EP2586938B1 - Verriegelungsvorrichtung für ein Öffnungselement - Google Patents

Verriegelungsvorrichtung für ein Öffnungselement Download PDF

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Publication number
EP2586938B1
EP2586938B1 EP12007328.3A EP12007328A EP2586938B1 EP 2586938 B1 EP2586938 B1 EP 2586938B1 EP 12007328 A EP12007328 A EP 12007328A EP 2586938 B1 EP2586938 B1 EP 2586938B1
Authority
EP
European Patent Office
Prior art keywords
rod
locking
guiding pin
slide
pin
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
EP12007328.3A
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English (en)
French (fr)
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EP2586938A3 (de
EP2586938A2 (de
Inventor
Xavier Lecointe
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.)
La Croisee DS SAS
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La Croisee DS SAS
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Publication date
Application filed by La Croisee DS SAS filed Critical La Croisee DS SAS
Publication of EP2586938A2 publication Critical patent/EP2586938A2/de
Publication of EP2586938A3 publication Critical patent/EP2586938A3/de
Application granted granted Critical
Publication of EP2586938B1 publication Critical patent/EP2586938B1/de
Active legal-status Critical Current
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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
    • E05C9/02Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing with one sliding bar for fastening when moved in one direction and unfastening when moved in opposite direction; with two sliding bars moved in the same direction when fastening or unfastening
    • E05C9/025Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing with one sliding bar for fastening when moved in one direction and unfastening when moved in opposite direction; with two sliding bars moved in the same direction when fastening or unfastening with pins engaging slots
    • 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
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B65/00Locks or fastenings for special use
    • E05B65/08Locks or fastenings for special use for sliding wings
    • E05B65/087Locks or fastenings for special use for sliding wings the bolts sliding parallel to the wings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B9/00Lock casings or latch-mechanism casings ; Fastening locks or fasteners or parts thereof to the wing

