EP3511497B1 - Ferrure de tige d'entraînement pour un élément de fermeture de bâtiment, élément de fermeture de bâtiment correspondant ainsi que procédé de fonctionnement d'une ferrure de tige d'entraînement et procédé de montage d'une ferrure de tige d'entraînement - Google Patents

Ferrure de tige d'entraînement pour un élément de fermeture de bâtiment, élément de fermeture de bâtiment correspondant ainsi que procédé de fonctionnement d'une ferrure de tige d'entraînement et procédé de montage d'une ferrure de tige d'entraînement Download PDF

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Publication number
EP3511497B1
EP3511497B1 EP18212000.6A EP18212000A EP3511497B1 EP 3511497 B1 EP3511497 B1 EP 3511497B1 EP 18212000 A EP18212000 A EP 18212000A EP 3511497 B1 EP3511497 B1 EP 3511497B1
Authority
EP
European Patent Office
Prior art keywords
connecting rod
locking
drive rod
locking device
building closure
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
EP18212000.6A
Other languages
German (de)
English (en)
Other versions
EP3511497A1 (fr
Inventor
Thomas Steiert
Andreas Neumann
Holger Beyer
Detlef Graef
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.)
Roto Frank Fenster und Tuertechnologie GmbH
Original Assignee
Roto Frank Fenster und Tuertechnologie 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.)
Filing date
Publication date
Application filed by Roto Frank Fenster und Tuertechnologie GmbH filed Critical Roto Frank Fenster und Tuertechnologie GmbH
Publication of EP3511497A1 publication Critical patent/EP3511497A1/fr
Application granted granted Critical
Publication of EP3511497B1 publication Critical patent/EP3511497B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C9/00Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing
    • E05C9/004Faceplates ; Fixing the faceplates to the wing
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B17/00Accessories in connection with locks
    • E05B17/0004Lock assembling or manufacturing
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B17/00Accessories in connection with locks
    • E05B17/20Means independent of the locking mechanism for preventing unauthorised opening, e.g. for securing the bolt in the fastening position
    • E05B17/2007Securing, deadlocking or "dogging" the bolt in the fastening position
    • E05B17/203Securing, deadlocking or "dogging" the bolt in the fastening position not following the movement of the bolt
    • E05B17/2038Securing, deadlocking or "dogging" the bolt in the fastening position not following the movement of the bolt moving rectilinearly
    • 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
    • E05B47/02Movement of the bolt by electromagnetic means; Adaptation of locks, latches, or parts thereof, for movement of the bolt by electromagnetic means
    • E05B47/026Movement of the bolt by electromagnetic means; Adaptation of locks, latches, or parts thereof, for movement of the bolt by electromagnetic means the bolt moving rectilinearly
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/0004Additional locks added to existing lock arrangements
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C9/00Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing
    • E05C9/006Details of bars
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B17/00Accessories in connection with locks
    • E05B17/0054Fraction or shear lines; Slip-clutches, resilient parts or the like for preventing damage when forced or slammed
    • E05B17/0062Fraction or shear lines; Slip-clutches, resilient parts or the like for preventing damage when forced or slammed with destructive disengagement
    • 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
    • E05B2047/0048Circuits, feeding, monitoring
    • E05B2047/0057Feeding
    • E05B2047/0058Feeding by batteries
    • 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
    • E05B2047/0048Circuits, feeding, monitoring
    • E05B2047/0067Monitoring
    • E05B2047/0068Door 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
    • E05B2047/0091Retrofittable electric locks, e.g. an electric module can be attached to an existing manual lock
    • 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
    • E05B2047/0094Mechanical aspects of remotely controlled locks
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C9/00Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing
    • E05C9/18Details of fastening means or of fixed retaining means for the ends of bars
    • E05C9/1825Fastening means
    • E05C9/1833Fastening means performing sliding movements
    • E05C9/1841Fastening means performing sliding movements perpendicular to actuating bar

Definitions

  • the invention relates to a drive rod fitting for a building locking element, which has at least one drive rod that can be linearly displaced on a frame element of the building locking element and a faceplate that can be attached to the frame element and covers the drive rod, the drive rod being fixable with respect to the frame element by means of a locking device.
  • the invention further relates to a building closure element with a drive rod fitting, a method for operating a drive rod fitting and a method for assembling a drive rod fitting.
  • a burglar-proof window or door arrangement of a house for example a window or door arrangement comprising at least one pane which is surrounded by a frame, the window or the door having: a mechanism for opening and closing the window or the door, and At least one safety unit, the safety unit comprising: an actuator, the actuator being triggered when a blocking signal is transmitted to the actuator, a blocking device which is able to move between at least two positions, an unlocked position and a blocked position .
  • the locking device is arranged in such a way that, when the actuator is actuated, the actuator causes the locking device to be moved from an unlocked position to the locked position in the receiving device and the window or door is locked to the effect that to be opened by using the opening and closing mechanism of the window and the door, respectively, and wherein the actuator is supplied with power by means of a battery which is arranged in the fuse unit.
  • a drive rod fitting is also, for example, from the FR 2 679 953 A1 which discloses the preamble of claim 1 is known.
  • a connecting rod fitting for a building closure element which has advantages over known connecting rod fittings, in particular has a high level of security and is versatile, preferably can be retrofitted particularly easily.
  • a connecting rod fitting with the features of claim 1.
  • the locking device couples the drive rod directly to the faceplate in a locking setting and fixes it with respect to this and, in a release setting, releases the drive rod for displacement with respect to the faceplate and that the drive rod fitting is provided and designed to actuate an operating handle of the building locking element sense and only move the locking element into the release position upon detection of such an actuation, if a central control has previously set a release setting.
