EP1132551B1 - Dispositif de verrouillage avec clé réversible - Google Patents

Dispositif de verrouillage avec clé réversible Download PDF

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Publication number
EP1132551B1
EP1132551B1 EP01102369A EP01102369A EP1132551B1 EP 1132551 B1 EP1132551 B1 EP 1132551B1 EP 01102369 A EP01102369 A EP 01102369A EP 01102369 A EP01102369 A EP 01102369A EP 1132551 B1 EP1132551 B1 EP 1132551B1
Authority
EP
European Patent Office
Prior art keywords
pin
key
main
bodies
feeler
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.)
Expired - Lifetime
Application number
EP01102369A
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German (de)
English (en)
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EP1132551A2 (fr
EP1132551A3 (fr
Inventor
Christoph Schulze Sievert
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.)
Aug Winkhaus GmbH and Co KG
Original Assignee
Aug Winkhaus GmbH and Co KG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Aug Winkhaus GmbH and Co KG filed Critical Aug Winkhaus GmbH and Co KG
Publication of EP1132551A2 publication Critical patent/EP1132551A2/fr
Publication of EP1132551A3 publication Critical patent/EP1132551A3/fr
Application granted granted Critical
Publication of EP1132551B1 publication Critical patent/EP1132551B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B19/00Keys; Accessories therefor
    • E05B19/0017Key profiles
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B27/00Cylinder locks or other locks with tumbler pins or balls that are set by pushing the key in
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B27/00Cylinder locks or other locks with tumbler pins or balls that are set by pushing the key in
    • E05B27/0003Details
    • E05B27/0017Tumblers or pins
    • E05B27/0021Tumblers or pins having movable parts
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B27/00Cylinder locks or other locks with tumbler pins or balls that are set by pushing the key in
    • E05B27/0078Asymmetrical tumbler pins, e.g. with a key operating on a radial protrusion of a tumbler pin

