EP3028600B1 - Tellerbesen und zugehörige Befestigungseinrichtung - Google Patents

Tellerbesen und zugehörige Befestigungseinrichtung Download PDF

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Publication number
EP3028600B1
EP3028600B1 EP14196361.1A EP14196361A EP3028600B1 EP 3028600 B1 EP3028600 B1 EP 3028600B1 EP 14196361 A EP14196361 A EP 14196361A EP 3028600 B1 EP3028600 B1 EP 3028600B1
Authority
EP
European Patent Office
Prior art keywords
carrier
side wall
plate body
circular
fastening device
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.)
Active
Application number
EP14196361.1A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP3028600A1 (de
Inventor
Ulrich Menken
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.)
Weber Buerstensysteme GmbH
Original Assignee
Weber Buerstensysteme 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 Weber Buerstensysteme GmbH filed Critical Weber Buerstensysteme GmbH
Priority to PL14196361T priority Critical patent/PL3028600T3/pl
Priority to DK14196361.1T priority patent/DK3028600T3/da
Priority to EP14196361.1A priority patent/EP3028600B1/de
Publication of EP3028600A1 publication Critical patent/EP3028600A1/de
Application granted granted Critical
Publication of EP3028600B1 publication Critical patent/EP3028600B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A46BRUSHWARE
    • A46BBRUSHES
    • A46B5/00Brush bodies; Handles integral with brushware
    • A46B5/0095Removable or interchangeable brush heads
    • AHUMAN NECESSITIES
    • A46BRUSHWARE
    • A46BBRUSHES
    • A46B7/00Bristle carriers arranged in the brush body
    • A46B7/04Bristle carriers arranged in the brush body interchangeably removable bristle carriers
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L11/00Machines for cleaning floors, carpets, furniture, walls, or wall coverings
    • A47L11/40Parts or details of machines not provided for in groups A47L11/02 - A47L11/38, or not restricted to one of these groups, e.g. handles, arrangements of switches, skirts, buffers, levers
    • A47L11/4036Parts or details of the surface treating tools
    • A47L11/4038Disk shaped surface treating tools
    • AHUMAN NECESSITIES
    • A46BRUSHWARE
    • A46BBRUSHES
    • A46B2200/00Brushes characterized by their functions, uses or applications
    • A46B2200/30Brushes for cleaning or polishing
    • A46B2200/3066Brush specifically designed for use with street cleaning machinery

