EP2963210B1 - Serrure à battant passif - Google Patents

Serrure à battant passif Download PDF

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Publication number
EP2963210B1
EP2963210B1 EP15174645.0A EP15174645A EP2963210B1 EP 2963210 B1 EP2963210 B1 EP 2963210B1 EP 15174645 A EP15174645 A EP 15174645A EP 2963210 B1 EP2963210 B1 EP 2963210B1
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EP
European Patent Office
Prior art keywords
door opener
latch
lock
door
components
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
EP15174645.0A
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German (de)
English (en)
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EP2963210A1 (fr
Inventor
Andreas Sauter
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 PL15174645T priority Critical patent/PL2963210T3/pl
Publication of EP2963210A1 publication Critical patent/EP2963210A1/fr
Application granted granted Critical
Publication of EP2963210B1 publication Critical patent/EP2963210B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C7/00Fastening devices specially adapted for two wings
    • E05C7/04Fastening devices specially adapted for two wings for wings which abut when closed
    • 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
    • E05B47/0046Electric or magnetic means in the striker or on the frame; Operating or controlling the striker plate
    • E05B47/0047Striker rotating about an axis parallel to the wing edge
    • 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
    • E05B2047/0084Key or electric means; Emergency release
    • E05B2047/0086Emergency release, e.g. key or electromagnet
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/04Locks or fastenings with special structural characteristics for alternative use on the right-hand or left-hand side of wings
    • 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