Definitions

  • the present invention relates to locking devices provided for the sliding doors or windows.
  • a known design of sliding doors in the building is to form a fixed frame relative to the masonry around the entire periphery of a bay and to close by a movable leaf that slides in the plane of the frame forming a frame.
  • the frame may consist of rails allowing the sliding of the opening to an amount of frame against which bears the opening when the bay is completely closed. We find these designs for example in the windows.
  • Hook locking devices are known in which hooks carried by the front post of the opening cooperate with latches dug in the frame.
  • the hooks are attached to a rod which is mounted along the front upright and which is movable along this upright by the action of an operating member attached to a lock housing which is recessed on the door and which comprises the mechanical means necessary to transform the action exerted on the actuating member, for example by means of a handle, in a displacement in translation of the rod, which makes the rod and the hooks pass from a passive position an active locking position where the hooks are locked in the corresponding locks.
  • Such a design presents a risk as to the possibility of picking in violation of the locking device for an attempted break-in.
  • An individual will be able to try to clear the hooks of the locks by passing a room between the frame and the amount before the opening facing to lift or lower the hook, and slide along the opening the carrier rod hooks.
  • a cremone comprises means for locking the operating rods in the locking position, said means being in the form of a lever of blocking rotatably mounted on at least one operating rod adapted to cooperate with a keeper arranged in the housing enclosing the control mechanism.
  • the patent application FR2929978 discloses a reversible espagnolette lock which may comprise a locking device which is formed and arranged to prevent forced translation of the actuating members consisting of two coupled plates, said locking device being able to be formed of two plates having two symmetrical arc-shaped housings.
  • the patent US5820170 discloses a multi-point sliding door closure adapted to be mounted in a single opening in the locking face of a jamb of the sliding door and arranged to cooperate with a retaining structure on an associated post and to cooperate with a mounted operating assembly on the amount of the sliding door and comprising a male element actuated by a rotating bar or a locking key.
  • It may comprise locking hooks each associated with a locking device provided with a spring mechanism holding a pin pin connected to the hook, at the end of stroke of a curved groove, opposing forced translation of the hooks.
  • Guide pins of the actuator elements are guided in the grooves in the housing. These grooves comprise a guide portion and a locking portion which extends said guide portion forming a perpendicular angled end.
  • the patent application GB2240809 describes a self-locking mechanism suitable for garage doors opening vertically.
  • the aim of the invention is to propose an alternative to known locking devices which is particularly effective against burglary and which can be adapted to all types of locking by hook locking, while seeking to obtain a device that is simple to manufacture, robust, without additional maneuvering operation for the user, and which is also inexpensive.
  • the invention proposes a device for locking an opening against a frame by the cooperation of a hook associated with an amount of sash and a strike dug in a frame, wherein the hook is carried by a rod adapted to slide on itself along the sash jamb between a passive position and an active locking position in which the hook is locked in the striker.
  • a lock housing is mounted on the opening and it encloses a force transmission mechanism adapted to transform the movement of an actuating member to control the translation of the rod along the amount.
  • the force transmission mechanism comprises a guide pin which is connected to the rod and which is adapted to move between a first extreme rest position and a second extreme safety position under the action of the maneuvering organ.
  • the guide pin is in its rest position when the rod is in its passive position while the guide pin is in its safety position when the rod is in its active locking position. In this extreme safety position, the guide pin is locked in both directions in the direction of movement of the rod so that the rod is locked in translation along the amount of the opening.
  • the guiding pin of the mechanism remains in its extreme safety position since in the direction of the translation of the rod, it is blocked in both directions.
  • it is intended to make an action on the actuating member necessary to disengage the guiding pin from its safety position, whereas if the operating member is locked by a key, the device then becomes inviolable.
  • the guide pin is held in a slot which extends in the direction of movement of the rod and which has a bent end perpendicular to said displacement corresponding to said safety end position.
  • This slot is advantageously formed of two slots arranged facing each other, each of these slots comprising a guiding portion which extends in the direction of movement of the rod as well as a locking portion which extends said guide portion. forming a bent end perpendicular to said displacement and wherein the guide pin is in said second extreme safety position.
