EP3385483B1 - Dispositif de verrouillage pour un véhicule - Google Patents

Dispositif de verrouillage pour un véhicule Download PDF

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Publication number
EP3385483B1
EP3385483B1 EP17180979.1A EP17180979A EP3385483B1 EP 3385483 B1 EP3385483 B1 EP 3385483B1 EP 17180979 A EP17180979 A EP 17180979A EP 3385483 B1 EP3385483 B1 EP 3385483B1
Authority
EP
European Patent Office
Prior art keywords
rotary latch
triggering
blocking
blocking lever
lock assembly
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Not-in-force
Application number
EP17180979.1A
Other languages
German (de)
English (en)
Other versions
EP3385483A1 (fr
Inventor
Stephan Wietkamp
Udo Orzech
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.)
Huf Huelsbeck and Fuerst GmbH and Co KG
Original Assignee
Huf Huelsbeck and Fuerst GmbH and Co KG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Huf Huelsbeck and Fuerst GmbH and Co KG filed Critical Huf Huelsbeck and Fuerst GmbH and Co KG
Publication of EP3385483A1 publication Critical patent/EP3385483A1/fr
Application granted granted Critical
Publication of EP3385483B1 publication Critical patent/EP3385483B1/fr
Not-in-force 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
    • E05B83/00Vehicle locks specially adapted for particular types of wing or vehicle
    • E05B83/16Locks for luggage compartments, car boot lids or car bonnets
    • E05B83/18Locks for luggage compartments, car boot lids or car bonnets for car boot lids or rear luggage compartments
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B77/00Vehicle locks characterised by special functions or purposes
    • E05B77/36Noise prevention; Anti-rattling means
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B81/00Power-actuated vehicle locks
    • E05B81/12Power-actuated vehicle locks characterised by the function or purpose of the powered actuators
    • E05B81/20Power-actuated vehicle locks characterised by the function or purpose of the powered actuators for assisting final closing or for initiating opening
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B85/00Details of vehicle locks not provided for in groups E05B77/00 - E05B83/00
    • E05B85/20Bolts or detents
    • E05B85/24Bolts rotating about an axis
    • E05B85/243Bolts rotating about an axis with a bifurcated bolt

