EP3039211B1 - Electric motor vehicle lock having a spring accumulator - Google Patents

Electric motor vehicle lock having a spring accumulator Download PDF

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Publication number
EP3039211B1
EP3039211B1 EP14750430.2A EP14750430A EP3039211B1 EP 3039211 B1 EP3039211 B1 EP 3039211B1 EP 14750430 A EP14750430 A EP 14750430A EP 3039211 B1 EP3039211 B1 EP 3039211B1
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EP
European Patent Office
Prior art keywords
latch
lock
mechanical energy
energy storage
previous
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EP14750430.2A
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German (de)
French (fr)
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EP3039211A1 (en
Inventor
Thorsten Bendel
Michael Merget
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Kiekert AG
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Kiekert AG
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    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B81/00Power-actuated vehicle locks
    • E05B81/54Electrical circuits
    • E05B81/90Manual override in case of power failure
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/002Energy storage by movement of wing
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/04Spring arrangements in locks
    • E05B2015/0496Springs actuated by cams or the like
    • 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
    • E05B81/16Power-actuated vehicle locks characterised by the function or purpose of the powered actuators operating on locking elements for locking or unlocking action

Definitions

  • the invention relates to a lock, in particular for a motor vehicle with a lock mechanism and with an electric drive for an electric opening of the lock.
  • a lock mechanism for a door or flap of a motor vehicle has a locking mechanism, which comprises a rotary latch and a pawl for locking the rotary latch.
  • the lock comprises a device which, especially in an emergency or incident, ensures that the lock can be opened mechanically, ie without an electric drive DE 198 49 674 A1 Such a castle is known.
  • An aforementioned lock is used for temporary closing of openings in motor vehicles or buildings by means of doors or flaps.
  • the rotary latch engages around a particular bow-shaped locking bolt, which is usually attached to the body in the case of a motor vehicle. Reached the catch by a caused by means of the locking pin pivoting starting from an open position one. Closed position, the catch is finally locked by means of the pawl.
  • a blocking surface of the Sperrklif'1fce then abuts a locking surface of the rotary latch, thereby preventing that the rotary latch can be rotated back in the open position.
  • the locking bolt can not leave the locking mechanism in the Sch Strukturstelluhg.
  • the lock may include a blocking lever that is capable of blocking a pawl when the pawl locks the catch. To open such a locking mechanism, the blocking lever must first be moved out of its blocking position.
  • the rotary latch can initiate an opening moment in the pawl in the rusted state.
  • the opening moment may cause the pawl to be moved out of its detent position.
  • unwanted moving out is prevented by a blocking lever. If the blocking lever is moved out of its blocking position, the lock then opens automatically.
  • a handle of a door or flap may be part of the actuator. This handle is usually connected via a linkage or a Bowden cable with an actuating lever of the castle. If the handle is actuated, the actuating lever of the lock is pivoted by means of the linkage or Bowden cable so that the lock opens.
  • a motor vehicle usually has an outside handle, which can be reached from the outside, and / or an inside handle, which can be reached from the inside.
  • the lock known therefrom can not be opened by operating an external handle, because in normal operation, a connection between an actuating lever and the locking mechanism, which is necessary for this purpose, is missing.
  • the lock can be opened from the outside in normal operation only with the help of an electric drive.
  • the mechanical connection between the handle and the locking mechanism is made by the electric drive, in order to then be able to open the lock mechanically in an emergency by operating the outer handle.
  • An emergency is for example in the case of an accident: ago. If a sensor signals the presence of an emergency, the electric drive establishes the mechanical connection within a few 10 ms. Today's such locks are able to change a lock within 20 ms so that this can then be opened mechanically.
  • the sensor can be the sensor of an airbag. If the sensor of an airbag signals an accident, electrical energy is still available for a few milliseconds (ms) following the signal, so that the mechanical connection can pass through the electric drive can be made. After that, the electrical power supply may fail.
  • ms milliseconds
  • Another censor can monitor the state of charge of a vehicle battery. If the state of charge of the battery falls below a certain threshold value, this case can be signaled by the sensor in order then to ensure that the electric drive establishes the mechanical connection, in order subsequently to enable a mechanical opening.
  • the aim is to be able to change over a lock from normal operation to emergency or accident operation within a particularly short time and / or with the least possible expenditure of electrical energy
  • a lock includes the.
  • Advantageous embodiments emerge from the subclaims.
  • the lock has Ober another operating condition, which is referred to below Stör plante.
  • Stör ist In fault mode, a mechanical opening of the lock is possible, which in the Normal operation is not possible.
  • the lock comprises a mechanical energy store for a changeover of the lock from normal operation to fault operation. This is to be understood as meaning an energy store whose mechanically stored energy can be used to convert the lock from normal operation to fault operation.
  • the claimed lock makes it possible to use mechanically stored energy in an accident or emergency to mechanically open the lock following the release of the mechanically stored energy, which is not possible in normal operation. Following a mechanical actuation, for example actuation of an outer handle of a door or flap, this door or flap can be opened in faulty operation without the need for electrical energy.
  • the need for electrical energy for such a transition from normal operation to interference operation is particularly low.