Definitions

  • the invention relates to a locking device with a reversible key having the features of the preamble of claim 1.
  • a locking device of the type mentioned for a lock cylinder is known from DE-A-4 336 476.
  • a core is inserted, are introduced in the pin recesses.
  • the stator is surrounded by a flux body.
  • the pin recesses are equipped with core and housing pins aligned radially towards the center of the core.
  • the core has a free in its peripheral surface key channel, which is arranged to the side in a Kalottenausappelung a locking ball.
  • a key is inserted, which is formed in cross-section 8-shaped.
  • the upper circle of the eight contains scanning recesses for the core pins and the lower circle of the eight a ball recess. Both circles of the cross-sectionally 8-shaped key are connected by a short and narrow waist region.
  • the two circles are provided with mirror-image, rotated by 180 ° recesses.
  • the disadvantage is that the narrow waist region only has a connection function between the two O-shaped bodies of the cross-shaped eight-shaped key.
  • a locking device of the type mentioned for a lock cylinder is known from EP 872 614 A1.
  • the scanning recesses are all aligned with the center of the rotationally symmetrical key profile. Not only are they placed on a side surface of a main or intermediate body, but they are distributed along a helical line along the entire circumference of the key, whereby a few scanning recesses extend into two bodies of the key and the intermediate spaces between them. This requires a high production cost.
  • a use as a reversible key is not possible due to the orientation caused by the arrangement along a helical line.
  • a flat key and lock cylinder existing locking device is known.
  • the lock cylinder is equipped with an intermediate plate in addition to the spring-loaded tumbler pins.
  • a wafer receiving chamber is arranged, which is offset in rotation angle to the pin hole equipped with intermediate plates and in the same cross-sectional plane to the latter.
  • the flat keys are provided on each side with pin recesses for lying in a row tumbler pins. Only one half of the cross-sectionally round core is equipped with a number of tumbler pins. As a result, no great security is ensured.
  • a cylinder lock with flat key is described.
  • the core is a series of pins arranged. With a key that can be inserted into a key channel, the pins are acted upon so that the core is released relative to a cylinder.
  • the key channel is only inclined relative to the pin plane, so that in this way the key notches are formed at an acute angle key.
  • a cylinder lock with a key is known.
  • cylinder pin tumblers are as a housing pin, a core pin, the housing pin opposite, and a coupling member, which is at right angles to the plane of the housing and core pin arranged. All three pin tumblers are directed to only one center in the core. As a result, an insufficient lockout security is ensured.
  • a cylinder lock with reversible key in which a circular in cross-section rotor can move in a hollow cylindrical stator.
  • the cylinder lock has several Zuroiss 1942n.
  • five tumblers are provided, of which three are directed to one and two to another center in the rotor.
  • only a rectangular cross-section flat key body is used.
  • the scanning recesses are inserted in the narrow and long sides of the rectangular flat key body.
  • a locking device with a flat key is known from DE-U-7 818 276. It consists of a stator and a rotor. In the stator and the rotor extending in the axial direction Zuroiss Herbertn are arranged. Each tumbler series has tumblers consisting of a pin member and a stylus body. The tumblers arranged above a main weighing right are to be moved to a center that lies in the center of the rotor. The tumblers located below the main weighing right are to be moved to a center which is below the center of the rotor.
  • the flat key has a key body which is rectangular in cross section.
  • the recesses for the secret of secrecy are also introduced in this reversible key in the narrow and long sides of the rectangular flat key body.
  • EP-A-0 887 494 discloses a key whose key body is divided by opposing recesses into two opposing main bodies.
  • the locking elements with their core pins are directed to a center. As a result, they always feel the sinking of the key secret only on one main body.
  • the first scanning pin bodies with ram pin bodies, core pin bodies and first housing pin bodies of the first pin elements are arranged in the stator and core body respectively along a main pin axis directed to a main center of the closing device.
  • Cup pin bodies and second casing pin bodies of the second pin members are disposed along an angular pin axis also directed to the main center, while at least the second pin bodies are disposed in a ram axis directed to a ram center.
  • the first and the second main body and the additional body may be round, oval, rectangular and / or square in cross-section.
  • a key profile can be introduced in the first and second main body and in the additional body.
  • the main body get its indiduelle configuration, which allows insertion of the key into the key recess of the respective lock cylinder.
  • the key body may be divided in the auxiliary body along a turning axis such that a first auxiliary body and the first main body with their first and second Abtastausappelgeber situated at 180 ° equal to a second soirteilenia with the second main body with the first and second Abtastausappel12. Due to the oblique division of the additional body along the turning axis, the size of the closing body is optimally utilized.