Definitions

  • the invention relates to a lock arrangement, in particular for vehicle doors or vehicle doors, preferably for a tailgate.
  • the lock assembly of the type in question has a lock housing on which a rotary latch is rotatably mounted, which is movable at least between an open position and a main latching position. Further, the lock assembly on a pivotally mounted on the lock housing pawl which is movable between a locking position in engagement with the locking position and a release position.
  • a lock assembly of the type described is, for example, from the DE 10 2013 113 384 A1 known.
  • the pawl by means of a control element, which comprises a gear and is in driving connection with a motor drive, moved from the blocking position in the direction of the release position to release the catch for opening the vehicle door or vehicle door.
  • the control element is moved by the motor drive, wherein the drive after opening the vehicle door or vehicle door also ensures that the control element for a new opening operation is moved back to its original position.
  • a locking bolt engaging in the jaw of the rotary latch ensures that the rotary latch is rotated from its open position into its main locking position, with the rotary latch engaging the locking pawl during this rotary movement.
  • the invention has for its object to develop a lock assembly in a structurally simple manner and cost, in which an undesirable noise due to a relative movement between the catch and latch bolt is effectively avoided.
  • a solution is to be created by the rotational movement of the catch is avoided in an overstroke after the catch and the pawl are already locked.
  • a pivotally mounted blocking lever is arranged on the lock housing, which is pivotable between a standby position and a blocking position.
  • the blocking lever is rotatably arranged on the lock housing. In the ready position, the blocking lever is without engagement with the rotary latch. This preferably means that the catch is rotatable about an entire constructively permitted angle of rotation, without the catch touching the lock lever in the ready position.
  • the blocking lever is pivotally mounted from the standby position to a blocking position on the lock housing.
  • a blocking surface of the blocking lever is positioned relative to the main catch position in the rotary latch, that the blocking lever at least then comes into operative connection with a locking counter surface of the rotary latch when the catch is in its main latching position and in this constellation in addition to a Over-stroke position of the rotary latch acting torque acts on the rotary latch.
  • the blocking surface of the blocking lever prevents the locking counter surface of the rotary latch on a rotary movement of the rotary latch beyond its Hauptastastwolf addition into an overstroke position by blocking the catch, so it is in the way. At least, however, rotation of the rotary latch via the main latching position is largely limited by the latching lever in the blocking position.
  • an at least translationally guided release member is arranged on the lock housing, which is movably guided at least between a non-triggering position and a release position, wherein over one or both of said positions beyond possible leadership must not be excluded.
  • the blocking lever is spring biased towards its blocking position, so he seeks at least from its standby position in the direction of the blocking position.
  • the trigger member is biased to its non-triggering position, so it strives at least from its triggering position to its non-triggering position. In its non-release position, the trigger member blocks the blocking lever, so that it is prevented from making a pivoting movement from the ready position in the direction of the blocking position.
  • trigger member and locking lever are formed and positioned relative to each other that the blocking lever in its non-triggering position, to which he yes - if he is not hindered - strives, the blocking lever provides an obstacle, with which the blocking lever on the movement is prevented in the direction of its spring bias.
  • the invention provides a lock assembly in a structurally simple manner and cost, which is characterized by a simple structure and yet effective prevents rotation of the catch from its main latching position in a so-called overstroke position, if or after the pawl has reached its blocking position and the blocking lever has taken its blocking position after bringing about the closing. Characterized in that a rotational movement of the rotary latch is prevented or at least limited in a beyond the main latching position overstroke position in the sequence, the known from practice problem of unwanted rattling noise is effectively avoided.
  • the invention is characterized by a purely mechanical solution, which manages in practice, unlike known lock arrangements without any rubbery and wear-prone buffer elements.
  • the advantage is further achieved that even with jerky closing of the lock, such as by throwing a vehicle door, at which the lock is arranged, a hard stop of the vehicle door or its seal is avoided.
  • the invention thus has the advantage already explained in detail above that, by providing a blocking lever, a movement of the rotary catch into an overstroke position by the blocking lever is prevented.