Definitions

  • the present invention relates to a circular broom for interchangeable arrangement on a carrier of a sweeping or cleaning machine, the carrier being rotatably mounted on the sweeping or cleaning machine by means of a drive.
  • Common sweeping and cleaning machines or devices have a motor-driven and accordingly rotatable head, i.e. a driving head, on which a support for the disc broom is arranged in a rotationally fixed manner.
  • the rotatable carrier is used for the detachable connection of a circular broom.
  • Common disc brooms have a disc-shaped disc body on which a large number of bristles are arranged, the free end of which faces away from the disc body, typically approximately axially in relation to the axis of rotation of the disc body, or inclined axially and radially outwards at a predetermined angle are.
  • the circular broom For the torque-transmitting attachment of the circular broom to the carrier of the sweeping or cleaning machine, it is customary to provide screw bolts and through holes that correspond to one another on the plate body side and the carrier side, so that the circular broom can be detachably arranged on the carrier by means of several screw bolts or socket pins extending in the axial direction. Since the disc broom is a wearing part, it must be replaced regularly on the carrier.
  • the present invention is based on the object of providing an improved fastening device for a circular brush on the power car or carrier of a sweeping or cleaning machine, which enables rapid and particularly simple replacement of a circular brush, if possible without the aid of separate assembly tools. It is another object to provide a disc broom intended for those attachment means.
  • the invention relates to a circular broom for exchangeable arrangement on a carrier or driving head rotatably arranged on a sweeping or cleaning machine.
  • the disc brush has a disc-shaped disc body for a torque-transmitting attachment to the carrier.
  • the disk body is designed in particular to be rotationally symmetrical and has an essentially circular outer circumference.
  • the disk body On its outer circumference, the disk body has, at least in sections, a positive-locking structure for forming a torque-transmitting connection between the carrier and the disk body.
  • the disk body can be coupled or connected via its outer circumference in a torque-transmitting manner to the carrier of the sweeping or cleaning machine, which is configured correspondingly.
  • the hitherto customary axially extending socket bolts, screw bolts or screws for the torque transmission between the carrier and the disk body can be completely eliminated.
  • the plate body can be fastened to the carrier in any orientation, so to speak rotationally invariant, with respect to the axially extending axis of rotation.
  • the configuration of a positive-locking structure on the outer circumference of the plate body is also advantageous in that smaller forces have to be transmitted for the same torque due to the radially outer position compared to a radially inner bolt.
  • the requirements for a force transmission aligned in the tangential direction can be reduced by the radially outer positive-locking structure.
  • This enables the use of novel materials for the disk body as well as for the carrier, which can be characterized in particular by low production costs and low weight. Light metals such as aluminium, for example, can be used for the carrier, and various plastics and wood for the plate body.
  • the form-fitting structure of the plate body is designed in a wavy, toothed or jagged manner in the circumferential and radial direction.
  • the most diverse concrete geometric forms of the positive-locking structure are conceivable, which can also be designed differently depending on the area of application and for each type of machine.
  • the mounting systems for individual circular brooms can be clearly distinguished from one another both visually and haptically.
  • a specific positive-locking structure for example a toothed positive-locking structure
  • a different form-fitting structure for example a corrugated structure
  • jagged form-fitting structures and wavy form-fitting structures are intuitively and directly distinguishable from one another, so that when replacing a disc brush, a mechanic can immediately and directly see whether a disc brush in question is suitable and intended for a specific machine type.
  • the positive-locking structure is designed on an outer surface of the plate body pointing radially outwards.
  • the plate body itself can be designed, for example, as an extruded component which is cut into individual slices perpendicularly to the extrusion direction, which can coincide with the axial direction.
  • the outer surface of the plate body pointing radially outwards can be designed in almost any way, in each case by appropriate shaping of the extrusion die.
  • a positive-locking structure that is to say any contour deviating from a circular structure, can be produced in this way at almost no cost.
  • the plate body is configured as an extruded component, thermoplastics, for example polypropylene or polyoxophthalate (POM), are suitable.
  • the positive-locking structure is formed in particular in the radial and circumferential directions, while the outer circumference of the plate body is largely constant and straight in the axial direction.
  • the plate body can have a quasi-flat, cylindrical structure and shape, but the cylinder jacket surface is provided with a positive-locking structure, ie with at least one radial projection and/or one radial depression.
  • the form-fitting structure is designed to be circumferential and continuous.
  • a circumferential and continuous positive-locking structure enables power and torque transmission to be as homogeneous as possible and uniform or evenly distributed over the outer circumference of the plate body.
  • the torque transmission can be introduced into the plate body not only at certain points, but over as large an area as possible, that is to say over the entire outer circumference in the extreme case. Mechanical stresses on the disk body can thus be effectively reduced, which can have an advantageous effect on the service life of the disk body, in particular for the reusability of disk bodies.
  • a peripheral and continuously formed positive-locking structure on the outer circumference of the plate body contributes to the fact that the plate body can be arranged on the carrier in any desired orientation with respect to its axis of rotation. Furthermore, with a circumferential and continuous form-fitting structure on the outer circumference of the disc body, it is not absolutely necessary to provide a completely circumferential counter-form-fitting structure on the corresponding carrier, i.e. a form-fitting structure corresponding to the form-fitting structure of the disc broom.
