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EP0803627B1 - Ferrure pour battant oscillo-battant avec fente de ventilation variable - Google Patents

Ferrure pour battant oscillo-battant avec fente de ventilation variable Download PDF

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Publication number
EP0803627B1
EP0803627B1 EP97106194A EP97106194A EP0803627B1 EP 0803627 B1 EP0803627 B1 EP 0803627B1 EP 97106194 A EP97106194 A EP 97106194A EP 97106194 A EP97106194 A EP 97106194A EP 0803627 B1 EP0803627 B1 EP 0803627B1
Authority
EP
European Patent Office
Prior art keywords
pinion
blocking
turn
driving rod
clamping
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
EP97106194A
Other languages
German (de)
English (en)
Other versions
EP0803627A2 (fr
EP0803627A3 (fr
Inventor
Erwin Eisenköck
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.)
Mayer and Co
Original Assignee
Mayer and Co
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 Mayer and Co filed Critical Mayer and Co
Publication of EP0803627A2 publication Critical patent/EP0803627A2/fr
Publication of EP0803627A3 publication Critical patent/EP0803627A3/fr
Application granted granted Critical
Publication of EP0803627B1 publication Critical patent/EP0803627B1/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
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/48Suspension arrangements for wings allowing alternative movements
    • E05D15/52Suspension arrangements for wings allowing alternative movements for opening about a vertical as well as a horizontal axis
    • E05D15/5205Suspension arrangements for wings allowing alternative movements for opening about a vertical as well as a horizontal axis with horizontally-extending checks
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Type of wing
    • E05Y2900/148Windows

Definitions

  • the invention relates to a turn-tilt fitting for windows, doors and the like according to the preamble of claim 1.
  • the object of the invention is therefore a turn-tilt fitting of the type specified in such a way that a safe determination in a simple and user-friendly way of the respective wing in a night ventilation position becomes.
  • the function of determining the Wing in a night ventilation position in the function of Turn-tilt fitting integrated and thus it is possible that the turn-tilt fitting not only between locking, turning and Tilt position is adjustable or switchable, but that as another possible position is the night ventilation position, the fitting between these positions in the usual way by means of the connecting rod gearbox Handle is actuated.
  • the locking device preferably comprises at least one on the Forend rail pivoted locking lever that over a control cam provided on the drive rod can be actuated and with the teeth or corrugations in locking engagement is feasible.
  • a pinion connected to the support arm axle can also the support link axle itself by suitable design of the end part take over the function of the pinion.
  • the pivoted locking levers can be art a clamping scissor encompassing the pinion, whereby between the blocking lever legs facing away from the pinion a free stroke path which ensures the free rotation of the pinion for the control cam provided on the drive rod and a clamping stroke path is formed, in which the Control cam with the blocking lever legs spread Clamp pliers leg closes and thus locks the pinion.
  • the operating handle of the turn-tilt fitting in the position corresponding to the tilt position for example brought vertically upward position
  • the Wing in the usual way around its horizontal pivot axis be pivoted, but it is by the invention
  • Integration of the night ventilation devices in the turn-tilt fitting is possible, the wing in the desired position between the closed position and the maximum tilt opening position determine by pulling the handle out of the Tilt switch position corresponding vertical position somewhat is moved in the direction of the swivel switch position.
  • a corresponding displacement of the drive rod leads to block the support arm and thus to determine of the wing in a partial tilt position.
  • a release this determination is made again simply by the fact that the operating handle is in the rocker switch position the wing is either in the full tilt position or can be transferred to the closed position.
  • Figure 1 shows a turn-tilt fitting in the area of a stay scissors for one wing, one in a wing groove to be fastened faceplate 1 on which a drive rod 2 is guided longitudinally.
  • faceplate 1 On the faceplate 1 is an extension arm 3 via a swivel-slide joint 5 stored, and this Ausstellenker 3 is on a pivot axis 6 connected to a support arm 4, which with the Ausstellenker 3 based on the faceplate 1 in the issued Condition of the exhibitor core 3 includes an obtuse angle and with its end facing away from the exhibitor handle 3 is mounted on the faceplate 1 via an axis 7.
  • the Support arm axle 7 is non-rotatable with support arm 4 or rigidly connected and extending through a crank the faceplate 1 created space between Face plate 1 and drive rod 2.
  • the support arm axis 7 preferably as a toothed or corrugated pinion 9 formed or with such Pinion 9 rotatably connected.
  • Locking device 8 effective between the faceplate 1 and the drive rod 2 is arranged and depending on the position of the drive rod 2 releases the pinion 9 or blocked.
