EP2924206B1 - Serrure de porte ou de fenêtre - Google Patents

Serrure de porte ou de fenêtre Download PDF

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Publication number
EP2924206B1
EP2924206B1 EP15160049.1A EP15160049A EP2924206B1 EP 2924206 B1 EP2924206 B1 EP 2924206B1 EP 15160049 A EP15160049 A EP 15160049A EP 2924206 B1 EP2924206 B1 EP 2924206B1
Authority
EP
European Patent Office
Prior art keywords
coupling element
lock
slide
outer follower
follower
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
EP15160049.1A
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German (de)
English (en)
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EP2924206A1 (fr
Inventor
Gerhard Gonser
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.)
Assa Abloy Sicherheitstechnik GmbH
Original Assignee
Assa Abloy Sicherheitstechnik 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.)
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Publication date
Application filed by Assa Abloy Sicherheitstechnik GmbH filed Critical Assa Abloy Sicherheitstechnik GmbH
Priority to PL15160049T priority Critical patent/PL2924206T3/pl
Publication of EP2924206A1 publication Critical patent/EP2924206A1/fr
Application granted granted Critical
Publication of EP2924206B1 publication Critical patent/EP2924206B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • 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
    • E05B47/0676Controlling mechanically-operated bolts by electro-magnetically-operated detents by disconnecting the handle
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/0065Operating modes; Transformable to different operating modes
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/16Locks or fastenings with special structural characteristics with the handles on opposite sides moving independently
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B65/00Locks or fastenings for special use
    • E05B65/10Locks or fastenings for special use for panic or emergency doors
    • E05B65/1086Locks with panic function, e.g. allowing opening from the inside without a ley even when locked from the outside
    • 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
    • E05B47/0001Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof
    • E05B47/0012Operating or controlling locks or other fastening devices by electric or magnetic means with electric actuators; Constructional features thereof with rotary electromotors

