EP2980338B1 - Systeme de cylindre de serrure - Google Patents

Systeme de cylindre de serrure Download PDF

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Publication number
EP2980338B1
EP2980338B1 EP15177868.5A EP15177868A EP2980338B1 EP 2980338 B1 EP2980338 B1 EP 2980338B1 EP 15177868 A EP15177868 A EP 15177868A EP 2980338 B1 EP2980338 B1 EP 2980338B1
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EP
European Patent Office
Prior art keywords
locking
lock
actuating
channel
faceplate
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
EP15177868.5A
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German (de)
English (en)
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EP2980338A1 (fr
Inventor
Ejub Kantic
Anatoli Stobbe
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.)
Astra Gesellschaft fuer Asset Management mbH and Co KG
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Astra Gesellschaft fuer Asset Management mbH and Co KG
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Publication of EP2980338A1 publication Critical patent/EP2980338A1/fr
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Publication of EP2980338B1 publication Critical patent/EP2980338B1/fr
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    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B47/00Operating or controlling locks or other fastening devices by electric or magnetic means
    • E05B47/06Controlling mechanically-operated bolts by electro-magnetically-operated detents
    • E05B47/0611Cylinder locks with electromagnetic control
    • E05B47/0615Cylinder locks with electromagnetic control operated by handles, e.g. by knobs
    • 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
    • E05B9/00Lock casings or latch-mechanism casings ; Fastening locks or fasteners or parts thereof to the wing
    • E05B9/08Fastening locks or fasteners or parts thereof, e.g. the casings of latch-bolt locks or cylinder locks to the wing
    • E05B9/084Fastening of lock cylinders, plugs or cores
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B9/00Lock casings or latch-mechanism casings ; Fastening locks or fasteners or parts thereof to the wing
    • E05B9/04Casings of cylinder locks
    • E05B2009/046Cylinder locks operated by knobs or handles

Definitions

  • At least one leading from the forend screw threaded hole to the actuator-receiving opening channel is present and in the channel at least one locking member is movably mounted.
  • the channel is adapted with its locking member to the locking contour of an associated actuating shaft of an actuating knob to move when screwing a forend screw in the forend screw threaded bore the locking member using the forend screw and inserted into the actuator-receiving opening operating shaft by engagement of the locking member in the locking contour to lock the actuating shaft.
  • At least two cooperating locking pins are provided.
  • a first locking pin is arranged in an opening into the forend screw threaded hole first channel portion and a second locking pin in a opening into the actuator-receiving opening second channel section.
  • the first and second channel sections merge into one another and are aligned at an angle to each other.
  • Such lock cylinder arrangements are intended for installation in locks for closing doors, windows or the like.
  • DE 10 2010 018 243 A1 discloses a lock cylinder assembly with an operating knob having an electromechanical coupling for coupling to a lock bit of a lock cylinder.
  • the cam can be manually operated by the operating knob when a coupling element is electromechanically engaged between the cam and an actuating shaft of the actuating knob.
  • the coupling between the actuating knob and the cam is achieved by an axial displacement of a male piece, which is mounted longitudinally displaceable and rotationally fixed to the actuating shaft.
  • Triggering the locking or unlocking by means of the father pieces by means of a transponder from the unsafe side is problematic due to the distance to the electronics-equipped electromechanical operating knob on the opposite side.
  • lock cylinder arrangements are required in which electromechanical operating knobs with integrated electronics and electromechanical coupling are arranged on both sides of the lock cylinder, which are received in the operating knob in a tamper-proof manner.
  • at least one of the operating knobs to be arranged on both sides of the lock cylinder housing would have to be firmly connected to the lock cylinder housing only after the lock cylinder housing had been installed in a lock.
  • WO 2012/104456 A1 shows a lock cylinder assembly with a leading from the forend screw threaded bore to an actuator-receiving opening channel in which a locking member is mounted.
  • a latching element is acted upon by means of a spring in the direction of a groove of the actuating element. The spring pushes the locking element in the locking position.
  • the lock cylinder housing is open in one side to the locking member.
  • the invention is therefore an object of the invention to provide an improved lock cylinder assembly, the two on both sides preferably tamper-evident encapsulated operation knobs, at least one of the operating knobs after installation of the lock cylinder housing in a lock with the Lock cylinder housing can be locked in a simple and reliable manner.
