EP3569799B1 - Schliessbetätigungszusammenbau mit schlüssel - Google Patents

Schliessbetätigungszusammenbau mit schlüssel Download PDF

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Publication number
EP3569799B1
EP3569799B1 EP19172466.5A EP19172466A EP3569799B1 EP 3569799 B1 EP3569799 B1 EP 3569799B1 EP 19172466 A EP19172466 A EP 19172466A EP 3569799 B1 EP3569799 B1 EP 3569799B1
Authority
EP
European Patent Office
Prior art keywords
key
slot
control assembly
bit
locking control
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
EP19172466.5A
Other languages
English (en)
French (fr)
Other versions
EP3569799A1 (de
Inventor
Christophe Duquesnoy
Guillaume BLOCH
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.)
Deny Security SAS
Original Assignee
Deny Security SAS
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 Deny Security SAS filed Critical Deny Security SAS
Publication of EP3569799A1 publication Critical patent/EP3569799A1/de
Application granted granted Critical
Publication of EP3569799B1 publication Critical patent/EP3569799B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/06Lock wards
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B19/00Keys; Accessories therefor
    • E05B19/14Double or multiple keys, e.g. with two or more bows or bits
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B21/00Locks with lamelliform tumblers which are not set by the insertion of the key and in which the tumblers do not follow the movement of the bolt e.g. Chubb-locks
    • E05B21/06Cylinder locks, e.g. protector locks
    • 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
    • E05B2015/0472Made of rubber, plastics or the like