  • the turning axis can be inclined by 45 ° relative to a central axis. Other angles of inclination can also be used.
  • the center may be at the center of the substantially circular core body and the angular center on the central axis opposite the center. Depending on how the second pin elements are accommodated in the core body, the angular pin center is located above or below the center point.
  • a key body of a reversible key 11, 111, 211 is shown as a key for the lock cylinder 20, 120, 220.
  • Turning key 11 is also shown in FIG. 1c, turning key 111 in FIG. 2c and reversing key 211 in FIG. 3c.
  • the key body 11.0 of the reversible key consists of three interconnected individual bodies, which may be round, oval, rectangular or square in cross-section.
  • a main body is referred to, which is opposite to a second main body 11.21.
  • Essential to the invention is that not only a web connection, but is arranged as a third body as an independent additional body between the two main bodies. This creates in cross-section a configuration which is eight-shaped, over which an O-shaped body is arranged.
  • the two main body and the additional body of the key body 11.0 are provided with a key profile 11.40, which allows insertion of the reversible key into the respective closing device 20, 120, 220.
  • the key body 11.0 is obliquely divided along a turning axis WA, so that in each case a main body 11.10, 11.21 can be assigned to an additional part body 11.31, 11.32. If these two parts along the turning axis WA divided and rotated by 180 ° C, they have the same closing secret.
  • the pin elements 1,..., 4, 101,..., 104 and 201,..., 204 are in the upper half of the core and stator bodies divided by a main weighing right HW. These pin elements 5, 6, 105, 106, 205, 206, hereinafter referred to as additional pin elements 5, 6, 105, 106, 205, 206, lie below this main weighing rights.
  • a main pin axis HT 1 which is located in the main weighing right HW
  • the pin member 1, 101, 201 in a main pin axis HT 2 which is offset from the main pin axis HT 1 at an angle V
  • the pin member 2, 102, 202nd in a main pin axis HT 3 which is offset relative to the main pin axis HT 2 at the angle V
  • the pin member 3, 103, 203 in a main pin axis HT 4 which is offset both with respect to the Hauptwaa redesignen and the main pin axis HT 3 by the angle V.
  • the four main pin axes HT 1 , ... HT 4 pass through a main center Z, which is directed in the center of the core body. As a result, all four pin elements are on the Main center.
  • an angle pin axis WT 6 are parts of the additional pin member 6, 106, 206 and in a plunger axis ST 6 , which is also opposite the Hauptwaa redesignen offset by the angle X, further body of the additional pin member 6, 106, 206 are arranged.
  • the two angle pin axes WT 5 and WT 6 are both directed to the main center Z. It is essential, however, that the two plunger axes ST 5 and ST 6 intersect at a Winkelstatttechnik ZW.
  • Both the main pin center and the angular pin center lie on a central axis MA which divide the stator and core bodies into a plane 1 and a plane 2.
  • the level 1 are in a series of pin elements 2, 102, 202 pin elements 1, 101, 201 and additional pin elements 6, 106, 206 and the level 2 of a series of consecutive pin elements 3, 103, 203, 4, 104, 204 and additional pin elements 5, 105, 205 assigned.
  • Stator recesses 8.1 are circulating around the stator body. ..., 8.6, 108.1, ..., 108.6, 208.1, ..., 208.6.
  • a key recess 10, 110, 210 is arranged in the core body 9, 109, 209.
  • the four pin elements 1, ..., 4, 101, ..., 104, 201, ..., 204 have the same structure. They consist of a housing pin body 1.4, ..., 4.4, which is biased in the Statoraus Principle Institute 8.1, ..., 8.4, 108.1, ... 108.4, 208.1, ... 208.4 is positioned.
  • ... is a core pin body 1.3, ..., 4.3, 101.3, ..., 104.3, 201.3, ..., 201.4.
  • the Statoraus strictly adopted the stator body and the preceding pin recesses of the core body 9, 109, 209 have substantially the same diameter, so that the core pin body and the housing pin body of the pin elements 1, ..., 4, 101, ..., 104, 201, ..., moving back and forth in these.
  • the ram pin bodies go, as shown in FIGS. 1a and 1b, 2a and 2b and 3a and 3b, into a scanning pin body 1.1, 2.1, 3.1, 4.1, 101.1, 102.1, 103.1, 104.1, 201.1, 202.1, 203.1 and 204.1.
  • the Abtastchan have to the ram pin bodies on a paragraph and have a relation to these smaller diameter. They move with the plunger pin bodies 1.2, ... in the Abtaststatt- and ram recesses, which have an equal diameter.
  • the additional pin elements are designed differently for the individual lock cylinders 20, 120, 220.
  • the additional pin elements 5, 6 of the lock cylinder 20 have, according to FIGS. 1a and 1b, a housing pin body 5.4, 6.4, which are each biased in the Statoraus originallyung 8.5, 8.6 to move.
  • cup pin body 5.3, 6.3 is a cup pin body 5.3, 6.3. Both cup pin body 5.3, 6.3 are the same design and have the same diameter as the housing pin body 5.4, 6.4, so that they can move both in the Statoraus originallyung 8.5, 8.6 and in the overlying pin recess.
  • the cup pin body 5.3, 6.3 is shown in detail in Fig. 1d. He has a Tassenuxausströmung 5.8, 6.8 on, which is polygonal in cross-section.
  • the Tassenaufströmung is a cup rounded 5.7, 6.7.
  • the cup rounding is spherical and is surrounded by a chamfer.
  • a tappet body 5.2, 6.2 is inserted into the cup pin body 5.3, 6.3, to which a respective tapping pin body 5.1, 6.1 adjoins.
  • the plunger body 5.2, 6.2 has a diameter such that it is to be guided in the plunger recess 9.5.2, 9.6.2. The depth of the plunger recess limits the maximum stroke of the plunger body.