  • a trigger member and a locking lever in the illustrated spring-biased configuration are arranged oriented to each other on the lock housing is to release the locking lever for avoiding movement of the rotary latch in an overstroke position provided a favorable and structurally elegant solution, with the blocking of Rotary latch to avoid the assumption of an overstroke effectively and easily to the corresponding concretely present conditions, such as the space provided, customizable manner is implemented.
  • the trigger member is preferably formed in one piece, but it is also not excluded that multi-part release members are used.
  • the trigger member is designed such that upon movement of the trigger member against a contact force which biases the trigger member in the non-triggering position, upon reaching the triggering position, the trigger member releases the pivotal movement of the blocking lever in the blocking position.
  • the blocking of the blocking lever by the trigger member is thus brought about by moving the trigger member against its contact force.
  • a counter-member is provided in a preferred embodiment, which is arranged on the rotary latch.
  • the counter-member is positioned on the rotary latch such that when the rotary latch is rotated in the direction of rotation from the open position to the main-latching position, the counter-member is operatively connected to an end-side contact surface of the triggering member.
  • the counter-member is designed as a bolt and is positioned such that the entrainment of the trigger member takes place by the bolt pushes the trigger member against its contact force, according to the leadership of the trigger member by a guide means of the lock assembly.
  • the bolt is oriented parallel to the axis of rotation of the rotary latch.
  • embodiments may be provided in which the counterpart is formed integrally with the rotary latch, whereby manufacturing costs can be saved.
  • a preferred constructional solution which converts the intended avoidance of a movement of the blocking lever to its blocking position, provides a retaining formation arranged or formed on the blocking lever and a holding extension arranged on the triggering member.
  • Halteausformung and holding extension are formed and positioned relative to each other, that the retaining shape of the blocking lever, at least when the trigger member is in its non-triggering position, is in operative connection with a holding surface of the holding extension.
  • the operative connection may be implemented as a blockage of the holding formation by the holding surface, as a result of which the holding formation, and with this also the blocking lever, is prevented from rotating in the direction of rotation from the ready position to the blocking position of the blocking lever.
  • the holding extension is locally tapered along a portion of its longitudinal extent.
  • the rejuvenation is parallel to the Blocking lever pivot axis of the blocking lever provided and includes a portion of the holding extension, which moves in the release position to the position of the holding surface in the non-release position.
  • the holding formation is dimensioned in a direction parallel to the blocking lever pivot axis such that the holding formation can slide past it in the tapered region of the holding extension. The blockage of Garausformung and thereby the blocking lever is thus canceled and released pivoting of the blocking lever in its blocking position.
  • the taper of the holding extension is preferably dimensioned such that the operative connection between the holding formation and the holding extension is resolved upon reaching the release position by the trigger member.
  • the action of the rotary latch on the trigger member is adapted such that the trigger member reaches the triggering position in a position in which the rotary latch assumes an overstroke position beyond the main latching position.
  • the triggering member being pressed up to its release position.
  • the catch and the blocking lever are formed and positioned relative to each other, that the blocking lever, which pivots in the blocking position due to the spring bias when in overstroke rotary latch position, deposits before reaching its blocking position on a lateral surface of the still located in the over-stroke rotary latch. Only after turning back the rotary latch in the main latching position, the blocking lever enters a recess of the catch and takes his blocking position. From the moment of taking the blocking position by the blocking lever a renewed movement of the rotary latch is prevented in an overstroke position due to the operative connection between locking surface and barrier counter-surface or at least limited. A movement of the catch is thus blocked in both possible directions of rotation.
  • a radially extending from the axis of rotation of the rotary latch stop element is arranged on the rotary latch.
  • Stop element and locking lever are formed so adapted to each other and positioned relative to each other, that upon rotation of the catch from the main latching position into the open position, the stop element presses the blocking lever in the direction of its ready position.
  • the stop element is an integral part of the rotary latch, whereby reduced manufacturing costs and advantageous mechanical stability of the rotary latch can be achieved.