Definitions

  • the invention relates to a lock for a door or a window according to the preamble of claim 1.
  • the EP 1689958 B1 describes a lock with a three-part coaxial nut, which has a Mittenuss and two outer nuts. To select the actuation side of the lock, one of the two outer nuts is screwed to the center nut.
  • the disadvantage is that the screw is already carried out during assembly of the castle.
  • the object of the invention is to provide a lock that does not have this disadvantage.
  • the outer nut which is not connected to the transmission element, is connected in free-running.
  • first outer nut with the first coupling element and the second outer nut with the second coupling element are coupled for movement via a positive connection, preferably that via a positive connection, a transmission of a rotational movement of the first outer nut and / or the second outer nut on the first coupling element and / or the second coupling element takes place.
  • the first outer nut may have a driver, which engages positively in a recess of the first coupling element, and / or the second outer nut may have a driver which engages positively in a recess of the second coupling element.
  • the first coupling element may have a driver, which engages positively in a recess of the first outer nut, and / or the second coupling element may comprise a driver which engages positively in a recess of the second outer nut.
  • first coupling element has a rack portion cooperating with a toothing of the first outer nut or is designed as a toothed rack and / or the second coupling element has a toothing of the second outer nut has cooperating rack section or is designed as a rack.
  • the first coupling element as well as the second coupling element can be pivotably mounted in the lock housing.
  • the transmission element can be designed as a center nut.
  • the multi-part nut is designed as a two-piece nut.
  • first coupling element and the second coupling element are mounted translationally displaceable in the lock housing.
  • the transmission element can be arranged between the first coupling element and the second coupling element.
  • the lock housing has a housing bottom and a housing cover and the housing bottom and / or the housing cover has or have guides or receptacles for supporting the first coupling element and / or the second coupling element.
  • the first coupling element and the second coupling element can be displaceably mounted parallel to one another on the housing bottom and / or on the housing cover.
  • the first coupling element may be formed as a slide and / or the second coupling element may be formed as a slide.
  • the transmission element, the first coupling element and the second coupling element are designed as parallel slide by the transmission element as a bolt slide, the first coupling element as a arranged on a first side of the bolt slide outer slide and the second coupling element are formed as a arranged on a second side of the bolt slide outer slide.
  • the lock can be formed as a panic lock by the transmission element is firmly connected either with the first coupling element or the second coupling element, in particular by pinning, screwing or latching.
  • the lock housing may have through openings in order to connect either the first coupling element and / or the second coupling element to the transmission element from outside the closed lock housing.
  • the cooperating with the nut coupling elements are mounted translationally displaceable in the lock housing and the rotational movement of an outer nut translates the associated with this outer nut coupling element in the lock housing translationally.
  • first coupling element and / or the second coupling element is acted upon in each case by a spring arranged in the lock housing in the direction of a starting position or are.
  • this spring can be made a provision of the unactuated handle in its neutral position.
  • the selection device may be selectively coupled and / or decoupled via a coupling device to realize an access function of an authorized person by the coupling device for coupling the transmission element with the first coupling element and / or the second coupling element connects and for decoupling the transmission element of the first coupling element and / or released from the second coupling element.
  • the coupling device may comprise a pawl movably mounted on the transmission element, which connects the first coupling element and / or the second coupling element firmly to the transmission element at least in one direction of movement, preferably in the unlocking direction.
  • the pawl for coupling engages behind an integrally formed on the first coupling element and / or the second coupling element edge, or that the pawl engages for coupling in a molded-on the first coupling element and / or the second coupling element groove.