  • the Abtast damp Congress 5.1, 6.1 has an outer diameter such that it is to be guided in the Abtastwakaus predominantlyung 9.5.1, 9.6.1.
  • the plunger body with the adjoining Abtastrich Congress is shown individually in Fig. 1e.
  • the plunger body 5.2, 6.2 concludes with a plunger hemisphere 5.6, 6.6 and the Abtastrich Congress 5.1, 6.1 with a pin half ball 5.5, 6.5 from.
  • the plunger hemisphere allows the plunger to move undisturbed in the cup recess of the cup pin body.
  • the plunger hemisphere ensures that the secret of secrecy can be easily and accurately scanned.
  • the core body is rotatable along a parting plane 12 in the stator body 8.
  • both the cup and the housing pin body are in this parting plane, while they are positioned in Fig. 1b outside the parting plane.
  • the additional pin members 105, 106 of the lock cylinder 120 shown in FIGS. 2a and 2b are similar to those of the lock cylinder 20 constructed.
  • housing pin body 105.4, 106.4 which are mounted biased.
  • the housing pin bodies 109.5.3, 109.6.3 each a cup pin body 105.3, 106.3 is stored in the overlying pin recesses. Since both the cup and the housing pin body as well as the stator and the pin recesses have the same diameter, they can move freely in this.
  • Fig. 2a are the two housing pin body 105.4, 106.4 and the two cup pin body 105.3, 106.3 in a parting plane 112th
  • the cup pin body 105.3, 106.3 is shown individually in Fig. 2d. He has a Tassenaus Principleung 105.8, 106.8, which is formed sauflächig. This Tassenaus Principleung is a cup rounding 105.7, 106.7 opposite, which is spherical and is cut obliquely.
  • a plunger body 105.2 In the cup recess of the cup pin body 105.3 is a plunger body 105.2, which merges into a Abtast dampange 105.1 and is shown in detail in Fig. 2 e.
  • the plunger body 102.5 has a plunger hemisphere 105.6 which has a larger diameter as the plunger body.
  • the Abtaststattmaschine 105.1 concludes with a plunger hemisphere 105.5.
  • the scanning pin body 106.5 is made longer than the scanning pin body 105.5. Both Abtast damp emotions are each guided in the Abtastrottausappel 109.5.1, 109.5.6.
  • the plunger recess 105.2, 106.2 has a larger diameter than the associated plunger body. This ensures a perfect and targeted movement of the Abtastrottange 105.1, 106.1.
  • the cup pin body 205.4, 206.4 is in each case a cup pin body 205.3, 206.3, which are shown individually in FIG. 3d.
  • the cup pin body has a Tassenaus Principleung 205.8, 206.8.
  • the cup recess is rounded in this case and has a radius of curvature R.
  • the rounding surface is followed by an opening surface running at an angle of 30 °.
  • the cup pin body is provided with a cup rounding 205.7, 206.7, which is formed spherical and has a circumferential Anschneidungs constitutional.
  • the cup pencil body has a cup length L 205.7.
  • FIG. 3e another embodiment of a cup pin body is shown, which is designated by 205.3 '. He also has a rounded Tassenaus Principleung 205.8 ', which is opposite to a crowned cup rounding 205.7'.
  • the cup pin body 205.3 ' has a cup length L 205.7', which is longer than the cup length L 205.7.
  • the different cup lengths are connected to different depth Tassenausappelisme that allow a secure holding and guiding the moving in them plunger body.
  • 200.5.2 is a plunger body followed by a stylus pin body designated 209.5.1, shown individually in FIG. 3h.
  • the plunger body 205.2 terminates with a plunger hemisphere 205.6, which has the same diameter as the plunger body.
  • the Abtast Wind Moment 205.1 ends in a pin hemisphere 205.5.
  • Sampling and plunger body have a plunger length L 205, during which the plunger alone has a single length L 205.2.
  • the sensing pin body denoted 206.1 and the tappet body designated 206.2 are constructed as well as the sensing pin body 205.1 and tappet body 205.2 described, as shown in detail in Figure 3f.
  • the plunger body terminates with a plunger hemisphere 206.6 and the pen body with a pin hemisphere 206.5. Both have a plunger length L 206 which is substantially equal to the plunger length 205.
  • the tappet body has a single length L 206.2.
  • Fig. 3g is followed by an equally long plunger body 206.2 'a shorter Abtast dampange 206.1' at. Both together have a plunger length L 206 ', while the plunger body has a single length L 206.2' has. Both the plunger body and the Abtaststattange are rounded.
  • the scanning pin bodies 1.1,..., 1.6 slide along the main body 11.20 and the additional body 11.30.
  • the main body 11.21 has no function in this position.
  • the core body can be rotated in the stator body with the aid of the key body 11.10 and thus the lock can be unlocked.
  • T 1 ram depths are designated for the plunger body.
  • T 3 indicates the scanning depth of the cup body in the pin recess.
  • T 4 is a cup depth.
  • Fig. 3b is H 206.3.9.
  • a cup core stroke with H 206.8 a Tassenstatorhub, designated H 206.4 a Gepatiusestatthub.
  • H 205.4 is also called a Gepatiusestatthub.
  • L 202 designates the length from the follower pin body to the core pin body of the pin member 202 and L 203.2 denotes a length of the pin member 3 from its follower pin body to its body pin body.
  • the described and specified lengths, depths and strokes can be formed of different lengths. These different lengths allow the realization of different secrets for the respective cylinder lock, which can then be opened only with the respective reversible key according to Figure 4. Particularly important is the different length formation of the individual bodies of the additional pin elements, which must behave in terms of function and sampling, as are the four pin elements which are directed to the main center.