  • a carrier-side form-fitting structure which corresponds to the form-fitting structure of the disc broom and can be brought into engagement therewith in a torque-transmitting manner at one or more points of the carrier distributed over the circumference.
  • manufacturing costs for the carrier can be reduced.
  • a form-fitting structure on the carrier that is only selective or in sections allows a further simplification for the assembly of the circular broom thereon.
  • a fastening device for a circular broom as described above is also provided.
  • the fastening device is designed in particular as a quick-change system for a sweeping or cleaning machine.
  • the fastening device has a carrier which can be arranged rotatably on a sweeping or cleaning machine and has a receptacle for the plate body of the plate broom.
  • the receptacle is delimited radially outwards by a side wall, on the inside of which a form-fitting structure corresponding to the form-fitting structure of the plate body is formed or arranged, at least in sections.
  • the receptacle of the fastening device is accessible from below in a mounted position on the sweeping or cleaning machine, that is, it is open from below, so that the plate body can be inserted into that receptacle from below.
  • the inner cross section or inner diameter of the receptacle is adapted to the outer cross section or outer diameter of the plate body.
  • the plate body can be placed with a precise fit in that receptacle, so that the positive-locking structures that correspond to one another or communicate with one another and are geometrically coordinated with one another on the outside of the plate body and on the inside of the side wall of the receptacle of the carrier engage with one another in a torque-transmitting manner.
  • a rotational movement of the carrier can be transferred slip-free into a corresponding rotational movement of the plate body and thus of the entire circular broom due to the interlocking structures of the carrier and disk body that are in engagement with one another.
  • the carrier has a carrier plate, on the outer circumference of which the side wall protrudes axially downwards.
  • the carrier plate In a final assembly configuration, in which the disc broom is arranged on the carrier, the carrier plate is aligned approximately parallel to the disk-like disc body.
  • the support plate can be designed to be closed and, in the final assembly configuration on the sweeping or cleaning machine, can have the side wall protruding axially downwards.
  • the side wall acts as a radial border for the receptacle or as the outer edge of the carrier plate.
  • the axial height of the side wall corresponds at least to the axial extent of the plate body, so that the plate body, in relation to the axial direction, comes to rest at least in sections within the side wall. This is particularly advantageous for an axial securing or axial fastening of the disk body and consequently of the disk broom on the carrier.
  • a holder which extends radially inwards and protrudes from the inside of the side wall arranged.
  • the holder can be arranged as a separate component on the end section lying below in the axial direction, ie on a lower end of the side wall facing away from the carrier plate. But it is also conceivable to integrate the holder in one piece into the side wall.
  • the carrier with carrier plate and side wall is manufactured as a cast component or as a milled component, typically made of metal, such as steel or aluminum, or of a plastic, for example POM. It is also conceivable that the carrier is designed as an injection molded component, in particular as a plastic injection molded component. Since the holder protrudes from the inside of the side wall, it forms a type of U-profile in cross section together with the carrier plate and the inside of the side wall, in which the plate body can be inserted at least in sections in an axially secured manner. Consequently, the holder forms an undercut with the side wall, into which the plate body can be inserted radially. Such a radial insertion or insertion movement is only possible if there are no bolts aligned in the axial direction either on the support or on the basement body.
  • a holding bracket which can be brought into engagement with the outer circumference of the plate body is also mounted on the carrier so that it can pivot between an open position and a closed position.
  • a particularly simple fixation and a corresponding detachment of the plate body from the carrier is possible by means of the holding bracket.
  • the receptacle of the carrier can be selectively closed or opened, so that the plate body of the circular brush is correspondingly released axially or secured axially on the carrier.
  • the headband is used in particular for the axial fixation of the plate body on the carrier.
  • the pivotable retaining bracket can also be used for radial or torque-transmitting fixation of the carrier and plate body.
  • the pivot axis of the holding bracket runs in the axial direction (z). It also runs through a side wall of the retaining bracket.
  • the headband typically has a circular segment-like or arc-shaped contour on, wherein the radius of curvature of the headband corresponds approximately to the radius of curvature of the side wall of the receptacle.
  • the recording of the carrier can be selectively closed or opened.
  • the provision of the retaining clip enables in particular a tool-free or assembly-tool-free exchange of the disc broom on the carrier.
  • a one-hand operation of the fastening device is made possible by means of the holding bracket.
  • a fitter can grip the retaining bracket with one hand while holding the circular broom to be assembled in a pre-assembly position on the carrier with the other hand or fixing it manually thereto.
  • the disc broom can be fixed to the carrier simply by pivoting the retaining bracket from the open position into the closed position.
  • the interrelationship of form-fitting structure, holder and swiveling retaining bracket enables a particularly simple, intuitive and quick replacement of disc brooms on the associated carrier of a sweeping or cleaning machine.
  • the holding bracket in its closed position protrudes radially inwards from the side wall with a leg spaced apart from the carrier or its carrier plate.
  • the retaining clip can encompass at least a section of the outer circumference of the plate body in the axial direction in its closed position.