  • the coupling device may include an electrical actuator that actuates the pawl for coupling and / or decoupling.
  • the actor can do it For example, be a coupled to a transmission electric motor.
  • the pawl can be actuated by a recorded in the lock housing lock cylinder for coupling and / or decoupling.
  • the pawl may be formed as a two-armed lever which is rotatably mounted on the transmission element.
  • the multi-part nut fulfills the function of a one-piece nut by firmly connecting the first coupling element and the second coupling element to the gear element.
  • the transmission element may cooperate with a bolt sensor for detecting a latch operation.
  • the bolt sensor may be formed, for example, as a light barrier.
  • the first coupling element may cooperate with a first sensor for detecting an actuation of the first handle and the second coupling element may cooperate with a second sensor for detecting an actuation of the second handle.
  • the sensors can be designed, for example, as light barriers.
  • an evaluation device is arranged in the lock housing, which is connected to the bolt sensor and / or the first sensor and / or the second sensor for evaluating the sensor signals.
  • the first coupling element and the second coupling element can cooperate with the same outer sensor for detecting an actuation of a handle.
  • the evaluation device is connected to detect a coupling with the coupling device and outputs an output signal in accordance with an actuation of a coupled handle while simultaneously pending a coupling and the bolt sensor signal.
  • the Fig. 1 to 7 show an exclusively mechanically actuated door lock 1, which is intended as a door lock for so-called panic doors.
  • the Door lock 1 is prepared for the use of sensors arranged on a circuit board as well as electrical actuators.
  • Door locks for panic doors are designed so that they allow in the event of danger leaving a closed by the panic door space by manual operation of a handle from the inside of the room, even if the door lock 1 is locked.
  • the door lock 1 has a face plate 2, which is provided for fastening the door lock 1 on the front side of the panic door (see Fig. 1 and 2 ).
  • the door lock 1 can be used both for the wing of a single-leaf door and for the active leaf of a two-leaf door.
  • the door lock 1 comprises a lock mechanism with a bolt 3, a latch 4, an auxiliary latch 5, a lock nut 6 and a lock cylinder 7.
  • the latch 3, the latch 4 and the auxiliary latch 5 can be moved between a pre-closed position and a back-closed position become. In their pre-closed positions, the bolt 3, the latch 4 and the auxiliary latch 5 project out of the forend 2 from an opening assigned to them. In their back-locked positions of the bolt 3, the latch 4 and the auxiliary latch 5 are retracted into the lock case.
  • the door lock 1 is designed as a self-locking lock. This means that the bolt 1 automatically extends into a vor resolvede, the door lock 1 locking position when the door has reached its closed position on the stationary door frame or the inactive leaf. The automatic extension of the bolt is controlled by the auxiliary latch 5 and the latch 4.
  • the lock nut 6 comprises a first outer nut 6a and a second outer nut 6b.
  • a handle connected At the outer nuts 6a and 6b is in each case a handle connected, with the respective outer nut 6a, 6b can be rotated manually.
  • a handle connected to it only one of the two outer nuts 6a, 6b has a handle connected to it.
  • a handle for manual operation is provided only on one side of the wing.
  • the handle is then provided on the side facing the interior of the wing.
  • a non-rotatable knob is present.
  • the bolt 3 can be actuated by a bolt slide 8, wherein the bolt 3 is coupled via a sliding gear with the bolt slide 8.
  • the bolt slide 8 has a Z-shaped link 8k, in which a pin 3z rigidly connected to the bolt 3 slides.
  • the locking slide 8 is designed to be displaceable parallel to the longitudinal axis of the forend 2. Since the actuation direction of the bolt 3 is perpendicular to the longitudinal axes of the end portions of the link 8k, the bolt 3 is no longer displaceable when the pin 3z of the bolt 3 in a the two end portions of the gate 8k is arranged. As soon as the pin 3z enters the oblique center section of the gate 8k by displacing the bolt slide 8, the bolt 3 is retracted or extended into the forend 2 until it again enters an end section of the gate 8k and is thus locked.
  • the bolt slide 8 can be actuated both by the lock cylinder 7 and by the lock nut 6.
  • the lock cylinder 7 engages with its center portion of the door lock 1 and with its end portions opposing receptacles in the door leaves of the panic door. Trained as a one-armed lever core 7k of the Locking cylinder 7 is pivotable by key engagement about the longitudinal axis of the lock cylinder 7, wherein the end portion of the core 7k cooperates with the locking slide 8, such as in Fig. 6 is recognizable. As soon as the core 7k is rotated by inserting a suitable key into the lock cylinder 7 (in FIG Fig.
