EP2408971B1 - Auswechselbare kehrbürsteneinrichtung und kehrmaschine mit einer derartigen kehrbürsteneinrichtung - Google Patents

Auswechselbare kehrbürsteneinrichtung und kehrmaschine mit einer derartigen kehrbürsteneinrichtung Download PDF

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Publication number
EP2408971B1
EP2408971B1 EP10706681.3A EP10706681A EP2408971B1 EP 2408971 B1 EP2408971 B1 EP 2408971B1 EP 10706681 A EP10706681 A EP 10706681A EP 2408971 B1 EP2408971 B1 EP 2408971B1
Authority
EP
European Patent Office
Prior art keywords
sweeping brush
accordance
brush device
exchangeable
pivot axis
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.)
Not-in-force
Application number
EP10706681.3A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP2408971A1 (de
Inventor
Joachim Wahl
Bernd Haberl
Uwe Weller
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Alfred Kaercher SE and Co KG
Original Assignee
Alfred Kaercher SE and Co KG
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 Alfred Kaercher SE and Co KG filed Critical Alfred Kaercher SE and Co KG
Publication of EP2408971A1 publication Critical patent/EP2408971A1/de
Application granted granted Critical
Publication of EP2408971B1 publication Critical patent/EP2408971B1/de
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01HSTREET CLEANING; CLEANING OF PERMANENT WAYS; CLEANING BEACHES; DISPERSING OR PREVENTING FOG IN GENERAL CLEANING STREET OR RAILWAY FURNITURE OR TUNNEL WALLS
    • E01H1/00Removing undesirable matter from roads or like surfaces, with or without moistening of the surface
    • E01H1/02Brushing apparatus, e.g. with auxiliary instruments for mechanically loosening dirt
    • E01H1/05Brushing apparatus, e.g. with auxiliary instruments for mechanically loosening dirt with driven brushes
    • E01H1/053Brushing apparatus, e.g. with auxiliary instruments for mechanically loosening dirt with driven brushes having vertical axes
    • EFIXED CONSTRUCTIONS
    • E01CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES
    • E01HSTREET CLEANING; CLEANING OF PERMANENT WAYS; CLEANING BEACHES; DISPERSING OR PREVENTING FOG IN GENERAL CLEANING STREET OR RAILWAY FURNITURE OR TUNNEL WALLS
    • E01H1/00Removing undesirable matter from roads or like surfaces, with or without moistening of the surface
    • E01H1/02Brushing apparatus, e.g. with auxiliary instruments for mechanically loosening dirt