  • the inwardly protruding leg of the retaining bracket can be brought into a position radially outside the side wall, so that the disk body in the region of the retaining bracket can be detached axially from the carrier or removed from the receptacle.
  • the retaining clip forms a partial area of the side wall.
  • a section of the side wall can be arranged pivotably on the carrier, in particular pivotably on the carrier plate.
  • the receptacle for the disk body is accessible from a radial direction.
  • the circular broom can be inserted laterally, ie in the radial direction, into the receptacle.
  • the plate body With the transfer of the retaining clip, or the side wall, into the closed position, the plate body can then be secured both radially and axially on the carrier.
  • a further, radially inwardly extending and protruding from the inside of the side wall in the closed position of the retaining bracket holder is arranged on a lower end portion of the bracket spaced from the carrier or its carrier plate. That further mount of the retaining bracket is typically arranged opposite or spaced apart in the circumferential direction from the previously described mount on the side wall.
  • the plate body By means of several holders, typically arranged distributed over the circumference of the side wall and each projecting radially inwards, the plate body can be fixed several times over its outer circumference axially on the carrier.
  • the provision of several such holders enables a particularly uniform axial fixation of the plate body on the carrier.
  • the retaining clip it is also conceivable for the retaining clip to be designed without a mount and only radially clamp the outer circumference of the plate body between itself and an opposite side wall section of the carrier.
  • a single axial holder projects radially inwards and thus forms a kind of arc-shaped U-profile-like receptacle for the plate body.
  • the plate body is in such a receptacle, for example in the form of a semicircle or U-profile, by simply being pushed in in the radial direction at least fixable.
  • the holder on the side wall can at least compensate for the weight of the circular brush, so that the circular brush remains on the carrier simply by pushing it into the receptacle, even when the retaining bracket is open, even if the circular brush is released.
  • a radially tensioned attachment of the plate body to the carrier can be advantageous for improved attachment that is free of play.
  • the holder and the retaining bracket are arranged on diametrically or radially opposite sections of the side wall. This makes it possible, in particular, for the plate body to be insertable radially at least with a radially outer section into the area between the holder and the carrier plate when the retaining bracket is open, so that the plate body is secured axially on the carrier at least at certain points or in sections.
  • a region of the plate body opposite the contact point thus formed can then be moved axially into the receptacle, so that the plate body assumes its final assembly position on the carrier.
  • the headband can then be transferred from its open position to the closed position, so that the holder configured on the headband also axially encloses or overlaps the area of the outer circumference of the plate body that comes into contact with it.
  • the disk body, and consequently the entire disk broom is secured axially on the carrier at least at two opposite points.
  • the headband in which the headband is designed without brackets, can radially fix the plate body when it is transferred into its closed position, which means that at least one single bracket also simultaneously affixes the entire disk broom axially to the carrier.
  • the holding bracket can be fixed in its closed position on the carrier by means of a closure.
  • the closure can have closure elements which can be brought into engagement with one another, on the one hand at the free end of the holding bracket and on the other hand on the carrier plate or on its side wall.
  • the closure can be designed, for example, in the form of a clamp or lever clamp closure with clamp and counter-hook.
  • the closure can in particular be arranged and aligned on the support plate or on the side wall of the support such that the centrifugal forces acting on the support during operation of the sweeper act in the closing direction of the closure but not in the opening direction. In this way, unintentional opening of the closure when the carrier is rotating can be prevented.
  • a circular broom 20 for detachable attachment to an attachment device 10 is shown.
  • the fastening device 10 has a carrier 12 which can be arranged rotatably on a sweeping or cleaning machine and has a carrier plate 14, on the underside of which a receptacle 13 for inserting a plate body 22 of the plate broom 20 is configured.
  • the receptacle 13 is in the circumferential direction from one in 3 and 4 peripherally designed side wall 15 limited.
  • the side wall 15 thus functions as a radial and circumferential outer edge for the receptacle 13.
  • a form-fitting structure 16 On the inside of the side wall 15 there is a form-fitting structure 16, presently in the form of a corrugated profile.
  • the waves have an amplitude in the radial direction (r) and extend or propagate in the circumferential direction (u) on the inside of the side wall 15 .
  • a form-fitting structure 26 corresponding to the form-fitting structure 16 of the side wall 15 is formed on the outer circumference 24 .
  • the plate body 22 can be coupled to the carrier 12 in a torque-transmitting manner simply by inserting it axially into the mount 13 by means of positive-locking structures 16 , 26 that correspond to one another on the receptacle 13 and on the disk body 22 .
  • the carrier plate 14 is designed as a continuous disk. It forms, so to speak, an end stop for an insertion or assembly movement of the plate body 22 directed in the axial direction or z-direction Underside of the plate body 22 are arranged radially outwardly and axially downwardly projecting bristles 28, such as those in FIGS Figures 1 and 2 are indicated.
  • a retaining clip 18 is also pivotably mounted on the side wall 15 .
  • the holding bracket 18 is mounted on the outer circumference of the carrier 12 with respect to a pivot axis 30 running in the axial direction (z).
  • the retaining clip 18 has a U-shaped or C-shaped profile in cross section, which in the closed position S of the retaining clip 18, as shown in FIG 4 shown, the outer periphery of the side wall 15 encloses.