  • the bolt slide 8 is raised, so that the pin 3z of the bolt 3 enters the oblique center portion of the link 8k, the bolt 3 is retracted into the forend 2 until the pin 3z enters the other end portion of the link 8k and thus the bolt 3 is locked in the retracted position in the forend 2.
  • the outer nuts 6a, 6b of the lock nut 6 cooperate with slide-shaped coupling elements, wherein the first outer nut 6a cooperates with a first coupling element 9a and the second outer nut 6b with a second coupling element 9b.
  • the coupling elements 9a, 9b are by compression springs 9f (see Fig. 3 to 6 ), which are supported on a housing of the door lock 1, pressed into an upper end position.
  • the coupling elements 9a, 9b like the locking slide 8, are designed to be displaceable parallel to the longitudinal axis of the forend 2 and have, as in FIG Fig. 3a shown, a coupling recess 9k, in which engages a arranged on the rear outer circumference of the outer nut 6a, 6b driver 6m.
  • a transmission element is arranged, which is designed as an intermediate slide 10, which cooperates via a pivotable coupling member 11 with the locking slide 8.
  • the Intermediate slide 10 is selectively rigidly connectable to the first coupling element 9a or to the second coupling element 9b.
  • connecting screws 12 may be provided which engage in the intermediate slide 10 by cross threaded holes.
  • the length of the threaded portion of the connecting bolts 12 is dimensioned so that the threaded portion is longer than the strength of a coupling element and smaller than the strength of a coupling element plus the thickness of the intermediate slide 10.
  • the first outer nut 6a cooperating with the first outer coupling element 9a is rigidly connected to the intermediate slide 10.
  • the outer nut 6a is actuated, the latch 3 is retracted independently of the closed state of the lock cylinder 7 in the forend 2, so that the panic door can be opened.
  • the door lock 1 can then be unlocked at any time by actuating the handle connected to the outer nut 6a.
  • This side of the wing is usually associated with the inside of the building facing side of the wing. From the opposite side, ie from the outside of the building, the door lock 1 can be locked only with the help of the lock cylinder. This means that z. B.
  • the door lock can be unlocked at any time from the inside of the building by pressing the handle. From the outside of the building, the door lock 1 can only be unlocked by authorized persons who are in possession of a corresponding key.
  • the inside of the building is also called a panic page.
  • the Fig. 7a and 7b show a variant of in Fig. 1 to 6 described door lock 1, in which a modified intermediate slide 10 is inserted.
  • a pawl 10s is rotatably mounted, which is on and auskoppelbar.
  • the pawl 10s is brought into the disengaged state by a return spring 10sf.
  • the return spring 10sf is formed as a compression spring and arranged between pawl 10s and the intermediate slide 10.
  • the pawl 10s connects in the coupled state, the first coupling element 9a and / or the second coupling element 9b at least in a direction of movement, preferably in the unlocking, firmly with the intermediate slide 10.
  • the pawl 10s engages behind for coupling to the first coupling element 9a and / or the second Clutch 9b trained undercut 9h. It can also be provided that the pawl 10s engages for coupling into a groove formed on the first coupling element 9a and / or the second coupling element 9b. It is thus possible to realize an access function of an authorized person by connecting the coupling device for coupling the intermediate slide 10 with the first coupling element 9a and / or the second coupling element 9b and for decoupling the intermediate slide 10 of the first coupling element 9a and / or of the second coupling element 9b triggers. Similarly, the panic door in case of danger, for example, in the event of a fire, automatically unlocked.
  • the pawl 10s is actuated by a Sch thoroughlyzylinderzug 7z.
  • the Sch thoroughlyzylinderyak 7z is operated via the lock cylinder.
  • the lock cylinder is decoupled in this embodiment of the bolt, so that upon rotation of the lock cylinder, the bolt is not locked or unlocked. Rotation of the lock cylinder causes rotation of the lock cylinder train.
  • the Sch thoroughlyzylinderzug 7z is as a formed two-armed lever which is mounted in the housing of the door opener 1.
  • a bearing axis 7zl located around which the Sch thoroughlyzylinderzug 7z is pivotable.
  • the one lever arm of the Sch thoroughlyzylinderzugs 7z has a switching cam 7zs on with a straight portion which merges into a circular arc, the other lever arm has at its end portion a switching lug 7zn, which rests in the coupled state on the pawl 10s.
  • the 8 and 9 show a second embodiment of the door lock according to the invention, which on the in Fig. 1 to 7 builds up the described principle of action.
