EP1945889B1 - Mechanismus zur installation eines bediendrehgriffs für ein türschloss und werkzeug zu seinem ausbau - Google Patents

Mechanismus zur installation eines bediendrehgriffs für ein türschloss und werkzeug zu seinem ausbau Download PDF

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Publication number
EP1945889B1
EP1945889B1 EP20060807751 EP06807751A EP1945889B1 EP 1945889 B1 EP1945889 B1 EP 1945889B1 EP 20060807751 EP20060807751 EP 20060807751 EP 06807751 A EP06807751 A EP 06807751A EP 1945889 B1 EP1945889 B1 EP 1945889B1
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EP
European Patent Office
Prior art keywords
handle
assembly
retractable
sub
axially
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
EP20060807751
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English (en)
French (fr)
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EP1945889A1 (de
Inventor
Richard Houis
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Cyclope
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Cyclope
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Publication date
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Publication of EP1945889A1 publication Critical patent/EP1945889A1/de
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Publication of EP1945889B1 publication Critical patent/EP1945889B1/de
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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B3/00Fastening knobs or handles to lock or latch parts
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B3/00Fastening knobs or handles to lock or latch parts
    • E05B3/06Fastening knobs or handles to lock or latch parts by means arranged in or on the rose or escutcheon
    • E05B3/065Fastening knobs or handles to lock or latch parts by means arranged in or on the rose or escutcheon with spring biasing means for moving the handle over a substantial distance, e.g. to its horizontal position
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S292/00Closure fasteners
    • Y10S292/27Disconnectable handle
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T292/00Closure fasteners
    • Y10T292/57Operators with knobs or handles
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T292/00Closure fasteners
    • Y10T292/82Knobs
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T292/00Closure fasteners
    • Y10T292/85Knob-attaching devices
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T70/00Locks
    • Y10T70/50Special application
    • Y10T70/5611For control and machine elements
    • Y10T70/5757Handle, handwheel or knob
    • Y10T70/5832Lock and handle assembly

Definitions

  • the invention relates to a mechanism for mounting a control handle, and more particularly to a mounting mechanism of a control handle of a lock equipping the door leaf, which is mounted in a rotating manner, in a first sense from a rest position to which the handle is resiliently biased.
  • Such an easy mounting mechanism is intended to be used in the field of hygiene and public health as for example the medical field and especially the hospital environment, the agri-food field, areas where we may need to frequently dismount the door handles for a more complete cleaning.
  • a conventional rotary handle is almost impossible to handle without using the hand, especially when it first causes the actuation of a mechanism such as a lock and then the opening of the opening or flying of the rotates around its vertical axis constituted by hinges.
  • the hands are the main mode of transmission of germs and pathogenic bacteria. Contaminations are transmitted by the hands.
  • One of the solutions is to design actuators that can be operated without using the hand, including using the arm, forearm or wrist so as to create a physical disruption of the transmission of bacteria and viruses called " manu-worn ".
  • a complementary solution is to design an easy assembly and disassembly mechanism so that it can be removed regularly for greater cleaning (sterilization, chemical treatment, etc.).
  • the present invention provides a mounting mechanism of the aforementioned type suitable for facilitating disassembly.
  • each arcuate branch of the groove comprises an engagement limit stop on which the associated pin is in abutment, and a retractable abutment for locking the pin associated in rotation in the arcuate branch.
  • the mechanism cooperates with a door lock, of the moving bolt type which cooperates with a fixed strike carried by the frame of the door, known from the state of the art and including in particular the rod 17 which controls the opening of the door 100 from an angular position of rest to which the handle 150 is recalled elastically, that is to say to control the erasure or retraction of the bolt.
  • the handle 150 and the rod 17 are mounted to rotate about a common horizontal axis of rotation AH.
  • the first assembly E1 is mounted and fixed axially on the control rod 17 of the door 100, for example by tight axial engagement, or alternatively by any other means of assembly and fixing such as by example a diametral pin.
  • the first assembly E1 mainly comprises a section 16, a fixing ring 12, a sealing washer 10 and a return spring 14.
  • the fixing ring 12 is intended to be fixedly mounted on the outer face 101 of the opening of the door 100.