  • a closure 19 is arranged at the free end of the retaining clip 18, by means of which the retaining clip 18 can be locked in the in 4 shown closed position S can be fixed.
  • the headband 18 has, as can be seen from the comparison Figures 5 and 6 recognizable, in particular at least at the lower end, which in the closed position S comes to lie axially spaced from the carrier 12 or from the carrier plate 14, has a radially inwardly protruding leg 18a, the radially inner end section of which protrudes radially inward from the side wall 15.
  • a holder 17 is arranged opposite the retaining bracket 18 at the lower end of the side wall 15 , which holder 17 likewise projects radially inwards from the lower end of the side wall 15 facing away from the carrier plate 14 .
  • the plate body 22, whose outer circumference or outer contour is designed to fit the form-fitting structure 16 precisely, can be inserted with a section of its outer circumference 24 into the area between the holder 17 and the carrier plate 14 for its assembly when the retaining clip 18 is in the open position O.
  • An opposite section of the outer circumference of the plate body 22 can then also be inserted axially into the receptacle 13 of the carrier 12 so that the underside of the plate body 22 facing the bristles 28 lies axially within the side wall 15 .
  • the lower leg 18a of the retaining clip 18 By closing the retaining clip 18, the lower leg 18a of the retaining clip 18 likewise encompasses the underside of the plate body 22 that faces away from the carrier plate 14 in the installed configuration, so that the plate body 22 at least in is secured axially to the carrier 12 in two opposite outer regions.
  • the lower leg 18a of the holding bracket 18 in the closed position S interacts axially with the underside of the circular broom 20 or the circular broom 22 facing the bristles 28 in order to secure it axially in the receptacle 13 .
  • the closure 19 is also shown, with which the free end of the holding bracket 18 facing away from the pivot axis 30 can be fixed in the closed position S on the carrier 12 .
  • the closure 19 has a counter-hook 31 provided on the upper side of the carrier plate 14 and a bracket or lever clamp 32 arranged on the retaining bracket 18, which interacts with the counter-hook 31 in such a way that it secures the free end of the retaining bracket 18 radially on the carrier 12.
  • Torque is transmitted between the rotatably drivable carrier 12 and the disk body 22 exclusively via the interacting or corresponding and interlocking form-fitting structures 16, 18 of the carrier 12 and the disk body 22.
  • FIG. 1 is the one in the rest Figures 1 to 12 shown form-fitting structure 26 of the plate body 22 shown again.
  • the form-fitting structure 36 according to 14 has a jagged profile with projections and depressions configured approximately at right angles in the radial direction.
  • a positive-locking structure 46 is shown with individual teeth, the individual tooth flanks being spaced apart from one another in the circumferential direction and being spaced apart from one another over a segment-like section which follows the circumferential geometry of the plate body.
  • an alternative positive-locking structure 56 is shown, in which the toothing is shaped like a gullet or approximately concave.
  • the form-fitting structure 66 according to 17 shows individual partially conical or chamfered teeth, which are also in the circumferential direction, as well as the teeth according to FIG 15 are spaced apart.
  • a positive-locking structure 76 is shown, in which the individual tooth flanks seamlessly merge into one another or border one another in the circumferential direction.
  • a corresponding form-fitting structure of a relevant carrier 12 is provided, which is not explicitly shown here.
  • the various form-fit structures according to the Figures 13 and 18 are equally for those in the Figures 1 to 8 shown embodiment as well as for the alternative in the Figures 9 to 12 embodiment shown usable.
  • the alternative embodiment of the fastening device 100 shown also has a carrier 112 with a carrier plate 114 .
  • the side wall 115 in 11 shown as an example, however, not circumferential and closed in the circumferential direction, but the retaining bracket 118 forms, so to speak, a portion of the side wall 115.
  • a fixed area of the Side wall 115 in accordance with the embodiment 11 formed like a segment of a circle.
  • the side wall 115 virtually forms only a partial circle, in this case approximately a semicircle on the underside of the carrier plate 114.
  • the retaining clip 118 is likewise secured by means of a lock 119 in 12 shown closed position fixable.
  • the closure 119 is arranged on a free end of the holding bracket 118 facing away from the pivot axis 130 .
  • the closure 119 is located on the radially outwardly directed outside of the side wall 115 and the retaining bracket 118. It could, however, also be identical to that in 1 embodiment shown, and vice versa.
  • a holder 117 directed radially inward is also formed here, which protrudes from the inside of the side wall 115 .
  • that holder 117 is also approximately semicircular in shape, so that it extends almost or completely over the entire area of the fixed side wall 115 .
  • the form-fitting structure 116 is formed on the inside of the side wall 115 and corresponds to the form-fitting structure 26 of the plate body 22 .
  • the broom 20, as in the Figures 9 and 10 shown can be inserted laterally, that is to say in the radial direction (r), into the receptacle 113 formed by the carrier plate 114, side wall 115 and holder 117. Due to the geometric configuration of side wall 115 and holder 117, plate body 22 can already be at least pre-fixed axially on carrier 112 simply by being inserted radially into open receptacle 113. For a final assembly and for an operationally reliable fixation, it is then only necessary to remove the retaining bracket 118, as in 12 shown to close.
  • the retaining clip 118 is designed without a form-fitting structure and is only used for radially clamping or clamping the disk body 22 . If the plate body 22 fits exactly between the side wall 115 and retaining clip 118 can be clamped radially, it is not necessary to provide a separate holder 127 on retaining clip 118, which, similar to leg 18a of holder 117, encloses outer circumference 24 of disk body 22 opposite.
  • a further bracket 127 is arranged on the axial underside of the retaining bracket 118, approximately centrally between the closure 119 and the pivot axis 130, which, like the bracket 117, protrudes radially inward from the inner wall of the retaining bracket 118, around the outer circumference 24 of the plate body 22 and to secure it axially to the carrier 112.