  • the building closure element is, for example, in the form of a window, a door or the like. To this extent, it is intended and designed for arrangement and fastening in a building recess of a building.
  • the building closure element preferably has a frame and a sash frame, the frame being provided and designed for stationary arrangement in the building recess, whereas the sash frame is displaceable with respect to the frame, in particular is mounted on the frame in a displaceable manner. For example, the casement can be rotated about an axis of rotation with respect to the window frame.
  • the window can be designed, for example, as a turn window or a turn-tilt window.
  • the building closure element has the connecting rod fitting, which in turn has the at least one connecting rod.
  • the drive rod or the further drive rod is present together with the locking pin on one of the frame elements, that is to say either on the frame or on the casement.
  • the strike plate is arranged on the respective other frame element. If the drive rod or the locking pin is displaceably mounted on the casement or at least can be mounted, the strike plate is arranged on the frame and fastened there.
  • the locking pin is linearly displaceable with respect to the frame element on which it is arranged and for this purpose is mounted on the frame element, namely by means of the drive rod.
  • the strike plate is arranged in a stationary manner on the other frame element, in particular rigidly connected to it.
  • the drive rod can be mounted or mounted in a linearly displaceable manner on the frame element of the building closure element.
  • the former is to be understood as meaning that the drive rod is intended and suitable for mounting on the frame element, in particular as long as the drive rod fitting is not mounted on the building closure element.
  • the drive rod is mounted on the frame element so as to be linearly displaceable.
  • the frame element is to be understood as meaning either the casement or the frame, but preferably the former. If only the frame element is dealt with in the context of this description, the frame element on which the drive rod can be or is supported is always meant, unless otherwise indicated.
  • the frame element has, for example, a groove in which the drive rod is arranged for mounting.
  • the groove can be designed, for example, as a euro groove.
  • the faceplate which covers the drive rod at least in some areas, especially after the drive rod fitting has been installed on the building closure element.
  • the faceplate is in this respect on the side of the drive rod facing away from the frame element.
  • the drive rod is preferably held on the frame element by the faceplate.
  • the drive rod rests on the one hand on the frame element and on the other hand on the faceplate and can be linearly displaced between these.
  • the faceplate is thus arranged in such a way that it serves to support the drive rod on the frame element or forms part of this support.
  • the faceplate can be designed and arranged in such a way that it closes the groove at least in some areas.
  • the faceplate is preferably arranged parallel to the drive rod. Both the drive rod and the faceplate each extend over at least part of the longitudinal extension of a spar of the frame element on which they are arranged and mounted displaceably.
  • the faceplate is preferably attached directly to the frame element.
  • at least one fastening element is preferably provided, which engages on the one hand on the faceplate and on the other hand on the frame element.
  • the fastening element extends through, for example, the drive rod.
  • the fastening element is preferably in the form of a screw or a bolt.
  • the drive rod fitting has the locking device which can fix the drive rod with respect to the frame element.
  • the locking device is used to fix the drive rod in such a way that unlocking, i.e. shifting the locking pin out of the locking position, in particular into the release position, is prevented, so that the building locking element remains securely locked and locked.
  • the locking device can, for example, be part of an actuating handle by means of which the drive rod can be displaced.
  • the actuating handle is operatively connected or coupled to the drive rod via a gear, the gear converting a rotary movement of the actuating handle into a linear displacement of the drive rod.
  • the locking device is now assigned, for example, to the actuating handle, in particular it comprises a lock and / or a button, in particular a push button.
  • the operating handle can be fixed by means of the lock and / or by operating the button.
  • the drive rod cannot be displaced by means of the actuating handle, so that it is also fixed with respect to the frame element.
  • the drive rod is only fixed indirectly with respect to the frame element, namely by fixing the operating handle.
  • the drive rod If the drive rod is attacked directly, for example in the context of a break-in attempt, there is now a comparatively long traction path to fix the drive rod.
  • the force acting on the drive rod must first reach the actuating handle via the transmission and be introduced by this into the frame element. Because of the play present here, for example because of tolerances and / or elastic and / or plastic deformations, the drive rod can accordingly be linearly displaced to a certain extent without the locking device acting from it via the actuating handle being able to prevent this.
  • the locking device fixes the drive rod directly with respect to the frame element.
  • the locking device acts directly on the one hand on the frame element and on the other hand directly on the drive rod so that they can be fastened directly to one another.
  • Such a procedure has the advantage over the arrangement of the locking device on the actuating handle that the frictional connection path is shorter, so that a reliable fixing of the drive rod can be achieved.
  • the frame element in such a way that the locking device can act on it in such a way that the drive rod is reliably fixed in place.
  • reinforcement or the like is arranged, for example, in the frame element.
  • the building closure element or its frame element is already prepared for the locking of the drive rod by means of the locking device and designed to be correspondingly stable. Retrofitting the locking device on a conventional frame element, for example without reinforcement, is therefore not possible.
  • the locking device couples or can couple the drive rod directly to the faceplate.
  • the locking device for fixing the drive rod acts directly on the faceplate on the one hand and directly on the drive rod on the other hand.
  • the locking setting and the release setting can be set on the locking device. In the locking device, the locking device fixes the drive rod with respect to the faceplate, namely by coupling the drive rod directly to the faceplate. In the release setting, however, the locking device releases the drive rod for displacement with respect to the faceplate.