  • An example of a mechanical energy storage is a compressed air storage. If the lock is to be converted from normal operation to fault mode, the compressed air storage tank is opened. The pressure exiting gas is then used to, for example, an actuating lever with a pawl in the of the document DE 100 48 709 A1 to couple known manner. The escaping compressed air is then used to the from the publication DE 100 48 709 A1 bring known intermediate lever from a non-coupling position in a coupling position. For example, a fixed piston can be released, which is then moved due to the pressure in the compressed air reservoir. The movement of the piston can be used directly or indirectly to allow a mechanical actuation of the lock, so on Change over to faulty operation.
  • the lock comprises an electrical control which is able to control the release of the energy stored in the mechanical energy store.
  • the electrical control comprises an electromagnet that magnetically holds a coupling component in its non-coupling position. If there is no or no longer sufficient electrical energy available, so eliminates the magnetic force that is able to hold the coupling component in its non-coupling position. For example, with a preloaded spring, for example with a preloaded coil spring, then the coupling component is in their coupling Position moves, which makes it possible to open the lock mechanically. In this embodiment, electrical energy does not have to be available for a few milliseconds in order to mechanically open a door or flap in the event of a failure that results in a loss of electrical power.
  • a spring such as a coil spring. This is preloaded to store mechanical energy.
  • a mechanical energy storage can be provided in a technically simple manner with little space, which is particularly insensitive to interference.
  • a leg spring is used as a spring, moved by the example, a spring leg during the closing of the door and thus moved into a storage position.
  • a pin In order to store the energy of the spring, a pin is used according to the invention, which releases a prestressed leg of the spring for conversion to Stötalaya, so that by means of energy stored in the spring the possibility is created that the lock can operate mechanically.
  • a movable pin can also fix, for example, a piston of a compressed air reservoir in normal operation. By moving the pin, the piston is released to switch to jamming operation.
  • the pin is linearly moved or rotated to release the mechanically stored energy.
  • a rotational movement of the pin around its longitudinal axis is sufficient to release the mechanically stored energy.
  • time and energy can be further reduced in order to release the mechanical energy stored in the mechanical energy store for switching from normal operation to fault operation.
  • the pin has a slope or step for releasing the mechanically stored energy. Depending on the position of the slope or step mechanically stored energy is released. A long end of the slope fixes a preloaded leg of a spring, so that after turning the cylinder pin the: short side of the cylinder pin releases the spring. In contrast to known systems, the rotation of the pin can be done in very short periods of time, so that the energy of the spring is immediately available. It is thus possible that less than 5 ms electrical energy must be provided in order then to bring the lock with the help of the mechanically stored energy in a state that allows a mechanical actuation.
  • the electric drive with which the lock can be actuated, be controlled by the controller so that the electric drive is able to release the mechanically stored energy.
  • the electric drive is thus normally used to electrically actuate the lock so that subsequently the door or flap can be opened.
  • the electric drive is used to set the lock in a state that allows a mechanical actuation, for example, in one embodiment, the electric drive moves the aforementioned pin to release the stored mechanical energy by the movement of the pin.
  • the electric drive is controlled by an electric control system in order to achieve the set object, so that it is able to release the mechanically stored energy in the event of a malfunction.
  • the mechanical energy storage can be charged by closing a door or flap.
  • a spring so a spring is biased by closing a door or flap.
  • a piston is moved so that thereby a gas pressure is built up.
  • the lock is such that an associated door or flap can be mechanically opened from the outside only in faulty operation.
  • the door or flap can be mechanically opened from the inside.
  • the door or flap can be mechanically opened from the inside only in faulty operation,
  • the lock can be supplemented by an electric drive from normal operation to faulty operation in addition, such as in the document DE 100 48 709 A1 known way. Is sufficient in an emergency or accident sufficient amount and sufficiently long electrical energy Available, so the switching from normal operation can be made directly from an interference operation by an electric drive. The mechanical energy storage then complements the switching would be. but not mandatory for the conversion.
  • the invention makes it possible in particular during the closing of a side door or flap to bias a spring which is released in the event of a correspondingly high voltage drop of the battery of the motor vehicle or in the event of an accident, so that the mechanically stored energy is available to the lock In this way, the reaction times can be significantly reduced while at the same time minimizing the risk that an adequate power supply is not available.
  • the known 20 milliseconds can be reduced to times less than 5 milliseconds
  • the FIG. 1 shows a mechanical energy storage of a lock with which the lock can be switched from normal operation to faulty operation.
  • the mechanical energy storage comprises a prestressed Schenketfeder 1 with two legs 2 and 3.
  • the one leg 2 is biased to a bolt 4 at.
  • the other leg 3 is biased to a pin 5.
  • the spring 1 is held by an axis 6.
  • the pin 5 has a stepped end with a higher level 7 and a deeper level 8 on. In the charged state of the mechanical energy storage of the leg 3 of the spring 1 is at the higher level 7 at.
  • the FIG. 1 also shows a lever 9, which can be rotated about its axis 10.
  • One end of the lever 9 has a protruding pin 11 which bears against the leg 3 of the spring 1.
  • the pin 5 can be around his, in the FIG. 3 shown in section longitudinal axis 12 are rotated.