  • the first and second locking pins are coupled together with a sliding joint or a ball joint.
  • the first and second locking pin each have an inclined surface extending obliquely to the respective direction of elongation of the locking pin on its facing end face.
  • the inclined surfaces of the first and second locking pins adjoin one another.
  • Such a sliding joint with plane-parallel inclined surfaces or a ball joint with curved inclined surfaces is easy to manufacture and wear-susceptible. Due to the inclined surfaces, the first locking pin mounted in the first channel section and the second locking pin mounted in the second channel section can cooperate with one another.
  • the locking member is by means of a force acting between the lock cylinder housing and the locking member clamping element under a bias with which the locking member passes from the locked engagement with the associated actuating shaft.
  • a clamping element may be formed in particular as a compression spring which is supported on the one hand on the lock cylinder housing and on the other hand on the locking member.
  • a compression spring between the lock cylinder housing and the second locking pin can be introduced into the bore forming the second channel section.
  • the compression spring may, for example, rest on a widened base of the second locking pin, on which the inclined surface is arranged to form the deflection mechanism, which cooperates with the first locking pin.
  • the adjoining the base and located in the interior of the compression spring portion of the locking pin has a smaller diameter than the base.
  • This section then projects through a hole in the lock cylinder housing which opens into the actuator-receiving opening and has a correspondingly smaller diameter than the second channel section.
  • the adjacent to this bore end face of the second channel portion forms an abutment for the compression spring, which is supported there on the lock cylinder housing.
  • the locking member may be in one piece, eg a curved one, in a curved one Channel slidably guided locking pin.
  • a particularly simple production of the channel sections and an assembly of the locking pins is achieved in that the first and second channel section are arranged at right angles to each other, i. E. that the extension direction of the channel sections are at right angles to each other.
  • This also allows the realization of a simple Umlenkmechanismusses, is displaced by the displacement of the first locking pin when screwing a fixing screw, the second actuating pin by the displaced first locking pin in the actuator-receiving opening into the locking of the actuating shaft.
  • first and second channel sections are at a different angle to each other or at an angle in the range of 70 to 110 °.
  • the first locking pin has a ramp extending obliquely to the extension direction of the locking pin on its end face adjoining the forend screw threaded bore.
  • the forend screw exerts a force on the ramp with a force acting in the longitudinal direction of the first locking pin force component, which moves the locking pin out of the forend screw threaded opening in the direction of the second locking pin.
  • the coupling with the second locking pin acts such that it is displaced by means of a force deflection for locking in the actuator-receiving opening into it.
  • the usual relatively small diameter of a forend screw threaded hole (M5) is surprisingly enough to provide the required for locking at least one operating knob stroke for the locking member.
  • the locking contour of the actuating shaft is preferably formed as a groove which extends at least partially over the circumferential length on the outer circumference of the actuating shaft.
  • the groove preferably extends annularly around the entire circumference, so that the actuating knob can be freely rotated by 360 °, even if the locking member dips into the groove for locking the operating knob on the lock cylinder housing. It is also conceivable that the groove has at least one interruption, so that with the help of the locking member and the rotation angle of the actuating knob can be limited relative to the lock cylinder housing.
  • At least one of the operating knobs preferably has an electromechanical actuator for displacing the coupling element which can be coupled to the cam.
  • an electromechanical actuating knob is preferably designed so that the electromechanics is tamper-evident housed in a knob housing that can not be opened from the outside after installation in the lock cylinder housing and locking.
  • the first locking pin is rotatable (ie rotatable about its longitudinal axis) in the first channel. He has at its adjacent to the forend screw threaded hole end face designed for engagement with an external thread of a forend screw ring gear.
  • the first locking pin on the external thread is thus rotated about its longitudinal axis.
  • This rotational movement is then converted into a displacement movement of the second locking pin of the locking member by the first and second locking pin are coupled together via a gear transmission.
  • the second locking pin for example, be designed as a rack.
  • a "pin” is understood to mean not only a cylindrical structure which extends in a circular cross-section and extends in a direction of longitudinal extension, but also other elongated elements of any desired cross-section (for example triangular, quadrangular, polygonal, dovetail-shaped or the like).
  • FIG. 1 shows a side partial sectional view of a lock cylinder assembly 1, which has a lock cylinder housing 2 for installation in a lock in a conventional manner.
