EP0574594B2 - Ferrure de porte - Google Patents

Ferrure de porte Download PDF

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Publication number
EP0574594B2
EP0574594B2 EP92109679A EP92109679A EP0574594B2 EP 0574594 B2 EP0574594 B2 EP 0574594B2 EP 92109679 A EP92109679 A EP 92109679A EP 92109679 A EP92109679 A EP 92109679A EP 0574594 B2 EP0574594 B2 EP 0574594B2
Authority
EP
European Patent Office
Prior art keywords
rotor
handle
bolt
locking
door
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
EP92109679A
Other languages
German (de)
English (en)
Other versions
EP0574594A1 (fr
EP0574594B1 (fr
Inventor
Heinz-Eckhard Dr.-Ing. Engel
Friedrich Hoppe
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.)
Hoppe Holding AG
Original Assignee
Hoppe Holding AG
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
Family has litigation
First worldwide family litigation filed litigation Critical https://patents.darts-ip.com/?family=8209691&utm_source=google_patent&utm_medium=platform_link&utm_campaign=public_patent_search&patent=EP0574594(B2) "Global patent litigation dataset” by Darts-ip is licensed under a Creative Commons Attribution 4.0 International License.
Application filed by Hoppe Holding AG filed Critical Hoppe Holding AG
Priority to DE59205306T priority Critical patent/DE59205306D1/de
Priority to EP92109679A priority patent/EP0574594B2/fr
Priority to ES92109679T priority patent/ES2084218T5/es
Priority to AT92109679T priority patent/ATE134014T1/de
Priority to DK92109679T priority patent/DK0574594T4/da
Priority to AU43212/93A priority patent/AU658072B2/en
Priority to HU9400050A priority patent/HU218069B/hu
Priority to CZ932460A priority patent/CZ281108B6/cs
Priority to RU94016880A priority patent/RU2135720C1/ru
Priority to KR1019930703638A priority patent/KR970000862B1/ko
Priority to EP93912859A priority patent/EP0598877B1/fr
Priority to DE1993625777 priority patent/DE69325777T2/de
Priority to CA 2102401 priority patent/CA2102401A1/fr
Priority to BR9305516A priority patent/BR9305516A/pt
Priority to US08/178,297 priority patent/US5775745A/en
Priority to PCT/EP1993/001387 priority patent/WO1993025788A1/fr
Priority to DK93912859T priority patent/DK0598877T3/da
Priority to SK1502-93A priority patent/SK279710B6/sk
Priority to JP51966193A priority patent/JPH06105020B2/ja
Priority to PL93302983A priority patent/PL171749B1/pl
Priority to AT93912859T priority patent/ATE182651T1/de
Priority to ES93912859T priority patent/ES2136664T3/es
Priority to CN93106654A priority patent/CN1038777C/zh
Priority to SI9300310A priority patent/SI9300310A/sl
Priority to MYPI93001111A priority patent/MY131506A/en
Publication of EP0574594A1 publication Critical patent/EP0574594A1/fr
Priority to NO934797A priority patent/NO934797L/no
Priority to FI940061A priority patent/FI940061A0/fi
Priority to EE9400466A priority patent/EE03129B1/xx
Publication of EP0574594B1 publication Critical patent/EP0574594B1/fr
Application granted granted Critical
Priority to GR960401234T priority patent/GR3019865T3/el
Priority to GR990402621T priority patent/GR3031534T3/el
Publication of EP0574594B2 publication Critical patent/EP0574594B2/fr
Priority to GR20000400204T priority patent/GR3032510T3/el
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C1/00Fastening devices with bolts moving rectilinearly
    • E05C1/08Fastening devices with bolts moving rectilinearly with latching action
    • E05C1/12Fastening devices with bolts moving rectilinearly with latching action with operating handle or equivalent member moving otherwise than rigidly with the latch
    • E05C1/16Fastening devices with bolts moving rectilinearly with latching action with operating handle or equivalent member moving otherwise than rigidly with the latch the handle or member moving essentially in a plane substantially parallel to the wing or frame
    • E05C1/163Cylindrical or tubular latches
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B55/00Locks in which a sliding latch is used also as a locking bolt
    • E05B55/005Cylindrical or tubular locks