  • the fixing ring 12 constitutes the part of the first assembly E1 which is fixed on the door 100. It is intended to be mounted integral with the opening of the door 100 by means of axial fixing screws 20, or any other equivalent way.
  • the sealing washer 10 is interposed between the opening of the door 100 and the fixing ring 12 to prevent contamination of the handle.
  • the sealing washer 10 generally comprises concentric axial grooves (not shown in detail) so as to receive the annular end edges of the first assembly E1 and the hub 24 of the handle 150.
  • the sealing washer thus ensures a double seal, especially against contaminations, between the opening and the ring and between the first assembly and the hub.
  • the mechanism also comprises an anti-wear plate interposed between the sealing washer 10 and the plane of the opening, made in a suitable material such as a light metal.
  • the main section 16 is intended to be mounted on the end of the control rod 17 coaxial with the axis AH of rotation of the handle 150.
  • the section 16 has for this purpose in its base adjacent to the opening, a hole of square section complementary to that of the rod 17 so as to receive the control rod 17 and ensure their connection in rotation.
  • the section 16 has a substantially frustoconical or cylindrical shape and its proximal base of the opening is rotatably mounted, at least according to a given angular sector, in the fixing ring 12.
  • the section 16 also comprises, at its distal end, radially extending lugs 18, which here are three in number and which are distributed angularly and regularly around the central axis of the section 16.
  • the section 16 comprises an axial groove 19 dug in its base, which opens into the outer wall and whose role will be explained later.
  • the first assembly E1 comprises a return spring 14 which is a resilient wire spring which is angularly interposed between the fixed ring 12 and the main section 16 so as to permanently exert a return torque to resiliently bias the control rod 17 around the axis AH rotating to its angular position of rest which is the bolt out position.
  • a return spring 14 which is a resilient wire spring which is angularly interposed between the fixed ring 12 and the main section 16 so as to permanently exert a return torque to resiliently bias the control rod 17 around the axis AH rotating to its angular position of rest which is the bolt out position.
  • the spring 14 is initially mounted in a state of tension or prestressing by means of a clamping screw 22 which is screwed radially into the fixing ring 12 and whose the free end is received in the axial groove / longitudinal 19 so as to block the rotation of the section 16, and therefore its elastic return action, to facilitate the mounting of the first set E1.
  • the strands of free ends 14a and 14b of the spring 14 are respectively received in the longitudinal groove 19 and in a notch 21 arranged for this purpose in the fixing ring 12 so as to constantly urge the section 16 in rotation with respect to the ring 12, especially after the final extraction of the clamping screw 22.
  • the skilled person can replace the wire spring by any other equivalent spring and providing the same function, such as a leaf spring.
  • the second assembly E2 integrated in the hub 24 of the handle 150, comprises an assembly which is here crimped into the hub 24 and which consists of the elements or components shown in FIG. figure 2 .
  • the hub 24, shown in more detail at figure 2 defines an internal cavity 26, which is open axially in the direction of the door leaf and in which cavity are formed abutments 28 end of travel engagement, retractable stops 30 and guides, or ribs 32 projecting radially. axially oriented and axially orientated angularly distributed evenly within the internal cavity 26.
  • the body of the handle 150 and in particular its hub 24 with the cavity 26 of complex internal profile are advantageously made by plastic molding.
  • the three axial guides 32 are intended to be received axially in complementary external grooves 34 to guide and immobilize in rotation a complementary cylindrical piece 36 which is arranged in the internal cavity 26 of the hub 24 so that, once inserted and nested axially in the inner cavity 26 of the hub, the piece 36 is an integral part of the hub.
  • the handle and its hub are thus made in two parts, in particular to allow the molding of the complex shapes of the cavity 26.
  • the inner part 36, shown outside the hub 24 at the figure 2 is nested in the internal cavity 26 by hot crimping, or it can be fixed by any other equivalent means, for example by screwing, and it constitutes with the hub 24 and its cavity 26, the second assembly E2 of the mechanism adapted to cooperate with the first set E1.