Definitions

  • the invention relates to a passive wing lock, which has the features of the preamble of claim 1.
  • the door opener assembly has a door opener housing to be mounted in the door frame, in which all components of the door opener are arranged.
  • the door opener assembly is in the DE 10 2006 038 610 B4 used in the lock housing of a passive wing lock, in a separate space that is designed as a recess in the lock mechanism.
  • a mechanical unlocking device is provided, which with the locking bar connection device is coupled in the lock housing.
  • the mechanical unlocker engages in the door opener housing in order to mechanically unlock the electrical locking device of the door opener.
  • the mechanical unlocker engages the armature of the electromagnet of the electrical locking device.
  • a disadvantage of this prior art is that the door opener unit in the passive wing lock requires a relatively large amount of installation space and designs with a lock housing with small dimensions cannot be implemented.
  • the invention is therefore based on the object of creating a passive wing lock of the type mentioned at the outset, which is of compact construction and also allows designs of lock cases with small dimensions.
  • Alternative a) provides that at least the following door opener components are arranged in the lock housing: the door opener latch, the electrical actuator, the locking member on the output side and, if present, the door opener gear interposed between the door opener latch and the locking member on the output side.
  • no separate door opener housing should be provided in or on which all these door opener components are mounted.
  • the door opener components can be used individually or in groups in appropriate open spaces in the Lock housing, preferably be arranged in recesses in the lock gear. Versions are possible in which one or more of the door opener components are accommodated in separate housings and these housings are arranged in the lock housing. In contrast to the prior art, however, not all door release components are stored together in one door release housing.
  • the alternative b) provides for the distributed arrangement of the door opener components in the lock housing in the sense of the same inventive concept. It provides that at least the following door opener components: the door opener latch, the electrical actuator, the locking member on the output side and, if present, the door opener gear interposed between the door opener latch and the locking member on the output side are distributed in the lock housing in such a way that one between at least two of the door opener components Component of the lock mechanism or at least part of a component of the lock mechanism engages.
  • Both alternatives a) and b) are used together in order to obtain an optimal arrangement of the door release components relative to the components of the lock mechanism in the lock housing.
  • versions are particularly advantageous which provide that the door opener latch is designed as a swivel latch and has a swivel bearing which is in the lock housing directly, that is to say without the interposition of one of the swivel bearing and / or the door opener latch and / or the electric locking device and / or other door opener components receiving another housing is arranged.
  • the locking member is designed as a locking lever and has a pivot bearing which is located directly in the lock housing, ie. H. is arranged without the interposition of a further housing receiving the pivot bearing and / or the locking lever and / or the electrical locking device and / or further door opener components.
  • a transmission slide or a transmission pivot lever is connected between the locking member and the door opener latch, which is designed as the door opener gear or as part of the door opener gear.
  • the transmission slide or the transmission pivot lever has a sliding bearing or a pivot bearing which is located directly in the lock housing, ie. H. is arranged without interposing a further housing receiving the transmission slide or the transmission lever and / or the electrical locking device and / or the door opener latch and / or further door opener components.
  • the lock mechanism has a lifting device which, in the closed position of the door, interacts with a lock latch or a bolt of an assigned active leaf lock. It is essential that the lifting device or at least part of the lifting device is arranged between two door opener components.
  • the two door opener components are designed on the one hand as the door opener latch and on the other hand as the electrical actuator and / or the locking member on the output side and / or the door opener gear.
  • FIGS. 1a to 4 show embodiments of a passive wing lock according to the invention with advantageous configurations and features that in the combination of features shown can be used.
  • a combination of individual or a part of features shown in the figures with additional features not explicitly shown in the figures is also provided.
  • Embodiments are also provided which do not have all of the features shown in the figures in their entirety, but only contain a selection of the features shown, without leaving the scope of the invention, which is defined by the claims.
  • the passive wing lock 1 shown has a lock housing 2, in which a lock mechanism and a door opener device 5 integrated in the lock mechanism are arranged.
  • the lock mechanism comprises a lock gear with a slide 4 which can be actuated via a nut 3.
  • the lock mechanism also has a bolt lifting device 6 for a bolt of an associated active leaf lock.
  • the lock mechanism has a connecting device for an upper locking bar 7 and a connecting device for a lower locking bar 8.
  • a significant difference from conventional passive wing locks that are equipped with an electric door opener in the exemplary embodiment shown is that the components of the door opener device are stored independently in the lock housing 2. There is no separate door opener housing that accommodates all door opener components. In the case shown, the components of the door opener device are interleaved with the components of the lock mechanism in the lock housing. Components of the lock mechanism intervene between components of the door opening device.
  • the door opener device 5 has a pivotally mounted door opener latch 51 and an electrical locking device 52 as the door opener components.
  • the electrical locking device 52 interacts with the door opener latch 51 via intermediate gear elements.
  • the electrical locking device comprises an electrical coil 52s and an armature 52a, which cooperates with the coil 52s as an output-side blocking element.
  • the armature 52a is in the illustrated case in the manner of a flat single-armed lever pivotably mounted about a pivot axis 52aa and is arranged on the top of the coil 52s.
  • a transmission slide 53 is arranged between the armature 52a and the door opener latch 51. It interacts directly with the door opener latch 51 on one side and directly with the armature 52a on its other side.