  • the guide pin has a central portion and two end portions disposed on either side of the central portion and adapted to be housed respectively in one of said two slots.
  • the guide is thus guided by its ends along the two slots, which is very effective and very robust to take it to the safety position.
  • the slots arranged vis-à-vis for guiding and locking the guide pin are symmetrical with respect to the median plane of the lock housing.
  • the lock housing is formed of two shells adapted to enclose the force transmission mechanism and the two slots in which the guide pin is held are respectively present on one of said shells, so that symmetrical with respect to the plane of joining said hulls.
  • the two end portions of the guide pin disposed on either side of the central portion are housed respectively in one of these slots.
  • the first element of the force transmission mechanism is formed by a cam which is actuated by the operating member, and the second element of this mechanism is formed by a slider which is secured. of the rod.
  • the cam and the slider are made integral in displacement by the action of the guide pin which is arranged simultaneously in grooves respectively formed on the cam and the slider.
  • the end portions of the guide pin each have a diameter distinct from that of the collar and substantially equal to the width of the slots in which the pin is held, said central portion preferably having a diameter substantially equal to the width of the grooves respectively made on the cam and the slider. It is possible to provide either a central portion of larger diameter than the end portions or the reverse as long as the width of the grooves or corresponding slots are in adequacy. In any case, it is advisable to ensure that the guiding pin is locked inside the casing, in the direction perpendicular to the directions of movement of said guiding pin.
  • the grooves formed on the slider and the cam have a depth of dimension greater than the dimension of the diameter of the central portion of the guide pin. This ensures the game necessary for the operation of the force transmission mechanism.
  • the invention also relates to a bay window comprising a sliding leaf locking against an amount of frame according to the locking device as described above.
  • an opening 2 is adapted to slide longitudinally in a frame 4 so as to open or close the bay.
  • the opening is here represented in a semi-opening position and it comprises a window 6 embedded in the sash amounts of which a vertical upright 8 is adapted to come against a dormant amount 9 in the closed position of the opening .
  • the opening can be locked on the frame, that is to say that it can be immobilized in its closed position against the frame.
  • hooks 10 are attached to a rod 12, which is adapted to slide vertically on itself along the front upright between a passive position and an active locking position. In the passive position, the opening can be slid into the frame without the hooks hindering its movement.
  • the opening can be brought into a position of closing the bay with the amount before plated against the amount of dormant, without the protruding hooks interfere.
  • the hooks are housed in strikes made in the frame and the translation of the rod has jammed the hooks so that the opening can not open.
  • the locking of the opening relative to the frame is thus obtained by the vertical sliding of the rod and associated hooks.
  • the rod is guided in translation against the front upright by the action of an operating member, here a handle 14, mounted on the same upright by means of a housing 15, and a transmission mechanism.
  • the longitudinal axis corresponds to the sliding direction of the opening in the frame
  • the vertical axis corresponds to the sliding direction of the rod on itself
  • the transverse axis corresponds to the direction of the axis of rotation of the control member.
  • the figure 2 represents the lock housing which comprises an integrated mechanism on which is fixed a rod 12, which extends longitudinally, by means of two screws 20 and 22.
  • the housing has a shape and dimensions adapted to fit into the front post 8 of the opening via a housing opening on the front end face of the amount.
  • the housing comprises two shells adapted to be fixed against each other, one forming the trunk 26 and the other forming the fillet 27. These two shells are substantially the same, it being understood that to allow their attachment, the trunk carries projecting indexing elements adapted to cooperate with recessed indexing elements correspondingly arranged on the funcet.
  • the two shells are hollowed and drilled correspondingly to form, once fixed to each other, housings and passages for elements constituting a force transmission mechanism adapted to transmit a translational movement of the rod 12 from a rotational movement of the handle 4 about a transverse axis 5.
  • the force transmission mechanism comprises a follower 28, a guiding pin 30, a slider 32 and fixing nuts 34 and 36, adapted to receive the fixing screws of the rod 20 and 22.
  • the follower 28 is formed of a cylinder for receiving the transverse axis 5 and a cam 38 which extends radially from the cylinder and which has a transverse groove 40 adapted to receive the guide pin 30.