  • the inner part 36 attached in the cavity 26 is an annular cylindrical piece which also has axial grooves or internal grooves emerging at their opposite ends 38 which are three in number and angularly distributed regularly and each of which constitutes a passage or path for axial insertion or extraction of an associated pin 18 of the first set E1.
  • each lug 18 is engaged axially in a slideway 38 by an axial translation to reach an axial position in which the lug 18 is facing. of a first concave contact cylinder arc surface A, as illustrated in FIG. figure 7 .
  • the lug 18 is housed between an engagement limit stop 28 and a retractable stop 30 and facing a second concave cylindrical contact surface B for perform bayonet mounting of the handle, with its second integrated assembly E2, on the opening 100 previously equipped with its E1 assembly.
  • the functional surfaces A and B and the stops 28 and 30 are made by molding in the cavity 26.
  • the slideway 38 and the arcuate contact surfaces of the cylinders A and B define an L-shaped groove 60, illustrated in FIG. figure 7 , with an axial branch formed by the slideway 38, and an arcuate branch 61 defined by the cavity 26, the piece 36 and the arcuate concave cylinder surfaces A and B.
  • the retractable stop 30 has a sufficiently high rigidity to retain the lug in contact with the stop 28.
  • the stop 30 is also profiled and is sufficiently elastically deformable to allow the lug 18 to escape from its angular "imprisonment" between the two stops 28 and 30 when inversely applying a sufficient torque, in the counterclockwise direction, for disassembly of the handle 150.
  • the user responsible for mounting Prior to mounting the handle, the user responsible for mounting installed and fixed the first set E1 on the control rod 17 on the opening of the door 100.
  • the main body intended to receive a forearm of the user is generally longer and the handle 150 is generally heavier than a "conventional" door handle.
  • the return spring 14 thus assists the elastic return mechanism of the lock to ensure an angular position of rest of the handle 150 which is almost constant and in which the bolt is in the extended position.
  • the return spring 14 is stiff enough to apply a torque on the section 16, and therefore on the handle 150, via the lugs 18 and to prevent the sole weight of the handle does not cause actuation of the lock.
  • the second set E2 of the hub 24 of the handle 150 is placed by the user in front of the first set E1 fixed on the opening of the door 100.
  • the assembler axially inserts the lugs 18 in the slideways 38 of the cavity 26 of the hub 24.
  • the user turns the handle 150 clockwise from the opening of the lock so that each pin 18 comes to be housed between two stops 28 and 30 facing the circular surface B.
  • the need to elastically deform the stops 30 gives the editor a tactile sensation of crossing and "locking" of the handle in the mounted position, position from of which the handle is now integral in rotation with the rod 17.
  • a first set E1 shown in FIG. figure 4 , the main feature of which compared to the first embodiment which has just been described, is that the section 16 is composed of two sub-sections or half-sections 44 and 46.
  • the two sub-sections cooperate with each other by means of teeth 45 and 47, distributed angularly in a ring in a regular and complementary manner on each of the radial end faces opposite the two sub-sections 44 and 46 respectively.
  • the pitch of this precision adjustment corresponds to the pitch of complementary teeth or notches 45 and 47.
  • a conventional door handle generally includes a body that extends at rest in a horizontal plane.
  • a hygienic handle should extend substantially upwardly so as to be at the height of the user's arm or forearm.
  • the angular adjustment thus makes it possible to adapt in particular the hygienic handle on the one hand to the different fields of application and on the other hand to the size of the different users to avoid any contortion in use, in particular of the back.
  • the two proximal sub-sections of the base 44 and distal end of free end 46 are immobilized axially relative to each other by means of a screw 42 and a nut (not shown) arranged in the bottom of the housing adapted to receive the control rod 17.
  • the screw 42 is loosened, a new angular position is selected, then the screw 42 is tightened again.
  • the base sub-section 44 housed inside the fixing ring 12 comprises abutment studs 48 forming symmetrical angular supports 48 which are diametrically opposite.
  • the first set E1 here comprises another adjusting screw 50, visible at the figure 6 , which is screwed substantially tangentially into the fastening ring 12 and whose free end 51 bears angular abutment with one of the bearing pads 48 of the base sub-section 44.