  • the locking device works completely independently of the building locking element and also independently of the actuating handle or the transmission. Even when the connecting rod fitting is not mounted on the building closure element, the locking device can in this respect be preferred for fixing the connecting rod the faceplate can be used. Because the faceplate for its part is connected to the frame element, in particular is rigidly attached to the frame element, the drive rod is finally fixed in relation to the frame element in the locking setting of the locking device.
  • the direct coupling of the drive rod to the faceplate by means of the locking device is understood to mean that the coupling in particular does not run via the frame element. It is therefore precisely not provided that the locking device couples the drive rod to the faceplate via the frame element. Rather, it engages both directly on the drive rod and directly on the faceplate. Of course, however, it can be provided that the locking device also couples the drive rod directly to the frame element so that further improved safety is achieved. In such a configuration, the locking device engages directly on the drive rod on the one hand and directly on the faceplate as well as directly on the frame element on the other hand, in order to connect the drive rod directly to the faceplate and the frame element and fix it with respect to them when the locking setting is present.
  • the locking device has a locking element which is movably mounted by means of a bearing and which in a first position for the locking setting directly couples the drive rod to the faceplate and in a second position for the release setting the drive rod from the faceplate decoupled.
  • the locking element is part of the locking device and is mounted displaceably, namely by means of the at least one bearing.
  • the locking element is preferably linearly displaceable.
  • a rotatable mounting or the like can also be implemented.
  • At least the locking element can be arranged in the first position and the second position.
  • the first position is for the detent setting and the second setting is for the release setting.
  • the locking element engages both directly on the drive rod and directly on the faceplate in order to couple them with one another and fix them accordingly against one another.
  • the locking element releases the drive rod with respect to the faceplate.
  • the coupling of the drive rod to the faceplate by the locking element is preferably effected in a form-fitting manner.
  • the locking element engages in a locking recess in the drive rod and in a locking recess in the faceplate in each case in a form-fitting manner, the locking recess and the locking bolt being designed in such a way that when the locking bolt engages in the locking recess, the direct coupling and, accordingly, the fixing of the drive rod with regard to the faceplate.
  • the locking recess of the drive rod and the locking recess of the faceplate are each preferably in the form of a closed-edge recess, that is to say have a continuous edge.
  • the locking element is preferably in the form of a locking bolt.
  • the locking element is preferably made of a rigid material, in particular of the same material as the drive rod.
  • a preferred further embodiment of the invention provides that the locking element is present as a locking bolt and in the first position engages in a locking recess in the drive rod and in a corresponding locking recess in the faceplate and in the second position for decoupling from the drive rod on the side facing away from the faceplate Drive rod is present.
  • the design of the locking element as a locking bolt has already been pointed out above.
  • the locking bolt can basically have any cross-section, for example it is round, elliptical or rectangular in cross-section, in particular cuboid or square.
  • the locking bolt can be present as a cylinder, in particular as a straight cylinder, for example as a straight circular cylinder.
  • the drive rod and the faceplate each have a locking recess, with both locking recesses being adapted in shape and / or dimensions to the locking element, namely in such a way that the locking element fixes the drive rod in a form-fitting manner with respect to the faceplate when it engages the locking recesses.
  • the locking element is arranged in the first position. If, on the other hand, the locking element is in the second position, it should enable the drive rod and faceplate to move relative to one another. For this purpose, it is preferably present on the side of the drive rod facing away from the faceplate, that is to say ultimately on the side of the drive rod facing the frame element. Ideally, the locking element lies completely on this page in order to release the drive rod for relocation not only with regard to the faceplate, but also with regard to the frame element. Even when the locking element is mounted on the frame element, the displaceability of the drive rod with respect to the faceplate and with respect to the frame element is ensured in the second position.
  • a housing of the locking device is attached directly to the faceplate. At least the locking element is displaceably mounted in or on the housing. An actuator for displacing the locking element is preferably also arranged in the housing.
  • the housing is arranged on the drive rod on the side facing away from the faceplate.
  • the housing has a sliding surface on which the drive rail rests. The sliding surface serves to support the drive rod.
  • the housing is attached directly to the faceplate, in particular by means of a fastening element.
  • the housing is attached to the faceplate on the side of the faceplate facing away from the drive rod.
  • the housing is arranged in a rebate area of the building closure element which, when the building closure element is closed, is present as a cavity between the casement and the frame.
  • the fastening element preferably extends through the drive rod.
  • the drive rod can have a corresponding recess, for example a slot-like recess. Due to the direct attachment of the housing to the faceplate, joint assembly of the entire drive rod fitting on the frame element of the building closure element is possible. In other words, this means that the housing is arranged and fastened to the frame element together with the drive rod and the faceplate. The housing of the locking device is therefore preferably fastened to the frame element via the faceplate, in particular exclusively.
  • the housing is on the one hand attached directly to the faceplate and on the other hand engages the frame element, in particular rests against the frame element after the espagnolette fitting has been installed on the building closure element supported on him, or attached to the frame element.
  • a further development of the invention provides that the housing is fastened to the faceplate by means of at least one fastening element passing through an elongated hole in the drive rod is.
  • the direct fastening of the housing to the faceplate has the particular advantage that the housing can be mounted on the frame element together with the faceplate and more preferably together with the drive rod.
  • the drive rod is reliably displaceably mounted between the housing and the faceplate, the drive rod preferably resting on the one hand on the housing, in particular on the sliding surface of the housing, and on the other hand against the faceplate.
  • the locking element can be displaced by means of an actuator, in particular an electric motor, an electromagnet or a piezo actuator.
  • the actuator is provided, which in principle can be designed as desired. It is particularly preferably in the form of the electric motor, the electromagnet or the piezo actuator.
  • the actuator is designed in particular in such a way that it effects a linear displacement of the locking element.