  • the guide pin 30 has a cylindrical shape with a central portion 42 and two end portions 43 of different diameter from that of the central portion so as to form two shoulders.
  • the diameter of the central portion is greater than that of the end portions, forming a central collar.
  • the central collar and the end portions of the pin have diameters adapted to cooperate with grooves formed on the follower or slider and with a slot formed on the housing shells.
  • the slider 32 has substantially the shape of a parallelepiped whose one end face is adapted to be in contact with the rod and carries for this purpose a pin 44 indexing.
  • the opposite face turned towards the inside of the case, is partially hollowed out so as to form a hollow central part which is delimited by the lateral edges of the slider, by the inner surface of the end face, and by upper and lower solid parts in each of which is drilled an adjustment bore 46 and 48 of hexagonal section, which extends from the opposite side to the front face and which is adapted to receive an adjusting nut 34 and 36 whose inner thread cooperates with the fixing screws of the rod 20 and 22.
  • the force transmission mechanism comprises adjustment means makes it possible to adjust the relative positions of the fastening means of the rod on the mechanism and the handle housing in the lock housing and this is the object of the invention.
  • the hollow central portion thus has dimensions adapted so that it can receive at least partly the cam 38 of the follower.
  • the lateral edges each have a transverse groove 50, symmetrically disposed on either side of the hollow central portion. These grooves 50 each have a diameter adapted to receive the guide pin at the central collar of the pin.
  • the guide pin extends parallel to the square rod along a transverse axis, housed both in the groove of the follower and in that of the slide with the follower inside the slider.
  • the rod 12 here has two fixing holes 64 and 66 for the passage of the fixing screws 20 and 22, a slot 68 adapted to receive the indexing pin 44 when the slide is pressed against the rod and a light 70 adapted to leave passing a control finger 72 of an anti-false maneuvering device.
  • the finger 72 is shown in a projecting position on the Figures 3 to 5 because the frame is not represented, and that between the positions illustrated in figures 3 and 4 , one will have previously pressed the finger to allow the release of the hook disposed at the end of the slide relative to this finger.
  • the housing shells have recesses and bores for the operation of the device.
  • a recess 74 (visible for the trunk 26 and hidden by the funcet 27 on the figure 2 ) is arranged over substantially the entire height of the shells to create a receiving housing of the slide 76 when the housing is assembled.
  • the housing 76 has dimensions adapted so that the slide can slide in the direction of movement of the rod without play in the perpendicular directions.
  • the slider moves against a bottom wall 77 which forms a stop for the displacement of the fastening nuts inside the bores through the slider.
  • the shells have a slot 78 each adapted to receive an end portion 43 of the pin 30 for its guidance, a transverse central bore 80 adapted to accommodate the cylinder of the follower 28 and two transverse fixing bores 82 and 84 on either side of the central bore 80 which have lateral flats and axial grooves for receiving and holding bushes 86 and 88, which are adapted to each receive a crankcase fixing screw handle.
  • Each of the slots 78 disposed facing each other has essentially a guide portion 90 which extends vertically in the direction of movement of the rod, and a locking portion 92 which extends longitudinally extending substantially perpendicularly. the guiding part to one of its ends.
  • the locking portion is oriented toward the interior of the housing to approximate the central bore which will receive the follower so that the locking portion forms a bend oriented towards the guide pin.
  • Each slot thus has a bent shape that extends continuously from a first end 91 at the end of the longitudinal portion to a second end 93 at the end of the locking portion.
  • the slots have a width substantially equal to the diameter of the end portions of the guide pin, so that these end portions can be housed in the corresponding slot and that the central collar of the pin abuts with the inner face of the shell of the lock case.
  • the editing is done as follows: All the constituent elements of the force transmission mechanism are housed in the lock housing between the trunk and the trunk, and in particular the follower 28 in the central bore 80 formed in the trunk and the trunk.
  • the nuts 34 and 36 are placed in the adjustment bores 46 and 48 of the slider, as well as the securing bushes 86 and 88 in one of the peripheral bores 82 and 84 of the trunk and the trunk.
  • the guide pin 30 is then placed both in the groove 40 of the follower and in the grooves 50 of the slide so that the central collar 42 of the pin engages these three grooves and the end portions 43 protrude by protrusion on both sides of the side walls of the slide.
  • the slide is housed simultaneously in the inner housing 76 formed between the trunk and the trunk, and the lock housing is closed by pressing and screwing against one another the shells of this housing, making sure that the end portions of the guide pin are properly housed in the slots 78 formed in the trunk and the funcet.