Description

Die Erfindung betrifft ein Schloss insbesondere für ein Kraftfahrzeug mit einer Schlossmechanik und mit einem elektrischen Antrieb für ein elektrisches Öffnen des Schlosses. Eine Schlossmechanik für eine Tür oder Klappe eines Kraftfahrzeugs weist ein Gesperre auf, das eine Drehfalle und eine Sperrklinke für ein Verrasten der Drehfalle umfasst. Das Schloss umfast eine Einrichtung, die vor allem in einem Notfall oder Störfall dafür Sorge trägt, dass das Schloss mechanisch, also ohne einen elektrischen Antrieb, geöffnet werden kann, Aus der DE 198 49 674 A1 ist ein solches Schloss bekannt.The invention relates to a lock, in particular for a motor vehicle with a lock mechanism and with an electric drive for an electric opening of the lock. A lock mechanism for a door or flap of a motor vehicle has a locking mechanism, which comprises a rotary latch and a pawl for locking the rotary latch. The lock comprises a device which, especially in an emergency or incident, ensures that the lock can be opened mechanically, ie without an electric drive DE 198 49 674 A1 Such a castle is known.

Ein eingangs genanntes Schloss dient zum zeitweisen Verschließen von Öffnungen in Kraftfahrzeugen oder Gebäuden mit Hilfe von Türen oder Klappen. Im geschlossenen Zustand eines solchen Schlosses greift die Drehfalle um einen insbesondere bügelförmig ausgeführten Schließbolzen herum, der im Fall eines Kraftfahrzeugs in der Regel an der Karosserie befestigt ist. Erreicht die Drehfalle durch ein mit Hilfe des Schließbolzen bewirktes Verschwenken ausgehend von einer geöffneten Stellung eine. Schließstellung, so wird die Drehfalle schließlich mittels der Sperrklinke verrastet. Eine Sperrfläche der Sperrklif'1fce liegt dann an einer Sperrfläche der Drehfalle an, wodurch verhindert wird, dass die Drehfalle in Richtung geöffnete Stellung zurückgedreht werden kann. Der Schließbolzen kann das Gesperre in der Schließstelluhg nicht mehr verlassen.An aforementioned lock is used for temporary closing of openings in motor vehicles or buildings by means of doors or flaps. In the closed state of such a lock, the rotary latch engages around a particular bow-shaped locking bolt, which is usually attached to the body in the case of a motor vehicle. Reached the catch by a caused by means of the locking pin pivoting starting from an open position one. Closed position, the catch is finally locked by means of the pawl. A blocking surface of the Sperrklif'1fce then abuts a locking surface of the rotary latch, thereby preventing that the rotary latch can be rotated back in the open position. The locking bolt can not leave the locking mechanism in the Schließstelluhg.

Für ein Öffnen ist es. erforderlich, die Sperrklinke aus ihrer Raststellung heraus zu bewegen. Ist die Sperrklinke aus ihrer Raststellung heraus bewegt worden, so dreht sich die Drehfalle in Richtung geöffnete Stellung. In der geöffneten Stellung der Drehfalle und damit in der geöffneten Stellung des Gesperres kann der Schließbolzen das Schloss verlassen. Die Tür oder Klappe kann so wieder geöffnet werden.It's for opening. required to move the pawl out of its locked position. If the pawl has been moved out of its detent position, the rotary latch rotates in the direction of the open position. In the open position of the catch and thus in the open position of the locking mechanism can the locking bolt leave the lock. The door or flap can be opened again.

Es gibt Schlösser mit zwei verschiedenen Raststellungen der Drehfalle. Die Drehfalle kann dann zunächst in der sogenannten Vorrastposition verrastet werden und durch ein Weiterdrehen in Schließrichtung schließlich in der Sogenannten Hauptrastposifion. In der Vorrastposition kann zwar ein Schließbolzen das Gesperre nicht mehr verlassen. Eine entsprechende Tür oder Klappe ist aber noch nicht vollständig geschlossen. Eine solche Tür oder Klappe ist erst dann vollständig verschlossen, wenn die Drehfalle bis zur Hauptrastposition gedreht und hier verrastet wird. FÜr ein Verrasten in der Vorrastposition kann eine zweite Sperrklinke vorgesehen sein.There are locks with two different locking positions of the catch. The rotary latch can then be locked first in the so-called pre-locking position and finally by further rotation in the closing direction in the so-called Hauptrastposifion. Although in the pre-locking position, a locking bolt can no longer leave the locking mechanism. A corresponding door or flap is not yet completely closed. Such a door or flap is fully closed only when the catch is rotated to the main catch position and locked here. For a latching in the pre-locking position, a second pawl may be provided.

Das Schloss kann einen Blockadehebel umfassen, der eine Sperrklinke zu blockieren vermag, wenn die Sperrklinke die Drehfalle verrastet. Um ein solches Gesperre zu öffnen, muss erst der Blockadehebel aus seiner blockierenden Position heraus bewegt werden.The lock may include a blocking lever that is capable of blocking a pawl when the pawl locks the catch. To open such a locking mechanism, the blocking lever must first be moved out of its blocking position.

Um ein Schloss besonders leicht Öffnen zu können, vermag die Drehfalle im verrosteten Zustand ein öffnendes Moment in die Sperrklinke einzuleiten. Das öffnende Moment kann bewirken, dass die Sperrklinke aus ihrer Rastposition heraus bewegt wird. Bei einem solchen Schloss wird ein unerwünschtes Herausbewegen durch einen Blockadehebel verhindert. Wird der Blockadehebel aus seiner blockierenden Position herausbewegt, so öffnet sich das Schloss anschließend selbststandig. Ein solcher Stand der Technik ist aus der Druckschrift DE 10 2007 003 948 A1 bekannt.In order to be able to open a lock particularly easily, the rotary latch can initiate an opening moment in the pawl in the rusted state. The opening moment may cause the pawl to be moved out of its detent position. In such a lock unwanted moving out is prevented by a blocking lever. If the blocking lever is moved out of its blocking position, the lock then opens automatically. Such a prior art is from the document DE 10 2007 003 948 A1 known.

Um ein Schloss öffnen zu können, gibt es eine Betätigungseinrichtung. Wird die Betätigungseinrichtung betätigt, so öffnet sich das Gesperre. Ein Griff einer Tür oder einer Klappe kann Teil der Betätigungseinrichtung sein. Dieser Griff wird in der Regel über ein Gestänge oder einen Bowdenzug mit einem Betätigungshebel des Schlosses verbunden. Wird der Griff betätigt, so wird mittels des Gestänges oder des Bowdenzugs der Betätigungshebel des Schlosses so verschwenkt, dass sich das Schloss öffnet. Ein Kraftfahrzeug verfügt üblicherweise über einen Außengriff, der von außen erreichbar ist, und/oder einen Innengriff, der von Innen erreichbar ist.To open a lock, there is an actuator. When the actuating device is actuated, the locking mechanism opens. A handle of a door or flap may be part of the actuator. This handle is usually connected via a linkage or a Bowden cable with an actuating lever of the castle. If the handle is actuated, the actuating lever of the lock is pivoted by means of the linkage or Bowden cable so that the lock opens. A motor vehicle usually has an outside handle, which can be reached from the outside, and / or an inside handle, which can be reached from the inside.