Definitions

  • the invention relates to a fitting system according to the preamble of claim 1.
  • a typical example of this is a so-called button lock according to DE-C-583 964 with a length-adjustable latch.
  • This must be assembled from the individual components to form a locking and latching arrangement, which is not only relatively time-consuming, but also requires precise coordination of the individual parts and their tolerances with one another.
  • the handles must be buttons; if it were lever handles (pushers), the handle that was not actuated would fall down due to its eccentric load mass, since there is no spring support.
  • DE-A-2 339 919 describes a cylinder lock for installation in doors. It has twist grips in Shape of buttons because of a rotationally symmetrical, especially cylindrical shape of the entire body of the locking device is essential so that the installation in a Cross hole of the door can be done.
  • a sleeve that is eccentrically offset on the end is special provided, i.e. a housing with inner and outer door knob, their diameter at least at one end cannot be larger than the corresponding hole in the Door, because otherwise the assembly cannot be carried out.
  • the invention seeks to remedy this. It is an important goal, the usual lock-fitting combination by drastically reducing the number of components required both in production and in assembly to simplify considerably. The operations required for attachment to the lock wall or door should be strong be relieved. Furthermore, increased functional reliability is sought, with the end user or craftsman should be largely relieved of technical problems.
  • the bearing and / or guide elements for in an opening directed transversely to the rotor axis receives a spring-loaded latch, and which to actuate it with a driver on a closing and / or Locking device cooperates, which is arranged in two horizontally intersecting holes on a door, wherein the driver is pivotally mounted parallel to the axis of the rotor and a from a pair of handles or a handle and a button, the sleeve, the rotor and the Driver pre-assembled lock fitting unit on the door can be dismantled
  • the invention provides according to the characterizing part of claim 1 that in the rotor a bridge arranged obliquely with respect to the axis of displacement of the trap is present, the driver when swiveling the handle, for return and forward movement the case drives frictionally or positively in opposite directions to the rotor.
  • the handles of a pair of handles are a rigid assembly unit connected and preferably in one piece. This is easy to handle and can be quickly secured to a door attach, and with very little effort.
  • claim 3 provides that the lock fitting or assembly unit in a transverse hole and the trap in a faceplate hole that is horizontal in or next to the level of the door runs; inserting the trap into its holder completes the assembly.
  • the assembly is particularly facilitated according to claim 4 by an opening in the generally C-shaped sleeve is arranged diametrically opposite the trap and has parallel limits of such clear width that the rotor can be pushed in and locked or pushed out and removed.
  • a swivel is used to determine and release preferably made by 90 °.
  • a return spring for the can between the sleeve and rotor according to claim 5 Attack the handle or the pair of handles, e.g. in the form of a compression spring block arranged close to the circumference, a leaf spring or the like This arrangement is extremely compact and ensures the handle return in the simplest of ways the resting position.
  • the rotor according to claim 6 is insertable into the opening and on the driver has frictionally fitting profile body, for example a step profile, a pin group or a polygon stump.
  • frictionally fitting profile body for example a step profile, a pin group or a polygon stump.
  • a simple design of the rotor according to claim 8 is that it has opposite heads Has boundary surfaces that run transverse to the longitudinal direction of the handle and their greatest distance from each other at most is equal to the opening width of the opening.
  • One has guiding elements in the form of two, for example parallel flats, which can be components of cheeks according to claim 9, which the rotor like a hub limit axially.
  • the very compact arrangement is easy to manufacture and forms a stable structural unit.
  • the driver is an angle lever, which is loaded by the latch spring and is pivotable about an axis parallel to the rotor axis and arranged in the peripheral region of the sleeve.
  • the angle lever expediently points in accordance with Claim 12 to a top-side bearing part, on the one hand, in particular a partially slotted coupling tongue and on the other a slide cam.
  • claim 14 specifies that the sleeve has a threaded hole on the latch side for a screw-in socket that guides or stores the latch and the entire system in the faceplate hole fixed.
  • the socket has cutouts on the side of the faceplate or in its central bore for attaching one Screwing tool, preferably a hexagon key.
  • the inner end of a coupling approach has and it is enclosed on its shaft by a compression spring which is located on an inner flange of the socket supports.
  • the trap is slidable in its central bore and rotatable about its longitudinal axis. It is particularly advantageous the arrangement of claim 17, according to which the trap has at the inner end directed transversely to its outer edge, which can be locked by rotating the trap around its longitudinal axis with the partially slotted coupling tongue of the bell crank are.
  • the extensions can be symmetrical, so that the trap twisted in two by 180 ° Positions can be locked.
  • the outer edge which is transverse to the longitudinal axis of the trap runs in relation to the extensions either in the middle - which is preferable for stump doors - or eccentric, so that the removable arrangement is also suitable for folding doors.
  • the rotor according to claim 20 approaches, which by positive locking secured against twisting and to which handles, buttons or other handles can be attached.
  • claim 21 can use the approaches as a supporting cone for axially fixed and non-rotatable attachment of opposite attachment parts of handle bodies or necks be formed. This construction enables a modular system, in which the unit Different handling of rotor and support cones can be installed depending on the intended use or style can. In this way, different manipulations for the outside and inside can be done with little effort attach a door comfortably.
  • the rotor and the handle necks of the mounting unit have a common one
  • the rotor mounted in the stator can therefore be locked and released in a simple manner.
  • This can the locking mechanism according to claim 23 have a longitudinal slide with two on or in the heads of the rotor-guided cross slide is motion-related, in particular by the slide as perpendicular to each other Acting control curves are formed, the cross slide for locking in the associated recesses Insert the sleeve.
  • the manufacture and assembly of this construction are simple; the mode of action is permanently reliable.
  • suitable actuating and unlocking members are listed.