Definitions

  • the present invention relates to a key lock control assembly adapted to authorize the passage of a key to then enable a lock to be operated by rotating the key.
  • Known locking control assemblies comprise a cylinder having on the one hand an inlet flange in which an entry slot is provided and an opposite outlet flange in which an outlet slot is provided angularly offset by approximately 90° relative to the entry slot.
  • the cylinder contains a set of washers stacked between the entry and exit flanges to define a conditioned passage path of said key between said entry slot and said exit slot.
  • the passage path defined by the washers is conditioned in that it allows or not the rotation of the bit through the set of washers at an angle close to 90°.
  • the washers have radially extended portions projecting towards the center of the passage path. Also, the key whose bit has radial notches to code it, is authorized to be rotated through the set of washers if the notches of the bit and the projecting portions of the washers coincide respectively.
  • the cylinder has a set of three controllable keys closing the outlet slot.
  • Each of the keys in the set comprises a control axis extending axially towards said input flange and a lever secured to said control axis.
  • the lever extends radially towards the passage path conditioned to be able to cooperate with the bit of the key.
  • a problem which arises and which the present invention aims to solve is in particular to provide a key locking control assembly which is more difficult to pick. Furthermore, the present invention aims to provide an economical key lock control assembly.
  • a key locking control assembly comprising: an inlet flange having an entry slot and an opposite outlet flange having an outlet slot; a set of coded washers stacked between said inlet and outlet flanges to define a passage path between said slots; a set of controllable keys extending opposite said exit slot, the keys of said set respectively comprising a control axis extending axially along said passage path; a key comprising a coded bit terminating in a free end, said bit being adapted to be engaged inside said passage path to cooperate with said coded washers and with said control axes when said key is rotated so as to separate said keys of said exit slot.
  • Said outlet flange further comprises a movable flap for closing a portion of said outlet slot, while another portion of said outlet slot is free; and said free end has an eccentric stop capable of being engaged through said other portion to be able to move said movable flap away from said exit slot when said key is rotated to be able to axially engage said bit through said exit slot.
  • a characteristic of the invention lies in the implementation of the movable flap thanks to which the introduction of the coded bit through the exit slot is impossible, even if the coded bit corresponds to the encoding of the stacked washers, if the free end of the bit is not fitted with the eccentric stop.
  • the encoding of the bit were known to a third party, its reproduction would not allow the third party to use the key thus produced so that it can be engaged through the exit slot to control the lock located beyond. Thanks to the movable shutter and the associated key, the risk of break-in of the locking control assembly is further reduced.
  • the eccentric stop engaged through the slot in said other portion can then abut against the movable shutter so that it retracts and thus completely frees the slot. Since the keys have already released this same exit slot, the bit can then be driven axially through the slot and beyond to then be able to act on the lock mechanism when the key is once again rotated. Thus, thanks to the movable flap, the exit slot is partially closed and consequently, the possibilities of picking are limited. And thanks to the eccentric stop of the free end of the key, the movable flap can easily be moved away from the exit slot. In this way, the locking control assembly according to the invention is difficult to hook and, moreover, it can be produced at an advantageous cost.
  • said outlet slot has two opposite median enlargements in a circular segment, one of said enlargements forming said portion of said slot.
  • the movable flap is adapted to extend into at least one of the two widenings of the exit slot to block the passage of the bit.
  • said outlet flange has a radial housing opening into said portion of said slot to receive said movable flap.
  • the movable flap is then movable in translation inside the radial housing between a position where it extends in said slot portion and a position where it is retracted inside the radial housing.
  • the eccentric stop causes the moving flap to move apart and its retraction inside the radial housing, the bit is then driven in translation through the exit slot, while the moving flap is in sliding support against the same bit as will be explained later in the description. In this way, it remains in the radial housing.
  • said radial housing advantageously has a shoulder to retain said movable flap in a closing position of said outlet slot portion.