Gemäß der Druckschrift DE 100 48 709 A1 kann im Normalbetrieb das hieraus bekannte Schloss nicht durch Betätigen eines Außengriffs geöffnet werden, weil im Normalbetrieb eine dafür notwendige Verbindung zwischen einem Betätigungshebel und dem Gesperre fehlt. Das Schloss kann von außen im Normalbetrieb nur mit Hilfe eines elektrischen Antriebs geöffnet werden. In einem Notfall oder Störfall wird allerdings durch den elektrischen Antrieb die mechanische Verbindung zwischen dem Griff und dem Gesperre hergestellt, um dann im Notfall durch Betätigen des Außengriffs das Schloss mechanisch öffnen zu können. Ein Notfall liegt beispielsweise im Fall eines Unfalls: vor. Signalisiert ein Sensor das Vorliegen eines Notfalls, so stellt der elektrische Antrieb innerhalb von wenigen 10 ms die mechanische Verbindung her. Heutige derartige Schlösser sind in der Lage, innerhalb von 20 ms ein Schloss so umzustellen, dass dieses anschließend mechanisch geöffnet werden kann.According to the document DE 100 48 709 A1 In normal operation, the lock known therefrom can not be opened by operating an external handle, because in normal operation, a connection between an actuating lever and the locking mechanism, which is necessary for this purpose, is missing. The lock can be opened from the outside in normal operation only with the help of an electric drive. In an emergency or accident, however, the mechanical connection between the handle and the locking mechanism is made by the electric drive, in order to then be able to open the lock mechanically in an emergency by operating the outer handle. An emergency is for example in the case of an accident: ago. If a sensor signals the presence of an emergency, the electric drive establishes the mechanical connection within a few 10 ms. Today's such locks are able to change a lock within 20 ms so that this can then be opened mechanically.

Als Sensor kann der Sensor eines Airbags dienen. Signalisiert der Sensor eines Airbags einen Unfall, so steht im Anschluss an das Signal in der Regel noch wenige Millisekunden (ms) elektrische Energie zur Verfügung, damit die mechanische Verbindung durch den elektrischen Antrieb hergestellt werden kann. Danach kann die elektrische Energieversorgung ausfallen.The sensor can be the sensor of an airbag. If the sensor of an airbag signals an accident, electrical energy is still available for a few milliseconds (ms) following the signal, so that the mechanical connection can pass through the electric drive can be made. After that, the electrical power supply may fail.

Ein weiterer Zensor kann den Ladezustand einer Fahrzeugbatterie überwachen. Unterschreitet der Ladezustand der Batterie einen bestimmten Schwellwert, so kann dieser Sförfall durch den Sensor signalisiert werden, um dann dafür Sorge zu tragen, dass der elektrische Antrieb die mechanische Verbindung herstellt, um anschließend ein mechanisches öffnen zu ermöglichen.Another censor can monitor the state of charge of a vehicle battery. If the state of charge of the battery falls below a certain threshold value, this case can be signaled by the sensor in order then to ensure that the electric drive establishes the mechanical connection, in order subsequently to enable a mechanical opening.

Es ist Aufgabe der Erfindung, ein Schloss der eingangs genannten Art weiter zu entwickeln. Insbesondere wird mit der vorliegenden Erfindung angestrebt, innerhalb einer besonders kurzen Zeit und/oder mit möglichst geringem Aufwand an elektrischer Energie ein Schloss von Normalbetrieb auf einen Notfall- bzw. störfallbetrieb umstellen zu köfnnenIt is an object of the invention to further develop a lock of the type mentioned. In particular, with the present invention, the aim is to be able to change over a lock from normal operation to emergency or accident operation within a particularly short time and / or with the least possible expenditure of electrical energy

Zur Lösung der Aufgabe umfassf ein Schloss die. Merkmale des ersten Anspruchs. Vorteilhafte Ausgestaltungen ergeben sich aus den Unteransprüchen.To solve the task, a lock includes the. Features of the first claim. Advantageous embodiments emerge from the subclaims.

Zur Lösung wird Schloss insbesondere für ein Kraftfahrzeug mit einer Schlossmechanik bereitgestellt und mit einem elektrischen Antrieb, mit dem im Normalbetrieb das Schloss elektrisch geöffnet werden kann. Das Schloss verfügt Ober einen weiteren Betriebszustand, der nachfolgend Störbetrieb genannt wird. Im Störbetrieb ist ein mechanisches Öffnen des Schlosses möglich, welches im Normalbetrieb nicht möglich ist. Das Schloss umfasst einen mechanischen Energiespeicher für ein Umstellen des Schlosses von Normalbetrieb auf Störbetrieb. Hierunter ist ein Energiespeicher zu verstehen, dessen mechanisch gespeicherte Energie dazu genutzt werden kann, um das Schloss von Normalbetrieb auf Störbetrieb umzustellen.To solve lock is provided in particular for a motor vehicle with a lock mechanism and with an electric drive with which the lock can be opened electrically in normal operation. The lock has Ober another operating condition, which is referred to below Störbetrieb. In fault mode, a mechanical opening of the lock is possible, which in the Normal operation is not possible. The lock comprises a mechanical energy store for a changeover of the lock from normal operation to fault operation. This is to be understood as meaning an energy store whose mechanically stored energy can be used to convert the lock from normal operation to fault operation.

Das anspruchsgemäße Schloss macht es möglich, in einem Störfall oder Notfall mechanisch gespeicherte Energie dazu nutzen, um das Schloss im Anschluss an das Freisetzen der mechanisch gespeicherten Energie mechanisch öffnen zu können, was so im Normalbetrieb nicht möglich ist. Im Anschluss an ein mechanisches Betätigen, zum Beispiel Betätigen eines Außengriffs eine Tür oder Klappe, kann im Störbetrieb diese Tür oder Klappe geöffnet werden, ohne dass dafür elektrische Energie benötigt wird. Der Bedarf an elektrischer Energie für eine solche Umstellung von Normalbetrieb auf Störbetrieb ist besonders gering.The claimed lock makes it possible to use mechanically stored energy in an accident or emergency to mechanically open the lock following the release of the mechanically stored energy, which is not possible in normal operation. Following a mechanical actuation, for example actuation of an outer handle of a door or flap, this door or flap can be opened in faulty operation without the need for electrical energy. The need for electrical energy for such a transition from normal operation to interference operation is particularly low.