  • the central collar is in contact with the internal faces of the shells of the lock housing.
  • the collar is abutting on each of its sides. This ensures that there is no movement of the pin in the transverse direction and that it remains in engagement in the grooves made in the cam and the slide during operation of the system.
  • the rod is then attached to the mechanism so that it can follow the movements of the slide.
  • the rod is slid against the slider, matching the light 68 of the rod with the indexing stud 44 of the slider or at least by placing in front of the holes 52 and 54, made in the end face of the slider, the corresponding holes 64 and 66 of the rod.
  • the rod is then fixed by screwing the fixing screws 20 and 22 in the nuts 34 and 36 already arranged in the adjustment bores formed inside the slide.
  • the assembly formed by the housing and the rod on the opening is pressed against the front end face of the opening, to be ready to translate along the amount of the opening, while embedding the housing in a housing formed in the sash amount.
  • the handle casing is screwed onto the lock casing, screwing the fixing screws into the casings 86 and 88.
  • the user can operate the handle to lock the door. If this is the case, the rotation of the square rod causes rotation, around the axis defined by the square rod, both of the follower and the guide pin 30 which is engaged in the groove 40 formed in the cam 38 fouillot.
  • the rotation of the pin also engaged in the grooves 50 formed in the side walls of the slide causes a displacement of the slide, kept in simple translation in the housing 76, and thus a displacement in translation of the rod which is screwed on the slide.
  • the rotational movement on the handle allows the translational movement of the rod along an amount of the opening for locking in a striker of the frame.
  • the guiding pin has end portions which form both stop means for preventing the pin from escaping out of the grooves in the transverse direction and guiding means cooperating with the slots to ensure that the pawn goes well from one to the other of its extreme positions.
  • the end portions of the guide pin are respectively housed in one of the bent slots and follow the movement of the slider along the longitudinal guide portion of these slots to the bent portion.
  • the grooves have a width substantially equal to that of the diameter of the collar for the good transmission of forces, while these grooves have a depth of dimension greater than the diameter dimension of the collar for the clearance and the operating clearance of the mechanism.
  • the dimension of the cam and the slider is provided so that it always remains in engagement with the guide pin, even in this extreme position. And as previously described, this position in engagement with the guide pin is elsewhere provided in the transverse direction by the abutment of the central part against the shells of the housing.
  • the force transmission mechanism is adapted to move from a first extreme position ( figure 3 ) in which the guide pin abuts the end of the straight portion of the bent light at a second extreme position ( figure 5 ) in which the guide pin is in abutment against the end of the bent portion of the bent light.
  • the figure 4 represents an intermediate position between the two positions mentioned above.
  • the end portions of the guide pin are respectively at the first end 91 at the end of the longitudinal portion of the corresponding slot, and the collar is on the one hand in the bottom of the groove formed in the slider and on the other hand at the edge of the opening of the groove formed in the cam.
  • the intermediate position visible on the figure 4
  • the end portions of the guide pin are respectively at mid-height of the longitudinal portion of the corresponding slot, and the collar remained in the bottom of the groove formed in the slider while it is closer from the bottom of the groove formed in the cam.
  • the end portions of the guide pin are found respectively at the second end 93 at the end of the locking portion of the corresponding slot, and the collar is at the edge of the opening.
  • the pin In the second extreme safety position, the pin is in abutment against the edges delimiting the slot, in both directions of the vertical direction. To be able to exit from this safety position, it is necessary to manipulate the operating member in the unlocking direction so that the cam rotating in the opposite direction drives the locking pin firstly in the longitudinal direction along which the locking portion extends. slots and which is perpendicular to the direction of movement of the rod. In this way, the guiding pin is found again in the right guide portion and it is possible for it to descend along this guide portion causing the displacement in the vertical direction of the slide and therefore the rod.
  • This provides an anti-picking function by placing the guide pin in this extreme safety position in which it is blocked in both directions of the vertical direction, ie the direction translation on itself of the rod.
  • the locking can be performed either directly by the ends of the rod which are housed in latches arranged in the upper and lower amounts, or by means of hooks arranged on the rod and adapted to lodge in strikes formed in the vertical amount of the frame.