  • the sleeve has a shaft-like opening into which a bolt or Locking device can be used. It can consist of a locking block with a spring-loaded pawl and by means of a bolt are fixed so that these few parts can be assembled quickly and accurately.
  • the sleeve may also be part of a housing having the faceplate hole, which on Door leaf e.g. can be fastened by means of a screw connection to an opposing cover plate.
  • the housing according to claim 29 expedient has a bracket that covers the shaft-like opening after installation of the locking or locking device.
  • a bracket can be attached to the housing in a form-fitting manner, for example with angled tabs engage slots in the housing.
  • FIG. 1 shows one Lock fitting unit 10, which is attached to a door leaf T and essentially of a mirror-symmetrical
  • a pair of handles 22 with a rotor 40 exists, which limits the swivel angle and can be rotated with return spring in a handle sleeve 30 is mounted as a stator.
  • the rotor 40 is flattened on both sides Heads 41 provide what - with vertical handle main part 21 - the insertion or joining between limits 36 of a longitudinal slot or opening 35 of the C-shaped sleeve 30 allowed through and after pivoting of the pair of handles 22 forms a radially locked, solid slide bearing in the horizontal. This is indicated by cheeks 48 limited so that a rotomabe is formed.
  • the opening 35 receives return springs 34, the spring housing 33 upper and lower handle stops defined (see Fig. 3a, 3b).
  • the pair of handles 22 can be composed of several parts, namely a rotor 40 and separate door handles 20 be; however, the invention also contemplates a one piece construction.
  • a multi-part arrangement serve as Joining points on the outer circumference of the cheeks 48 are recognizable supporting cones 63.
  • a through moments around the rotor axis R The twists 20, 21 and the rotor 40 can be caused to twist against each other by (not shown here) Form-locking on the front is prevented. Lateral forces and tensile forces acting in the direction of the rotor axis R. are by a tangential flange (also not shown) on the support cone 63 from the handle 20 to the rotor 40 transferred.
  • Decorative or end rings 65 can be rosette-shaped Cover parts 64 of the handle necks 23 are pushed on after the lock fitting unit 10 has been mounted.
  • Fig. 1 shows an embodiment in which such end rings 65 are braced by fastening a bushing 18 in the door leaf T. will.
  • This bushing 18 is provided with a collar 31 and an annular spring 32. It has on the opposite End of a threaded portion 37, which in a threaded hole 38 of the sleeve 30 mounted with the unit 10 in the transverse hole Qth can be screwed after the bushing 18 has been inserted into the faceplate hole L.
  • the socket 18 has recesses for this 68 for attaching a screwing tool (not shown), in particular a hexagon wrench. Only by screwing the sleeve 18, the unit 10 is thus fixed in the door leaf T.
  • a trap 15 is guided or supported in a central bore 28 of the sleeve 18, one of whose shafts 26 enclosing compression spring 16 on a collar 13 of the case 15 and on an inner flange 29 of the sleeve 18 supports.
  • the structure of these and other individual parts is shown in FIG. 5.
  • the latch 15 has transversely to the outer edge 14 standing extensions 19, which are used for coupling with a driver 50, which is designed as an angle lever and around an axis S is pivotable, which is arranged parallel to the rotor axis R on the circumference of the sleeve 30.
  • the driver 50 engages behind the extensions 19 with his one leg 52, which is designed as a coupling tongue.
  • the angle lever has its other leg in the form of a sliding cam 54, which is on a contact surface 46 of a bridge 45 of the rotor 40 is non-positively.
  • This bridge 45 is inclined to the heads 41 of the rotor 40, which are provided with flats 42, in order to vertically standing handle main part 21 - to be able to insert these heads 41 into the interior of the sleeve 30 (cf. FIGS. 2 and 5).
  • the bridge 45 has a step 44 which offers space for the slide cam 54 of the driver 50.
  • the spring housing 33 for a compression spring block which in this design Return spring 34 guaranteed.
  • a leaf spring is used, which is eccentric in the sleeve 30 is supported.
  • FIGS. 3a and 3b and 4 The mode of operation of the lock fitting 10 can be seen by comparing FIGS. 3a and 3b and 4.
  • a handle 21 drives the rotor bridge 45 to the angle lever 50, which retracts the latch 15 and thus the Door T opens.
  • the rotor 40 with recesses 43 is flattened on both sides Provide heads 41 (Fig. 1).
  • FIG. 6 The sequence of the assembly steps is shown schematically in FIG. 6.
  • the driver 50 is inserted so that or is pivotable about the axis S ( Figure B).
  • Figure C In the opening 35 Heads 41 of the rotor 40 inserted with the handle main part 21 turned up ( Figure C), the flats 42 of the Heads 41 enter the inside of the sleeve 30 between the boundaries 36.
  • the handles 20/21 turn 90 ° pivoted and the return spring 34 is inserted ( Figure D).
  • the assembly unit 10 thus formed is then after Image E reversed, i.e.
  • the latch 15 with its anchor-like rear extension 19 hooked like a bayonet into the partially slotted coupling tongue 52 of the angle lever 50.
  • Both the rotating hooking as well as the rotating alignment of the latch 15 depending on the left or right stop of the door T is by the rear Trap end 17 formed extension 19 allows when the trap 15 is fully pressed into the socket 18.
  • its compression spring 16 secures the rear contact of the extension 19 on the coupling tongue 52, a square located behind an extension recess preventing unintentional rotation.
  • FIGS. 7a to 7d is generally similar to that of FIGS. 3a, 3b.
  • the sleeve 30 is here provided with a shaft-like opening 55, into which a locking or locking device can be inserted.
  • she consists from a locking block 58 with a pawl 59 mounted therein under the action of a spring 57.
  • the axially for mounting nested elements are fixed in the opening 55 with a bolt 56. This is just like that Bearing pin 53 for the driver 50 after the handle assembly by the flanges 48 axially secured.
  • FIG. 7d shows a simplified embodiment, the locking shaft 60 being located directly on a projection 62 of the Locking block 58 supports, but is exposed to a full transverse force when actuated.
  • the Locking shaft 50 By turning the Locking shaft 50 by 180 °, the projection 62 is released from the drawn closed position and thus the pivoting movement the bridge 45 or the grilfrorors 40 enables.
  • the lock fitting unit 10 is not only suitable for flush doors with left or right hinges, which is the reversible Trap 15 allows for the otherwise mirror-symmetrical design of the fitting unit, but also for Folding doors (Fig. 8).
  • a sleeve 30 is provided, the shaft-like opening 55 eccentrically and therefore is arranged asymmetrically.
  • the socket 18 inserted into the faceplate hole L connects to its central plane, so that the latch 15 with the extensions 19 can be locked in the manner already described with the driver 50 (omitted here) is, with the outer edge 14 offset according to the position of the door rebate. It can be seen that the whole arrangement can be turned around a horizontal axis V if it is installed in a rebate door to be opened in the opposite direction T would be required.