  • the electric motor has a corresponding gear, for example a rack and pinion gear, which converts the rotary movement of the electric motor into a linear movement.
  • the electric motor itself can alternatively already be in the form of a linear motor.
  • the actuator is an electrical actuator, so that the locking element can be displaced using electrical energy.
  • the electrical energy for operating the actuator can be provided, for example, from an energy store or by means of a permanent power supply.
  • the energy store is preferably in the form of a battery, in particular a rechargeable battery.
  • a capacitor can be provided, the capacity of which is preferably dimensioned such that the electrical energy temporarily stored in it is reliably and regularly sufficient at least to move the locking element from the first position to the second position and back again to the first position.
  • the permanent power supply is to be understood as meaning, for example, a permanent connection to a power grid, in particular a wired connection.
  • the energy store its charge status is preferably transmitted permanently or periodically to a central controller.
  • a further embodiment of the invention can preferably provide that the locking device has at least one state sensor for detecting an open state of the building locking element and / or at least one position sensor for detecting a position of the drive rod and / or a position of the locking element and / or a vibration sensor for detecting shocks and / or vibrations and / or a grip position sensor for detecting a position of an actuating handle of the building locking element and / or a pressure sensor for detecting a pressure force on the locking element and / or a break sensor for detecting a break in the locking element.
  • the locking device has at least one sensor which can assume a large number of different forms. The sensor is available in the form of one of the following configurations: condition sensor, position sensor, shock sensor, grip position sensor, pressure sensor and breakage sensor. Of course, several or all of the sensors mentioned can be assigned to the locking device.
  • the state sensor is used to detect the opening state of the building closure element, i.e. to determine whether the casement is in the closed position with respect to the window frame or outside the closed position, in particular in the open position. If the sash of the building closure element is optionally rotatable or pivotable about more than one axis with respect to the window frame, for example in the case of a tilt and turn window, the opening state that can be detected by the state sensor can, for example, distinguish between a closed state, a rotary open state and a tilt open state.
  • the position sensor is used to detect the position of the drive rod and / or the position of the locking element and, to that extent, to determine whether the building locking element is locked or unlocked.
  • the position sensor can additionally or alternatively determine whether the drive rod is in a position in which a certain functionality of the building locking element is permitted. If the connecting rod is in this position, the functionality is permitted, otherwise it is prevented.
  • the functionality can be, for example, a gap ventilation in which the building closure element can only be opened to a certain extent, at least not completely.
  • the functionality can also be a tilting of the casement with respect to the window frame, which takes place around a tilting axis that is different from an axis of rotation around which the casement is otherwise pivoted when the building closure element is opened.
  • the shock sensor is designed to detect shocks and / or vibrations and is used, for example, to detect an attempted break-in. Additionally or alternatively, the handle position sensor can be used to determine the position in which the operating handle of the building closure element is located.
  • the operating handle is used to operate of the building locking element or the connecting rod fitting, in particular for moving the connecting rod.
  • the actuating handle is preferably operatively connected or coupled to the drive rod via the gear mechanism already mentioned above.
  • the pressure sensor is used to detect a force acting on the locking element, for example a shear force.
  • a shear force is brought about, for example, by a force acting on the drive rod aimed at displacement.
  • this force exceeds a breaking force of the locking element, the integrity of the locking element may be impaired, namely the locking element may break.
  • Such can be detected by means of the breakage sensor.
  • the sensors mentioned serve to reliably identify the status of the espagnolette fitting and / or the building closure element.
  • the locking device can provide a signal for a central control unit, for example a central control unit of a house control and / or an alarm system, as a function of measured values of the at least one sensor or the sensors.
  • the locking device has a drive rod drive for linear displacement of the drive rod.
  • the drive rod drive is preferably also arranged in the housing.
  • the drive rod drive acts at least temporarily on the drive rod in order to displace it in a linear direction.
  • the drive rod drive is particularly preferably an electric drive rod drive.
  • the locking device serves not only to fix or release the drive rod with respect to the faceplate, but also to move it. A particularly high degree of integration of the drive rod and a high degree of flexibility are thus achieved.
  • the invention further relates to a building locking element with a connecting rod fitting, in particular a connecting rod fitting according to the statements in the context of this description, wherein the connecting rod fitting has at least one drive rod mounted linearly displaceably on a frame element of the building closure element and a faceplate attached to the frame element and covering the drive rod, wherein the drive rod can be fixed with respect to the frame element by means of a locking device.
  • the locking device in a locking position directly couples the drive rod to the faceplate and fixes it with respect to it and, in a release setting, releases the drive rod for displacement with respect to the faceplate.
  • the locking device is arranged at least in some areas in a recess in the frame element.
  • the recess adjoins, for example, the groove in which the drive rod is arranged.
  • the recess opens into or starts from the groove.
  • the locking device is preferably arranged completely covered in the frame element.
  • it is covered, for example, by the faceplate.
  • the recess can already be formed in the frame element during manufacture. However, it can also be provided that the recess is only subsequently produced in the frame element. The latter is particularly preferably provided in the case of a retrofitting of the connecting rod fitting on the building closure element.
  • the recess is initially not present. Rather, a connecting rod fitting different from the drive rod fitting according to the invention is mounted on the frame element or the building closure element. This is removed from the frame element. The recess is then formed in the frame element, for example by milling. Subsequently it is easily possible to attach the espagnolette according to the invention to the frame element.
  • the locking device is closed Building closure element preferably arranged in a rebate area that is present between the frame and the casement.