Definitions

  • the invention relates to a replaceable sweeping brush device for a carrier vehicle having at least one sweeping brush which can be driven in rotation about an almost vertically oriented brush rotation axis and which is detachably connectable to a carrier fork of the carrier vehicle, which is a first horizontal one aligned transversely to the vehicle longitudinal axis Swivel axis is pivotable.
  • a sweeping brush device is known per se.
  • the EP-A-1061180 contains a similar sweeping brush device.
  • the invention relates to a sweeper with a chassis and coupled to the chassis supporting fork, which is pivotable about a transversely oriented to the vehicle longitudinal axis first horizontal pivot axis, and with a removably connectable to the support fork sweeping brush device of the above type.
  • Carrier vehicles which have a front support fork, on which a sweeping brush device can be held for sweeping a floor surface, for example a road or a sidewalk.
  • the carrier vehicle can receive a suction device, with which the debris can be picked up from the bottom surface and transferred to a dirt container.
  • a sweeping brush device another device, for example a snowplough or a shovel, can also be fixed on the front carrying fork.
  • the sweeping brush should therefore be as simple as possible connected to the support fork and, if necessary, be detachable from this.
  • the sweeping brush device on a support frame. At the Support frame is the at least one sweeping brush to a nearly vertically aligned brush rotation axis held driven to rotate.
  • the support fork can usually be pivoted about a first horizontal pivot axis aligned transversely to the vehicle longitudinal axis. This gives the possibility to adjust the position of the at least one sweeping brush relative to the bottom surface. However, by pivoting the support fork, the orientation of the sweeping brush and thus also the range of the area of the floor to be cleaned changes. It would therefore be desirable if the at least one sweeping brush could be adjusted parallel to the bottom surface.
  • Object of the present invention is therefore to develop a sweeping brush device of the type mentioned in such a way that it can be easily connected to the support fork of the carrier vehicle and released from this if necessary, wherein the at least one sweeping brush adjusted by pivoting the support fork parallel to the bottom surface can be.
  • the above-mentioned object is achieved in that the support frame has a first support assembly on which the at least one sweeping brush is rotatably mounted, and a second support assembly which is releasably connectable to the support fork, wherein the first support assembly pivotable about a second horizontal pivot axis with the second support assembly connected and at least one tension member with the carrier vehicle is detachably connectable.
  • a support frame with a first support arrangement and a second support arrangement is used.
  • the second support assembly is detachably connectable to the support fork, which is pivotable about a first horizontal pivot axis aligned transversely to the vehicle longitudinal axis.
  • the first support assembly is pivotally connected to the second support assembly, wherein it can be pivoted relative to the second support assembly about a second horizontal pivot axis.
  • the first support assembly via a tension member is detachably connected directly to the carrier vehicle.
  • the second support assembly must be connected to the support fork, and in addition, the at least one tension member must be brought into connection with the first support assembly.
  • the second support assembly directly connected to the support fork can be pivoted to raise and lower the at least one sweeping brush.
  • the first support assembly is pivotally coupled to the second support assembly and connected via the tension member directly to the carrier vehicle.
  • the support fork in connection with the at least one tension member and the two support arrangements, forms a parallelogram guide for the at least one sweeping brush, so that they are at the same time Pivoting the support fork about the first horizontal pivot axis can be offset parallel to the bottom surface. This makes it possible to change the position of the sweeping brush relative to the bottom surface in a simple manner, thereby achieving the best possible cleaning result. For this purpose, it is only necessary to pivot the support fork about the first horizontal pivot axis.
  • the at least one sweeping brush can be offset by a pivoting movement of the support fork parallel to the bottom surface, without the need for an elaborate and not readily readily releasably connectable with the support fork guide mechanism must be used.
  • the sweeping brush device according to the invention is thus characterized on the one hand by an easy displaceability of the at least one sweeping brush parallel to the bottom surface, on the other hand, the sweeping brush device can be connected in a very simple manner with the support fork and released from this.
  • the at least one sweeping brush can assume a defined orientation and a predetermined position relative to the bottom surface without the support frame of the sweeping brush device having to be supported on the bottom surface via additional support elements.
  • Such support elements affect the cleaning result, because there is a risk that they press when driving over the floor surface debris against the bottom surface, so that this can then be removed only with difficulty by means of at least one sweeping brush from the bottom surface. This applies, for example, to moist foliage which is pressed against the ground surface by the support elements.