  • the preassembled lock fitting unit here comprises a modified sleeve 30 which is integral with a housing 70 or is rigidly connected.
  • the opening 55 is arranged therein and is overlapped by a bracket 72.
  • This has angled ends with tabs 73 which engage in slots 71 of the housing 70 on which the faceplate hole L is designed to receive the sleeve 18 (not shown here).
  • a cover plate 74 which penetrates the door leaf T with threaded bushings 76, in which Screws 75 are screwed in for fastening the housing 70.
  • the mirror-symmetrical design of all Components also allow both attachment options (left or right).
  • the rotor axis R does not have to coincide with the intersection of the holes Q, L. An off-center Arrangement is possible.
  • the bushing 18 expediently has an inner hexagonal recess 68 can be provided so that the flange 31 shows no tool approaches. This also complicates an undesirable Removal of the lock fitting.
  • FIGS. 11a to 14c Modular designs are shown in FIGS. 11a to 14c.
  • the grill pair 22 is part of each of a form-fitting assembly
  • the rotor 40 equipped with the flanges 48 having a cone 63 can accommodate any handles, knobs and other handles as an interface.
  • the rotor 40 therefore hold approaches 63, which are secured against twisting by positive locking such as serration and / or pinning, for the handle neck 23 each separately attachable handle 20 or 21.
  • a continuous axial opening 80 serves to accommodate the Locking mechanism.
  • 11a and 11b show an arrangement without locking elements, blind plugs 81 den Seal axial opening 80 at both ends.
  • the locking mechanism which can be used from either side, essentially consists of a longitudinal slide 87, which drives two cross slide 88 (Fig. 12a to 12d).
  • the radial movement of the cross slide 88 is determined by Control curves 90 of the longitudinal slide 87 and corresponding openings in the cross slide 88 causes.
  • a push button 92 is used, by which the longitudinal slide 87 is pressed in for locking (Fig. 12b).
  • the two cross slides 88 engage in assigned recesses 89 (FIG. 12c) of the sleeve 30, see above that the locking takes place (Fig. 12d).
  • the operating element is a rotary knob or an olive 93.
  • a lock cylinder 94 is inserted on the side, the lock bolt 97 when the key is actuated (FIG. 13f) axially pushes the longitudinal slide 87 back against the force of a compression spring 98 (FIG. 13c). After removing the The locked state (FIG. 13b) is restored, with the lock bolt 97 and the longitudinal slide 87 releases.
  • FIGS. 14a to 14c Further actuation variants are drawn in FIGS. 14a to 14c.
  • the button 92 can Lock are actuated, whereby an unlocking bolt 99 engages. Repeated presses do not lead to its unlocking. Instead, the bolt 99 must e.g. be indented by finger pressure in the direction of the arrow, whereupon a latch 100 of the push button 92 is released and this thanks to the force of an axial spring 101 a rear end edge 102 snaps back.
  • the unlocking bolt 99 has the front and rear axial positions of the longitudinal slide 87 sets. To unlock the other end provided with a signal cap 103 of the longitudinal slide 87 e.g. pushed back with a bolt or pin against the force of the compression spring 98 so that the cross slide 88 rise in the sleeve 30 and thus release the rotor 40 (see FIG. 14b).
  • the design shown in the last-mentioned figure does not require springs.
  • the rotary knob is used for locking 93 rotated out of the drawn rest position around the rotor axis R, whereby a helical groove 104 a transverse pin 105 of the longitudinal slide 87 together with this axially displaced and thus the cross slide 88 locked with the sleeve 30. Unlocking takes place from the inside by turning knob 93 in the opposite direction Bolt pressure on the signal cap 103 unlocking, so that the rotary knob 93 returns to the starting position.
  • the slope of the helical groove 104 is dimensioned such that self-locking neither when rotating nor when the slide is actuated arises.
  • FIG. 14c locked position
  • a locking slide on the longitudinal slide 87 106 articulated which can assume two predetermined end positions.
  • e.g. pointed spring bolt 107 provided, which is guided in a stepped longitudinal groove 108 and engage in form-fitting recesses for locking can.
  • both actuated and spring-loaded for actuation and for unlocking Arrangements can be used, as long as only the respective control element an axial movement of the longitudinal slide 87 causes.
  • a handle - in particular on the outside the door T - to be replaced by a button that can be locked on the support cone 63.
  • the invention also falls, by means of a (not shown) pinion to drive a bolt for locking enters a circumferential bore of the sleeve 30.
  • a crank pin arrangement is also possible for this purpose.
  • the cavity of the sleeve 30 is not is used only with its opening 35 for inserting the rotor 40, but also with at least one opening 55 can be used as assembly and functional space for the return spring 34 and as a stop for the bridge 45 can.
  • Both handles 20, the main part 21 of which are integral with the handle neck 23 (FIG. 1), can be used also multi-part arrangements as in Fig. 2, where the main handle part 21 is inserted into a recess 24 on the handle neck 23 and can be fixed by means of an Allen screw 25.
  • FIGS. 15a and 15b A torsion-proof attachment can be seen in FIGS. 15a and 15b.
  • the flange 48 of the rotor 40 Support cone 63 arranged on both sides and provided with a locking ring 69.
  • Cutouts or claws 79 which have claws or cutouts of the same type on a (not shown here) Handle neck body are assigned, which preferably consists of plastic.
  • compensating sleeves can be fitted (see. The end rings 65 in Fig. 1), which in the Assembly of the stator 30 can be clamped by the bushing 18 and overlap the edge of the transverse hole Q, optionally with decorative effect.
  • Such compensating sleeves can have a supporting effect and possibly even intercept wear if the bearing formed by the lock fitting unit 10 in the transverse hole Q at extreme or long exposure.
  • the novel Lock fitting 10 preferably from locking and / or locking devices including a latch 15, one in one C-shaped sleeve 30 mounted carrier 50, a rotor 40 and a one-piece handle 20 or Pair of handles 22.
  • a handle 20 is inserted through a transverse hole Q in the door T until the assembly unit of handle sleeve 30 and rotor 40 is rotatably mounted therein, whereupon the main handle part 21 by 180 ° in its rest position is flipped.
  • a bushing 18 guiding the latch 15 fixes the entire system in a faceplate hole L.
  • the driver is preferably an angle lever 50 which is loaded by a latch spring 16 and which is about an axis S parallel to the rotor axis R. is pivotable in the peripheral region of the sleeve 30.
  • it has a partially slotted coupling tongue 52 for the trap end 17, 19 and on the other hand a sliding cam 54, which abuts a bridge 45 in a non-positive manner. Thanks symmetrical trained extensions 19, the latch 15 can be locked in two positions rotated by 180 °, so that its outer edge 14 can be offset transversely to the longitudinal trap axis V.