  • the transfer slide 53 has on its side facing the armature 52a a stop edge 53k which interacts directly with the armature 52a.
  • the door opener components are arranged in the lock housing 2 such that the door opener latch 51 is arranged adjacent to the faceplate and the pivot axis 51aa of the door opener latch 51 is aligned parallel to the faceplate.
  • the electrical locking device 52 is arranged near the face-side rear side of the lock housing 2.
  • the transfer slide 53 is arranged adjacent to the door opener latch 51. Its direction of movement extends between the faceplate and the faceplate rear side of the lock housing 2, d. H. in the transverse direction of the lock housing 2 and thereby transverse to the direction of displacement of the slide 4.
  • the door opener latch 51 is designed as a swivel latch. It has a pivotably mounted door opener fall body 51k, on which a screw-on piece 51a is screwed. The works via the screw-on piece Door opener latch 51 together with a lock latch, not shown, of an assigned active wing lock.
  • an unlocking slide 54 is displaceably mounted parallel to the electrical locking device 52, i. H. the unlocking slide 54 is displaceable parallel to the coil 52s and to the armature 52a.
  • the unlocking slide 54 forms part of the lock mechanism. It forms a mechanical unlocker in order to actuate the armature 52a to mechanically release the electric door opener.
  • the unlocking slide 54 has an actuating head 54b on the side facing the armature 52.
  • the unlocking slide 54 is motionally coupled to the slide 4 of the lock gear.
  • the unlocking slide 54 is designed as a section of the slide 4 and / or at least as a part that is fixed in terms of movement with the slide.
  • the door opening device 5 can be switched into a blocking position and into a release position.
  • the door opener latch 51 In the locked position, the door opener latch 51 is locked and the locking latch of the active-leaf lock engaging in the closed position of the door is retightened in order to lock the active leaf in the closed position.
  • the door release latch In the release position, the door release latch is unlocked so that the lock latch is released when the active leaf is pushed open.
  • the switching between the blocking position and the fig order can be carried out by electrical control, in that the electrical blocking device is switched electrically.
  • the electric door release device is unlocked by electrically switching the electric locking device 52.
  • the electrical can be activated Door release device possible by mechanical unlocking. This is done by mechanically actuating the unlocking slide 54, which in the exemplary embodiment of FIG Figures 1 to 4 acts on the armature 52a via its actuating head 54b.
  • the armature 52a is in its position pivoted away from the coil 52s, as shown in FIG Fig. 3s is shown.
  • the transfer slide 53 arranged between the armature 52a and the door opener latch 51 abuts with its stop edge 53k on the armature 52a pivoted upwards. This is in Fig. 4s shown.
  • the transfer slide 53 forms a stop for the door opener latch 51 with its cuff-side edge.
  • the door opener latch 51 is locked in this position against swiveling in the release position.
  • the armature 52a is pivoted into its release position resting on the spool 52s by moving the unlocking slide 54. The position is in the Figures 3 and 4 shown.
  • the armature 52a is thus outside the displacement path of the transmission slide 53, so that the door opener latch 51 is activated for pivoting. If in this position the door opener latch 51 is acted upon by the lock latch in the opening direction, it pivots and releases the lock latch. Swiveling the door opener latch is possible because the transfer slide 53 is not blocked by the armature 52a of the electrical locking device. When the door opener latch 51 is pivoted, the transmission slide 53 dodges.
  • the electrical unlocking takes place by changing the energization of the electrical locking device 52.
  • the armature 52a is pivoted into its position on the coil 52s by changing the current supply.
  • the armature 52a thus comes out of the movement path of the transmission slide 53. If the door opener latch 51 is now acted upon by the lock latch to open the door, the door opener latch 51 pivots, since the transmission slide 53 is now no longer blocked by the armature 52a and can escape.
  • This release position is the same as for the mechanical release and in the Figures 3 and 4 shown.
  • the mechanical unlocker 54 acts on the output-side locking element of the electrical locking device, specifically on the armature 52a, which interacts with the coil 52s of the electromagnet.
  • this embodiment would have to be modified according to the invention, for example in such a way that the mechanical unlocker 54 interacts with the transmission slide 53 of the door opener gear, which acts as a change.
  • the mechanical unlocker 54 will then move the transfer slide 53 out of the engaged position of the door opener latch 51, for. B. by moving the transmission slide 53 parallel to the faceplate until it comes out of the operative position of the door opener latch 51.
  • the transfer slide 53 can be moved in the same sliding bearing in which the transfer slide 53 is slidably mounted even when it cooperates with the armature 52a and the door opener latch 51.
  • the Transfer slide 53 a separate warehouse, for. B. has a second sliding bearing or a pivot bearing, in which the transmission slide 53 is displaced when actuated by the mechanical unlocker 54. It can also be provided that the mechanical unlocking device 54 acts on this additional bearing.
  • the mechanical unlocker 54 cooperates with the door opener latch 51 and the door opener latch 51 is shifted for mechanical unlocking.
  • This shift can take place in the pivot bearing of the door opener latch 51, in which the door opener latch 51 can also be displaced when it interacts with the lock latch and the transmission slide 53.
  • the door opener latch 51 can also be a separate bearing, e.g. B. have a sliding bearing, in which the door opener latch 51 is displaced in cooperation with the mechanical unlocker 54 for mechanical unlocking.
  • the door opener latch 51 can have a separate, movably mounted section which interacts with the mechanical unlocker 54 for mechanical unlocking and is displaced relative to the rest of the door opener latch 51.
  • Passive wing lock shown is a specifically executed modification of the passive wing lock Figures 1 to 4 .
  • the lock mechanism of the passive wing lock is the same as for the lock in the Figures 1 to 4 .
  • Only the door opener device 5 differs in structure from the door opener device in the passive wing lock in Figures 1 to 4 .
  • the door opener has the execution of the Figures 5 to 12 the same components, namely a door opener latch 51, an electrical locking device 52 with coil 52s and armature 52a and a transmission slide 53, as well as an unlocking slide 54 which can be actuated via the lock nut 3.
  • an intermediate member 55 is also provided, which is connected between the transmission slide 53 and the armature 52a and can be actuated by the unlocking slide 54.