  • a guide element is preferably arranged to guide the trigger member on the lock housing, which comprises the blocking lever pivot axis rotationally symmetrical.
  • the trigger member having a slot and / or a long groove with rectilinear central axis which are coupled to the guide element and are guided by this.
  • the trigger member is translationally guided to ensure the most compact design of the lock assembly. But it can also be provided an additional rotational movement component.
  • Figs. 1 to 8 An exemplary embodiment of the already explained above variant of the lock assembly according to the invention in different stages of a sequence of movements.
  • Fig. 1 an embodiment of the lock assembly 1 according to the invention is shown. It is a lock housing 2 shown, for reasons of clarity, however, only partially.
  • a rotatably mounted rotary latch 4 is arranged, which is spring-biased in the direction of rotation R.
  • a pivotally mounted pawl 5 is arranged on the lock housing.
  • the rotary latch 4 is shown shortly before reaching its main locking position, which can be reached by correspondingly slight further rotation of the rotary latch 4 counterclockwise (based on the paper plane of the illustration shown).
  • the pawl 5 is still in its release position and is due to a corresponding preload with their Bearing surface pressed against a lateral surface of the rotary latch 3.
  • a blocking lever 7 is also arranged, which is rotatably mounted and whose locking lever pivot axis 6 designed as a rotation axis with the axis of rotation of the guide member 17 is identical.
  • the blocking lever 7 is located in one of its two extreme positions, namely in the so-called readiness position. In the standby position, the blocking lever 7 is removed as far as possible from the rotary latch 4 and there is no interaction with the rotary latch 4.
  • the blocking lever is spring biased to make a rotational movement in the direction of the arrow F. However, a movement of the blocking lever in the direction of the arrow F is prevented by a trigger member 10, which prevents the movement of the blocking lever 7 in the direction of its blocking position by mechanical blockade.
  • the aforementioned trigger member 10 is also arranged on the lock housing 2.
  • the trigger member 10 has a slot 18 which is guided in translation by a guide element 17 designed as a bolt, that is, at least translationally movable.
  • the trigger member 10 is located in the illustration shown in one of its two possible end positions, which coincides in the illustrated embodiment with the non-triggering position.
  • the trigger member is spring-biased to move from its trip position towards the non-trip position.
  • the direction of the spring preload is shown by the arrow K.
  • a holding extension 15 arranged on the trigger member 10 is positioned such that a holding surface 14 of the holding extension 15 prevents movement of the blocking lever 7 in the direction of its biasing force by the holding surface 14 blocking the movement of the holding formation 13 of the blocking lever 7.
  • the holding extension 15 can be positioned at any position of the blocking lever 7; It is essential that a pertinent Operational connection is present that a movement of the blocking lever 7 is prevented in the direction of its blocking position, as long as it is not released by moving the trigger member 10 to its release position.
  • FIG. 2 is in a detailed presentation of the situation Fig. 1 illustrates how by suitable design of the trigger member 10, the movement of the blocking lever 7 is prevented in the direction of its blocking position.
  • the presentation of the Fig. 2 is omitted, inter alia, on the presentation of the lock housing 2.
  • the perspective of Fig. 2 corresponds to a consideration of the back of the representation of Fig. 1 , It can be seen holding the formation 13, which extends radially from the axis of rotation 6 of the blocking lever 7, wherein the holding formation 13 and the locking surface 8 are positioned at two mutually remote ends of the blocking lever 7.
  • a holding extension 15 can be removed, which extends in a direction parallel to the blocking lever pivot axis 6 direction to a position plane of the blocking lever out and thereby provides a holding surface 14.
  • the holding surface 14 is formed with the holding Ausformung 13 of the blocking lever so coordinated and positioned relative to each other, that at least when the trigger member 10 is in its non-triggering position, an operative connection between Garausformung 13 and support surface 14, which is a pivoting of the locking lever 7 to his Blocking position prevented.
  • a movement of the blocking lever 7 to its blocking position is inhibited, since the holding surface 14 of the holding extension 15 blocks the movement of the holding formation 13 in the direction of rotation, which corresponds to a movement of the blocking lever 7 to its blocking position.
  • a rotational movement of the due to its corresponding spring bias actually aspiring in the direction of the blocking position blocking lever 7 to its blocking position is thus prevented.
  • Fig. 3 differs from Fig. 1 in that the catch 4 is opposite to the one in FIG Fig. 3 shown position was moved in the direction of its main latching position.
  • the illustration shown corresponds to this main position.
  • the pawl 5 In the main locking position, the pawl 5 is immersed in a locking recess 19 of the rotary latch 4.