  • Such support elements can in the sweeping brush device according to the invention omitted because the at least one sweeping brush can be optimally adjusted relative to the bottom surface due to their parallel displacement. For this purpose, it is only necessary to pivot the support fork about the first horizontal pivot axis. Such pivotability of the support fork is common practice in commonly used carrier vehicles.
  • the tension member may be configured, for example in the form of a rope or a chain, which may be fastened on the one hand, for example, on the chassis of the carrier vehicle and on the other hand to the first support assembly.
  • the contact pressure which the at least one sweeping brush exerts on the floor surface to be cleaned is adjustable. This allows the contact pressure to be adapted to the respective floor surface to be cleaned in order to achieve the best possible cleaning result.
  • the first support arrangement is pivotable about the second horizontal pivot axis counter to a resilient restoring force. This makes it possible for the first support arrangement and thus also the at least one sweeping brush, which is rotatably mounted on the first support arrangement, to be acted upon by a spring force in the direction of the floor area to be cleaned.
  • the strength of the resilient restoring force is adjustable, because this can be the contact pressure, the at least one sweeping brush on the floor surface to be cleaned, be easily adjusted.
  • the first support arrangement on an Switzerlandgliedhalter which is connectable to the tension member at a distance from the second horizontal pivot axis and which is coupled via a spring element with the second support arrangement.
  • the tension member holder thus forms a point of articulation for the tension member, via which the first support arrangement can be connected directly to the carrier vehicle.
  • the Switzerlandgliedhalter forms an abutment for a spring element, via which the Glasgliedhalter is coupled to the second support assembly.
  • the spring element is supported on the one hand on the second support arrangement and on the other hand on the tension member holder of the first support arrangement and can thereby act on the first support arrangement with a resilient restoring force.
  • the spring element is designed as a compression spring.
  • a coil spring can be used.
  • the spring force of the compression spring is preferably adjustable.
  • the compression spring between the Wergliedhalter the first support assembly and a spring holder of the second support assembly is clamped, wherein the distance of the spring holder is adjustable to Switzerlandgliedhalter.
  • the pivotability of the first support arrangement is limited relative to the second support arrangement.
  • the first support arrangement can be pivoted about the second horizontal pivot axis by a maximum pivot angle relative to the second support arrangement. After reaching the maximum pivot angle, a further pivotal movement of the first support assembly relative to the second support assembly is no longer possible.
  • the at least one sweeping brush starting from a sweeping position in which it touches the floor surface for sweeping, can first be raised parallel to the floor surface by pivoting the support fork around the first horizontal pivot axis by the inclination of the first support arrangement relative assumes the second support assembly can be corrected by pivoting the first support assembly about the second horizontal pivot axis.
  • the required pivotal movement of the first support assembly to the second horizontal pivot axis is limited, however, so that upon reaching the maximum pivot angle, the further pivoting of the support fork to the first horizontal pivot axis has the consequence that the first support assembly directly coupled to the movement of rigidly connected to the support fork second support assembly follows.
  • the initially given parallel displaceability of the at least one sweeping brush relative to the bottom surface is thus deactivated upon reaching the maximum pivoting angle.
  • This in turn has the consequence that the at least one sweeping brush can be considerably raised together with the first and second support assembly by pivoting the support fork to finally assume a rest position in which the at least one sweeping brush occupies a considerable distance from the bottom surface.
  • the second support assembly comprises a stop to which the first support assembly upon reaching a maximum pivot angle can be applied. If the support fork is pivoted about the first horizontal pivot axis, the second support assembly follows due to its rigid connection with the support fork of the pivotal movement of the support fork, whereas the first support assembly due to its pivoting about the second horizontal pivot axis and its direct coupling with the carrier vehicle on the at least one Tension member initially changed only its inclination relative to the second support assembly, so that the at least one sweeping brush is offset parallel to the bottom surface.
  • the change in inclination of the first support arrangement relative to the second support arrangement can only take place until a maximum pivot angle of the first support arrangement is reached about the second horizontal pivot axis.
  • the first support assembly comes to a stop of the second support assembly to the plant.
  • the support fork and rigidly coupled thereto second support assembly about the first horizontal pivot axis then follows the first support assembly directly this pivotal movement.
  • the distance of the first support assembly to the stop of the second support assembly thus dictates the pivotability of the first support assembly.
  • the sweeping brush device has only a single sweeping brush.
  • This can for example be designed as a disc brush be.
  • the sweeping brush device comprises two sweeping brushes, preferably two disc brushes whose brush pivot axes are slightly inclined to the vertical.