  • the adjusting screw 50 is accessible from the outside of the ring and its rotation in one or the other direction by screwing or unscrewing allows adjustment of the rest position (out) of the bolt of the lock.
  • the bolt When screwing the adjusting screw 50, the bolt tends to enter the lock which has the effect of facilitating the closing of the door when the user pulls the handle towards him.
  • the inner part 36 has convex side faces 41 and 43 with low and opposite slopes to improve its maintenance by crimping in the cavity 26 of the hub 24.
  • the distal end sub-section 46 may include a marking. (not shown) for locating a pin 18 and shift it to the desired angle to obtain a set handle "low", that is to say at a small angle relative to the horizontal or a set handle " high ", with a larger angle to the horizontal.
  • the user mounts and locks the handle as for the first embodiment of the invention.
  • the groove L 60 has a different profile.
  • the limit stop 28 and a stop 30 define a housing 52 in which the lug 18 is axially received at the end of the bayonet mounting stroke.
  • a leaf spring 54 then axially urges the lug 18 towards the door 100 so as to press the handle 150 against the door 100 and to hold the handle 150 in its locked position.
  • the spring 54 maintains the lug between its opposite stops 28 and 30.
  • the user axially pulls the handle towards him, downwards, considering the figure 8 , and it then dismounts the mechanism by rotation and translation in the opposite direction of the mounting direction.
  • the spring 54 with the stops 28 and 30 and the housing 52 constitute retractable abutment means equivalent to those of the elastically deformable retractable stopper according to the first embodiment.
  • the spring 54 is placed in the internal cavity 26 so as to flatten the lug 18 in the housing 52 by biasing it axially towards the handle 150.
  • the user To remove the handle 150, the user must then axially push the handle towards the door and unlock the mechanism by rotation and translation in the opposite direction of the direction of mounting.
  • Figures 9 to 15 a second preferred embodiment of a mounting mechanism of a door handle, comprising its combined assembly and disassembly tool.
  • the two sub-sections 44, 46 of the first set E1 are fixed to each other by means of a nut 205 of distal end, axially tapped and which is mounted on a threaded rod 200 integral with the base sub-section 44 so that, once the angular position of the lugs 18 set, it is sufficient to screw the nut 205 on the threaded rod 200.
  • the body of the nut 205 has a slightly frustoconical shape and its outer wall has radial grooves in which are arranged O-rings 201 so as to facilitate the insertion and removal of the first set E1 in the second set E2 and to avoid the radial clearances between the two sets E1 and E2.
  • the nut 205 further comprises, at its base, radial claws 203 for rotating the nut in both directions which are able to cooperate with the mounting tool 240 which has complementary housings 204 so as to tighten the nut 205 with a sufficient tightening torque to prevent any accidental disconnection of the two sub-sections 44 and 46.
  • the mounting mechanism according to the third embodiment also comprises a means for adjusting the rest position of the bolt of the lock, according to another design.
  • the means for adjusting the rest position of the bolt consists of a flat ring, or adjustment ring 210.
  • the ring 210 comprises, on its proximal annular face 211, a stop finger 216 oriented axially towards the ring 12 and the base sub-section 44.
  • the ring comprises, in line with the axial finger 216, a radial tab 212 having on its two opposite faces teeth 214.
  • the adjusting ring 210 is mounted around the base portion 44 so that its stop finger 216 is in contact with the support pad 48 of the base sub-section 44. Thus, the sub-section of base 44 is connected in rotation with the adjusting ring 210.
  • the user adjusts the position of the bolt by imposing a rotation of the adjusting ring 210, driving with him the base sub-section 44.
  • the ring 12 has an angular clearance 250 defined by two stops 252 in which are received the axial finger 216 and the pad 216 to allow the angular displacement of the sub-section 44 and the ring 210 relative to the ring 12 in view of setting.
  • the first set E1 comprises a pair of jaws 208, 209 including a fixed jaw 208 which is formed in the fixing ring 12 and which has teeth 260 complementary to the teeth 214 of the lower face of the radial tab 212, and a movable jaw 209 which consists of a flange having teeth 262 and which is adapted to be screwed on the fixing ring 12 so that, once the flange screwed on the ring 12 by screws 266, the radial tab 212 is firmly locked in rotation between the two jaws 208, 209 clamped axially.