  • the unlocking slide 54 only interacts directly with the intermediate link 55.
  • the intermediate link has an elongated hole 55o, in which a driver head 4z of the unlocking slide 54 engages.
  • the elongated hole 55o is aligned transversely to the faceplate and thus along the sliding direction of the transfer slide 53.
  • the door release device can be switched in the locked position and the release position.
  • the locked position is in the Figures 7 and 8 shown.
  • the armature 52a is switched in its blocking position pivoted away from the spool 52s, and the intermediate member 55 is arranged between the transmission slide 53 and the armature 52a such that the intermediate member 55, with its side facing the armature 52a, on a locking edge formed on the armature 52a 52ak is in abutment and its side facing the transfer slide 53 abuts against a stop edge 53k formed on the transfer slide 53.
  • the transfer slide 53 is blocked against displacement in a direction away from the faceplate via the intermediate member 55.
  • the intermediate member 55 is in turn blocked by the locking edge 52ak formed on the armature 52a in this sliding direction via the armature.
  • the door opener latch 51 is in this position on the face plate of the transmission slide 53 and is in their Figures 7 and 8 Lock position shown locked against pivoting in the release direction.
  • the door opener device is shown in its release position, namely in its first release position, which is done by electrical switching of the electrical locking device.
  • the armature 52a Due to the electrical release circuit of the locking device 52, the armature 52a is in its Figures 7 and 8 shown upward pivoted locking position pivoted down to the coil 52s. It lies parallel to the lock case level.
  • the intermediate member 55 is out of contact with the locking edge 52ak of the armature 52a.
  • This position in Figure 10 is reached based on the locked position in Figure 8 by pivoting the armature 52a out of the stop position with the blocking edge 52ak into its pivoting position resting on the spool 52s.
  • the intermediate member 55 is then in a direction away from the faceplate in Figure 8 displaceable by the action of the transfer slide 53.
  • the sliding movement of the intermediate member 55 takes place by the action of the transfer slide 53 when the door opener latch 51 is out of its in Figure 8 shown locking position is pivoted into its release position by the lock latch when opening the active wing.
  • Figure 10 shows this position after the release pivoting of the door opener latch 51.
  • the mechanical unlocker 54 interacts with the transmission slide 53 interposed between the door opener latch 51 and the output-side armature 52a of the electrical locking device 52 via the intermediate member 55.
  • the mechanical unlocker 54 acts to mechanically release the electric door opener on the intermediate member 55 and not on the armature 52a.
  • the door opener components are arranged directly in the lock housing, without a separate door opener housing being provided, which accommodates the door opener components: door opener latch, electrical actuator, output-side locking member and door opener gear in its entirety or only a few of them. Furthermore, the mentioned door opener components are distributed in the lock housing in such a way that components of the lock mechanism engage between at least some of the door opener components.
  • the lock mechanism comprises a slide 54 which can be actuated by the nut 3 in order to actuate the bolt lifting device 6 and the connecting devices for the upper locking rod 7 and the lower locking rods 8.
  • the slide 54 engages as a component of the lock mechanism via the intermediate member 55 and thus acts as a mechanical unlocking device 54.
  • a passive wing lock which is largely constructed the same as that of the Figures 5 to 12 .
  • the passive wing lock is also equipped with a door opener device 5.
  • the door opener device 5 points in accordance with the door opener device in FIGS Figures 5 to 12 a pivotable door opener latch 51 and an electrical locking device 52 with a pivotably mounted armature 52a.
  • a transmission slide 53 is also connected between the door opener latch 51 and the armature 52a.
  • no intermediate member 55 is connected between the transmission slide 53 and the armature 52a, which is actuated via the mechanical unlocking device 54. Please refer to 13a .
  • the mechanical unlocker 54 acts on the transmission slide 53 in order to displace it relative to the door opener latch 51.
  • the locked position of the door opener latch 51 is in the Figures 13a and b shown.
  • the transmission slide 53 is in contact with the door opener latch 51.
  • the electrical locking device 52 is switched to the locked position, it is like Fig. 13b shows the armature 52a pivoted away from the spool 52s and blocks the transfer slide 53 to perform a compensatory movement in the transverse direction. Because of this blocking of the transmission slide 53, the door opener latch 51, which is in abutment with it, is blocked in this position against a pivoting movement. This is in the Figures 13a and b shown.
  • the mechanical activation of the door opener latch 51 is in the Figures 14a shown to d.
  • the transmission slide 53 is shifted by means of the unlocking slide 54, specifically into a position outside the stop position with the door opener latch 51
  • Figures 14a and b show the shifted position of the transmission member 53 compared to the starting position shown in Figure 13a is shown.
  • the transmission slide 53 engages in a freewheel recess 51f of the door opener latch 51 in such a way that the door opener latch 51 can pivot freely from the transmission slide 53 when the lock latch acts on the door opener latch 51 to open the door.
  • the door opener latch pivots into the release position, which in the Figures 14c and d is shown.
  • the mechanical unlocking device 54 can be designed as a section of the slide 4 of the lock gear.
  • the mechanical unlocker can also be designed as a separate part, preferably as a part that cooperates with the slide 4 in the gearbox.
  • the mechanical unlocking device 54 can also be used as a non-slider, e.g. B. be designed as a lever or as another gear element.
  • the mechanical unlocker 54 does not have to interact with a gear element of the lock gear.
  • the mechanical unlocking device 54 can be designed as a separate component independently of the lock gear.
  • the actuation of the mechanical unlocker 54 takes place in the illustrated embodiments via the actuating device of the lock mechanism, preferably the nut 3.
  • versions are also possible in which a separate actuating device is provided for actuating the mechanical unlocking device 54.
  • the actuating device of the mechanical unlocking device 54 is preferably designed such that it can be actuated from the inside of the door in which the lock is mounted. In any case, this applies to applications of the double-leaf door in escape and rescue routes.