  • the inclination of the brush rotation axes to the vertical determines the area of the sweeping brushes in which they contact the floor surface, that is to say the so-called sweeping mirror. Since the two sweeping brushes, starting from their sweeping position can be initially offset parallel to the bottom surface, a constant sweeping mirror is ensured at the initial pivoting of the support fork to the first horizontal pivot axis.
  • the first support assembly on a first cross member, at the ends of each a pivotable about a vertical pivot axis support arm is mounted, which carries a sweeping brush.
  • the provision of the pivotable support arms gives the possibility of pivoting the sweeping brushes in the direction of the vehicle longitudinal axis when an obstacle occurs, so that they can avoid the obstacle. It is favorable in this case if the retaining arms are pivotable against the action of a resilient restoring force in the direction of the vehicle longitudinal axis. The spring force thus pushes the retaining arms to the outside and when an obstacle occurs, the retaining arms and each set sweeping brush can avoid the obstacle against the resilient restoring force.
  • the first cross member is rigidly connected to two longitudinal members, which are mounted pivotably about the second horizontal pivot axis on the second support assembly.
  • the two side members thus each form a bearing for the first support assembly from, over which the first support assembly is coupled to the second support assembly.
  • the two side members are conveniently connected rigidly to each other via a second cross member, with the second horizontal pivot axis extending between the first cross member and the second support member.
  • the first support assembly is thus suspended by means of the two longitudinal members pendulum on the second support assembly.
  • the longitudinal members are rigidly connected to the first cross member, which can each carry a sweeping brush at its ends.
  • the two side members are rigidly coupled to each other via the second cross member, and in the region between the first cross member and the second cross member, the side members are pivotally supported respectively about the second horizontal pivot axis on the second support assembly.
  • the second cross member is rigidly connected in an advantageous embodiment of the invention with a tension member holder, wherein the tension member is connectable to the protruding from the second cross member free end of the tension member holder.
  • the tension member holder may for example be aligned transversely to the longitudinal axis of the second cross member and carry at its free end a hook or eye on which the at least one tension member can be fixed.
  • the tension member holder after pivoting of the first support assembly by a maximum pivot angle to a stop of the second support assembly can be applied.
  • the Switzerlandgliedhalter can thus as Serve component that limits the pivoting of the first support assembly relative to the second support assembly.
  • the first support arrangement is held in a swinging manner on the second support arrangement.
  • the first support arrangement can be acted upon by a restoring force which compensates for the torque exerted by the at least one sweeping brush relative to the pendulum axis, ie the second horizontal pivot axis, so far that the at least one sweeping brush exerts a predeterminable contact pressure on the floor surface.
  • the second support arrangement has a traverse which can be placed on the free end regions of the support fork and on which the first support arrangement is pivotably mounted about the second horizontal pivot axis.
  • the traverse allows a rigid coupling of the second support assembly with the support fork.
  • the second support assembly thus follows immediately a pivotal movement of the support fork about the first horizontal pivot axis.
  • the support fork has tines which each have a vertically upwardly projecting pin at its free end, which engages through a recess of the cross-beam.
  • the upwardly projecting pins of the support fork thus allow easy position securing the crossbar relative to the support fork.
  • the cross-beam includes receptacles, each receiving a free end portion of a tine of the support fork.
  • the shots can for example, be configured in cross-section U-shaped and can be placed from above on the free end portions of the tines.
  • the cross member forms a stop which limits the pivotability of the first support assembly relative to the second support assembly.
  • the traverse for example, carry a spring holder which is coupled via a spring element with the first support assembly.
  • the spring holder may be configured, for example, in the form of a spring bolt which projects from the crosshead aligned coaxially to the vehicle longitudinal axis and passes through a helical spring which is supported on the one hand on a bolt head of the spring bolt and on the other hand on the first support assembly and thereby exerts a resilient restoring force between the first Carrying assembly and the second support assembly.
  • the invention also relates to a sweeper with a chassis and a support fork coupled to the chassis, which is pivotable about a first horizontal pivot axis, as well as with a detachably connectable with the support fork sweeping brush device of the aforementioned type.
  • a drive unit of the carrier vehicle is used, for example, a hydraulic or pneumatic piston-cylinder unit.
  • the second support assembly of the sweeping brush device is detachably connectable to the support fork, wherein it can be rigidly coupled to the support fork.
  • a pivoting movement of the support fork is thus transferred to the second support assembly, that is, the second support assembly follows the pivotal movement of the support fork.
