qui est disposé, au moins en partie de manière continue au moins dans certaines zones, cirfonférentiellement par rapport à l'axe d'élément (16), au niveau d'une face périphérique de l'élément filtrant (14), radialement extérieure par rapport à l'axe d'élément (16). L'élément filtrant (14) présente au moins un cadre d'élément (90) dans lequel est disposé un soufflet filtrant (88).
PCT/EP2016/073840 2016-02-03 2016-10-06 Élément filtrant, cadre de filtre d'un élément filtrant, soufflet filtrant d'un élément filtrant et filtre WO2017133797A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DE112016006349.0T DE112016006349A5 (de) 2016-02-03 2016-10-06 Filterelement, Elementrahmen eines Filterelements, Filterbalg eines Filterelements und Filter

Applications Claiming Priority (2)

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DE102016001133.5 2016-02-03
DE102016001133.5A DE102016001133A1 (de) 2016-02-03 2016-02-03 Filterelement, Elementrahmen eines Filterelements, Filterbalg eines Filterelements und Filter

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WO2017133797A1 true WO2017133797A1 (fr) 2017-08-10

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WO (1) WO2017133797A1 (fr)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3616770A1 (fr) 2018-08-28 2020-03-04 Parker Hannifin Corporation Élément de filtre non cylindrique et épurateur d'air à entrée latérale l'incorporant
CN113329804A (zh) * 2018-11-29 2021-08-31 康明斯滤清系统知识产权公司 改进的分层过滤器框架
EP4049740A1 (fr) 2021-02-26 2022-08-31 Parker-Hannifin Corporation Épurateur d'air à joint à vagues à entrée latérale

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JPH09122417A (ja) * 1995-08-29 1997-05-13 Tenetsukusu:Kk フイルタ部材の取付装置
US6780217B1 (en) * 2002-07-31 2004-08-24 Dana Corporation Panel air filter with gasket of non-woven felt
WO2005107924A2 (fr) * 2004-04-30 2005-11-17 Donaldson Company, Inc. Dispositions de filtres; logements ; assemblages et méthodes
DE102009060517A1 (de) 2008-12-23 2010-07-22 Mann + Hummel Gmbh Filtereinrichtung für Brennkraftmaschinen
DE112010002173T5 (de) * 2009-05-29 2012-09-20 Cummins Filtration Ip, Inc. Filteranordnung mit Wartung bei zurückgehaltenem SchadstoffSchadstoff

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Publication number Priority date Publication date Assignee Title
BR112016027956B1 (pt) * 2014-06-18 2022-01-25 Mann+Hummel Gmbh Dispositivo filtrante e filtro

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH09122417A (ja) * 1995-08-29 1997-05-13 Tenetsukusu:Kk フイルタ部材の取付装置
US6780217B1 (en) * 2002-07-31 2004-08-24 Dana Corporation Panel air filter with gasket of non-woven felt
WO2005107924A2 (fr) * 2004-04-30 2005-11-17 Donaldson Company, Inc. Dispositions de filtres; logements ; assemblages et méthodes
DE102009060517A1 (de) 2008-12-23 2010-07-22 Mann + Hummel Gmbh Filtereinrichtung für Brennkraftmaschinen
DE112010002173T5 (de) * 2009-05-29 2012-09-20 Cummins Filtration Ip, Inc. Filteranordnung mit Wartung bei zurückgehaltenem SchadstoffSchadstoff

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3616770A1 (fr) 2018-08-28 2020-03-04 Parker Hannifin Corporation Élément de filtre non cylindrique et épurateur d'air à entrée latérale l'incorporant
EP4062995A1 (fr) 2018-08-28 2022-09-28 Parker-Hannifin Corporation Élément de filtre non cylindrique et épurateur d'air à entrée latérale l'incorporant
US11708809B2 (en) 2018-08-28 2023-07-25 Parker-Hannifin Corporation Non-cylindrical filter and side entry air cleaner incorporating the same
CN113329804A (zh) * 2018-11-29 2021-08-31 康明斯滤清系统知识产权公司 改进的分层过滤器框架
CN113329804B (zh) * 2018-11-29 2023-01-17 康明斯滤清系统知识产权公司 改进的分层过滤器框架
EP4049740A1 (fr) 2021-02-26 2022-08-31 Parker-Hannifin Corporation Épurateur d'air à joint à vagues à entrée latérale

Also Published As

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DE102016001133A1 (de) 2017-08-03
DE112016006349A5 (de) 2018-10-18

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