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

Claims (8)

  1. Serrure de battant passif destiné à être monté sur un battant passif d'une porte à deux battants,
    avec un boîtier de serrure (2) conçu comme un caisson de serrure ou un châssis de serrure, dans lequel sont logés un mécanisme de serrure et un dispositif de gâche électrique (5),
    - dans laquelle le mécanisme de serrure comprend :
    • un dispositif de raccordement de tige de verrou supérieur, auquel peut être raccordé ou est raccordé une tige de verrou supérieure (7) et/ou un dispositif de raccordement de tige de verrou inférieur, auquel peut être raccordé ou est raccordé une tige de verrou inférieure (8),
    • un dispositif de raccordement d'actionnement, auquel peut être raccordé ou est raccordé un dispositif d'actionnement (3) qui comprend un actionneur manuel ou motorisé, pour l'actionnement du mécanisme de serrure,
    - dans laquelle le dispositif de gâche électrique (5) comprend :
    • un pêne de gâche (51) qui est logé de manière mobile dans le boîtier de serrure (2) de façon à ce qu'il interagisse, dans la position de fermeture de la porte, avec un pêne demi-tour ou un pêne dormant d'une serrure de battant actif correspondante,
    • un dispositif de blocage électrique (52), qui comprend un actionneur électrique (52s) et un organe de blocage côté sortie (52a), qui interagit avec le pêne de gâche (51) directement ou par l'intermédiaire d'un engrenage de gâche (53) intermédiaire de façon à ce que le pêne de gâche (51) puisse être commuté dans une position de blocage et dans une position de libération,
    - dans laquelle le pêne de gâche (51) interagit avec le dispositif de blocage électrique (52) de façon à ce que le pêne de gâche (51) puisse être commuté électrique, par modification de l'alimentation en courant du dispositif de blocage électrique (52), de sa position de blocage vers sa position de libération,
    dans laquelle
    a) au moins les composants de gâche suivants : le pêne de gâche (51), l'actionneur électrique (25s), l'organe de blocage côté sortie (25a) et, si elle existe, l'engrenage de gâche (53) intercalée entre le pêne de gâche (51) et l'organe de blocage côté sortie (52a), sont disposés dans le boîtier de serrure (2) et aucun boîtier de gâche séparé n'est prévu, dans ou au niveau duquel sont logés tous ces composants de gâche et
    b) au moins les composants de gâche suivants : le pêne de gâche (51), l'actionneur électrique (52s), l'organe de blocage côté sortie (52a) et, si elle existe, l'engrenage de gâche (53) intercalée entre le pêne de gâche (51) et l'organe de blocage côté sortie (52a), sont répartis dans le boîtier de serrure (2) de façon à ce que, entre au moins deux composants de gâche, s'emboîte au moins un composant du mécanisme de serrure ou au moins une partie d'un composant du mécanisme de serrure,
    caractérisée en ce que
    le mécanisme de serrure comprend un dispositif de levage (6) qui interagit, dans la position de fermeture de la porte, avec un pêne demi-tour ou un pêne dormant d'une serrure de battant actif correspondante,
    et le dispositif de levage (6) ou au moins une partie du dispositif de levage (6) est disposé entre deux composants de la gâche.
  2. Serrure de battant passif selon la revendication 1,
    caractérisée en ce que
    les deux composants de la gâche sont conçus d'une part comme le pêne de gâche (51) et d'autre part comme l'actionneur électrique (52s) et/ou l'organe de blocage côté sortie (52a) et/ou la l'engrenage de gâche (53).
  3. Serrure de battant passif selon l'une des revendications précédentes, caractérisée en ce que
    le mécanisme de serrure comprend un engrenage de serrure et le mécanisme de serrure ou au moins un élément d'engrenage (54) de l'engrenage de serrure est disposé entre deux composants de la gâche.
  4. Serrure de battant passif selon l'une des revendications précédentes, caractérisée en ce que
    le pêne de gâche (51) est conçu comme un pêne pivotant et comprend un palier de pivotement (51aa) qui est disposé dans le boîtier de serrure (2) directement, c'est-à-dire sans intercaler un autre boîtier logeant le palier de pivotement (51aa) et/ou le pêne de gâche (51) et/ou d'autres composants de la gâche.
  5. Serrure de battant passif selon l'une des revendications précédentes, caractérisée en ce que
    le pêne de gâche (51) est conçu comme un pêne pivotant et comprend un axe de pivotement central (51aa) pour l'utilisation gauche-droite du pêne de gâche (51).
  6. Serrure de battant passif selon l'une des revendications précédentes, caractérisée en ce que
    l'organe de blocage (53) est conçu comme un levier de blocage (53) et comprend un palier de pivotement qui est disposé dans le boîtier de serrure (2) directement, c'est-à-dire sans intercaler un autre boîtier logeant le palier de pivotement et/ou le levier de blocage (53) et/ou le dispositif de blocage électrique et/ou d'autres composants de la gâche.
  7. Serrure de battant passif selon l'une des revendications précédentes, caractérisée en ce que
    entre l'organe de blocage (53) et le pêne de gâche (51) est disposé un coulisseau de transmission (53) ou un levier pivotant de transmission (53) qui est conçu comme l'engrenage de gâche ou comme une partie d'engrenage de gâche.
  8. Serrure de battant passif selon la revendication 7,
    caractérisée en ce que
    le coulisseau de transmission (53) ou le levier pivotant de transmission (53) comprend un palier de coulissement resp. un palier de pivotement qui est disposé dans le boîtier de serrure (2) directement, c'est-à-dire sans intercaler un autre boîtier logeant le coulisseau de transmission resp. le levier de transmission et/ou le dispositif de blocage électrique (52) et/ou le pêne de gâche (51) et/ou d'autres composants de la gâche.
EP15174645.0A 2014-06-30 2015-06-30 Serrure à battant passif Active EP2963210B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL15174645T PL2963210T3 (pl) 2014-06-30 2015-06-30 Zamek skrzydła pasywnego