  • the first support arrangement held in a swinging manner on the second support arrangement can be coupled directly to the chassis via the at least one tension member. On the chassis for this purpose a fastener is held.
  • the fastening element can be designed, for example, in the form of a tab, a hook or an eyelet on which the at least one tension member, for example a chain or a cable, can be fastened.
  • chassis a support member is pivotally supported about the first horizontal pivot axis and the support fork about a parallel to the vehicle longitudinal axis aligned third horizontal pivot axis is pivotally mounted on the support member.
  • This makes it possible to pivot the support fork together with the support part about the first horizontal pivot axis oriented transversely to the vehicle longitudinal axis, so that the sweeping brush device held on the support fork can be raised.
  • the support fork can be pivoted about a third horizontal pivot axis relative to the support member. The third horizontal pivot axis is aligned parallel to the vehicle longitudinal axis.
  • FIG. 1 schematically a self-propelled sweeper 10 is shown. It comprises a carrier vehicle 12 with a chassis 14. On the chassis 14, two steerable front wheels 15, 16 and rotatable about a common axis of rotation rear wheels 17, 18 are mounted. Above the front wheels 15, 16, the carrier vehicle 12 has a driver's cab 20 and above the rear wheels 17, 18 there is a support surface 22 on which a dirt receiving device 24 is mounted with a dirt container 26 and a suction unit not known in the drawing, known per se , with the aid of which the dirt container 26 can be subjected to negative pressure.
  • suction mouth is arranged, which is connected via a suction hose 28 to the dirt container 26. This makes it possible to absorb debris with the help of the suction mouth of a floor surface to be cleaned and to transfer via the suction hose 28 into the dirt container 26.
  • a substantially U-shaped support member 30 is pivotally mounted about a first horizontal pivot axis 32.
  • the first horizontal pivot axis 32 is aligned transversely to the vehicle longitudinal axis 34 of the host vehicle 12.
  • the support member 30 has a mounting bracket 36 with a first leg 37 and a second leg 38, which are integrally connected to each other via a web 39.
  • a bearing block 40 is held with a bearing eye 41 each.
  • the bearing eyes 41 are penetrated by a shaft, not shown in the drawing, rigidly connected to the chassis 14, which defines the first horizontal pivot axis 32.
  • a further bearing block 43 is integrally formed on the mounting bracket 36, which is rotatably connected to the piston rod 44 of a hydraulic piston-cylinder assembly 45.
  • the support member 30 can be pivoted about the first horizontal pivot axis 32.
  • a support fork 48 On the side facing away from the bearing blocks 40 and 43 front carries the support member 30 a support fork 48 with two forwardly projecting tines 49, 50.
  • the support fork 48 is held about a parallel to the vehicle longitudinal axis 34 aligned third pivot axis 52 pivotally mounted on the mounting bracket 36 and can together with this to be pivoted about the first horizontal pivot axis 32.
  • the tines 49 and 50 have at their free end in each case a vertically upwardly projecting pin 53, 54.
  • first retaining tab 56 and a second retaining tab 57 are used to attach tension members in the form of a first chain 58 and a second chain 59th
  • the support fork 48 receives a sweeping brush device 65.
  • This comprises a first support assembly 66, which is pivotally mounted about a second horizontal pivot axis 68 pivotally mounted on a second support assembly 70.
  • the second horizontal pivot axis 68 is aligned parallel to the first horizontal pivot axis 32.
  • the second support arrangement 70 can with the Support fork 48 are detachably connected.
  • the second support arrangement 70 has a traverse 72, which defines two U-shaped receptacles 73, 74 and comprises an opening 75 or 76 above the receptacles 73, 74. This is especially true FIG. 4 clear.
  • the traverse 72 can be placed on the end portions of the prongs 49 and 50 of the support fork 48, wherein the pins 53 and 54 each pass through an opening 75 and 76 and the receptacles 73 and 74 receive an end portion of the prongs 49 and 50 respectively.
  • the traverse 72 can be secured to the tines 49 and 50 of the support fork 48.
  • the first support arrangement 66 comprises a first cross member 82, which is aligned parallel to the second horizontal pivot axis 68 and carries at its ends in each case a support arm 83 and 84 which is pivotable about a vertically oriented pivot axis 85 and 86, respectively.
  • a sweeping brush is held in the form of a disc brush 88 and 89, respectively.
  • the disc brushes 88 and 89 can be rotated in each case by a slightly inclined to the vertical brush rotation axis 93 and 94 in rotation.
  • the first cross member 82 is rigidly connected to two parallel to the vehicle longitudinal axis 34 aligned longitudinal beams 96, 97 which are coupled at their ends facing away from the first cross member 82 via a second cross member 98 with each other. Between the first cross member 82 and the second cross member 98, the two side members 96 and 97 are pivotally connected via ball pins 99 to the cross member 72 of the second support assembly 70, respectively. The The first support assembly 66 is thereby kept oscillating about the second horizontal pivot axis 68 on the second support assembly 70.
  • the Switzerlandstoffhalter 101 is penetrated by a spring pin 106 which is aligned parallel to the vehicle longitudinal axis 34 and rigidly connected to the traverse 72 of the second support assembly 70. At its free end it carries a bolt head 108. Between the bolt head 108 and the Werbachhalter 101 a spring element is clamped, which is designed as a helical compression spring 110.