  • This locking device 8 includes - as this in particular Top view of Figure 2 shows - a first blocking lever 10, which has a bearing pin 12 on the faceplate 1 is mounted, and a second blocking lever 11, the via a bearing journal 13 also on the faceplate 1 is mounted so that a pair of two-armed levers 10, 11th is present, which on one side of the bearing pin 12, 13th the pinion 9 connected in a rotationally fixed manner to the support link axle 7 reach around with their clamp pliers legs 17, 18 and their a leg away from the pinion 9 between them a free stroke 14 and set a clamping stroke distance 15 in which a control cam 16 is movable, which on the drive rod 2nd is provided and for example from a corresponding Expression can exist, as shown in Figure 1.
  • the width of the free stroke section 14 corresponds approximately to the diameter of the control cam 16 so that this in the free stroke 14 movable without operating the blocking lever 10, 11 is.
  • the width of the clamping stroke section 15 is less than the diameter of the control cam 16 so that when the control cam 16 in the clamping stroke section 15 with appropriate adjustment the drive rod 2 penetrates, spreading the Leg of the two locking levers 10, 11 and thus one Closing the clamp leg 17 and 18 is what synonymous with blocking the pinion 9 and thus a determination of support arm 4 and exhibiting link 3 is.
  • Figure 3 shows the turn-tilt fitting according to Figure 1 in one Ventilation position.
  • the Ausstellenker 3 is over at a small tilt angle the support arm 4 determined because its axis 7 through the Locking device 8 is blocked and thus with the exhibiting link 3 coupled wings over the triangular combination of Exhibitor handlebar 3, support arm 4 and faceplate 1 stable and is held immovable.
  • FIG. 4 shows the turn-tilt fitting in the full tilt opening position
  • FIG. 5 shows the representation of the detail X on the one hand Figure 3 and on the other hand the representation of the detail Y from Figure 4.
  • the representation of the detail X corresponds to the blocking of the Pinion 9 through the clamp leg 17, 18, that is the detection of the turn-tilt fitting in a night ventilation position.
  • gears or corrugations engage on the clamp jaw legs 17, 18 in corresponding toothings or corrugations of the non-rotatable with the support arm axis 7 connected pinion 9 and thereby prevent each further rotation of this pinion 9 and thus the support arm axis 7, which is rigidly connected to the support arm 4.
  • the detail display Y shows the case of the freely rotatable Pinion 9, with the pliers legs 17, 18 either is not engaged or at least through these clamp pliers legs 17, 18 is not prevented from rotating. This is always the case if the one with the connecting rod 2 connected control cams 16 not in the region of the clamping stroke 15 is located and accordingly the wing tilted freely can be.
  • the locking device 8 described can be just like the Very space-saving design variants to be described realize and without affecting the others Functions of the turn-tilt fitting in the normal structure of a integrate such fittings.
  • FIG a type of clamp assembly for the locking device 8 used, but are in this embodiment instead of the pincer legs encompassing the pinion 9 on the corresponding lever arms of the blocking levers 10, 11 toothed or corrugated end faces 21, 22 formed, which are brought into contact with the pinion 9 in a blocking manner can.
  • the pinion 9 in this case has one in view larger advantageously on the achievable holding forces Diameter that corresponds approximately to the faceplate width can.
  • the two blocking levers 10, 11 lie in their longitudinal extent are on both sides of the faceplate middle but with a corresponding approach to each other Half of the faceplate bearing journals 12, 13, these journals 12, 13 mutually at the same time a swivel movement limitation for the two in Blocking lever located in different levels of the storage area 10, 11 form.
  • the drive rod side are on the Locking levers 10, 11 in the area of the toothed end faces 21, 22 approaches 19, 20 are provided, between which a the drive rod 2 provided expansion lug 25 in the full Enter the tilt position and the blocking lever 10, 11 defined can keep out of engagement with the pinion 9.
  • Figure 7 shows the turn-tilt fitting according to Figure 6 in one Ventilation position.
  • the control cam is located here 16 in the region of the clamping stroke section 15, whereby the toothed end faces 21, 22 of the blocking levers 10, 11 be pressed against the pinion 9, which in the already explained Way a determination or blocking of the extension arm 3 results.
  • FIG. 8 shows the turn-tilt fitting in the tilt opening position, wherein the locking device 8 is ineffective because the control cam 16 is located outside the clamping stroke section 15 and the two locking levers 10, 11 via one on the Driving rod 2 provided expansion lug 25 out of engagement be held with the pinion 9.
  • the spreading approach 25 in this case presses against the two approaches 19, 20 the locking levers 10, 11.