Ein Beispiel für einen mechanischen Energiespeicher ist ein Druckluftspeicher. Soll das Schloss von Normalbetrieb auf Störbetrieb umgestellt werden, so wird der Druckluftspeicher geöffnet. Das unter Druck austretende Gas wird dann dazu genutzt, um beispielsweise einen Betätigungshebel mit einer Sperrklinke in der aus der Druckschrift DE 100 48 709 A1 bekannten Weise zu kuppeln. Die austretende Druckluft wird dann also dazu genutzt, um den aus der Druckschrift DE 100 48 709 A1 bekannten Zwischenhebel von einer nicht kuppelnden Stellung in eine kuppelnde Stellung zu bringen. Beispielsweise kann ein fixierter Kolben freigegeben werden, der dann aufgrund des Überdrucks im Druckluftspeicher bewegt wird. Die Bewegung des Kolbens kann mittelbar oder unmittelbar dafür genutzt werden, um ein mechanisches Betätigen des Schlosses zu ermöglichen, also auf Störbetrieb umzustellen. Ein Bewegen des aus der Druckschrift DE 100 48 709 A1 bekannten Zwischenhebels in seine kuppelnde Stellung erfordert relativ viel Zeit und Energie im Vergleich zum Fall des Öffnens eines Druckluftspeichers, also beispielsweise Freigabe eines fixierten Kolbens des Druckluftspeichers. Durch Einsatz eines mechanischen Energiespeichers kann daher Zeit und Energie reduziert werden, die aufzuwenden sind, um ein Schloss von Normalbetrieb in einen Störbetrieb zu bringen.An example of a mechanical energy storage is a compressed air storage. If the lock is to be converted from normal operation to fault mode, the compressed air storage tank is opened. The pressure exiting gas is then used to, for example, an actuating lever with a pawl in the of the document DE 100 48 709 A1 to couple known manner. The escaping compressed air is then used to the from the publication DE 100 48 709 A1 bring known intermediate lever from a non-coupling position in a coupling position. For example, a fixed piston can be released, which is then moved due to the pressure in the compressed air reservoir. The movement of the piston can be used directly or indirectly to allow a mechanical actuation of the lock, so on Change over to faulty operation. Moving the from the pamphlet DE 100 48 709 A1 known intermediate lever in its coupling position requires relatively much time and energy compared to the case of opening a compressed air reservoir, so for example release a fixed piston of the compressed air reservoir. By using a mechanical energy storage, therefore, time and energy can be reduced, which are spent to bring a lock from normal operation in a jamming operation.

Möglich ist der Einsatz eines Schwungrades, um so mechanisch gespeicherte Energie zur Verfügung stellen zu können, um von Normalbetrieb auf Sförbetrieb umzustellen,It is possible to use a flywheel in order to be able to provide mechanically stored energy in order to switch from normal operation to Sför operation.

In einer Ausgestaltung umfasst das Schloss eine elektrische Steuerung, die die Freigabe der im mechanischen Energiespeicher gespeicherten Energie zu steuern vermag. Diese Ausgestaltung ermöglicht es, mit Hilfe eines elektrischen oder elektronischen Sensors das Auftreten eines Störfalls innerhalb von kürzester Zeit zu erkennen und die Umstellung auf Sförbetrieb einzuleiten. Für das eigentliche Umstellen wird dann keine elektrische Energie mehr benötigt. Es kommt dann also nicht mehr darauf an, ob elektrische Energie für ein elektrisches Umstellen zur Verfügung steht.In one embodiment, the lock comprises an electrical control which is able to control the release of the energy stored in the mechanical energy store. This embodiment makes it possible, with the help of an electrical or electronic sensor to detect the occurrence of an accident within a very short time and initiate the switch to Sförbetrieb. For the actual switching then no more electrical energy is needed. It is then no longer important whether electrical energy is available for electrical switching.

In einer Ausgestaltung umfasst die elektrische Steuerung einen Elektromagneten, der magnetisch eine Kupplungskomponente in ihrer nicht kuppelnden Stellung hält. Steht keine oder nicht mehr hinreichende elektrische Energie zur Verfügung, so entfällt die magnetische Kraft, die die Kupplungskomponente in ihrer nicht kuppelnden Stellung zu halten vermag. Beispielsweise mit einer vorgespannten Feder, zum Beispiel mit einer vorgespannten Spiralfeder, wird dann die Kupplungskomponente in ihre kuppelnde Stellung bewegt, die es ermöglicht, das Schloss mechanisch zu öffnen. Bei dieser Ausführungsform muss keine elektrische Energie noch einige Millisekunden lang zur Verfügung stehen, um in einem Störfall, der einen Ausfall einer elektrischen Stromversorgung zur Folge hat, mechanisch eine Tür öder Klappe öffnen zu konnen.In one embodiment, the electrical control comprises an electromagnet that magnetically holds a coupling component in its non-coupling position. If there is no or no longer sufficient electrical energy available, so eliminates the magnetic force that is able to hold the coupling component in its non-coupling position. For example, with a preloaded spring, for example with a preloaded coil spring, then the coupling component is in their coupling Position moves, which makes it possible to open the lock mechanically. In this embodiment, electrical energy does not have to be available for a few milliseconds in order to mechanically open a door or flap in the event of a failure that results in a loss of electrical power.