  • a blocking surface 20 of the pawl 5 is connected to a locking counter surface 21 of the rotary latch 4 in operative connection and prevents turning back of the rotary latch in the direction of its open position.
  • a counter-member 11 designed as a bolt which is coupled to the rotary latch 4 has come into operative connection with an end-side contact surface 12 of the triggering member 10.
  • the trigger member 10 By continued rotation of the rotary latch 4 in the direction of rotation, in which the catch has also reached the main latching position from the open position, the trigger member 10 is pressed against its pointing in the direction K contact force to its release position and thereby moved translationally.
  • the overstroke position can be characterized, inter alia, by the fact that the pawl 5 is no longer in contact with the counter-locking surface of the rotary catch 4.
  • the triggering member is further moved counter to its biasing force acting in the direction K until the triggering member 10 reaches its triggering position as a result of its translatory movement.
  • the release position is not in the illustrated example with an end position when moving between the two existing ends of the slot 18th identical.
  • a portion of the holding extension 15 of the trigger member 10 is moved in the release position against the biasing force, which is parallel to the blocking lever pivot axis 6 with respect to the support surface 14 having tapered region.
  • the tapered region is positioned relative to the holding formation such that the holding formation 13 can now slide past the holding extension 15.
  • a rotational movement of the blocking lever 7 in the direction of F due to its spring bias, ie to the blocking position of the blocking lever, is then released. From the representation of Fig.
  • FIG. 4a shows that the rotary latch is dimensioned such that when the pin 11 pushes the trigger member in the release position, the blocking lever 7 is blocked when pivoting in the direction of its blocking position of a peripheral surface of the rotary latch 4 and the blocking lever is initially on the lateral surface of the rotary latch 4 stores.
  • the blocking lever 7 Upon retraction of the rotary latch 4 from the overstroke position to its main latch position, as in Fig. 5 shown, the blocking lever 7 then immersed in a recess of the rotary latch 4, in which the blocking lever 7 can assume its blocking position and can enter with its blocking surface 8 in operative connection with the locking counter surface 9 of the rotary latch 4. In this position, the blocking surface 8 blocked by their positioning relative to the barrier counter-surface 9 a renewed rotational movement of the rotary latch 4 beyond the main latching position in an overstroke position.
  • the blocking lever 7 Upon retraction of the rotary latch 4 from the overstroke position to its main latch position, as in Fig. 5 shown, the blocking lever 7 then immersed in a recess of the rotary latch 4, in which the blocking lever 7 can assume its blocking position and can enter with its blocking surface 8 in operative connection with the locking counter surface 9 of the rotary latch 4. In this position, the blocking surface 8 blocked by their positioning relative to the barrier counter-surface 9 a renewed rotational movement of the rotary latch 4
  • a rotation of the rotary latch 4 from the main latching position to the open position is prevented by the locking pawl 5 located in the blocking position and rotation of the rotary latch in an overstroke position is ensured by the blocking surface 8 provided the blocking lever 7 prevents which absorbs a force effecting a corresponding rotational movement.
  • Opening the lock by turning the catch to an open position is only after swinging out of the pawl 5 from the locking recess of the catch 4 out, so after releasing the locking, possible.
  • the release of the locking can be done for example by an actuator or mechanically, the actual mechanism used for this purpose for the present invention is immaterial.
  • the rotary latch 4 Upon rotation of the rotary latch 4 from the main latching position in the direction of its open position of the blocking lever 7 is moved due to a suitable shape of the rotary latch 4 again in the direction of its standby position.
  • the rotary latch 4 has a stop element 16 which extends radially from the axis of rotation 3 of the rotary latch.
  • the positioning and the shape of the stopper member 16 is selected taking into account the exact geometric configuration and positioning of the blocking lever 7 such that upon rotation of the catch from the main latching position in the direction of the open position, the stopper member 16 enters into force with the blocking lever 7 and the blocking lever. 7 in this case continued rotation of the rotary latch 4 against its spring bias in the direction of its standby position, preferably up to the standby position, presses.
  • Fig. 8 is shown that may be provided in an alternative embodiment, that the design and arrangement of rotary latch 4, counter member 11, trigger member 10 and blocking lever 7 can also be adapted to each other so that when reaching the main latching position and immediately before entering the pawl in the locking recess already the trigger member has reached its release position and the blocking lever 7 assumes its blocking position.