  • an actuating knob 3a, 3b is arranged in each case.
  • the operating knobs 3a, 3b each have an actuating shaft 4, which are received in an actuator-receiving opening in the lock cylinder housing 2.
  • the Betuschistsknäufen 3a, 3b are preferably electromechanical actuators with electronics and an actuator for engaging and disengaging a coupling element on the actuating shaft 4 with a cam 5, which is rotatably mounted on the lock cylinder housing 2. After engagement of the coupling element on the cam 5 of the cam 5 can be rotated by manual or possibly motor assisted rotation of the actuating knob 3a, 3b to open or close the lock using the cam 5.
  • the lock cylinder housing 2 For installation of the lock cylinder housing 2 in a lock, it is necessary that at least one of the operation knobs 3 a, 3 b is removed from the lock cylinder housing 2. Only then can the lock cylinder housing 2 be inserted into a receiving opening in the lock, which is adapted to the contour of the lock cylinder housing 2. To attach the lock cylinder housing 2 to a lock is on the lock cylinder housing. 2 a through the lock cylinder housing 2 leading cuff screw threaded hole 6 is present, into which a screw threadable through the castle forend is screwed.
  • a locking contour 7 is provided on the actuating shafts 4a, 4b.
  • This locking contour 7 can, for example, be designed as a circumferential groove on the circumference of the actuating shaft 4a, 4b.
  • leading holes 8, 9 are introduced to the locking contours.
  • the provided on the left side for the left operating knob 3a bore 8 is formed as a threaded bore with an internal thread to receive a locking screw which is screwed from the bottom into the bore 8 and which dips into the groove formed as a locking contour 7 of the actuating shaft 4a, when the operation knob 3a is fittingly inserted into the lock cylinder housing 2.
  • a channel is provided which extends from the forend screw threaded hole 6 to the actuator-receiving opening in the lock cylinder housing 2 and the locking contour 7b of the actuating shaft 4b.
  • This channel is formed from a second channel section 9 and a first channel section 10.
  • the second channel section 9 substantially corresponds to the bore 8 on the left side and extends from the underside of the lock cylinder housing 2 to the locking contour 7b.
  • the first channel section 10 is angled thereto and extends from the Forend screw threaded hole 6 in the second channel section 9 into it.
  • the first channel portion 10 is aligned in the illustrated embodiment, parallel to the extension direction of the actuating shaft 4b and the longitudinal extension direction of the actuator-receiving opening extending from the end faces to the center of rotation of the Schschschbarts 5 out.
  • the second channel section 9 is aligned at right angles transversely thereto parallel to the extension direction of the nose of the lock bar 5.
  • a locking member is movably received in the channel formed from the first and second channel sections 9, 10.
  • the locking member is formed of a first locking pin 11 which is slidably mounted in the first channel portion 10, and a second locking pin 12 which is slidably received in the longitudinal direction in the second channel portion 9.
  • first and second locking pin 11, 12 each have an inclined surface 13a, 13b, which form a sliding joint. With the help of this sliding joint, the sliding movement or displacement force of the first locking pin 11 is deflected into a sliding movement of the second locking pin 12 oriented perpendicular thereto.
  • the locking pin 11 which dips with its left end face in the forend screw threaded hole 6, is pushed out by screwing a forend screw in the forend screw threaded hole 6 from the forend screw hole 6, then displaced by the sliding joint of the second locking pin 12 after at the top into the lock contour 7b to secure the operation shaft 4b to the lock cylinder 2.
  • a ramp 14 running obliquely to the extension direction of the first locking pin 11 is provided on the end face which adjoins the forend screw threaded hole.
  • a compression spring 15 is received in the second channel portion 9, which surrounds a portion of the cylindrical locking pin 12, which has a smaller cross section than the base provided with the inclined surface 13b.
  • the compression spring 15 is supported at one end on the socket 16 provided with the inclined surface 13b.
  • the second channel portion 9 has a bore 17 with a smaller diameter than the diameter of the base 16. This creates a support base on the lock cylinder housing 2, on which the compression spring 15 is supported to form an abutment.
  • a drill protection element 18 is inserted in front of the respective bore 8 and the second passage section 9 to prevent inadmissible drilling of the lock cylinder and for this preferably consists of a harder material than the lock cylinder housing 2.