In einer technisch einfachen Ausführungsform der Erfindung wird als mechanischer Speicher eine Feder, wie zum Beispiel eine Spiralfeder, eingesetzt. Diese ist vorgespannt, um so mechanische Energie zu speichern. Ein mechanischer Energiespeicher kann so mit geringem Bauraum auf technisch einfache Weise bereitgestellt werden, der gegenüber Störungen besonders unempfindlich ist.In a technically simple embodiment of the invention is used as a mechanical memory, a spring, such as a coil spring. This is preloaded to store mechanical energy. A mechanical energy storage can be provided in a technically simple manner with little space, which is particularly insensitive to interference.

In einer technisch einfachen Ausgestaltung wird als Feder eine Schenkelfeder eingesetzt, von der beispielsweise ein Federschenkel während des Schließens der Tür bewegt und somit in eine Speicherposition verfahren wird.In a technically simple embodiment, a leg spring is used as a spring, moved by the example, a spring leg during the closing of the door and thus moved into a storage position.

Um die Energie der Feder zu speichern, wird erfindungsgemäß ein Stift eingesetzt, der einen vorgespannten Schenkel der Feder für eine Umstellung auf Stötbetrieb freigibt, so dass mittels der in der Feder gespeicherten Energie die Möglichkeit geschaffen wird, dass Schloss mechanisch betätigen zu können. Ein solcher bewegbarer Stift kann aber auch beispielsweise einen Kolben eines Druckluftspeichers im Normalbetrieb fixieren. Durch Bewegen des Stiftes wird der Kolben freigegeben, um auf Störbetrieb umzustellen.In order to store the energy of the spring, a pin is used according to the invention, which releases a prestressed leg of the spring for conversion to Stötbetrieb, so that by means of energy stored in the spring the possibility is created that the lock can operate mechanically. However, such a movable pin can also fix, for example, a piston of a compressed air reservoir in normal operation. By moving the pin, the piston is released to switch to jamming operation.

In einer Ausgestaltung wird der Stift linear verfahren oder gedreht, um die mechanisch gespeicherte Energie freizugeben.In one embodiment, the pin is linearly moved or rotated to release the mechanically stored energy.

Vorteilhaft genügt eine Drehbewegung des Stiftes um seine Längsachse, um die mechanisch gespeicherte Energie frei zu geben. Hierdurch können Zeit und die Energie weiter verringert werden, um die im mechanischen Energiespeicher gespeicherte mechanische Energie für ein Umstellen von Normalbetrieb auf Störbetrieb freizugeben.Advantageously, a rotational movement of the pin around its longitudinal axis is sufficient to release the mechanically stored energy. In this way, time and energy can be further reduced in order to release the mechanical energy stored in the mechanical energy store for switching from normal operation to fault operation.

In einer weiteren vorteilhaften Ausführungsvariante der Erfindung weist der Stift eine Schräge oder Stufe für ein Freigeben der mechanisch gespeicherten Energie auf. In Abhängigkeit von der Stellung der Schräge oder Stufe wird mechanisch gespeicherte Energie freigegeben. Ein langes Ende der Schräge bzw. Stufe fixiert einen vorgespannten Schenkel einer Feder, so dass nach einem Drehen des Zylinderstiftes die: kurze Seite des Zylinderstiftes die Feder freigibt. Im Gegensatz zu bekannten Systemen kann das Drehen des Stiftes in sehr kurzen Zeiträumen erfolgen, so dass die Energie der Feder unmittelbar bereitsteht. Es ist so möglich, dass weniger als 5 ms elektrische Energie bereit gestellt werden muss, um anschließend mit Hilfe der mechanisch gespeicherten Energie das Schloss in einen Zustand zu bringen, der ein mechanisches Betätigen ermöglicht.In a further advantageous embodiment of the invention, the pin has a slope or step for releasing the mechanically stored energy. Depending on the position of the slope or step mechanically stored energy is released. A long end of the slope fixes a preloaded leg of a spring, so that after turning the cylinder pin the: short side of the cylinder pin releases the spring. In contrast to known systems, the rotation of the pin can be done in very short periods of time, so that the energy of the spring is immediately available. It is thus possible that less than 5 ms electrical energy must be provided in order then to bring the lock with the help of the mechanically stored energy in a state that allows a mechanical actuation.

Vorzugsweise kann der elektrische Antrieb, mit dem das Schloss betätigt werden kann, durch die Steuerung so gesteuert werden, dass der elektrische Antrieb die mechanisch gespeicherte Energie freizugeben vermag. Der elektrische Antrieb wird also im Normalfall dafür eingesetzt, um das Schloss so elektrisch zu betätigen, dass anschließend die Tür oder Klappe geöffnet werden kann. Darüber hinaus wird der elektrische Antrieb eingesetzt, um das Schloss in einen Zustand zu versetzen, der ein mechanisches Betätigen erlaubt, beispielsweise bewegt der elektrische Antrieb in einer Ausführungsform den vorgenannten Stift, um durch die Bewegung des Stiftes die gespeicherte mechanische Energie freizugeben.Preferably, the electric drive, with which the lock can be actuated, be controlled by the controller so that the electric drive is able to release the mechanically stored energy. The electric drive is thus normally used to electrically actuate the lock so that subsequently the door or flap can be opened. In addition, the electric drive is used to set the lock in a state that allows a mechanical actuation, for example, in one embodiment, the electric drive moves the aforementioned pin to release the stored mechanical energy by the movement of the pin.

Der elektrische Antrieb wird In einer Ausführungsform zur Lösung der gestellten Aufgabe durch eine elektrische Steuerung so gesteuert dass dieser die mechanisch gespeicherte Energie in einem Störfall freizugeben vermag.In one embodiment, the electric drive is controlled by an electric control system in order to achieve the set object, so that it is able to release the mechanically stored energy in the event of a malfunction.