  • the mobile flap remains trapped in the radial housing which guides it in translation. Also, its travel is limited between a position where it completely closes said portion of the slot and a position where it is completely separated from it.
  • said outlet flange comprises an elastic member for maintaining said movable flap in a closing position of said outlet slot portion.
  • the elastic member returns the movable flap to a position where it abuts against the shoulder of the radial housing.
  • the movable flap returns to its position where it closes the slot portion.
  • said movable flap and said elastic member are molded together in a single piece of polymer material.
  • said elastic member advantageously comprises at least two deformable tangent rings.
  • said free end of said bit has cylindrical symmetry with a circular base and said eccentric stop is formed of a diametric tongue.
  • said eccentric stop is formed of a diametric tongue.
  • said key comprises a rod having an operating end provided with a ring and a driving end equipped with two notched parts, symmetrical to one another with respect to said rod, to form said bit.
  • the notches of the two notched parts, and in particular their depth, determine the encoding of the bit. Thanks to the symmetry of the two notched parts, the key can be inserted through the entry slot in two angular positions spaced 180° apart.
  • said driving end of the rod ends in a free end forming said free end of said bit.
  • the stem of the key is therefore of cylindrical symmetry with the circular director.
  • FIG. 1 shows in rear perspective a key 10 having a rod 12 of cylindrical symmetry around an axis of revolution A and extending between a first end 14 provided with an operating member 16, and a second end 18 equipped with a bit and more precisely in this case a double bit 20.
  • the rod 12 extends to a free end 22 having a diametric tongue 24.
  • the double bit 20 has two diametrically opposed plates 26, 28 and notched symmetrically and at determined depths to carry out encoding. It will be observed that the two plates 26, 28 extend along a mean plane Pm, and that the tongue 24 extends substantially perpendicular to the mean plane Pm defined by these plates 26, 28.
  • the tongue 24 defines eccentric peripheral stops 30 whose function will be explained in the remainder of the description. It also defines two axial support shoulders 32, 34.
  • FIG. 2 shows a locking control assembly comprising a cylinder 36 inside which is inserted the key 10 shown on the Figure 1 .
  • the cylinder 36 has an inlet slot 38 made in an inlet flange 40 and through which the double bit 20 has been introduced.
  • the cylinder 36 has a cylindrical protective casing 42 of which it is devoid on the Figure 3 .
  • the cylinder 36 comprises, opposite the inlet flange 40, an outlet flange 44. Also, the cylinder 36 comprises, between the two flanges, a set of coded washers 46, which washers define a conditioned passage path 47 of the double bit 20. This set of coded washers 46 authorizes, or not, the axial engagement of the double bit 20 of the key 10 after rotation beyond the outlet flange 44 by allowing the movement of a set of keys 48 located opposite one face rear 49 of the outlet flange 44 as will be explained below with regard to the Figure 5 .
  • the cylinder 36 also includes a split rear plate 45, located behind the set of keys 48.
  • the key set 48 comprises a main key 52 in a position spaced from this outlet slot 50.
  • the key 52 is mounted in sliding support against the rear face 49 of the outlet flange 44 and it extends substantially diametrically between a enlarged free end 54 of an extra-thickness plate 56 and an opposite end 58.
  • the outlet flange 44 has a main peripheral notch 60 inside which extends, in an axial direction of the cylinder 36, a main control axis 62. The latter is integral at one of its ends, with the opposite end 58 in return of the key 52 and it extends opposite to a position located approximately halfway between the two flanges 40, 44.
  • the main control axis 62 comprises a main lever 64 having a first portion 66 which extends substantially perpendicular to the main control axis 62 and a second free portion 68, which extends back relative to the first portion 66, and towards the conditioned passage path 47.
  • the main lever 64 is retained in a position away from the passage path 47 by means of the double bit 20 of the key 10 which has been rotated by 90° relative to its angular position during its introduction through the entry slot 38 of the entry flange 40.
  • the cylinder 36 comprises a second secondary key 70 having a free end forming a hook 72 and an opposite end 74 secured to a secondary axis 76 extending axially.
  • the outlet flange 44 has a secondary peripheral notch 78 receiving the secondary axis 76.
  • the latter also includes a secondary lever 80.
  • the secondary key 70 is in sliding support against the opposite end 58 in return of the main key 52 and its free end forming a hook 72 is abutting against an edge 82 of the extra-thickness plate 56 of the main key 52.