  • an actuating handle is arranged on the frame element, which is operatively connected to the drive rod via a gear mechanism for its displacement, and / or that the locking device has a drive rod drive for linear displacement of the drive rod.
  • the operating handle, the drive rod drive or both are provided.
  • the actuation handle is mounted on the building closure element or its frame element, for example rotatably mounted.
  • the operating handle is in operative connection with the drive rod via the gear or is coupled to it via the gear.
  • the transmission is preferably provided and designed to convert a rotary movement of the actuating handle into a linear displacement of the drive rod.
  • the drive rod drive integrated in the locking device is preferably an electrical drive rod drive which has at least one electrical actuator.
  • a preferred further embodiment of the invention provides that a locking element of the locking setting has a predetermined breaking point, which is arranged between the drive rod and the faceplate when the locking setting is present, the predetermined breaking point being designed to ensure an emergency opening of the building closure element by means of the actuating handle.
  • a force to be applied via the actuating handle which leads to the breaking of the locking element at the predetermined breaking point.
  • the force required for this is significantly greater than a force occurring during normal use of the building closure element.
  • the force leading to the calculation of the locking element can preferably only be applied via the actuating handle if an additional element is arranged on this, for example a handle extension.
  • the breaking of the locking element is effected at the predetermined breaking point by means of a suitable means, for example when an electrical signal occurs.
  • the espagnolette, its housing and / or the building closure element have an access option to the locking element.
  • the access option is realized, for example, by means of an access opening through which a user of the building closure element can grip the locking element, in particular move it, preferably only from the inside or from an interior of the building.
  • the attack takes place, for example, directly or indirectly by means of a corresponding tool.
  • an operating element different from the actuating handle can be arranged, which is directly coupled to the locking element.
  • the locking element By engaging the locking element and / or actuating the operating element, the locking element can be moved into the second position, in particular from the first position into the second position.
  • the building closure element can also be opened when the power is off and / or the locking device is defective.
  • the invention also relates to a method for operating a connecting rod fitting for a building locking element, in particular a building locking element according to the statements within the scope of this description, the connecting rod fitting via at least one drive rod that can be linearly displaceable on a frame element of the building locking element and a drive rod that can be fastened to the frame element and covers the drive rod Has faceplate, wherein the drive rod can be fixed in relation to the frame element by means of a locking device.
  • the locking device couples the drive rod directly to the faceplate in a locking setting and fixes it with respect to this and, in a release setting, releases the drive rod for displacement with respect to the faceplate, one setting being selected from the locking setting and the release setting and set on the locking device .
  • a particularly preferred embodiment of the invention provides that a pressure force acting on a locking element of the locking device is determined by means of a pressure sensor and an alarm signal is generated when the pressure force exceeds a pressure force threshold.
  • the compressive force is, for example, in the form of a shear force on the locking element before, which occurs when trying to move the drive rod with respect to the faceplate. This compressive force or shear force is determined, for example with the aid of a pressure sensor arranged in the locking element. If this pressure exceeds the pressure threshold, the alarm signal is generated.
  • the alarm signal is fed to a central control of a house control and / or an alarm system, for example. It can be provided that the generation of the alarm signal is only carried out if it is additionally determined by means of a handle position sensor for detecting a position of an operating handle of the building locking element that the operating handle is currently not being operated. In this case it can be concluded that the compressive force is exerted on the connecting rod as part of a break-in attempt. With such a configuration, a particularly high level of security for the espagnolette against attempted break-ins is achieved.
  • the central control activates the locking device and selects a setting from the release setting and the locking setting and sets it on the locking device. For example, the central control monitors whether at least one resident of the building is present. If this is the case, it adjusts the release setting on the locking device. If no resident is present, the lock setting is set. Provision can be made for the locking element to be displaced directly when the locking device is activated by the central control, namely either into the first position or the second position.
  • the shifting of the locking element into the first position occurs immediately when the locking setting is set, but the shifting into the second position is only delayed when the release setting is set.
  • an actuation of the actuating handle is sensed and the locking element is only moved into the second position upon detection of such actuation, if the central control has previously set the release setting and this is still present.
  • the sensing takes place by means of a suitable sensor, which is arranged, for example, on the actuating handle of the building locking element.
  • the sensor can be a force sensor, piezo sensor, torque sensor or the like.
  • the force sensor is provided and designed, for example, to detect a displacement force acting on the push rod.
  • the force sensor can be connected to the push rod, in particular arranged on it.
  • An embodiment is particularly preferred in which the locking element is spring-preloaded in the direction of one of the positions, in particular in the direction of the first position. In this respect, the locking element can be displaced in the respective direction without using the actuator.
  • the locking element In the opposite direction, however, the locking element must be displaced by means of the actuator against the spring force.
  • the spring preload is (re) built up.
  • the locking device is designed such that when the building closure element is closed and / or locked, the locking element is automatically displaced into the first position so that the locking setting is present after closing or locking and the drive rod is reliably fixed.
  • the invention relates to a method for mounting a connecting rod fitting on a building locking element, in particular a connecting rod fitting according to the statements in the context of this description, the connecting rod fitting via at least one drive rod that can be linearly displaceable on a frame element of the building closure element and one that can be fastened to the frame element and covers the drive rod Has faceplate, wherein the drive rod can be fixed in relation to the frame element by means of a locking device.
  • the locking device couples the drive rod directly to the faceplate in a locking setting and fixes it with respect to this and, in a release setting, releases the drive rod for displacement with respect to the faceplate, the locking device being fastened to the faceplate and together with the drive rod fitting removed from the building closure element the drive rod of the faceplate is attached to the frame element of the building locking element and wherein an actuation of an actuating handle of the building locking element is sensed and the locking element is only shifted into the release position when such an actuation is detected if a central control has previously set a release setting.