Claims (29)

  1. Système de ferrure avec au moins une poignée (20) et avec un rotor (40) relié à cette poignée au niveau du col de celle-ci, le rotor étant logé dans une douille (30) qui reçoit par une ouverture (38) perpendiculaire à l'axe (R) du rotor des éléments de logement et/ou de guidage (18) pour un pêne demi-tour (15) soumis à l'action d'un ressort, et pour l'actionnement du pêne, le rotor agissant ensemble avec un loquet d'entraínement (50) dans un dispositif de fermeture et/ou de verrouillage situé sur une porte (T) dans deux perforations (Q, L) se croisant horizontalement, le loquet d'entraínement (50) étant logé pivotable et parallèle à l'axe (R) du rotor, et une unité prémontée de ferrure de serrure (10) composée d'une paire de poignées (22) ou d'une poignée (20) et d'un bouton, de la douille (30), du rotor (40) et du loquet d'entraínement (50) pouvant être installée sur la porte (T) sans être démontée, caractérisé en ce qu'il y a dans le rotor (40) un pont (45) disposé obliquement par rapport à l'axe de déplacement (V) du pêne demi-tour (15), lequel pont, au moment du pivotement d'une poignée (20), entraíne le loquet d'entraínement (50), en sens inverse du rotor (40) et solidairement par frottement et par la forme, pour un mouvement en avant ou en arrière du pêne demi-tour (15).
  2. Système selon la revendication 1, caractérisé en ce que les poignées (20) d'une paire de poignées (22) sont assemblées en une unité de montage rigide et ne forment de préférence qu'une seule pièce.
  3. Système selon la revendication 1 ou 2, caractérisé en ce que l'unité de ferrure (10), y-compris la paire de poignées (22) ou la poignée (20) et la tête de la douille (30), peuvent entrer dans le trou transversal (Q), et que le pêne demi-tour (15) peut entrer dans un trou embouti (L) qui passe horizontalement à côté ou dans le plan de la porte (T).
  4. Système selon l'une des revendications 1 à 3, caractérisé en ce qu'un percement (35) est aménagé dans la douille (30) généralement en forme de C, diamétralement opposé au pêne demi-tour (15) et possédant des limitations parallèles (36) avec un tel diamètre intérieur (w) que le rotor (40), qui peut être pivoté de préférence de 90° pour le blocage ou la libération, est encastrable pour le montage et retirable pour le démontage.
  5. Système selon la revendication 4, caractérisé en ce qu'un ressort de rappel (34) pour la poignée (20) ou la paire de poignées (22) a prise entre la douille (30) et le rotor (40), par exemple sous forme d'un bloc à ressort de pression, d'un ressort à lames ou autre, situé près de la circonférence.
  6. Système selon la revendication 4 ou 5, caractérisé en ce que le rotor (40) est pourvu d'un corps profilé (45), par exemple d'un profil en étage, d'un groupe de tiges ou d'un polygone tronqué, qui peut s'introduire dans le percement (35) et est relié par adhérence au loquet d'entraínement (50).
  7. Système selon l'une des revendications 1 à 6, caractérisé en ce que pour le montage, la poignée (20) ou paire de poignées (22), y-compris la douille (30), peut être introduite dans le trou transversal (Q), extrémité libre en premier, en tournant la partie principale (21) de la poignée de telle sorte que le col (23) de la poignée entre dans le trou transversal (Q) et que la partie principale (21) de la poignée est dirigée vers le pêne demi-tour (15), à la suite de quoi la poignée (20) ou paire de poignées (22) est pivotée de 180° et ramenée dans sa position de repos.
  8. Système selon l'une des revendications 1 à 7, caractérisé en ce que le rotor (40) possède des têtes (41) se faisant face, avec des surfaces de limitation, par exemple deux aplatissements parallèles (42), orientées transversalement par rapport à la direction longitudinale de la poignée, et dont la distance maximale de l'une à l'autre est tout au plus égale à l'ouverture (w) du percement (35).
  9. Système selon la revendication 8, caractérisé en ce que le rotor (40) forme un moyeu, qui est limité en direction de l'axe (R) du rotor par des épaules ou des brides (48), auxquelles les têtes (41) se rattachent vers l'intérieur.
  10. Système selon l'une des revendications 1 à 9, caractérisé en ce que le loquet d'entraínement est un levier coudé (50), soumis à l'action d'un ressort (16) du pêne demi-tour et pivotable autour d'un axe (S), parallèle à celui du rotor (R) et situé dans la zone circonférentielle de la douille (30).
  11. Système selon la revendication 10, caractérisé en ce qu'une branche (52) du levier coudé (50) est rattachée au mouvement de l'extrémité intérieure (17) du pêne demi-tour (15), et que l'autre branche (54) est reliée au pont (45) par adhérence ou par la forme.
  12. Système selon la revendication 10 ou 11, caractérisé en ce que le levier coudé (50) est pourvu d'un côté d'une languette d'accouplement (52), notamment fendue partiellement, et de l'autre côté d'un mentonnet coulissant (54), les deux se rattachant à un palier situé au sommet du levier (53).