  • FIG. 2 leaves a side partial sectional view of the lock cylinder assembly 1 from FIG. 1 recognize in the locked state. It is clear that now a forend screw 18 is screwed into the forend screw threaded hole 6. As a result, the first locking pin 11 is led out of the forend screw thread opening and displaced into the second channel section 9. With the help of the sliding joint formed by the inclined surfaces 13a, 13b, the second locking pin 12 is thus up in the actuator-receiving opening of the lock cylinder housing 2 and displaced into the locking contour 7b of the actuating shaft 4b of the actuating knob 3b. In order for a stop for the actuating shaft 4b is formed, which prevents withdrawal of the actuating knob 3b from the lock cylinder housing 2.
  • the actuating knob 3b is mounted axially fixed to the lock cylinder housing 2 with its actuating shaft 4b.
  • the actuating shaft 4b with the help of the locking contour 7b and the second locking pin 12 can also be locked against rotation on the lock cylinder housing 2. It is advantageous, however, if the actuating shaft 4b fixed by the second locking pin 12 in the axial direction, but is rotatably mounted about its axis of rotation.
  • the second locking pin 12 is slidably received in the locking state shown in the at least partially annular circumferential groove of the actuating shaft 4b, which forms the locking contour 7b.
  • FIG. 3 leaves a longitudinal sectional view through the lock cylinder assembly 1 FIGS. 1 and 2 in the area of the lock 5 recognize.
  • the cam 5 has a non-rotatable coupling of an actuating knob 3b formed with the cam 5 coupling element 19 in the form of a nut piece.
  • This coupling element 19 may, for example, be a star-shaped depression into which a coupling element 20 of the actuating shaft 4b of the actuating knob 3b engages.
  • This coupling element 20 is formed as adapted to the coupling element 19 star-shaped father piece.
  • actuating shaft 4b is introduced with the coupling element 20 in the actuator-receiving opening 21 in the lock cylinder housing 2.
  • the actuating knob 3b has electromechanical components to push in on demand with the aid of an actuator (not visible), the coupling element 20 of the actuating shaft 4b in the coupling element 19 (nut piece) of the Schloisbarts 5.
  • an actuator not visible
  • the coupling element 20 of the actuating shaft 4b in the coupling element 19 (nut piece) of the Schloisbarts 5.
  • the operating knob 3b is rotatably coupled to the cam 5, so that by turning the operating knob 3b by hand, a lock can be opened.
  • the operating knobs 3a, 3b preferably have a radio electronics, which is designed to control the engagement and disengagement of the coupling element 20 by means of RFID transponders.
  • each of the operating knobs 3a, 3b is assigned different access authorizations on the two sides of the lock cylinder 2.
  • the authorization can be controlled from which side access is possible by a door secured with the lock cylinder arrangement 1.
  • the entry into a protected area can only be assigned to a limited number of persons or their RFID transponder keys.
  • the exit from such a secured area can be permitted to a larger number of persons who have previously gained access to this secured area under the control of an authorized person.