  • the compression spring 110 is supported via the spring bolt 106 on the second support assembly 70 and via the Werbachhalter 101 on the first support assembly 66 and thus exerts from the rigidly connected to the support fork 48 second support assembly 70, a spring force and thus a torque on the first support assembly 66th out.
  • the first support arrangement 66 can be pivoted about the second horizontal pivot axis 68 counter to the resilient restoring force exerted by the compression spring 110.
  • the strength of the restoring force exerted by the compression spring 110 can be adjusted by turning the spring bolt 106 bolted to the cross member 72.
  • the compression spring 110 are in the operating position of the disc brushes 88, 89, in which they are lowered to the floor surface to be cleaned, the contact pressure before, the disc brushes 88, 89 exert on the floor surface.
  • that of the compression spring 110 on the first support assembly 66th applied torque opposes the torque exerted by the disc brushes 88, 89 due to their weight.
  • the torque of the compression spring 110 equalizes the torque of the disc brushes 88, 89 to a desired residual amount that determines the desired contact pressure.
  • the chains 58, 59 in combination with the support member 30 and the support fork 48 and the first support assembly 66 and the second support assembly 70 a parallelogram for the two disc brushes 88, 89.
  • the two chains 58 in the area of the chassis 14th and 59 each have a first articulation point 112 and the bearing blocks 40 of the support bracket 36 form a second articulation point 114 in the region of the chassis 14.
  • the chains 58, 59 are coupled to the first support arrangement 66 at a third articulation point 116.
  • the second support arrangement 70 which is rigidly coupled to the prongs 49, 50 of the support fork 48, is coupled to the first support arrangement 66 at a fourth articulation point 118 in the form of the ball studs 99.
  • the disc brushes 88, 89 assume a sweeping position, in which they act on the floor surface to be cleaned with a presettable by the position of the spring pin 106 contact pressure. If, starting from the sweeping position, the support fork 48 is pivoted about the first horizontal pivot axis 32 by means of the piston-cylinder assembly 45, the plate brushes 88, 89 are raised parallel to the bottom surface, ie the orientation of the brush rotation axes 93, 94 relative to the vertical remains unchanged. When pivoting the support fork 48, the inclination of the first support assembly 66 changes relative to the second support assembly 70.
  • the Buchstoffhalter 101 is increasingly approaching a formed by the cross member 72 stop 120, between the two receptacles 73, 74 on the chassis 14 facing the rear side 122 of the crossbar 72 is arranged.
  • the stop 120 it can be at a continuous pivotal movement of the support fork 48 about the first horizontal pivot axis 32, the first support assembly 66 no further pivotal movement about the second horizontal pivot axis 68 perform, but the first support assembly 66 now follows the pivotal movement of the second support assembly 70, so that now also the plate brushes 88, 89 are pivoted about the first horizontal pivot axis 32 and therefore the inclination of the brush rotation axes 93, 94 changed relative to the vertical until they assume their rest position in fully pivoted up position of the support fork 48.
  • the plate brushes 88, 89 can pass back into their operating position by pivoting the support fork 48 in the opposite direction about the first horizontal pivot axis.
  • they first perform a pivoting movement about the first horizontal pivot axis 32, until the Glasstoffhalter 101 lifts due to its coupling via the chains 58, 59 with the chassis 14 from the stop 120, so that upon further lowering of the support fork 48, the disc brushes 88, 89th are moved parallel to the bottom surface down with constant alignment of the brush rotation axes 93, 94th
  • the entire sweeping brush device 65 can be connected in a very simple way to the support fork 48 and the chains 58, 59.
  • the traverse 72 can be secured by means of the securing bolts 78, 79 on the support fork 48. It is then only necessary to attach the chains 58, 59 to the eyelet 104 of the screw 103 of the Switzerlandstoffhalters 101. Further measures for connecting the sweeping brush device 65 to the support fork 48 are not required. The connection can thus be made within a very short time by untrained personnel.
EP10706681.3A 2009-03-16 2010-03-08 Auswechselbare kehrbürsteneinrichtung und kehrmaschine mit einer derartigen kehrbürsteneinrichtung Not-in-force EP2408971B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102009014560A DE102009014560A1 (de) 2009-03-16 2009-03-16 Auswechselbare Kehrbürsteneinrichtung und Kehrmaschine mit einer derartigen Kehrbürsteneinrichtung
PCT/EP2010/052908 WO2010105933A1 (de) 2009-03-16 2010-03-08 Auswechselbare kehrbürsteneinrichtung und kehrmaschine mit einer derartigen kehrbürsteneinrichtung

Publications (2)

Publication Number Publication Date
EP2408971A1 EP2408971A1 (de) 2012-01-25
EP2408971B1 true EP2408971B1 (de) 2014-11-05

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EP10706681.3A Not-in-force EP2408971B1 (de) 2009-03-16 2010-03-08 Auswechselbare kehrbürsteneinrichtung und kehrmaschine mit einer derartigen kehrbürsteneinrichtung

Country Status (6)

Country Link
US (1) US9045872B2 (zh)
EP (1) EP2408971B1 (zh)
CN (1) CN102356199B (zh)
DE (1) DE102009014560A1 (zh)
DK (1) DK2408971T3 (zh)
WO (1) WO2010105933A1 (zh)

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US9045872B2 (en) 2015-06-02
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CN102356199A (zh) 2012-02-15
US20120124760A1 (en) 2012-05-24
CN102356199B (zh) 2014-10-22
WO2010105933A8 (de) 2010-11-18
EP2408971A1 (de) 2012-01-25

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