In einer vorteilhaften Ausführungsform der Erfindung, kann der mechanische Energiespeicher durch Schließen einer Tür oder Klappe aufgeladen werden. Im Fall einer Feder wird also eine Feder durch das Schließen einer Tür oder Klappe vorgespannt. Im Fall eines Druckluftspeichers wird beispielsweise ein Kolben so bewegt, dass hierdurch ein Gasdruck aufgebaut wird. Diese Ausführungsform, die ein Wiederaufladen eines mechanischen Energiespeichers durch Schließen einer Tür oder Klappe ermöglicht, stellt sicher, dass ein mechanischer Energiespeicher zuverlässig wieder aufgeladen werden kann bzw. wird, und zwar zumindest dann, wenn der mechanische Energiespeicher aus irgendwelchen Gründen zuvor mechanisch gespeicherte Energie abgegeben hat, also entleert worden ist.In an advantageous embodiment of the invention, the mechanical energy storage can be charged by closing a door or flap. In the case of a spring so a spring is biased by closing a door or flap. In the case of a compressed air reservoir, for example, a piston is moved so that thereby a gas pressure is built up. This embodiment, which allows recharging a mechanical energy storage by closing a door or flap, ensures that a mechanical energy store can be reliably recharged, at least when the mechanical energy store for some reason previously released mechanically stored energy has been so emptied.

Vorzugsweise ist das Schloss so beschaffen, dass nur im Störbetrieb eine zugehörigen Tür oder Klappe von außen mechanisch geöffnet werden kann. In einer Ausgestaltung kann die Tür oder Klappe von innen mechanisch geöffnet werden. In einer anderen Ausgestaltung kann die Tür oder Klappe von innen nur im Störbetrieb mechanisch geöffnet werden,Preferably, the lock is such that an associated door or flap can be mechanically opened from the outside only in faulty operation. In one embodiment, the door or flap can be mechanically opened from the inside. In another embodiment, the door or flap can be mechanically opened from the inside only in faulty operation,

In einer Ausgestaltung kann das Schloss ergänzend auch durch einen elektrischen Antrieb von Normalbetrieb auf Störbetrieb umgestellt werden, so zum Beispiel in der aus der Druckschrift DE 100 48 709 A1 bekannten Weise. Steht in einem Notfall oder Störfall hinreichend viel und hinreichend lange elektrische Energie zur Verfügung, so kann das Umstellen von Normalbetrieb aus Störbetrieb unmittelbar durch einen elektrischen Antrieb erfolgen. Der mechanische Energiespeicher ergänzt dann das Umstellen, wäre. aber nicht für das Umstellen zwingend erforderlich.In one embodiment, the lock can be supplemented by an electric drive from normal operation to faulty operation in addition, such as in the document DE 100 48 709 A1 known way. Is sufficient in an emergency or accident sufficient amount and sufficiently long electrical energy Available, so the switching from normal operation can be made directly from an interference operation by an electric drive. The mechanical energy storage then complements the switching would be. but not mandatory for the conversion.

Durch die Erfindung wird es insbesondere ermöglicht, während des Schließvorgangs einer Seitentür oder Klappe eine Feder vorzuspannen, die im Falle eines entsprechend hohen Spannungsabfalls der Batterie des Kraftfahrzeugs oder im Fall eines Unfalls freigegeben wird, damit die mechanisch gespeicherte Energie zur Verfügung steht, um das Schloss in einen Zustand zu versetzen, der ein mechanisches Betätigen ermöglicht, Hierdurch können die Reaktionszeiten deutlich reduziert und gleichzeitig die Gefahr minimiert werden, dass keine ausreichende Stromversorgung zur Verfügung steht. Die bekannten 20 Millisekunden können so auf Zeiten kleiner als 5 Millisekunden reduziert werden,The invention makes it possible in particular during the closing of a side door or flap to bias a spring which is released in the event of a correspondingly high voltage drop of the battery of the motor vehicle or in the event of an accident, so that the mechanically stored energy is available to the lock In this way, the reaction times can be significantly reduced while at the same time minimizing the risk that an adequate power supply is not available. The known 20 milliseconds can be reduced to times less than 5 milliseconds,

Es zeigen

Figur 1:
mechanischer Energiespeicher im aufgeladenen Zustand;
figur 2:
mechanischer Energiespeicher während der Abgabe der mechanisch gespeicherten Energie;
Figur 3:
Schnitt durch einen Stift mit stufenförmigem Ende.
Show it
FIG. 1:
mechanical energy storage in the charged state;
figure 2:
mechanical energy storage during the delivery of the mechanically stored energy;
FIG. 3:
Section through a pin with a stepped end.

Die Figur 1 zeigt einen mechanischen Energiespeicher eines Schlosses, mit dem das Schloss von Normalbetrieb auf Störbetrieb umgestellt werden kann. Der mechanische Energiespeicher umfasst eine vorgespannte Schenketfeder 1 mit zwei Schenkeln 2 und 3. Der eine Schenkel 2 liegt vorgespannt an einem Bolzen 4 an. Der andere Schenkel 3 liegt vorgespannt an einem Stift 5 an. Darüber hinaus wird, die Feder 1 durch eine Achse 6 gehalten. Der Stift 5 weist ein stufenförmiges Ende mit einer höherliegenden Stufe 7 und einer tieferliegenden Stufe 8 auf. Im aufgeladenen Zustand des mechanischen Energiespeichers liegt der Schenkel 3 der Feder 1 an der höherliegenden Stufe 7 an.The FIG. 1 shows a mechanical energy storage of a lock with which the lock can be switched from normal operation to faulty operation. The mechanical energy storage comprises a prestressed Schenketfeder 1 with two legs 2 and 3. The one leg 2 is biased to a bolt 4 at. The other leg 3 is biased to a pin 5. In addition, the spring 1 is held by an axis 6. The pin 5 has a stepped end with a higher level 7 and a deeper level 8 on. In the charged state of the mechanical energy storage of the leg 3 of the spring 1 is at the higher level 7 at.