  13. Système selon la revendication 11 ou 12, caractérisé en ce que le pont (45) est un corps plat avec un étagement ou un évidement (44) du côté de la poignée, dans lequel pénètre dans sa position finale une extrémité par exemple épaissie de l'une des branches (52), et lequel a en direction du palier de pivotement (53) du levier coudé (50) une surface d'appui (46) pour l'autre branche (54).
  14. Système selon l'une des revendications 4 à 13, caractérisé en ce que la douille (30) a un trou taraudé (38) du côté du pêne demi-tour pour une douille vissable (18), guidant ou logeant le pêne demi-tour (15) et fixant tout le système dans le trou embouti (L).
  15. Système selon la revendication 14, caractérisé en ce que la douille (18) possède des évidements (68) du côté de l'embouti ou dans sa perforation centrale (28) pour placer un outil de vissage.
  16. Système selon la revendication 14 ou 15, caractérisé en ce que le pêne demi-tour (15), avec sa tige coulissable (26) dans une perforation centrale (28) de la douille, est entouré d'un ressort de pression (16) s'appuyant à une bride intérieure (29) de la douille (18) et que son extrémité intérieure (17) possède une saillie d'accouplement (19).
  17. Système selon l'une des revendications 12 à 16, caractérisé en ce que le pêne demi-tour (15) possède sur son extrémité intérieure (17), transversalement à son arête extérieure (14), des prolongements (19) qui, sous l'action de la rotation du pêne demi-tour (15) autour de son axe longitudinal (V), s'enclenchent avec la languette (52) fendue partiellement du levier coudé (50).
  18. Système selon la revendication 17, caractérisé en ce que les prolongements (19) sont symétriques, si bien que le pêne demi-tour (15) peut s'enclencher sur la branche ou languette d'accouplement (52) dans deux positions décalées de 180°.
  19. Système selon la revendication 17 ou 18, caractérisé en ce que la localisation de l'arête extérieure (14), transversale à l'axe longitudinal (V) du pêne demi-tour par rapport aux prolongements (19), est centrée ou décentrée.
  20. Système selon l'une des revendications 11 à 19, caractérisé en ce que le rotor (40) possède des saillies (63) qui de par leur connivence géométrique ne peuvent pas tourner, sur lesquelles sont fixables des poignées (20), des boutons ou autres moyens de manipulation.
  21. Système selon la revendication 20, caractérisé en ce que les saillies ont la forme de cônes de support (63) servant à installer, d'une manière axialement fixe et résistant à la rotation, des saillies diamétralement opposées de corps ou cols de moyens de manipulation.
  22. Système selon l'une des revendications 11 à 21, caractérisé en ce que le rotor (40) et les cols de poignées (23) de l'unité de montage (10) ont un percement axial (80) commun pour recevoir un mécanisme de verrouillage, lequel a une liberté axiale limitée pour l'actionnement et le déverrouillage.
  23. Système selon la revendication 22, caractérisé en ce que le mécanisme de verrouillage a un poussoir longitudinal (87) lié aux mouvements de deux poussoirs transversaux (88) guidés sur ou dans les têtes (41) du rotor (40), les poussoirs (87, 88) ayant notamment la forme de deux courbes de commande agissant verticalement l'une par rapport à l'autre, et que les poussoirs transversaux (88) s'engagent pour le verrouillage dans des évidements (89) correspondants de la douille (30).
  24. Système selon la revendication 22 ou 23, caractérisé en ce que des éléments de commande guidés et/ou à ressort comme des boutons de pression (92), des olives (93), des cylindres de serrure (94), des poussoirs crantés (106) ou autres, sont prévus pour l'actionnement du poussoir longitudinal (87).
  25. Système selon l'une des revendications 22 à 24, caractérisé en ce que pour le déverrouillage, un élément cranté d'enclenchement, comme par exemple un boulon (99) soumis à l'action d'un ressort, transversal au percement axial (80), se trouve sur la tête de la poignée.
  26. Système selon l'une des revendications 22 à 24, caractérisé en ce que pour le déverrouillage, une tige transversale (105) du poussoir longitudinal (87) peut se déplacer sans blocage automatique dans une rainure hélicoïdale (104) d'un élément de manipulation (par exemple 93).
  27. Système selon l'une des revendications 4 à 26, caractérisé en ce que la douille (30) a un percement en forme de cheminée (55), dans lequel un dispositif de blocage ou de verrouillage (57 à 62) peut être installé.
  28. Système selon l'une des revendications 4 à 27, caractérisé en ce que la douille (30) fait partie d'un boítier (70) portant le trou embouti (L), ce boítier étant fixable sur le panneau de la porte (T), par exemple au moyen d'une liaison par vis à plaquette de recouvrement opposée (74).
  29. Système selon la revendication 27 ou 28, caractérisé en ce que le boítier (70) possède un arceau (72) qui surplombe le percement en forme de cheminée (55) après le montage du dispositif de blocage ou de verrouillage (57 à 62).
EP92109679A 1992-06-09 1992-06-09 Ferrure de porte Expired - Lifetime EP0574594B2 (fr)