  • the door lock 1 has optical sensors L1 to L7 and Hall sensors H1 and H2, which are arranged on a circuit board 16.
  • an electronic evaluation device 17 is further arranged, which generates a specific output signal by a logical evaluation of at least two sensor signals and stores this particular output signal and / or outputs via an interface.
  • the structure of the board 16 is described below in Figs. 13a and 13b.
  • the optical sensors L1 to L7 are designed as bifurcated light barriers, which are switchable by a slide switch.
  • the slide switch When the slide switch is immersed in the photocell, the photocell is actuated, i. the optical sensor is active. If the slide switch is not immersed in the light barrier, the light barrier is inoperative, i. the optical sensor is inactive.
  • An auxiliary case sensor L6 cooperates with a switch 5s arranged on the auxiliary latch 5.
  • a door contact sensor L7 cooperates with a switch 15s arranged on the door contact 15.
  • the electronic evaluation device 17 generates an output signal "Türschssabotage" when at the same time the signal of the auxiliary case sensor L6 is present and the signal of the door contact sensor L7 is not present or if at the same time the signal of the auxiliary case sensor L6 is not present and the signal of the door contact sensor L7 is present.
  • the electronic evaluation device 17 generates an output signal "door open” when at the same time the signal of the auxiliary case sensor L6 is present and the signal of the door contact sensor L7 is present.
  • the electronic evaluation device 17 generates an output signal "door closed” when at the same time the signal of the auxiliary case sensor L6 is not present and the signal of the door contact sensor L7 is not present.
  • the door lock 1 has a first slide sensor L3, a second slide sensor L4 and a third slide sensor L5, which can be switched by a switch slide 8s arranged on the latch slide 8.
  • the slider sensors L3 to L5 are arranged in the direction of movement of the slide valve 8s one behind the other and spaced from each other on the circuit board 16.
  • the slide switch 8s is designed to co-operate with a maximum of two of the three slide sensors L3 to L5. Since the bolt 3 is motion-coupled to the bolt slide 8 by a link gear, describe the signals of the slide sensors L3 to L5, the position of the bolt. 3
  • the electronic evaluation device 17 generates an output signal "latch retracted" when at the same time the signal of the first slide sensor L3 is present and the signals of the second slide sensor L4 and the third slide sensor L5 not present.
  • the electronic evaluation device 17 generates an output signal "latch extended" when at the same time the signal of the third slide sensor L5 is present and the signals of the first slide sensor L3 and the second slide sensor L4 are not present.
  • the electronic evaluation device 17 generates an output signal "bar partially extended” when at the same time the signal of the first slide sensor L3 and the third slide sensor L5 is not present and the signal of the second slide sensor L4 is present.
  • the door lock 1 on a Nusssensor L1 with the lock nut 6 for detecting a movement of a in Fig. 7 and 8th Not shown and designed as an external handle handle cooperates.
  • a switching slide 9s cooperates, which is connected to the second coupling element 9b.
  • the second outer nut 6b is coupled to the second coupling element 9b, is moved linearly upon rotation of the second outer nut 6b of the slide switch 9s.
  • the door lock 1 further comprises a bolt sensor L2, which with the lock nut 6 for detecting a movement of a in Fig. 7 and 8th not shown and designed as an internal handle handle cooperates.
  • a bolt sensor L2 acts a slide switch 9as, which is connected to the first coupling element 9a.
  • the first outer nut 6a is motion-coupled to the first coupling element 9a, 9a is moved linearly upon rotation of the first outer nut 6a of the slide switch.
  • the electronic evaluation device 17 generates an output signal "panic function" when at the same time a signal of the Nusssensors L1 and a signal of the bolt sensor L2 and the signal of the third slide sensor L5 is not present.
  • the electronic evaluation device 17 generates an output signal "outside handle unauthorized actuated" when at the same time a signal of the nut sensor L1 is present and a signal of the bolt sensor L2 is not present.
  • the electronic evaluation device 17 generates an output signal "cylinder contact", if at the same time a signal of the Nusssensors L1 and a signal of the bolt sensor L2 is not present and a signal of the third slide sensor L5 is present.
  • the door lock 1 has a coupling device for coupling the two handles, which comprises an electric control motor 13, a helical gear 13s and a clutch lever 13k.