  • the user has the combined tool 240 which includes in particular an imprint 246 of the lugs 18.
  • the user simply turns the tool 240 around the axis AH of the lock.
  • the fitter angularly moves the radial lug 212 of the adjusting ring 210 of the mechanism that he wants to adjust to bring the stop finger 216 into contact with the support block 48 of the sub-section of base 44.
  • the assembler then screws and axially clamps the movable jaw 209 against the fixed jaw 208 to lock the radial tab 212, and therefore the adjustment ring 210, in rotation relative to the ring 12.
  • the user thus blocks in rotation the adjustment ring 210 by blocking at the desired angular position the radial tab 212.
  • the second assembly E2 mounted inside the hub 24 of the handle 150 includes end stops 28 and retractable stops 30 regularly and radially distributed, between which an associated pin 18 is retained in position at the end of the mounting bayonet type.
  • each retractable stop 30 is a retractable cylindrical pin 30 which is able to be positioned angularly facing the axial slide 38 and which is mounted axially movable with respect to the hub 24 of the handle 150.
  • each retractable pin 30 is slidably mounted in a cylinder cylindrical axial hole 231 formed in the hub 24, and in which is arranged the spring 230 mounted axially compressed between the axial bottom 235 of the cylinder 231 and the end transverse face 233. of the pawn 30.
  • the assembler To mount the handle 150 on the door, the assembler axially engages each of the lugs 18 in an associated axial slide 38 ( figure 13A ).
  • Each lug 18 axially urges the transverse end face 229 of the retractable pin 30 by axially pushing the pin 30 into its retracted position by compressing the spring 230 ( Figure 13B ).
  • the user then turns the handle in the direction of the opening of the lock and engages, by rotation, each of the lugs 18 in an associated circular arc branch 61.
  • Each retractable pin 30 then returns to its axial rest position by projecting again into the axial slideway 38 and each pin 18 is thus locked between an end-of-travel stop 28 and a pin 30 which constitutes a retractable stopper 30 ( figure 13C ).
  • the retractable pins 30 are made of magnetic material so as to allow the control of their retraction by means of a magnetic field.
  • the user has the mounting tool 240 comprising magnets 270 which axially attract the retractable pins 30 in the retracted position, in which the spring 230 is compressed, so as to release the pins 18 in rotation in the arcuate branch 61 ( figure 13D ).
  • the mounting tool 240 comprises a cavity 242, intended to receive the outer portion 25 of the hub 24, so as to act on the pins 30 of magnetic material located in the hub 24.
  • each retractable pin 30 then moves axially to its retracted position thus releasing each lug 18 in the arched branch. associated circle 61.
  • the fitter finally turns the handle 150 with the tool 240 in the opposite direction of opening of the lock and can dismount the handle 150.
  • the tool 240 of the mechanism providing several functions reduces the number of tools and the time required for mounting / dismounting the door handle.
  • the present invention as well as the various embodiments described above apply in a simplified manner to fixed type handles equipping closets, some doors etc.