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  • Lock And Its Accessories (AREA)

Claims (13)

  1. Dispositif de verrouillage (1), notamment pour portes de véhicule ou capots de véhicule, de préférence pour un hayon arrière, comportant un boîtier de serrure (2), un loquet rotatif (4) positionné rotativement sur le boîtier de serrure (2) autour d'un axe de rotation (3), qui est déplaçable au moins entre une position d'ouverture et une position de verrouillage principale et un cliquet (5) qui est positionné de manière pivotante sur le boîtier de serrure (2), qui est déplaçable entre une position de verrouillage venant en prise avec le loquet rotatif (4) et une position de déblocage, caractérisé en ce que sur le boîtier de serrure (2) est disposé un levier de blocage (7) positionné de manière pivotante, qui peut être pivoté entre une position d'attente, dans lequel le levier de blocage (7) et le loquet rotatif (4) ne viennent pas en prise l'un avec l'autre et une position de blocage, dans lequel afin d'empêcher un mouvement rotatif le loquet rotatif (4) par l'intermédiaire de sa position de verrouillage principal en passant dans une position de surélévation dans la position de blocage une surface de verrouillage (8) du levier de blocage (7) entre en liaison opérationnelle avec une surface de verrouillage opposé (9) du loquet rotatif (4) au moins lorsque le loquet rotatif (4) se trouve dans la position de verrouillage principale, dans lequel sur le boîtier de serrure (2) est disposé un élément de déclenchement (10) guidé par translation entre une position de non déclenchement et une position de déclenchement, dans lequel le levier de blocage (7) est précontraint pour aller de la position d'attente à sa position de blocage et l'élément de déclenchement (10) est précontraint pour aller de la position de déclenchement à la position de non déclenchement, et dans lequel l'élément de déclenchement (10) bloque dans la position de non déclenchement un mouvement de pivotement du levier de blocage (7) à partir de la position d'attente dans la direction de la position de blocage.
  2. Dispositif de verrouillage (1) selon la revendication 1, caractérisé en ce que l'élément de déclenchement (10) est configuré de telle sorte que lors d'un mouvement de l'élément de déclenchement (10) en sens contraire à une force d'appui, qui précontraint l'élément de déclenchement (10) dans la position de non déclenchement, lorsque la position de déclenchement est atteinte l'élément de déclenchement (10) débloque le mouvement de pivotement du levier de blocage (7) dans la position de blocage.
  3. Dispositif de blocage (1) selon la revendication 1 ou 2, caractérisé en ce que avec que le loquet rotatif (4) est couplé un élément opposé (11), qui est positionné sur le loquet rotatif de telle sorte que lors de la rotation du loquet rotatif (4) dans la direction de rotation de la position ouverte à la position de verrouillage principal l'élément opposé (11) se retrouve en liaison opérationnelle avec une surface d'appui du côté d'extrémité (12) de l'élément de déclenchement (10) et après la survenue de la liaison opérationnelle l'élément opposé (11) déplace l'élément de déclenchement (10) lors de la poursuite de la rotation du loquet rotatif (4) dans la direction de rotation de la position ouverte à la position de verrouillage principal en sens opposé à la force d'appui dans la direction de la position de déclenchement.
  4. Dispositif de verrouillage (1) selon la revendication 3, caractérisé en ce que l'élément opposé (11) est configuré comme un boulon, qui est orienté parallèlement à l'axe de rotation (3) du loquet rotatif (4) et est positionné de telle sorte que après la survenue de la liaison opérationnelle avec la surface d'appui (12) de l'élément de déclenchement (10) lors de la poursuite de la rotation il presse le loquet rotatif (4) dans la direction de rotation de la position d'ouverture à la position de verrouillage principal en sens contraire à la force d'appui dans la direction de la position de déclenchement.
  5. Dispositif de verrouillage (1) selon la revendication 4, caractérisé en ce que l'élément opposé (11) est configuré en un seul tenant avec le loquet rotatif (4).
  6. Dispositif de verrouillage (1) selon une des revendications précédentes, caractérisé en ce que le levier de blocage (7) présente une moulure de retenue (13), qui est en liaison opérationnelle dans la position de non déclenchement de l'élément de déclenchement (10) avec une surface de retenue (14) d'un prolongement de retenue (15) de l'élément de déclenchement (10), au moyen duquel le levier de blocage (7) est entravé dans son pivotement d'une position d'attente à sa position de blocage.
  7. Dispositif de verrouillage (1) selon la revendication 6, caractérisé en ce que le prolongement de retenue (15) le long d'une portion de son extension longitudinale présente une zone amincie parallèlement à l'axe de pivotement de levier de blocage (6) du levier de blocage (7), qui adopte dans la position de déclenchement la position de la surface de retenue (14) dans la position de non déclenchement, de sorte que la liaison opérationnelle entre la moulure de retenue (13) et le prolongement de retenue (15) soit déclenché et la moulure de retenue (13) puisse glisser vers l'avant sur le prolongement de retenue (15), pour permettre le pivotement du levier de blocage (7) dans sa position de blocage.
  8. Dispositif de verrouillage (1) selon une des revendications précédentes, caractérisé en ce que le loquet rotatif (4) est configuré afin de provoquer le déplacement de l'élément de déclenchement (10) dans la position de déclenchement au moyen de la rotation du loquet rotatif (4) en passant par la position de verrouillage principal dans une position de surélévation ou en ce que le loquet rotatif (4) est configuré afin de provoquer le déplacement de l'élément de déclenchement dans la position de déclenchement (10) au moyen de la rotation du loquet rotatif (4) dans la position de verrouillage principal.
  9. Dispositif de verrouillage (1) selon une des revendications précédentes, caractérisé en ce que le loquet rotatif (4) et le levier de blocage (7) sont harmonisés dans leur configuration et leur positionnement l'un par rapport à l'autre de telle sorte que le levier de blocage (7) pivotant dans la direction de sa position de blocage se pose avant d'atteindre sa position de blocage sur une surface de gaine du loquet rotatif (4) se trouvant dans une position de surélévation et après la rotation du loquet rotatif (4) dans la position de verrouillage principal du levier de blocage (7) entre dans une cavité du loquet rotatif (4) afin d'adopter la position de blocage.
  10. Dispositif de verrouillage (1) selon une des revendications précédentes, caractérisé en ce que le loquet rotatif (4) présente un élément de butée (16) s'étendant radialement à partir de l'axe de rotation (3), dans lequel l'élément de butée (16) et le levier de blocage (7) sont façonnés de manière à s'adapter l'un à l'autre, de sorte que lors de la rotation du loquet rotatif (4) de la position de verrouillage principal à la position d'ouverture l'élément de butée (16) presse le levier de blocage (7) dans la direction de sa position d'attente.
  11. Dispositif de verrouillage (1) selon une des revendications précédentes, caractérisé en ce que un élément de guidage (17) pour guider l'élément de déclenchement (10) est disposé sur le boîtier de serrure et comprend l'axe de pivotement de levier de blocage (6) symétrique en rotation.
  12. Dispositif de verrouillage (1) selon la revendication 11, caractérisé en ce que l'élément de déclenchement présente un alésage oblong (18) ou une rainure longitudinale avec un axe médian en ligne droite, qui sont guidés par l'élément de guidage (17).
  13. Dispositif de verrouillage (1) selon une des revendications précédentes, caractérisé en ce que l'élément de déclenchement (10) est guidé
    - par translation ou
    - par translation et en outre par rotation.
EP17180979.1A 2017-04-05 2017-07-12 Dispositif de verrouillage pour un véhicule Not-in-force EP3385483B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102017107361.2A DE102017107361A1 (de) 2017-04-05 2017-04-05 Schlossanordnung für ein Fahrzeug