  • the output shaft of the electric control motor 13 is rotationally rigidly connected to the helical gear 13s, which acts on a first leg of the bell crank 13k designed as an angle lever.
  • a second leg of the clutch lever 13k cooperates with a pawl 10s, which is rotatably mounted on the intermediate slide 10.
  • the pawl 10s connects in the coupled state, the first coupling element 9a and / or the second coupling element 9b at least in a direction of movement, preferably in the unlocking, firmly with the intermediate slide 10.
  • the pawl 10s engages behind for coupling to the first coupling element 9a and / or the second Clutch 9b trained undercut 9h. It can also be provided that the pawl 10s engages for coupling into a groove formed on the first coupling element 9a and / or the second coupling element 9b. It is thus possible to realize an access function of an authorized person by the trained as an electric motor coupling device 13 for coupling connects the intermediate slide 10 with the first coupling element 9a and / or the second coupling element 9b and for decoupling the intermediate slide 10 of the first coupling element 9a and / or released from the second coupling element 9b.
  • an access control for example a reading unit for reading out an identification chip
  • the coupling device designed as an electric motor 13 is then activated, which actuates the pawl 10s. Because of the clutch is the lock can then be unlocked manually from both sides of the wing by actuating the respective handle. Independently of the coupling device, the lock can be unlocked manually by actuating the handle from the inside of the building. In addition, the door lock can always be unlocked by pressing the lock cylinder with the appropriate key. This means that from the outside of the building, the door lock 1 can only be unlocked by authorized persons, who are in possession of a corresponding key or a corresponding identification chip, by actuation of the lock cylinder or by actuation of the external handle.
  • a first position sensor H1 and a second position sensor H2 are arranged in the region of the helical gear 13s.
  • the position sensors H1 and H2 are designed as Hall sensors, which are connected by a arranged on the output of the helical gear 13s permanent magnet.
  • the position sensor H1, H2 is active or actuated when the permanent magnet is above the position sensor H1, H2.
  • the position sensor H1, H2 is inactive or inoperative when the permanent magnet is not above the position sensor H1, H2.
  • the electronic evaluation device 17 generates an output signal "outer handle coupled" if at the same time a signal of the first position sensor H1 is not present and a signal of the second position sensor H2 is present.
  • the electronic evaluation device 17 is connected to the electric control motor 13 and has a timer, which is set by the output signal "external handle coupled". At the end of the timer, the controlled electrical control motor 13 for decoupling the two connected by the coupling device handles.
  • the 10 and 11 show a third embodiment of the door lock. 1
  • the door lock 1 is like the one in 8 and 9 described door lock, with the difference that the door lock 1 is designed as a motor lock and instead of the board 16, a board 16 'is provided. Also, this third embodiment of the door lock 1 is designed as a self-locking door lock.
  • the unlocking can be done in different ways.
  • the lock is unlocked on the one hand by actuation of the drive motor 14. Independently of the drive motor 14, the lock can be unlocked manually at any time by actuating the handle from the inside of the building. In addition, the door lock can always be unlocked by pressing the lock cylinder with the appropriate key.
  • An electric drive motor 14 is provided which actuates the latch 3 via a cam disc 18.
  • the cam disk 18 has at its end face a cylindrical contact piece 18 s, which in a rotation of the cam disc 18 by about 180 ° in the clockwise direction from its in Fig. 9 and 10 illustrated starting position the bolt slide 8 lifts and thereby pulls the bolt 3 in the forend 2. After this rotation, the switch piece 18s is in an upper position, and the door can be opened.
  • the position of the switching piece 18s is transmitted via a two-armed cam lever 19, wherein the cam lever 19 at its cam lever 18 facing away from the lever arm has a switching piece 18s, which cooperates with a motor position sensor L8.
  • the engine position sensor L8 is electrically connected to the electronic evaluation device 17.
  • a bolt sensor L2 ' acts like the one in Fig. 7 and 8th described bolt sensor L2 with the lock nut 6 for detecting a movement of a in Fig. 9 and 10 not shown and designed as an internal handle handle together.
  • the movement is transmitted via a pivot lever 20 mounted in the bearing of the cam lever 19.
  • the pivot lever 20 has at its end remote from the bearing on a switching piece 20s, which cooperates with the bolt sensor L2 '.