Die Figur 1 zeigt darüber hinaus einen Hebel 9, der um seine Achse 10 gedreht werden kann. Ein Ende des Hebels 9 weist einen abstehenden Bolzen 11 auf, der an dem Schenkel 3 der Feder 1 anliegt. Der Stift 5 kann um seine, in der Figur 3 im Schnitt gezeigte Längsachse 12 gedreht werden.The FIG. 1 also shows a lever 9, which can be rotated about its axis 10. One end of the lever 9 has a protruding pin 11 which bears against the leg 3 of the spring 1. The pin 5 can be around his, in the FIG. 3 shown in section longitudinal axis 12 are rotated.

Wird der Stift 5 von der in der Figur 1 gezeigten Stellung um seine Längsachse so gedreht, dass er die in der Figur 2 gezeigte Stellung einnimmt, so liegt der Schenkel 3 der Feder 1 nicht mehr an der höherliegenden Stufe 7 an. Der Schenkel 3 bewegt sich nun über die tieferliegenden Stufe 8 hinweg Pfeilrichtung 13. Hierdurch wird der Hebel 9 gemäß Pfeilrichtung 14 um seine Achse 10 gedreht. Diese Bewegung des Hebels bewirkt, dass das zugehörige Schloss anschließend mechanisch geöffnet werden kann, und zwar in einer Weise, die zuvor nicht möglich war.Will the pin 5 of the in the FIG. 1 shown position rotated about its longitudinal axis so that it in the FIG. 2 shown position, so the leg 3 of the spring 1 is no longer at the higher level 7 at. The leg 3 now moves across the lower stage 8 away arrow direction 13. As a result, the lever 9 is rotated according to the direction of arrow 14 about its axis 10. This movement of the lever causes the associated lock to then be mechanically opened, in a manner previously not possible.

Bezugszeichenliste:LIST OF REFERENCE NUMBERS

1:1:
SchenkelfederLeg spring
2:2:
Schenkel der SchenkelfederThighs of thigh feather
3:3:
Schenkel der SchenkelfederThighs of thigh feather
4:4:
Bolzenbolt
5:5:
drehbarer Stiftrotatable pin
6:6:
Achseaxis
7:7:
höherliegende Stufehigher level
8:8th:
tieferliegenden Stufedeeper level
9:9:
drehbar gelagerten Hebelrotatably mounted lever
10:10:
Achse des drehbar gelagerten HebelsAxle of the rotatably mounted lever
11:11:
vom Hebel vorstehender Bolzenfrom the lever protruding bolt
12:12:
Längsachse des StiftesLongitudinal axis of the pin
13:13:
Pfeilrichtungarrow
14:14:
Pfeilrichtungarrow

Claims (11)

  1. Latch, especially for a motor vehicle with a latch mechanism, whereby the latch comprises two different operating states, i.e. normal operation, in which the latch can be electrically opened, and breakdown operation, in which the latch can be mechanically opened, characterized in that the latch comprises a mechanical energy storage device (1, 5), with which the latch can be shifted from normal operation to breakdown operation, characterized in that a movable pin (5) is present which is capable of releasing the energy stored in the mechanical energy storage device (1, 5) by means of movement.
  2. Latch according to claim 1, characterized in that the latch comprises an electrical control which can control the release of the energy stored in the mechanical energy storage device (1, 5).
  3. Latch according to claim 1 or 2, characterized in that the mechanical energy storage device comprises a spring, in particular a leg spring (1).
  4. Latch according to one of the previous claims, characterized in that the pin (5) is capable of releasing the energy stored in the mechanical energy storage device (1, 5) by means of rotation around its longitudinal axis (12).
  5. Latch according to the previous claim, characterized in that one end of the pin (5) comprises a step (7, 8) or a bevel for the release of the energy stored in the mechanical energy storage device (1, 5).
  6. Latch according to one of the previous claims, characterized in that an electrical drive, with which the latch can be electrically opened in normal operation, is capable of moving the pin (5) for a shift from normal operation to breakdown operation.
  7. Latch according to one of the previous claims, characterized in that an electrical drive can be controlled by an electrical control in such a way that it is capable of releasing the energy stored in the mechanical energy storage device.
  8. Latch according to one of the previous claims, characterized in that the latch can be shifted from normal operation to breakdown operation by the activation lever of the latch being coupled with the locking mechanism of the latch.
  9. Latch according to one of the previous claims, characterized in that an intermediate lever is present for coupling of the activation lever with the locking mechanism, which can be moved from a non-coupling position into a coupling position due to the mechanically stored energy.
  10. Latch according to one of the previous claims, characterized in that the mechanical energy storage device can be charged up by closing a door or flap.
  11. Latch according to one of the previous claims, characterized in that a door or flap can only be mechanically opened from outside in breakdown operation.
EP14750430.2A 2013-08-29 2014-07-14 Electric motor vehicle lock having a spring accumulator Active EP3039211B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102013217265.6A DE102013217265A1 (en) 2013-08-29 2013-08-29 Electric motor vehicle lock with spring accumulator
PCT/DE2014/100251 WO2015027983A1 (en) 2013-08-29 2014-07-14 Electric motor vehicle lock having a spring accumulator

Publications (2)

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EP3039211A1 EP3039211A1 (en) 2016-07-06
EP3039211B1 true EP3039211B1 (en) 2019-10-02

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US (1) US10577841B2 (en)
EP (1) EP3039211B1 (en)
CN (1) CN105683466B (en)
DE (2) DE102013217265A1 (en)
WO (1) WO2015027983A1 (en)

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Publication number Publication date
US10577841B2 (en) 2020-03-03
US20160222704A1 (en) 2016-08-04
CN105683466B (en) 2019-03-26
WO2015027983A1 (en) 2015-03-05
DE102013217265A1 (en) 2015-03-19
CN105683466A (en) 2016-06-15
DE112014003919A5 (en) 2016-06-09
EP3039211A1 (en) 2016-07-06

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