Publications (2)

Publication Number Publication Date
EP3385483A1 EP3385483A1 (fr) 2018-10-10
EP3385483B1 true EP3385483B1 (fr) 2019-05-22

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EP17180977.5A Active EP3385482B1 (fr) 2017-04-05 2017-07-12 Dispositif de verrouillage pour un véhicule
EP17180979.1A Not-in-force EP3385483B1 (fr) 2017-04-05 2017-07-12 Dispositif de verrouillage pour un véhicule

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US20220364400A1 (en) * 2019-07-08 2022-11-17 Magna Closures Inc. Closure latch assembly with power cinch mechanism having anti-chucking function

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JPS61172977A (ja) * 1985-01-24 1986-08-04 富士重工業株式会社 自動車のバツクドアラツチ装置
DE19505779A1 (de) * 1995-02-20 1996-08-29 Bocklenberg & Motte Bomoro Kraftfahrzeug-Klappenschloß, insbesondere Heckklappenschloß
JP2004263413A (ja) * 2003-02-28 2004-09-24 Aisin Seiki Co Ltd ドアクローザ装置
DE102007002645A1 (de) * 2007-01-12 2008-07-17 Kiekert Ag Schließvorrichtung für ein Kraftfahrzeug sowie Verfahren zu dessen Betrieb
FR2916788B1 (fr) * 2007-06-01 2013-02-15 Valeo Securite Habitacle Serrure electrique a assistance de fermeture pour ouvrant de vehicule automobile
DE102012102724A1 (de) * 2012-03-29 2013-10-02 Huf Hülsbeck & Fürst Gmbh & Co. Kg Kraftfahrzeugtürverschluss
DE102013113384A1 (de) 2013-12-03 2015-06-03 Huf Hülsbeck & Fürst Gmbh & Co. Kg Schlossanordnung
DE102013114300A1 (de) * 2013-12-18 2015-06-18 Kiekert Aktiengesellschaft Kraftfahrzeugtürschloss

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DE102017107361A1 (de) 2018-10-11
EP3385483A1 (fr) 2018-10-10
EP3385482A1 (fr) 2018-10-10
EP3385482B1 (fr) 2019-09-18

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