Landscapes

  • Lock And Its Accessories (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)
  • Medical Preparation Storing Or Oral Administration Devices (AREA)
  • Infusion, Injection, And Reservoir Apparatuses (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)

Claims (6)

  1. Dispositif de verrouillage à clé réversible incluant un corps (11.0) de clé qui se compose d'au moins deux corps principaux opposés l'un à l'autre (11.20, 11.21), dans lequel est ménagé au moins un évidement de détection (11.1, ..., 11.4 ; 11.11, ..., 11.17) pour au moins un élément de broche (1, ..., 6 ; 101, ..., 106 ; 201, ..., 206), qui est agencé au moins partiellement dans un corps de noyau (9 ; 109 ; 209) et un corps de stator (8 ; 108 ; 208) du dispositif de verrouillage (20 ; 120 ; 220) et comporte un corps de broche (1 .1 , 2.1 , 3.1 , 4.1 , 5.1 , 6.1) de détection,
    - dans lequel un corps additionnel (11.30) est agencé entre le premier et le deuxième corps principaux (11.20, 11.21),
    - dans lequel des premiers évidements de détection (11.11, ..., 11.17) sont ménagés dans le premier et le deuxième corps principaux (11.20, 11.21) pour des premiers corps de broches (1.1, ..., 4.1 ; 1 01 .1 , ..., 104.1 ; 201 .1 , ..., 204.1) de détection de premiers éléments de broches (1, ..., 4 ; 101, ..., 104 ; 201, ..., 204) ;
    - dans lequel des deuxièmes évidements de détection (11.1, ..., 11.4) sont ménagés dans le corps additionnel (11.30) pour des deuxièmes corps de broches (5.1., 6.1 ; 105.1, 106.1 ; 205.1, 206.1) de détection de deuxièmes éléments de broches (5, 6 ; 105, 106 ; 205, 206), qui sont disposés au moins partiellement dans le corps de noyau (9 ; 109 ; 2.09) et dans le corps de stator (8 ; 108 ; 208) ;
    - dans lequel, lors de l'introduction du corps (11.0) de clé dans un évidement (10 ; 110 ; 210) de clé du corps (9 ; 109-; 209) de noyau,
    - les premiers corps de broches (1.1, ..., 4.1 ; 101.1, ..., 104.1 ; 201 .1, ..., 204.1) de détection des premiers éléments de broches (1, ...,4) sont déplacés avec le premier corps principal (11.20), et après la rotation de 180° avec le deuxième corps principal (11.21), avec les évidements de détection (11.11, ...), et
    - les deuxièmes corps de broches (5.1, 6.1 ; ...) de détection des deuxièmes éléments de broches (5, 6; ...) sont déplacés avec le corps additionnel (11.30), et
    - le corps de noyau (9 ; 109 ; 209) doit être tourné dans le corps de stator (8 ; 108 ; 208),
    caractérisé en ce que
    - les premiers corps de broches (1.1, ..., 4.1 ; ...) de détection des premiers éléments de broches (1, 2, 3, 4 ; ...) sont agencés dans le corps de stator et le corps de noyau (8, 9;...), avec des corps de broches (1.2, 2.2, 3.2, 4.2 ; ...) poussoirs, des corps de broches (1.3, 2.3, 3.3, 4.3 ; ...) de noyau et des premiers corps de broches (1.4, 2.4, 3.4, 4.4 ; ...) de boîtier, chacun le long d'un axe principal (HT1, ..., HT4) de broches orienté vers un centre principal (Z) du dispositif de verrouillage (20 ; 120 ; 220), et en ce que
    - des corps de broches (5.3, 6.3 ; ...) à coupelles, et des deuxièmes corps de broches (5.4, 6.4 ; ...) de boîtier des deuxièmes éléments de broches (5, 6 ; ...), sont agencés chacun le long d'un axe (WT5, WT6) de broche inclinée, orienté lui aussi vers le centre principal (Z), tandis que les deuxièmes corps de broches (5.1, 6.1 ; ...) de détection sont agencés selon un axe (ST5, ST6) de poussoir orienté vers un centre (Z.W) de broche inclinée.
  2. Dispositif de verrouillage selon la revendication 1, caractérisé en ce que le centre principal (Z) est au point central (M) du corps de noyau essentiellement circulaire (9 ; 109 ; 209), et le centre (ZW) de broche inclinée est opposé sur l'axe médian (MA) au point central (M).
  3. Dispositif de verrouillage selon la revendication 1 ou 2, caractérisé en ce que la configuration en section transversale du corps additionnel (11.30) est ronde, ovale, rectangulaire et/ou carrée..
  4. Dispositif de verrouillage selon l'une quelconque des revendications 1 à 3, caractérisé en ce qu'un profil de clé (11.40) est formé dans le premier et dans le deuxième corps principaux (11.20, 11.21) et dans le corps additionnel (11.30).
  5. Dispositif de verrouillage selon l'une quelconque des revendications précédentes, caractérisé en ce que le corps de clé est réparti dans le corps additionnel (11.30) le long d'un axe (WA) de symétrie d'une manière telle qu'un premier corps partiel additionnel (11.31) et le premier corps principal (11.20) avec leurs premiers et deuxième évidements de détection (11.1, ...) sont pareils, après une rotation de 180°, à un deuxième corps partiel additionnel (11.32) et au deuxième corps principal (11.21) avec leurs premiers et deuxièmes évidements de détection.
  6. Dispositif de verrouillage selon la revendication 5, caractérisé en ce que l'axe (WA) de symétrie est incliné de 45° par rapport à un axe central (MA).
EP01102369A 2000-03-09 2001-02-02 Dispositif de verrouillage avec clé réversible Expired - Lifetime EP1132551B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE10011112A DE10011112A1 (de) 2000-03-09 2000-03-09 Wendeschlüssel
DE10011112 2000-03-09