  • the connecting rod fitting is initially mounted on the building closure element or the frame element. In this case, it is removed from the building closure element, the locking device is arranged on the drive rod fitting and the drive rod fitting is fastened again to the building closure element.
  • the Figure 1 shows a schematic representation of a region of a drive rod fitting 1 for a building closure element (not shown).
  • the building closure element is, for example, in the form of a window, a door or the like.
  • the drive rod fitting 1 has a drive rod 2 which can be linearly displaced.
  • a faceplate 3 which covers the drive rod 2 at least in some areas.
  • the faceplate 3 is usually fastened directly to a frame element of the building closure element, namely by means of a screw connection and / or at least one fastening element 4, preferably - as shown here - several fastening elements 4.
  • the fastening elements 4 are in the embodiment shown here as screws, which with their screw head rest on the faceplate 3 and, on the other hand, engage in the frame element of the building closure element.
  • the fastening element 4 can - if necessary - reach through the drive rod 2.
  • an elongated hole 5 is formed in the drive rod 2, which a displacement of the drive rod 2 in the linear direction in spite of reaching through the fastening element 4 is possible.
  • the linear movement of the drive rod 2 is indicated by the double arrow 6.
  • the drive rod fitting 1 also has a locking device 7, which enables the drive rod 2 to be fixed with respect to the frame element. More precisely, when a locking setting is present, the locking device 7 fixes the drive rod with respect to the faceplate 3, namely by coupling the drive rod 2 directly to the faceplate 3.
  • a locking element 8 is provided, which can be displaced in the linear direction according to the double arrow 9.
  • the locking element 8 is in the form of a locking bolt, for example.
  • an actuator 10 is provided which, in the exemplary embodiment shown here, is in the form of an electric motor which is coupled or operatively connected to the locking element 8 via a rack gear 11.
  • the actuator 10 is preferably arranged in a housing 12 of the locking device 7.
  • the drive rod 2 is directly coupled to the faceplate 3 by the locking element 8 engaging or reaching through both in or through a locking recess 13 of the drive rod 2 and in or through a locking recess 14 of the faceplate 3.
  • the locking element 8 engages both in the locking recess 13 and in the locking recess 14 in a first position. In a second position, however, it is preferably outside of the two locking recesses 13 and 14. For example, it is arranged completely in the housing 12, that is to say it is present on the side of the drive rod 2 facing away from the faceplate 3, in particular completely.
  • a control device 15, which is used to control the actuator 10, can be present in the housing 12.
  • the actuator 10 and the control device 15 can be supplied with energy by means of an energy store 16, which in the exemplary embodiment shown here has at least one battery 17.
  • the control device 15 can have at least one sensor.
  • a condition sensor 18 is preferably provided which interacts with a magnet 9 in order to determine an opening condition of the building closure element.
  • the magnet 19 is arranged on the respective other frame element than the locking device 7. For example, the magnet 19 is on a frame and the locking device 7 is on a casement of the building closure element.
  • a position sensor 20 can be present, by means of which a position of the drive rod 2 can be detected. With the aid of the position sensor 20, it can be concluded whether the drive rod 2 is arranged for locking or for unlocking the building locking element. In the case of the unlocked building locking element, it is particularly preferably possible to use the position sensor 20 to determine whether a turn opening or a tilt opening of the building locking element (if the building locking element is configured as a turn-tilt window) is set.
  • the control device 15 can also have a communication device 21 via which a communication connection, preferably a wireless communication connection, can be established to a remote station.
  • the remote station is, for example, part of a control device of a house control or an alarm system.
  • a position sensor 27 can be present, by means of which a position of the locking element 8 can be detected. With the aid of the position sensor 27 it can be determined whether the locking element 8 has correctly fixed the drive rod.
  • the Figure 2 shows a further representation of the espagnolette 1.
  • the locking device 7 is positively connected to the faceplate 3 during assembly.
  • the locking device 7 or its housing 12 has form-locking devices 22, in the exemplary embodiment shown here, form-locking projections, which are brought into form-locking connection with form-locking mating devices 23 of the faceplate 3 during assembly.
  • the form-locking counter-devices 23 are designed as form-locking recesses.
  • a gear 25 for the mechanical connection of an actuating handle (not shown) to the drive rod 2.
  • the gear 25 has a handle receptacle 26 for receiving the actuating handle or its connection, in which a region of the actuating handle can be positively arranged.
  • the gear 25 is used to convert a rotary movement of the operating handle into a linear movement of the drive rod 2.
  • the drive rod fitting 1 described has the advantage that, on the one hand, a reliable and secure fixing of the drive rod 2 with respect to the frame element is achieved, namely by direct coupling of the drive rod 2 to the faceplate 3.
  • the building closure element can also be retrofitted with the locking device 7 without problems.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Structural Engineering (AREA)
  • Power-Operated Mechanisms For Wings (AREA)

Claims (14)

  1. Ferrure à tringle de manœuvre (1) pour un élément de fermeture de bâtiment, qui dispose d'au moins une tringle de manœuvre (2) pouvant être montée de manière déplaçable linéairement sur un élément de cadre de l'élément de fermeture de bâtiment ainsi que d'une têtière (3) pouvant être fixée sur l'élément de cadre et recouvrant la tringle de manœuvre (2), dans laquelle la tringle de manœuvre (2) peut être immobilisée par rapport à l'élément de cadre au moyen d'un dispositif d'arrêt (7), dans laquelle, dans un réglage d'arrêt, le dispositif d'arrêt (7) accouple la tringle de manœuvre (2) directement à la têtière (3) et l'immobilise par rapport à celle-ci et, dans un réglage de libération, libère la tringle de manœuvre (2) de sorte qu'elle peut se déplacer par rapport à la têtière (3), caractérisée en ce que la ferrure à tringle de manœuvre (1) est prévue et conçue pour détecter un actionnement d'une poignée d'actionnement de l'élément de fermeture de bâtiment et, en cas de détection d'un tel actionnement, pour ne déplacer l'élément d'arrêt dans la position de libération que si une commande centrale a préalablement réglé un réglage de libération.