Priority Applications (31)

Application Number Priority Date Filing Date Title
DE59205306T DE59205306D1 (de) 1992-06-09 1992-06-09 Beschlagsystem
EP92109679A EP0574594B2 (fr) 1992-06-09 1992-06-09 Ferrure de porte
ES92109679T ES2084218T5 (es) 1992-06-09 1992-06-09 Sistema de herraje.
AT92109679T ATE134014T1 (de) 1992-06-09 1992-06-09 Beschlagsystem
DK92109679T DK0574594T4 (da) 1992-06-09 1992-06-09 Beslagsystem
DK93912859T DK0598877T3 (da) 1992-06-09 1993-06-02 Falle og dørlås
AT93912859T ATE182651T1 (de) 1992-06-09 1993-06-02 Riegel und türschloss
CZ932460A CZ281108B6 (cs) 1992-06-09 1993-06-02 Zámkový systém se střelkou
RU94016880A RU2135720C1 (ru) 1992-06-09 1993-06-02 Запирающее устройство
KR1019930703638A KR970000862B1 (ko) 1992-06-09 1993-06-02 래치 및 잠금장치
EP93912859A EP0598877B1 (fr) 1992-06-09 1993-06-02 Systeme de loquet et d'ensemble serrure
DE1993625777 DE69325777T2 (de) 1992-06-09 1993-06-02 Riegel und türschloss
CA 2102401 CA2102401A1 (fr) 1992-06-09 1993-06-02 Serrure
BR9305516A BR9305516A (pt) 1992-06-09 1993-06-02 Sistema de trinco e fechadura
US08/178,297 US5775745A (en) 1992-06-09 1993-06-02 Latch and lockset system
PCT/EP1993/001387 WO1993025788A1 (fr) 1992-06-09 1993-06-02 Systeme de loquet et d'ensemble serrure
AU43212/93A AU658072B2 (en) 1992-06-09 1993-06-02 Latch and lockset system
SK1502-93A SK279710B6 (sk) 1992-06-09 1993-06-02 Zámkový systém so strelkou a spôsob jeho montáže
JP51966193A JPH06105020B2 (ja) 1992-06-09 1993-06-02 ラッチ及びロックアップシステム
PL93302983A PL171749B1 (pl) 1992-06-09 1993-06-02 Zamek zatrzaskowypopychacz , wspólpracujacy z lukowym wglebie- PL PL PL PL
HU9400050A HU218069B (hu) 1992-06-09 1993-06-02 Kilincses zárrendszer
ES93912859T ES2136664T3 (es) 1992-06-09 1993-06-02 Sistema de cierre y conjunto de cerradura.
MYPI93001111A MY131506A (en) 1992-06-09 1993-06-09 Latch and lockset system
CN93106654A CN1038777C (zh) 1992-06-09 1993-06-09 碰锁装置
SI9300310A SI9300310A (sl) 1992-06-09 1993-06-09 Sistem zapadnice in kljucavnice
NO934797A NO934797L (no) 1992-06-09 1993-12-23 Klinke og låsesatsanordning
FI940061A FI940061A0 (fi) 1992-06-09 1994-01-07 Salpa- ja lukkosarjajärjestelmä
EE9400466A EE03129B1 (et) 1992-06-09 1994-11-23 Lingi- ja lukustusmehhanism
GR960401234T GR3019865T3 (en) 1992-06-09 1996-05-08 Door fitting
GR990402621T GR3031534T3 (en) 1992-06-09 1999-10-14 Latch and lockset system.
GR20000400204T GR3032510T3 (en) 1992-06-09 2000-01-28 Door fitting.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP92109679A EP0574594B2 (fr) 1992-06-09 1992-06-09 Ferrure de porte