  • the section is attached directly to the closet door opening and the handle is mounted by the same bayonet locking mechanism.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Lock And Its Accessories (AREA)
  • Mechanical Control Devices (AREA)

Claims (13)

  1. Mechanismus zur Installation eines Bediengriffs (150) für ein Schloss, mit dem ein Türblatt (100) ausgestattet ist, und der in eine Richtung drehend montiert ist, und zwar aus einer Ruheposition, in die der Bediengriff (150) elastisch zurückgeholt wird, wobei der Bediengriff (150) eine sich drehende Betätigungsstange (17) für das Schloss besitzt, die axial senkrecht zu der Ebene des Türblattes (100) verlaufen kann, und eine Anordnung, die an dem Bediengriff (150) montiert werden kann, welche die Betätigungsstange (17) aufnimmt, um sie zum Drehen zu bringen, und die eine erste Einheit (E1) aufweist, welche an der Betätigungsstange (17) axial befestigt und verriegelt werden kann, und eine zweite Einheit (E2) aufweist, die in eine Nabe (24) des Bediengriffes (150) integriert ist, wobei die erste Einheit (E1) und die zweite Einheit (E2) mit Hilfe einer Bajonettmontage untereinander verbunden sind,
    - wobei die erste Einheit (E1) einen Abschnitt (16) besitzt, der mit der Betätigungsstange (17) drehend montiert ist, und der mindestens einen Zapfen (18) aufweist, der radial angeordnet ist;
    - wobei die zweite Einheit (E2) für jeden Zapfen (18) eine "L"-förmige Rille (60) besitzt, welche eine axiale Führungsschiene (38) und einen kreisbogenförmigen Schenkel (61) aufweist, so dass eine Axialverschiebung und anschließend eine Drehung den Eingriff des Zapfens (18) in die zugehörige Rille (60) erlauben, um die Bajonettmontage zu ermöglichen,
    - dadurch gekennzeichnet, dass jeder kreisbogenförmige Schenkel (61) der Rille (60) einen Endanschlag für den Eingriff (28) besitzt, auf dem der zugehörige Zapfen (18) aufliegt, und einen versenkbaren Anschlag (30), um die Drehung des zugehörigen Zapfens (18) in dem kreisbogenförmigen Schenkel (61) zu blockieren.
  2. Mechanismus nach Anspruch 1, dadurch gekennzeichnet, dass es sich bei dem versenkbaren Anschlag (30) um einen elastisch verformbaren Anschlag handelt, um den Ausbau des Bediengriffes (150) durch Drehung in die zweite Drehrichtung zu ermöglichen.
  3. Mechanismus nach Anspruch 1, dadurch gekennzeichnet, dass es sich bei dem versenkbaren Anschlag (30) um einen versenkbaren Stift (30) handelt, der winklig gegenüber der axialen Führungsschiene (38) angeordnet ist, und der axial beweglich montiert ist zwischen:
    - einer Ruheposition, in die der Stift (30) elastisch gedrückt wird, und in der der Stift in dem kreisbogenförmigen Schenkel (61) axial vorsteht, um den Anschlag (30) zu bilden; und
    - einer eingezogenen bzw. versenkten Position, die den axialen Eingriff des Zapfens (18) in die axiale Führungsschiene (38) und anschließend in den kreisbogenförmigen Schenkel (61) erlaubt.
  4. Mechanismus nach Anspruch 3, dadurch gekennzeichnet, dass jeder versenkbare Stift (30) aus einem magnetischen Material hergestellt ist, um die Betätigung seiner Versenkung mit Hilfe eines Magnetfeldes zu ermöglichen.
  5. Mechanismus nach Anspruch 4, dadurch gekennzeichnet, dass jeder versenkbare Stift (30) in einem Zylinder (231) der zweiten Einheit (E2) gegenüber einer Feder (230) verschiebbar montiert ist, wobei die Feder zwischen dem axialen Boden (235) des Zylinders (231) und dem versenkbaren Stift (30) komprimiert montiert ist.
  6. Mechanismus nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass die erste Einheit (E1) folgendes aufweist:
    - einen Befestigungsring (12), der an der Tür (100) um den Abschnitt (16) herum befestigt ist;
    - eine Rückstellfeder (14), die zwischen dem Befestigungsring (12) und dem Abschnitt (16) eingeschoben ist, um die sich drehende Betätigungsstange (17) in ihre winklige Ruhestellung elastisch zurückzuholen.
  7. Mechanismus nach Anspruch 6, dadurch gekennzeichnet, dass der Abschnitt (16), der an der Betätigungsstange (17) montiert ist, folgendes aufweist:
    einen Unterabschnitt am Ansatzstück (44);
    einen koaxialen Unterabschnitt am Ende (46);
    wobei diese beiden Unterabschnitte (44, 46) mit Hilfe von zusätzlichen Zähnen (45, 47) zusammenwirken, um die winklige Ausrichtung bzw. Justierung eines Unterabschnittes gegenüber dem anderen Unterabschnitt zu ermöglichen und so die Einstellung bzw. Justierung der Winkelposition des Bediendrehgriffs (150) gegenüber der Betätigungsstange (17) zu erlauben.