  • electromechanical actuation knobs 3a, 3b on both sides of the lock cylinder housing 2 can also be on the access control Going beyond logging the go direction done.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Lock And Its Accessories (AREA)

Claims (8)

  1. Arrangement cylindre de fermeture (1), comprenant
    - un boîtier de cylindre de fermeture (2) qui comporte un panneton de fermeture (5) monté pivotant sur le boîtier de cylindre de fermeture (2), un perçage taraudé à vis emboutie (6) qui passe transversalement à travers le boîtier de cylindre de fermeture (2) et qui est destiné à accueillir une vis emboutie (18) ainsi qu'une ouverture d'accueil d'organe d'actionnement (21), laquelle s'étend des côtés frontaux diamétralement opposés du boîtier de cylindre de fermeture (2) en direction du panneton de fermeture (5), et
    - comprenant deux poignées d'actionnement (3a, 3b), qui comportent respectivement un axe d'actionnement (4a, 4b), adapté pour être inséré dans l'ouverture d'accueil d'organe d'actionnement (21) du boîtier de cylindre de fermeture (2) et doté d'un élément d'accouplement (20) servant à l'accouplement au panneton de fermeture (5), les axes d'actionnement (4a, 4b) comportant un profil de verrouillage (7a, 7b) configuré pour verrouiller l'axe d'actionnement (4a, 4b) au niveau du boîtier de cylindre de fermeture (2), au moins un canal (9, 10) qui mène du perçage taraudé à vis emboutie (6) à l'ouverture d'accueil d'organe d'actionnement (21) se trouvant dans le boîtier de cylindre de fermeture (2) et un organe de verrouillage (11, 12) étant logé dans le canal (9, 10), et en ce que le canal (9, 10) est adapté avec son organe de verrouillage (11, 12) au profil de verrouillage (7a, 7b) d'un axe d'actionnement (4a, 4b) associé d'une poignée d'actionnement (3a, 3b) afin de déplacer l'organe de verrouillage (11, 12) à l'aide d'une vis emboutie (18) lors du vissage de la vis emboutie (18) dans le perçage taraudé à vis emboutie (6) et verrouiller un axe d'actionnement (4a, 4b) introduit dans l'ouverture d'accueil d'organe d'actionnement (21) par mise en prise de l'organe de verrouillage (11, 12) dans le profil de verrouillage (7a, 7b) de l'axe d'actionnement (4a, 4b),
    et l'organe d'actionnement comportant au moins deux goupilles de verrouillage (11, 12) coopérantes, une première goupille de verrouillage (11) étant disposée dans une première portion de canal (10) qui débouche dans le perçage taraudé à vis emboutie (6) et une deuxième goupille de verrouillage (12) dans une deuxième portion de canal (9) du canal qui débouche dans l'ouverture d'accueil d'organe d'actionnement (21), et les première et deuxième portions de canal (9, 10) fusionnant l'une dans l'autre et étant orientées de manière angulaire l'une par rapport à l'autre, caractérisé en ce que les première et deuxième goupilles de verrouillage (11, 12) comportent respectivement une surface inclinée (13a, 13b) qui s'étend en biais par rapport au sens de projection longitudinal de la goupille de verrouillage (11, 12) respective, les surfaces inclinées (13a, 13b) de la première et de la deuxième goupille de verrouillage (11, 12) étant adjacentes l'une de l'autre et formant un joint coulissant ou pivotant, et en ce que l'organe de verrouillage (11, 12) se trouve sous une précontrainte au moyen d'un élément de contrainte agissant entre le boîtier de cylindre de fermeture (2) et l'organe de verrouillage (11, 12), notamment un ressort de compression (15), afin d'amener l'organe de verrouillage (11, 12) hors de la prise verrouillée avec l'axe d'actionnement (4a, 4b) associé.
  2. Arrangement cylindre de fermeture (1) selon la revendication 1, caractérisé en ce que la première et la deuxième portion de canal (9, 10) s'étendent perpendiculairement l'une à l'autre.
  3. Arrangement cylindre de fermeture (1) selon l'une des revendications 1 ou 2, caractérisé en ce que la première goupille de verrouillage (11) comporte au niveau de son côté frontal adjacent au perçage taraudé à vis emboutie (6) une rampe (14) qui s'étend en biais par rapport au sens de l'extension de la première goupille de verrouillage (11).
  4. Arrangement cylindre de fermeture (1) selon l'une des revendications précédentes, caractérisé en ce que le profil de verrouillage (7a, 7b) de l'axe d'actionnement (4a, 4b) est réalisé sous la forme d'une rainure qui s'étend sur le pourtour extérieur de l'axe d'actionnement (4a, 4b) au moins partiellement sur la longueur du pourtour.
  5. Arrangement cylindre de fermeture (1) selon la revendication 4, caractérisé en ce que la rainure comporte au moins une interruption et en ce que la rainure s'étant en forme d'anneau autour de la totalité du pourtour.
  6. Arrangement cylindre de fermeture (1) selon l'une des revendications précédentes, caractérisé en ce qu'un canal (10, 9) qui mène du perçage taraudé à vis emboutie (6) à l'ouverture d'accueil d'organe d'actionnement (21) est respectivement présent pour les deux axes d'actionnement (4a, 4b), avec au moins un organe de verrouillage (11, 12) monté mobile dans le canal (10, 9).
  7. Arrangement cylindre de fermeture (1) selon l'une des revendications précédentes, caractérisé en ce qu'au moins une poignée d'actionnement (3a, 3b) comporte un actionneur électromécanique destiné à déplacer l'élément d'accouplement (20) qui peut être accouplé au panneton de fermeture (5).