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  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Lock And Its Accessories (AREA)

Claims (14)

  1. Serrure (1), plus particulièrement serrure encastrée pour un battant d'une porte ou d'une fenêtre dans un bâtiment, avec un boîtier de serrure, dans lequel un mécanisme de serrure est disposé, qui comprend :
    - un dispositif de verrouillage qui comprend un verrou (3) et/ou un pêne pour le verrouillage et/ou le déverrouillage,
    - un fouillot en plusieurs parties, qui est logé de manière rotative dans le boîtier de serrure, pour l'actionnement du mécanisme de serrure et/ou du dispositif de verrouillage pour le verrouillage ou le déverrouillage, et comprend un premier fouillot externe (6a) et un deuxième fouillot externe (6b), dans lequel, au premier fouillot externe (6a) peut être raccordée une première poignée et au deuxième fouillot externe (6b) peut être raccordée une deuxième poignée, pour la rotation du fouillot externe (6a ; 6b) correspondant et
    - un dispositif de sélection pour transmettre, au choix, un mouvement de rotation du premier fouillot externe (6a) ou du deuxième fouillot externe (6b) au dispositif de verrouillage pour le verrouillage et/ou le déverrouillage de la porte ou de la fenêtre,
    dans laquelle, il est prévu
    que le dispositif de sélection comprend un premier élément de couplage (9a) couplé en mouvement avec le premier fouillot externe (6a), qui est logé et/ou guidé de manière mobile dans le boîtier de serrure, et un deuxième élément de couplage (9b) couplé en mouvement avec le deuxième fouillot externe (6b), qui est logé et/ou guidé de manière mobile dans le boîtier de serrure, et un élément de transmission (10) interagissant avec le dispositif de verrouillage et l'élément de transmission (10) peut être relié, pour la sélection, au choix avec le premier élément de couplage (9a) ou avec le deuxième élément de couplage (9b),
    caractérisée en ce que
    le premier élément de couplage (9a) et le deuxième élément de couplage (9b) sont logés de manière coulissante en translation dans le boîtier de serrure.
  2. Serrure selon la revendication 1,
    caractérisée en ce que
    le fouillot externe (6a ; 6b), qui n'est pas relié avec l'élément de transmission (10) est branché en roue libre.
  3. Serrure selon la revendication 1 ou 2,
    caractérisée en ce que
    le premier fouillot externe (6a) est couplé en mouvement avec le premier élément de couplage (9a) et le deuxième fouillot externe (6b) est couplé en mouvement avec le deuxième élément de couplage (9b) par l'intermédiaire d'une liaison par complémentarité de forme, de préférence en ce que, par l'intermédiaire d'une liaison par complémentarité de forme, a lieu une transmission d'un mouvement de rotation du premier fouillot externe (6a) au premier élément de couplage (9a) et du deuxième fouillot externe (6b) au deuxième élément de couplage (9b).
  4. Serrure selon la revendication 3,
    caractérisée en ce que
    le premier fouillot externe (6a) comprend un taquet d'entraînement (6k) qui s'emboîte par complémentarité de forme dans un évidement (9k) du premier élément de couplage (9a) et le deuxième fouillot externe (6b) comprend un taquet d'entraînement (6k) qui s'emboîte par complémentarité de forme dans un évidement (9k) du deuxième élément de couplage (9b).
  5. Serrure selon l'une des revendications 3 ou 4,
    caractérisée en ce que
    le premier élément de couplage (9a) comprend un taquet d'entraînement qui s'emboîte par complémentarité de forme dans un évidement du premier fouillot externe (6a) et en ce que le deuxième élément de couplage (9b) comprend un taquet d'entraînement qui s'emboîte par complémentarité de forme dans un évidement du deuxième fouillot externe (6b).
  6. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    le fouillot en plusieurs parties est conçu comme un fouillot en deux parties.
  7. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    l'élément de transmission (10) est disposé entre le premier élément de couplage (9a) et le deuxième élément de couplage (9b).
  8. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    le boîtier de serrure comprend un fond de boîtier et un couvercle de boîtier et le fond de boîtier et/ou le couvercle de boîtier comprend ou comprennent des guidages ou des logements pour le logement du premier élément de couplage (9a) et/ou du deuxième élément de couplage (9b).
  9. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    le premier élément de couplage (9a) et le deuxième élément de couplage (9b) sont logés de manière coulissante de façon à s'étendre de manière parallèle entre elles sur le fond du boîtier et/ou sur le couvercle du boîtier.
  10. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    le premier élément de couplage (9a) est conçu comme un coulisseau et
    le deuxième élément de couplage (9b) est conçu comme un coulisseau.
  11. Serrure selon la revendication 10,
    caractérisée en ce que
    l'élément de transmission (10), le premier élément de couplage (9a) et le deuxième élément de couplage (9b) sont conçus comme des coulisseaux parallèles, grâce au fait que l'élément de transmission (10) est conçu comme un coulisseau de verrou, le premier élément de couplage (9a) est conçu comme un coulisseau externe disposé sur un premier côté du coulisseau de verrou et le deuxième élément de couplage (9b) est conçu comme un coulisseau externe disposé sur un deuxième côté du coulisseau de verrou.
  12. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    la serrure peut être conçue comme une serrure antipanique, grâce au fait que l'élément de transmission (10) peut être relié fermement soit avec le premier élément de couplage (9a) soit avec le deuxième élément de couplage (9b), plus particulièrement par goupillage, vissage ou encliquetage.
  13. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    le boîtier de serrure comprend des ouvertures de passage afin de relier fermement le premier élément de couplage (9a) et/ou le deuxième élément de couplage (9b) avec l'élément de transmission (10) de l'extérieur du boîtier de serrure fermé.
  14. Serrure selon l'une des revendications précédentes,
    caractérisée en ce que
    les éléments de couplage (9a ; 9b) interagissant avec le fouillot sont logés de manière coulissante en translation dans le boîtier de serrure et le mouvement de rotation d'un fouillot externe (6a ; 6b) fait coulisser en translation l'élément de couplage (9a ; 9b) relié avec ce fouillot externe (6a ; 6b) dans le boîtier de serrure.
EP15160049.1A 2014-03-25 2015-03-20 Serrure de porte ou de fenêtre Active EP2924206B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL15160049T PL2924206T3 (pl) 2014-03-25 2015-03-20 Zamek do drzwi lub okna