Applications Claiming Priority (6)

Application Number Priority Date Filing Date Title
DE102014009473 2014-06-30
DE102014009475 2014-06-30
DE102014013994 2014-09-22
DE102015000511 2015-01-18
DE102015100683 2015-01-19
DE102015107650 2015-05-15

Publications (2)

Publication Number Publication Date
EP2963210A1 EP2963210A1 (fr) 2016-01-06
EP2963210B1 true EP2963210B1 (fr) 2020-06-17

Family

ID=53491441

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EP15174645.0A Active EP2963210B1 (fr) 2014-06-30 2015-06-30 Serrure à battant passif

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DE (2) DE102015110503A1 (fr)
ES (1) ES2806264T3 (fr)
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Family Cites Families (4)

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Publication number Priority date Publication date Assignee Title
DE29821524U1 (de) 1998-12-02 1999-03-11 Bks Gmbh Mechanisch übersteuerter Türöffner
DE102006038610B4 (de) 2006-08-17 2008-07-17 Wilh. Schlechtendahl & Söhne GmbH & Co. KG Schlanker Gegenkasten für ein Paniktürschloss
DE102009025469B3 (de) * 2009-06-15 2011-04-14 Bks Gmbh Treibriegelschloss
DE102009043962B4 (de) * 2009-09-09 2012-08-09 Wilka Schließtechnik GmbH Elektrischer Türöffner

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Also Published As

Publication number Publication date
DE102015110505A1 (de) 2015-12-31
PL2963210T3 (pl) 2020-11-30
EP2963215A1 (fr) 2016-01-06
EP2963210A1 (fr) 2016-01-06
DE102015110503A1 (de) 2015-12-31
ES2806264T3 (es) 2021-02-17
EP2963215B1 (fr) 2021-05-05

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