  • the secondary key 70 is kept away from the outlet slot 50 of the outlet flange 44 which it releases.
  • a crutch key 84 is also kept spaced from the exit slot 50 by the main key 52.
  • the crutch key 84 has a control axis 86 resting in a third notch 88 and which is 'extends axially. It is also equipped with a lever not shown in the Figure.
  • the keys 52, 70 and 84 are in this position illustrated on the Figure 5 , moved away from the exit slot 50 when the bit 20 has been introduced inside the passage path 47 and it has been rotated by 90°. Such a position of the keys 52, 70 and 84 remains when the bit has then been driven in translation through the exit slot 50 beyond the set of keys 48 to actuate a lock mechanism not shown.
  • the main lever 64 pivots and is driven towards the conditioned passage path 47. Consequently, the main key 52 also pivots around the main control axis 62 and closes the outlet slot 50 of the outlet flange 44.
  • the free end forming a hook 72 of the secondary key 70 escapes the edge 82 of the extra-thickness plate 56 and it in turn pivots towards the exit slot 50 as illustrated in the Figure 4 , by hooking the extra-thickness plate 56. It thus blocks the main key 52 from rotating.
  • the crutch key 84 pivots towards the exit slot 50 and forms a support against the main key 52 to also block it from pivoting .
  • FIG. 10 We will first refer to the Figure 10 to describe the rear face 49 of the outlet flange 44. There we find the outlet slot 50 which extends diametrically. We will observe that it presents an identical section, to the game functional, except for the section of the double bit 20 and the rod 12 of the key 10. It has a substantially rectangular longitudinal shape having two opposite median enlargements 90, 92, in a circular segment. The upper median enlargement 90 is opposite the lower median enlargement 92 and, a radial housing 94 made in the thickness of the outlet flange 44 opens substantially perpendicularly to the outlet slot 50, in the upper enlargement 90 and, at the opposite, in the periphery of the outlet flange 44. This radial housing 94 has two opposite shoulders 96, 98, the function of which will be explained below.
  • the radial housing 94 is adapted to receive a movable flap 100 as shown in the Figure 8 .
  • the movable flap 100 has a front part 102 and opposite, a rear part 104.
  • the rear part 104 is then connected to two tangent elliptical rings 106, 108 and the last 108 is provided with a tail 110.
  • the flap mobile 100, the two elliptical rings 106, 108 and the tail 110 are molded together in a single piece 111 in a polymer material, for example polyethylene. Therefore, the two elliptical rings 106, 108 are elastically deformable along the axis of symmetry D of said single part. It will also be observed that the front part 102 and the rear part 104 of the movable flap 100 are separated from each other by two opposite support shoulders 112, 114.
  • part 111 shown on the Figure 8 is adapted to be inserted into the radial housing 94, the front part 102 towards the outlet slot 50 and the tail 110 towards the periphery of the outlet flange 44.
  • the front part 102 of the flap 100 extends in a portion of the exit slot 50 and more precisely, in the portion corresponding to the upper median enlargement 90. Therefore, thanks to the flap movable 100, the double bit 20 of the key 10 cannot be driven through the exit slot 58, even if it had passed the filter of the set of coded washers 46 because, the free end 22 of the rod 12 of section cylindrical with a circular base, would abut against it, if however this free end 22 was not provided with the diametrical tongue 24.
  • the diametrical tongue 24 allows the movable flap 100 to be retracted.
  • the double bit 20 of the key 10 has been inserted in translation inside the conditioned passage path 47 along the axis of the cylinder C which then coincides with the axis of revolution A of the key, and this, until the diametrical tongue 24 engages under the front part 102 of the movable flap 100.
  • the diametrical tongue 24 thus extends in a direction parallel to the average plane defined by the outlet slot 50.
  • the front part 102 of the movable flap 100 has therefore been retracted inside the radial housing 94, while the two elliptical rings 106, 108 have been compressed and deformed elastically, the tail 110 pressing against the interior of the cylindrical protective casing 42.
  • the diametrical tongue 24 thus maintains the movable flap 100 in the retracted position, while the double bit 20 extends opposite the exit slot 50. Consequently, the key 10 can be pressed even further so as to carry the double bit 20 through the exit slot 50 then out to the rear of the exit flange 44 and the set of keys 48.
  • the rod 12 is driven in friction against the front part 102 of the movable flap 100 which remains retracted in the radial housing 94.
  • the front part 102 of the movable shutter 100 escapes the reach of the rod 12 and its free end 22, and it is then driven through the upper median widening 90 thanks to the relaxation of the elliptical rings 106, 108 which return to their original shape.