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102014104144.5A DE102014104144A1 (de) 2014-03-25 2014-03-25 Schloss für eine Tür oder ein Fenster

Publications (2)

Publication Number Publication Date
EP2924206A1 EP2924206A1 (fr) 2015-09-30
EP2924206B1 true EP2924206B1 (fr) 2019-04-24

Family

ID=52686264

Family Applications (1)

Application Number Title Priority Date Filing Date
EP15160049.1A Active EP2924206B1 (fr) 2014-03-25 2015-03-20 Serrure de porte ou de fenêtre

Country Status (4)

Country Link
EP (1) EP2924206B1 (fr)
DE (1) DE102014104144A1 (fr)
ES (1) ES2735699T3 (fr)
PL (1) PL2924206T3 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102017120314A1 (de) * 2017-09-04 2019-03-07 Maco Technologie Gmbh Motorschloss

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2747422B1 (fr) * 1996-04-12 1999-07-02 Ferco Int Usine Ferrures Serrure adaptee a etre encastree dans l'epaisseur d'un ouvrant
DE19707762C1 (de) * 1997-02-26 1998-04-16 Fuss Fritz Gmbh & Co Sicherheitsschloß
FI115479B (fi) 2003-10-30 2005-05-13 Abloy Oy Ohjattavalla painiketoiminnolla varustettu ovenlukko
DE102006060448A1 (de) * 2006-12-19 2008-06-26 Dorma Gmbh + Co. Kg Selbstverriegelndes Panikschloss
DE102012010786A1 (de) * 2012-06-01 2013-12-05 Assa Abloy Sicherheitstechnik Gmbh Panikschloss mit Selektionseinrichtung im Schlosskasten

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
ES2735699T3 (es) 2019-12-20
PL2924206T3 (pl) 2019-09-30
EP2924206A1 (fr) 2015-09-30
DE102014104144A1 (de) 2015-10-01

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