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

Claims (6)

  1. Vorrichtung zur Verriegelung eines Öffnungselements (8) an einer Zarge (9) durch Zusammenwirken eines mit dem Öffnungselement verbundenen Hakens (10) und eines in die Zarge eingelassenen Schließblechs, wobei der Haken mit einem Stab (12) verbunden ist, der entlang des Öffnungselements zwischen einer passiven Position und einer aktiven Verriegelungsposition, in der der Haken in das Schließblech eingreift und in diesem blockiert wird, gleiten kann, wobei die Vorrichtung ein am Öffnungselement angebrachtes Schlossgehäuse (18) aufweist, das einen Kraftübertragungsmechanismus (16) einschließt, der zur Übertragung der Bewegung eines Betätigungselements (14) in eine Translationsbewegung des Stabs entlang des Öffnungselements geeignet ist,
    wobei der Kraftübertragungsmechanismus (16) einen Führungsstift (30) aufweist, der so angeordnet ist, dass er einerseits der Bewegung eines ersten Elements (28, 38) des Mechanismus, das mit dem Betätigungselement (14) verbunden ist, und andererseits der Verschiebung eines zweiten Elements (32) des Mechanismus, das mit dem Stab (12) verbunden ist, folgt, wobei der Führungsstift zur Verschiebung zwischen einer ersten Ruheendposition, die der passiven Position des Stabs entspricht, und einer zweiten Sicherheitsendposition, die der aktiven Verriegelungsposition des Stabs entspricht und bei der der Führungsstift in Richtung der Verschiebung des Stabs nach beiden Seiten blockiert ist, geeignet ist, und
    wobei der Führungsstift ferner in zwei gegenüber angeordneten Schlitzen (78) gehalten wird, wobei jeder der Schlitze einen Führungsbereich (90) aufweist, der sich entlang der Verschiebungsrichtung des Stabs erstreckt, sowie einen Blockierungsbereich (92), der diesen Führungsbereich unter Bildung eines senkrecht zur Verschiebung gebogenen Endes verlängert und in dem sich der Führungsstift in der zweiten Sicherheitsendposition befindet, wobei der Führungsstift einen Mittelbereich (42) und zwei Endbereiche (43), die beidseitig am Mittelbereich angeordnet sind und dazu geeignet sind, in einem der Schlitze untergebracht zur werden.
  2. Verriegelungsvorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass das Schlossgehäuse (18) aus zwei Schalen (26, 27) gebildet ist, die den Kraftübertragungsmechanismus (16) umschließen können, und dass die Schlitze (78), in denen der Führungsstift (30) gehalten wird, jeweils an einer der Schalen vorgesehen sind, und zwar symmetrisch in Bezug zur Verbindungsebene dieser Schalen, wobei die beiden Endbereiche (43) des Stifts dazu geeignet sind, jeweils in einem der Schlitze aufgenommen zu werden.
  3. Verriegelungsvorrichtung nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass der Kraftübertragungsmechanismus (16) einen Nocken (38) aufweist, der das erste Element des Mechanismus bildet und durch das Betätigungselement (14) betätigt wird, sowie einen Schieber (32), der das zweite Element des Mechanismus bildet und fest mit dem Stab (12) verbunden ist, wobei der Nocken und der Schieber bei der Verschiebung kraftschlüssig durch die Wirkung des Führungsstifts in den Nuten (40, 50), die jeweils am Nocken und am Schieber vorgesehen sind, verbunden sind.
  4. Verriegelungsvorrichtung nach Anspruch 3, dadurch gekennzeichnet, dass die Endbereiche (43) des Führungsstifts jeweils einen im Bezug zum Durchmesser des Mittelbereichs (42) unterschiedlichen Durchmesser aufweisen, der im Wesentlichen der Breite der Schlitze (78), in denen der Führungsstift (30) gehalten wird, entspricht, wobei der Mittelbereich einen Durchmesser aufweist, der im Wesentlichen der Breite der Nuten (40, 50), die jeweils am Nocken (38) und dem Schieber (32) vorgesehen sind, entspricht.
  5. Vorrichtung nach einem der Ansprüche 3 und 4, dadurch gekennzeichnet, dass die Nuten (40, 50), die am Nocken (38) und dem Schlitten (32) ausgebildet sind, in der Tiefe eine Abmessung aufweisen, die größer als der Durchmesser des Mittelbereichs (42) des Führungsstifts ist.
  6. Glasfenster, umfassend ein verschiebbares Öffnungselement (2), das an einer Zarge (9) mit der Verriegelungsvorrichtung nach einem der Ansprüche 1 bis 5 verriegelt werden kann.
EP12007328.3A 2011-10-25 2012-10-25 Verriegelungsvorrichtung für ein Öffnungselement Active EP2586938B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1103254A FR2981676B1 (fr) 2011-10-25 2011-10-25 Dispositif de verrouillage d'un ouvrant

Publications (3)

Publication Number Publication Date
EP2586938A2 EP2586938A2 (de) 2013-05-01
EP2586938A3 EP2586938A3 (de) 2017-03-22
EP2586938B1 true EP2586938B1 (de) 2018-12-12

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ID=47073264

Family Applications (1)

Application Number Title Priority Date Filing Date
EP12007328.3A Active EP2586938B1 (de) 2011-10-25 2012-10-25 Verriegelungsvorrichtung für ein Öffnungselement

Country Status (4)

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EP (1) EP2586938B1 (de)
ES (1) ES2713985T3 (de)
FR (1) FR2981676B1 (de)
PT (1) PT2586938T (de)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GR1009095B (el) * 2015-07-17 2017-09-08 Παναγιωτης Αριστοβουλου Σπηλιοπουλος Μηχανισμος ασφαλισης συρομενων κουφωματων

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU630264B2 (en) * 1990-01-24 1992-10-22 Lenlok Hales Pty. Ltd. Improved self lock mechanism
FR2678671B1 (fr) * 1991-07-02 1993-09-24 Ferco Int Usine Ferrures Cremone pour porte, fenetre ou analogue.
US5820170A (en) * 1997-01-21 1998-10-13 Sash Controls, Inc. Multi-point sliding door latch
FR2929978B1 (fr) * 2008-04-10 2010-06-11 Thirard Ets Serrure a cremone reversible

Non-Patent Citations (1)

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

Also Published As

Publication number Publication date
FR2981676A1 (fr) 2013-04-26
ES2713985T3 (es) 2019-05-24
EP2586938A3 (de) 2017-03-22
PT2586938T (pt) 2019-03-20
FR2981676B1 (fr) 2014-07-18
EP2586938A2 (de) 2013-05-01

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