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  • Brushes (AREA)
EP14196361.1A 2014-12-04 2014-12-04 Tellerbesen und zugehörige Befestigungseinrichtung Active EP3028600B1 (de)

Priority Applications (3)

Application Number Priority Date Filing Date Title
PL14196361T PL3028600T3 (pl) 2014-12-04 2014-12-04 Szczotka talerzowa i związane z nią urządzenie mocujące
DK14196361.1T DK3028600T3 (da) 2014-12-04 2014-12-04 Tallerkenkost og tilhørende fastgøringsanordning
EP14196361.1A EP3028600B1 (de) 2014-12-04 2014-12-04 Tellerbesen und zugehörige Befestigungseinrichtung

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP14196361.1A EP3028600B1 (de) 2014-12-04 2014-12-04 Tellerbesen und zugehörige Befestigungseinrichtung

Publications (2)

Publication Number Publication Date
EP3028600A1 EP3028600A1 (de) 2016-06-08
EP3028600B1 true EP3028600B1 (de) 2022-02-23

Family

ID=52003642

Family Applications (1)

Application Number Title Priority Date Filing Date
EP14196361.1A Active EP3028600B1 (de) 2014-12-04 2014-12-04 Tellerbesen und zugehörige Befestigungseinrichtung

Country Status (3)

Country Link
EP (1) EP3028600B1 (da)
DK (1) DK3028600T3 (da)
PL (1) PL3028600T3 (da)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3935999A1 (de) * 2020-07-06 2022-01-12 Weber Bürstensysteme GmbH Zentralverriegelungssystem für reinigungs-, kehr-, schleif- oder poliersegmente

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH683012A5 (de) 1991-06-05 1993-12-31 A & B Buersten Technik Ag Befestigungseinrichtung zwischen Tellerbesen und drehbarem Triebkopf einer Strassenkehrmaschine.
US5421053A (en) * 1994-04-28 1995-06-06 Aar Corp. Removable brush coupling
DE102005045310B3 (de) * 2005-09-16 2007-03-22 Alfred Kärcher Gmbh & Co. Kg Fahrbare Bodenreinigungsmaschine
DE102012205483B4 (de) * 2012-01-23 2013-08-01 Süddeutsche Bürsten- und Kunststoffabrik Eugen Gutmann GmbH Kupplungsmodul einer Bürstenscheibe oder einem Pad-Treibteller, sowie Bürstenscheibe oder Pad-Treibteller und Kupplungssystem
US9265397B2 (en) * 2012-07-09 2016-02-23 Carlisle Food Service Products, Inc. Adapter plate for a rotary floor scrubbing machine

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Publication number Publication date
DK3028600T3 (da) 2022-05-16
EP3028600A1 (de) 2016-06-08
PL3028600T3 (pl) 2022-06-20

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