Publications (3)

Publication Number Publication Date
EP0574594A1 EP0574594A1 (fr) 1993-12-22
EP0574594B1 EP0574594B1 (fr) 1996-02-07
EP0574594B2 true EP0574594B2 (fr) 1999-11-10

Family

ID=8209691

Family Applications (1)

Application Number Title Priority Date Filing Date
EP92109679A Expired - Lifetime EP0574594B2 (fr) 1992-06-09 1992-06-09 Ferrure de porte

Country Status (7)

Country Link
EP (1) EP0574594B2 (fr)
AT (1) ATE134014T1 (fr)
DE (1) DE59205306D1 (fr)
DK (1) DK0574594T4 (fr)
EE (1) EE03129B1 (fr)
ES (1) ES2084218T5 (fr)
GR (2) GR3019865T3 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE29819917U1 (de) * 1998-11-07 1999-01-14 Hoppe Holding Ag Rotoranordnung für ein Beschlagsystem
DE102012002960B4 (de) * 2012-02-16 2014-08-21 Assa Abloy Sicherheitstechnik Gmbh Montagebaugruppe zur Montage einer Verriegelungseinrichtung

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE583964C (de) * 1928-03-16 1933-09-12 American Hardware Corp Einsteckschloss mit verkuerzbarer und verlaengerbarer Falle

Also Published As

Publication number Publication date
EP0574594A1 (fr) 1993-12-22
DE59205306D1 (de) 1996-03-21
ATE134014T1 (de) 1996-02-15
GR3019865T3 (en) 1996-08-31
DK0574594T3 (da) 1996-05-20
ES2084218T3 (es) 1996-05-01
ES2084218T5 (es) 2000-03-01
EP0574594B1 (fr) 1996-02-07
DK0574594T4 (da) 2000-05-08
EE03129B1 (et) 1998-10-15
GR3032510T3 (en) 2000-05-31

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