  8. Arrangement cylindre de fermeture (1), comprenant
    - un boîtier de cylindre de fermeture (2) qui comporte un panneton de fermeture (5) monté pivotant sur le boîtier de cylindre de fermeture (2), un perçage taraudé à vis emboutie (6) qui passe transversalement à travers le boîtier de cylindre de fermeture (2) et qui est destiné à accueillir une vis emboutie (18) ainsi qu'une ouverture d'accueil d'organe d'actionnement (21), laquelle s'étend des côtés frontaux diamétralement opposés du boîtier de cylindre de fermeture (2) en direction du panneton de fermeture (5), et
    - comprenant deux poignées d'actionnement (3a, 3b), qui comportent respectivement un axe d'actionnement (4a, 4b), adapté pour être inséré dans l'ouverture d'accueil d'organe d'actionnement (21) du boîtier de cylindre de fermeture (2) et doté d'un élément d'accouplement (20) servant à l'accouplement au panneton de fermeture (5), les axes d'actionnement (4a, 4b) comportant un profil de verrouillage (7a, 7b) configuré pour verrouiller l'axe d'actionnement (4a, 4b) au niveau du boîtier de cylindre de fermeture (2), au moins un canal (9, 10) qui mène du perçage taraudé à vis emboutie (6) à l'ouverture d'accueil d'organe d'actionnement (21) se trouvant dans le boîtier de cylindre de fermeture (2) et un organe de verrouillage (11, 12) étant logé dans le canal (9, 10), et en ce que le canal (9, 10) est adapté avec son organe de verrouillage (11, 12) au profil de verrouillage (7a, 7b) d'un axe d'actionnement (4a, 4b) associé d'une poignée d'actionnement (3a, 3b) afin de déplacer l'organe de verrouillage (11, 12) à l'aide d'une vis emboutie (18) lors du vissage de la vis emboutie (18) dans le perçage taraudé à vis emboutie (6) et verrouiller un axe d'actionnement (4a, 4b) introduit dans l'ouverture d'accueil d'organe d'actionnement (21) par mise en prise de l'organe de verrouillage (11, 12) dans le profil de verrouillage (7a, 7b) de l'axe d'actionnement (4a, 4b),
    et l'organe d'actionnement comportant au moins deux goupilles de verrouillage (11, 12) coopérantes, une première goupille de verrouillage (11) étant disposée dans une première portion de canal (10) qui débouche dans le perçage taraudé à vis emboutie (6) et une deuxième goupille de verrouillage (12) dans une deuxième portion de canal (9) du canal qui débouche dans l'ouverture d'accueil d'organe d'actionnement (21), et les première et deuxième portions de canal (9, 10) fusionnant l'une dans l'autre et étant orientées de manière angulaire l'une par rapport à l'autre, caractérisé en ce que la première goupille de verrouillage (11) et montée rotative dans la première portion de canal (10) et comporte au niveau de sa surface frontale adjacente au perçage taraudé à vis emboutie (6) une couronne dentée configurée pour venir en prise dans un filet mâle d'une vis emboutie (18), et en ce que les première et deuxième goupilles de verrouillage (11, 12) sont accouplées l'une à l'autre par le biais d'une transmission à roues dentées.
EP15177868.5A 2014-08-01 2015-07-22 Systeme de cylindre de serrure Active EP2980338B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102014110970.8A DE102014110970B3 (de) 2014-08-01 2014-08-01 Schließzylinderanordnung

Publications (2)

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EP2980338A1 EP2980338A1 (fr) 2016-02-03
EP2980338B1 true EP2980338B1 (fr) 2018-09-12

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DE (1) DE102014110970B3 (fr)

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19940246A1 (de) * 1999-08-25 2001-03-08 Winkhaus Fa August Schließeinrichtung
DE102004011449A1 (de) * 2004-03-09 2005-09-22 Hewi Heinrich Wilke Gmbh Schlosselement
DE102005023130A1 (de) * 2005-05-19 2006-11-23 Hewi Heinrich Wilke Gmbh Schlosselement
DE102010018243B4 (de) * 2010-04-23 2012-03-22 ASTRA Gesellschaft für Asset Management mbH & Co. KG Schließzylinderanordnung
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