  2. Ferrure à tringle de manœuvre selon la revendication 1, caractérisée en ce que le dispositif d'arrêt (7) présente un élément d'arrêt (8) monté de manière déplaçable au moyen d'un palier, qui, dans une première position présente pour le réglage d'arrêt, accouple la tringle de manœuvre (2) directement à la têtière (3) et, dans une deuxième position présente pour le réglage de libération, désaccouple la tringle de manœuvre (2) de la têtière (3).
  3. Ferrure à tringle de manœuvre selon la revendication 2, caractérisée en ce que l'élément d'arrêt (8) est présent sous la forme d'un axe d'arrêt et, dans la première position, s'engage dans un évidement d'arrêt (13) de la tringle de manœuvre (2) ainsi que dans un évidement d'arrêt correspondant (14) de la têtière (3) et, dans la deuxième position permettant le désaccouplement de la tringle de manœuvre (2), est présent du côté de la tringle de manœuvre (2) opposé à la têtière (3).
  4. Ferrure à tringle de manœuvre selon l'une des revendications précédentes, caractérisée en ce qu'un boîtier (12) du dispositif d'arrêt (7) est fixé directement sur la têtière (3).
  5. Ferrure à tringle de manœuvre selon la revendication 4, caractérisée en ce que le boîtier (12) est fixé à la têtière (3) au moyen d'au moins un élément de fixation passant à travers un trou oblong de la tringle de manœuvre (2).
  6. Ferrure à tringle de manœuvre selon l'une des revendications précédentes, caractérisée en ce que l'élément d'arrêt (8) est déplaçable au moyen d'un actionneur, en particulier d'un moteur électrique, d'un électro-aimant ou d'un actionneur piézoélectrique.
  7. Ferrure à tringle de manœuvre selon l'une des revendications précédentes, caractérisée en ce que le dispositif d'arrêt (7) présente au moins un capteur d'état (18) pour détecter un état d'ouverture de l'élément de fermeture de bâtiment et/ou au moins un capteur de position (20) pour détecter une position de la tringle de manœuvre (2) et/ou une position de l'élément d'arrêt (8) et/ou un capteur de vibrations pour détecter des chocs et/ou des vibrations et/ou un capteur de position de poignée pour détecter une position d'une poignée d'actionnement de l'élément de fermeture de bâtiment et/ou un capteur de pression pour détecter une force de pression sur l'élément d'arrêt (8) et/ou un capteur de rupture pour détecter une rupture de l'élément d'arrêt (8).
  8. Ferrure à tringle de manœuvre selon l'une des revendications précédentes, caractérisée en ce que le dispositif d'arrêt (7) présente un entraînement de tringle de manœuvre pour le déplacement linéaire de la tringle de manœuvre (2).
  9. Élément de fermeture de bâtiment comportant une ferrure à tringle de manœuvre (1) selon l'une ou plusieurs des revendications précédentes, dans lequel la ferrure à tringle de manœuvre (1) dispose d'au moins une tringle de manœuvre (2) montée de manière déplaçable linéairement sur un élément de cadre de l'élément de fermeture de bâtiment ainsi que d'une têtière (3) fixée sur l'élément de cadre et recouvrant la tringle de manœuvre (2), dans lequel la tringle de manœuvre (2) peut être immobilisée par rapport à l'élément de cadre au moyen d'un dispositif d'arrêt (7), dans lequel, dans un réglage d'arrêt, le dispositif d'arrêt (7) accouple la tringle de manœuvre (2) directement à la têtière (3) et l'immobilise par rapport à celle-ci et, dans un réglage de libération, libère la tringle de manœuvre (2) de sorte qu'elle peut se déplacer par rapport à la têtière (3), caractérisé en ce que la ferrure à tringle de manœuvre (1) est prévue et conçue pour détecter un actionnement d'une poignée d'actionnement de l'élément de fermeture de bâtiment et, en cas de détection d'un tel actionnement, pour ne déplacer l'élément d'arrêt dans la position de libération que si une commande centrale a préalablement réglé un réglage de libération.
  10. Élément de fermeture de bâtiment selon la revendication 9, caractérisé en ce que le dispositif d'arrêt (7) est disposé au moins dans certaines zones dans un évidement de l'élément de cadre.
  11. Élément de fermeture de bâtiment selon l'une des revendications précédentes, caractérisé en ce qu'une poignée d'actionnement est disposée sur l'élément de cadre, laquelle est en liaison fonctionnelle avec la tringle de manœuvre (2) pour son déplacement par l'intermédiaire d'un engrenage (25), et/ou que le dispositif d'arrêt (7) présente un entraînement de tringle de manœuvre pour le déplacement linéaire de la tringle de manœuvre (2).
  12. Élément de fermeture de bâtiment selon l'une des revendications précédentes, caractérisé en ce qu'un élément d'arrêt (8) du dispositif d'arrêt (7) présente un point destiné à la rupture qui, en présence du réglage d'arrêt, est disposé entre la tringle de manœuvre (2) et la têtière (3), le point destiné à la rupture étant conçu pour assurer une ouverture d'urgence de l'élément de fermeture de bâtiment au moyen de la poignée d'actionnement.