  8. Mechanismus nach Anspruch 6, dadurch gekennzeichnet, dass er ein Einstellungsmittel für die Ruhestellung des Riegels des Schlosses besitzt.
  9. Mechanismus nach Anspruch 8, dadurch gekennzeichnet, dass es sich bei dem Einstellungsmittel für den Riegel um eine Stellschraube (50) handelt, deren Hauptteil in den Befestigungsring (12) eingeschraubt ist, und deren freies Ende an einen Auflagekontakt (48) des Abschnittes anstößt, um die Einstellung der Ruhestellung des Riegels des Schlosses zu ermöglichen.
  10. Mechanismus nach Anspruch 7 und 8, dadurch gekennzeichnet, dass das Einstellungsmittel einen Einstellring (210) um den Unterabschnitt am Ansatzstück (44) herum aufweist, der einen Anschlagzapfen (216) besitzt, welcher mit einem Auflagekontakt (48) des Unterabschnittes (44) in Kontakt steht, wobei der Einstellring (210) gegenüber dem Befestigungsring (12) zwischen mehreren Winkelpositionen drehend verstellbar ist, um den Unterabschnitt am Ansatzstück (44) mit dem Einstellring (210) zu drehen, so dass die Ruhestellung des Riegels verstellt werden kann.
  11. Mechanismus nach Anspruch 10, dadurch gekennzeichnet, dass der Einstellring (210) eine radiale, gezackte Lasche (212) besitzt, die mit Hilfe eines Paares gezackter Spannbacken (208, 209) beim Drehen festgehalten wird, wobei ein feststehender Spannbacken (208) in dem Befestigungsring (12) gebildet ist, und ein beweglicher Spannbacken (209) zu einem Flansch (209) gehört, der an dem Befestigungsring (12) festgeschraubt ist.
  12. Mechanismusanordnung für die Installation eines Bediengriffs (150) für ein Schloss, mit dem ein Türblatt (100) ausgestattet ist, nach Anspruch 4, und für ein Montagewerkzeug (240), dadurch gekennzeichnet, dass das Montagewerkzeug (240) eine Aufnahme (242) besitzt, welche den äußeren Bereich (25) der Nabe (24) des Bediengriffs (150) aufnimmt, und dass es Magneten besitzt, die die versenkbaren Stifte (30) axial anziehen können.
  13. Mechanismusanordnung für die Installation und das Montagewerkzeug (240) nach Anspruch 12, dadurch gekennzeichnet, dass das Werkzeug (240) eine Vertiefung (246) aufweist, die mit den Zapfen (18) des Abschnittes (16) zusammenwirkt, um die Winkelposition des Bediengriffs (150) einzustellen.
EP20060807751 2005-11-07 2006-11-06 Mechanismus zur installation eines bediendrehgriffs für ein türschloss und werkzeug zu seinem ausbau Not-in-force EP1945889B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR0553360A FR2893061B1 (fr) 2005-11-07 2005-11-07 Mecanisme de montage d'une poignee tournante de commande d'une serrure de porte
PCT/EP2006/068126 WO2007051853A1 (fr) 2005-11-07 2006-11-06 Mecanisme de montage d'une poignee tournante de commande d'une serrure de porte et son outil de demontage

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EP1945889A1 EP1945889A1 (de) 2008-07-23
EP1945889B1 true EP1945889B1 (de) 2012-01-04

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US (1) US8070194B2 (de)
EP (1) EP1945889B1 (de)
CN (1) CN101300397B (de)
AT (1) ATE540180T1 (de)
FR (1) FR2893061B1 (de)
WO (1) WO2007051853A1 (de)

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Publication number Publication date
US8070194B2 (en) 2011-12-06
ATE540180T1 (de) 2012-01-15
US20080252086A1 (en) 2008-10-16
FR2893061A1 (fr) 2007-05-11
FR2893061B1 (fr) 2009-02-13
EP1945889A1 (de) 2008-07-23
CN101300397B (zh) 2012-10-10
CN101300397A (zh) 2008-11-05
WO2007051853A1 (fr) 2007-05-10

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