Publications (3)

Publication Number Publication Date
EP1132551A2 EP1132551A2 (fr) 2001-09-12
EP1132551A3 EP1132551A3 (fr) 2003-02-05
EP1132551B1 true EP1132551B1 (fr) 2007-05-30

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP01102369A Expired - Lifetime EP1132551B1 (fr) 2000-03-09 2001-02-02 Dispositif de verrouillage avec clé réversible

Country Status (5)

Country Link
EP (1) EP1132551B1 (fr)
AT (1) ATE363574T1 (fr)
DE (2) DE10011112A1 (fr)
DK (1) DK1132551T3 (fr)
ES (1) ES2287050T3 (fr)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2015008303A1 (fr) * 2013-07-15 2015-01-22 Cisa S.P.A. Cylindre antieffraction et clé associée

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DE2660959C2 (fr) * 1976-02-19 1987-07-09 Dom Sicherheitstechnik
CH621175A5 (en) 1977-06-30 1981-01-15 Bauer Kaba Ag Cylinder lock with an associated flat key
CH651350A5 (en) 1980-09-05 1985-09-13 Ernst Keller Cylinder lock with a reversible key
DE8717534U1 (de) * 1987-08-10 1989-01-19 DOM-Sicherheitstechnik GmbH & Co KG, 5040 Brühl Aus Flachschlüsseln und Schließzylinder bestehende Schließvorrichtung
DE4336476A1 (de) * 1993-10-26 1995-04-27 Bks Gmbh Schlüssel für Schließzylinder, insbesondere von Schließanlagen
DE4336746A1 (de) 1993-10-28 1995-05-04 Sebastian Scharinger Autositz zur Vermeidung von Bandscheibenschäden und Rückenschmerzen
FR2762346B1 (fr) * 1997-04-18 1999-07-09 Andre Merle Cylindre de serrure multicombinaisons
DE29711144U1 (de) * 1997-06-26 1998-10-29 Bks Gmbh, 42549 Velbert Schlüssel
DE19800733A1 (de) * 1998-01-12 1999-07-15 Schulte Zylinderschl Gmbh Querschnittsprofil eines Flachschlüssels oder des Schlüsselkanals eines zugehörigen Schließzylinders
AT409019B (de) * 1999-05-26 2002-05-27 Evva Werke Flachschlüssel und zylinderschloss

Also Published As

Publication number Publication date
EP1132551A2 (fr) 2001-09-12
EP1132551A3 (fr) 2003-02-05
DE10011112A1 (de) 2001-09-13
ATE363574T1 (de) 2007-06-15
DE50112542D1 (de) 2007-07-12
ES2287050T3 (es) 2007-12-16
DK1132551T3 (da) 2007-10-01

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