  13. Procédé pour faire fonctionner une ferrure à tringle de manœuvre (1) pour un élément de fermeture de bâtiment, en particulier une ferrure à tringle de manœuvre (1) selon l'une ou plusieurs des revendications précédentes, dans lequel la ferrure à tringle de manœuvre (1) dispose d'au moins une tringle de manœuvre (2) pouvant être montée de manière déplaçable linéairement sur un élément de cadre de l'élément de fermeture de bâtiment ainsi que d'une têtière (3) pouvant être fixée sur l'élément de cadre et recouvrant la tringle de manœuvre (2), dans lequel la tringle de manœuvre (2) peut être immobilisée par rapport à l'élément de cadre au moyen d'un dispositif d'arrêt (7), dans lequel, dans un réglage d'arrêt, le dispositif d'arrêt (7) accouple la tringle de manœuvre (2) directement à la têtière (3) et l'immobilise par rapport à celle-ci et, dans un réglage de libération, libère la tringle de manœuvre (2) de sorte qu'elle peut se déplacer par rapport à la têtière (3), dans lequel un réglage parmi le réglage d'arrêt et le réglage de libération est choisi et réglé sur le dispositif d'arrêt (7), caractérisé en ce qu'un actionnement d'une poignée d'actionnement de l'élément de fermeture de bâtiment est détecté et, en cas de détection d'un tel actionnement, l'élément d'arrêt n'est déplacé dans la position de libération que si une commande centrale a préalablement réglé un réglage de libération.
  14. Procédé selon la revendication 13, caractérisé en ce qu'une force de pression agissant sur un élément d'arrêt (8) du dispositif d'arrêt (7) est déterminée au moyen d'un capteur de pression et qu'un signal d'alarme est généré lorsque la force de pression dépasse un seuil de force de pression.
EP18212000.6A 2018-01-11 2018-12-12 Ferrure de tige d'entraînement pour un élément de fermeture de bâtiment, élément de fermeture de bâtiment correspondant ainsi que procédé de fonctionnement d'une ferrure de tige d'entraînement et procédé de montage d'une ferrure de tige d'entraînement Active EP3511497B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102018200404.8A DE102018200404A1 (de) 2018-01-11 2018-01-11 Treibstangenbeschlag für ein Gebäudeverschlusselement, entsprechendes Gebäudeverschlusselement sowie Verfahren zum Betreiben eines Treibstangenbeschlags und Verfahren zum Montieren eines Treibstangenbeschlags

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EP3511497A1 EP3511497A1 (fr) 2019-07-17
EP3511497B1 true EP3511497B1 (fr) 2021-02-17

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EP18212000.6A Active EP3511497B1 (fr) 2018-01-11 2018-12-12 Ferrure de tige d'entraînement pour un élément de fermeture de bâtiment, élément de fermeture de bâtiment correspondant ainsi que procédé de fonctionnement d'une ferrure de tige d'entraînement et procédé de montage d'une ferrure de tige d'entraînement

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DE (1) DE102018200404A1 (fr)

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Publication number Priority date Publication date Assignee Title
FR3102786B1 (fr) * 2019-10-30 2021-11-26 Axalys Dispositif de détection pour vantail

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EP0408784B1 (fr) * 1989-07-19 1994-01-05 Gebrüder Goldschmidt Baubeschläge Gesellschaft Mit Beschränkter Haftung Dispositif de blocage d'une ferrure tournant tombant pour battant
FR2679953B1 (fr) * 1991-07-29 1993-11-05 Ferco Internal Usine Ferrures Ba Ferrure pour porte, fenetre ou analogue comprenant une cremone ou cremone-serrure et un dispositif de condamnation electrique.
DE9113493U1 (fr) * 1991-10-30 1992-01-16 Bks Gmbh, 5620 Velbert, De
GB9315683D0 (en) * 1993-07-29 1993-09-15 Accent Group Ltd Doors
DE9317370U1 (de) * 1993-11-12 1994-01-13 Weidtmann Wilhelm Kg Schloß für eine schlüsselbetätigte Festsetzung der Treibstange des Beschlages eines Schiebe-Kipp-Fensters
DE19710834C2 (de) * 1996-03-18 2002-10-31 Eak Electronic Alarm Kromer Gm Vorrichtung und Verfahren zum Betätigen eines Sperrelements
GB2338507B (en) * 1998-06-19 2002-06-05 Surelock Mcgill Ltd Lock mechanism restraint
AT409285B (de) * 2000-06-20 2002-07-25 Grundmann Beschlagtechnik Gmbh Schloss
US20090071203A1 (en) 2005-04-06 2009-03-19 Laursen Henrik L Securing mechanism for windows and doors
AT506556A1 (de) * 2008-03-25 2009-10-15 Reith Manfred Ing Sicherheits-türzarge
GB2460295B (en) * 2008-05-28 2013-01-02 Sapa Building Systems Ltd Multi-point locking systems
DE202017101646U1 (de) * 2016-10-15 2018-01-16 Pax Ag Flügelrahmen eines Fensters oder einer Tür
DE202016105919U1 (de) * 2016-10-21 2016-11-03 Roto Frank Ag Gehäuse eines Getriebes, Treibstangenvorrichtung und Anordnung mit einem Gehäuse und einer Treibstangenvorrichtung

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EP3511497A1 (fr) 2019-07-17
DE102018200404A1 (de) 2019-07-11

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