Landscapes

  • Lock And Its Accessories (AREA)
  • Preventing Unauthorised Actuation Of Valves (AREA)
  • Connector Housings Or Holding Contact Members (AREA)

Claims (10)

  1. Schließbetätigungsbaugruppe mit Schlüssel, umfassend:
    - einen Eingangsflansch (40), der einen Eingangsschlitz (38) aufweist, und einen gegenüberliegenden Ausgangsflansch (44), der einen Ausgangsschlitz (50) aufweist;
    - einen Satz codierter Scheiben (46), die zwischen dem Eingangs- (40) und dem Ausgangsflansch (44) so gestapelt sind, dass sie einen Durchgangskanal (47) zwischen den Schlitzen (38, 50) definieren;
    - einen Satz betätigbarer Keile (48), der sich dem Ausgangsschlitz (50) zugewandt erstreckt, wobei die Keile (52, 70, 84) des Satzes jeweils eine Betätigungsachse (62, 76, 86) umfassen, die sich axial entlang des Durchgangskanals (47) erstreckt;
    - einen Schlüssel (10), der einen codierten Bart (20) umfasst, der in einem freien Ende (22) endet, wobei der Bart (20) geeignet ist, in den Innenraum des Durchgangskanals (47) eingerückt zu werden, um mit den codierten Scheiben (46) und mit den Betätigungsachsen (62, 76, 86) zusammenzuwirken, wenn der Schlüssel (10) in Drehung versetzt wird, um die Keile (52, 70, 84) von dem Ausgangsschlitz (50) zu beabstanden;
    wobei der Ausgangsflansch (44) weiter eine bewegliche Klappe (100) umfasst, um einen Abschnitt (90) des Ausgangsschlitzes (50) zu verschließen, während ein anderer Abschnitt des Ausgangsschlitzes frei ist;
    dadurch gekennzeichnet, dass das freie Ende (22) einen exzentrischen Anschlag (30) aufweist, der durch den anderen Abschnitt eingerückt werden kann, um die bewegliche Klappe (100) von dem Ausgangsschlitz (50) beabstanden zu können, wenn der Schlüssel (10) in Drehung versetzt wird, um den Bart (20) axial durch den Ausgangsschlitz (50) einrücken zu können.
  2. Schließbetätigungsbaugruppe nach Anspruch 1, dadurch gekennzeichnet, dass der Ausgangsschlitz (50) zwei gegenüberliegende mittlere kreissegmentförmige Aufweitungen (90, 92) aufweist, wobei eine (90) der Aufweitungen (90, 92) den einen Abschnitt des Schlitzes (50) bildet.
  3. Schließbetätigungsbaugruppe nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass der Ausgangsflansch (44) eine radiale Aufnahme (94) aufweist, die in den einen Abschnitt (90) des Schlitzes (50) mündet, um die bewegliche Klappe (100) aufzunehmen.
  4. Schließbetätigungsbaugruppe nach Anspruch 3, dadurch gekennzeichnet, dass die radiale Aufnahme (94) eine Schulter (96, 98) aufweist, um die bewegliche Klappe (100) in einer Verschlussstellung des einen Abschnitts (90) des Ausgangsschlitzes (50) zu halten.
  5. Schließbetätigungsbaugruppe nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass der Ausgangsflansch (44) ein elastisches Organ (106, 108) umfasst, um die bewegliche Klappe (100) in einer Verschlussstellung des einen Abschnitts (90) des Ausgangsschlitzes (50) zu halten.
  6. Schließbetätigungsbaugruppe nach Anspruch 5, dadurch gekennzeichnet, dass die bewegliche Klappe (100) und das elastische Organ (106, 108) zusammen aus einem einzigen Stück Polymermaterial geformt sind.
  7. Schließbetätigungsbaugruppe nach Anspruch 5 oder 6, dadurch gekennzeichnet, dass das elastische Organ mindestens zwei verformbare tangentiale Ringe (106, 108) umfasst.
  8. Schließbetätigungsbaugruppe nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass das freie Ende (22) des Barts (20) zylindersymmetrisch mit kreisförmiger Basis ist, und dadurch, dass der exzentrische Anschlag (30) von einer diametralen Zunge (24) gebildet wird.
  9. Schließbetätigungsbaugruppe nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, dass der Schlüssel (10) einen Schaft (12) umfasst, der ein mit einem Ring versehenes Handhabungsende (16) und ein Antriebsende (18) aufweist, das mit zwei in Bezug auf den Schaft (12) symmetrisch zueinander eingekerbten Teilen (26, 28) ausgestattet ist, um den Bart (20) zu bilden.
  10. Schließbetätigungsbaugruppe nach Anspruch 9, dadurch gekennzeichnet, dass das Antriebsende (18) des Schafts (12) in einem freien Ende (22) endet, das das freie Ende des Barts bildet.
EP19172466.5A 2018-05-18 2019-05-03 Schliessbetätigungszusammenbau mit schlüssel Active EP3569799B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1854165A FR3081177B1 (fr) 2018-05-18 2018-05-18 Ensemble de commande de verrouillage a cle

Publications (2)

Publication Number Publication Date
EP3569799A1 EP3569799A1 (de) 2019-11-20
EP3569799B1 true EP3569799B1 (de) 2023-11-22

Family

ID=63637972

Family Applications (1)

Application Number Title Priority Date Filing Date
EP19172466.5A Active EP3569799B1 (de) 2018-05-18 2019-05-03 Schliessbetätigungszusammenbau mit schlüssel

Country Status (4)

Country Link
EP (1) EP3569799B1 (de)
ES (1) ES2968643T3 (de)
FR (1) FR3081177B1 (de)
MA (1) MA49926B1 (de)

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE524305C (de) * 1929-06-02 1931-05-06 Bauer A G Zylinderschloss
FR2734858B1 (fr) * 1995-06-02 1997-07-25 Deny Procede d'ouverture d'un cylindre de serrure a clavettes pivotantes d'obturation du passage de cle, cylindre et cle pour la mise en oeuvre de ce procede
FR2880646B1 (fr) * 2005-01-12 2007-04-06 Deny Fontaine Soc Par Actions Cylindre de serrure pour cle a tige de section non circulaire
FR3048990B1 (fr) * 2016-03-15 2018-03-30 Deny Security Cylindre de serrure a filtre securise

Also Published As

Publication number Publication date
FR3081177A1 (fr) 2019-11-22
MA49926A (fr) 2020-06-24
EP3569799A1 (de) 2019-11-20
ES2968643T3 (es) 2024-05-13
FR3081177B1 (fr) 2020-05-29
MA49926B1 (fr) 2023-12-29

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