  • FIG. 9 shows a further embodiment variant of the invention, in the to operate the blocking lever 10, 11 on the Driving rod 2 in a downward cranked area special control link 24 is provided.
  • Figure 10 illustrates that on the faceplate 1 locking lever 10, 11 enclosing the pinion 9 Form of jaws with themselves in the direction of the drive rod 2 extending, in the area of the free ends of the jaws located actuation approaches 19, 20 movably mounted are, and that on a facing away from the pinion 9 End intended locking lever end part 23.
  • the in the area the pinion 9 equipped with a toothing or corrugation Blocking levers 10, 11 are caused by the interaction their actuating approaches 19, 20 with a control link 24 reversed between a release and a blocking position.
  • the control link 24 is this Design variant around a separate part, which is also available in the drawing is shown separately and with the drive rod 2 is preferably riveted.
  • control link 24 Reach into this control link 24 the actuating approaches 19, 20, and in the control link 24 is a free stroke path for these actuating approaches 19, 20 14 and a narrower clamping stroke distance in comparison 15 provided.
  • control link 24 an end, between the actuating lugs 19, 20th retractable expansion lug 25.
  • Figure 11 shows the embodiment of Figure 9 in one Night ventilation position, in which case the actuation approaches 19, 20 of the blocking lever 10, 11 in the area of narrow clamping stroke distance 15 of the control link 24 and so that the locking lever 10, 11 tensioned against the pinion 9 are and as a result thereof pinion 9 and support arm 4 against any movement will be blocked.
  • Figure 12 shows the turn-tilt fitting according to Figure 9 in the full tilt opening position, in which position a Free rotation of the pinion 9 is given because of the spreading approach 25 of the control link between the actuation approaches 19 and 20 of the blocking lever 10, 11 is retracted and this blocking lever 10, 11 apart so that no Engagement with the pinion 9 is given.
  • Control link 24 as a separate, connectable to the drive rod 2 Part executed, but it is in the same way possible, the control link directly by appropriate Provide impressions in the drive rod 2 so that the use of a separate part is unnecessary and also none Crank of the drive rod in the area of the locking device 8 is required.
  • Figure 13 shows an embodiment in which the locking and the release of a diameter corresponding approximately the faceplate width pinion 9 over a lever wedge arrangement takes place.
  • the pinion 9 a displaceably mounted clamping member 27 is provided adjacent, that can be operated via a two-armed adjusting lever 29 is.
  • This lever 29 is on the faceplate 1 over a pivot pin 12 is pivotally mounted and in the area of its long lever arm 31 with a control link recess 32 provided in the provided on the drive rod 2 Control cam 16 engages.
  • the lever 29 is due the curved course of the control link recess relative to the longitudinal axis of the drive rod 2 depending on the drive rod position is pivoted.
  • This pivoting causes a wedge engagement between the short lever arm 30 of the actuating lever 29 and the clamping member 27 which between Guides 28 is slidable, an axial movement of the Clamping member 27, so that this clamping member 27 is either blocking engages with the pinion 9 or the pinion 9 releases for rotation.
  • control link recess which in Figure 14 can be seen in plan view, can therefore be due to the resulting lever ratios a high pressing force for the clamping member 27 and thus a high holding force in the Night ventilation position can be achieved.
  • Figure 15 shows the turn-tilt fitting according to Figure 13 in one Ventilation position.
  • the control cam 16 pivots the two-armed lever 29 in a counterclockwise direction and thus presses the clamping member via its short lever arm 30 27 against the pinion 9 and thus blocks support arms 4 and exhibiting handle 3 in the position selected here, it should be noted that in all embodiments the size of the night ventilation angle is freely selectable, because the blocking of the pinion 9 via the locking device 8 can be done at any tilt opening angle.
  • Figure 16 shows the turn-tilt fitting according to Figure 13 in the maximum tilt opening position, that is, in the ineffective Locking device 8.
  • the short lever arm 30 is in this Position over the control link recess 32 and the control cam 16 compared to the night ventilation position Figure 15 has been pivoted clockwise, which is synonymous with the unblocking of the pinion 9 through the clamping member 27.
  • Figure 17 shows an embodiment variant, which differs from the Turn-tilt fitting according to Figures 13 to 16 differs in that that between the control lever 29 and the clamping member 27 a toothing 33 is provided instead of a wedge engagement is.
  • This toothing 33 which preferably corresponding an arc around the bearing pin 12 is designed so that depending on the pivoting of the control lever 29 the clamping member 27 against the pinion 9 in the blocking position is pressed or take the release position can.
  • the teeth of the are in the blocking position Teeth 33 in positive engagement while in the release position there is a game between these teeth that it enables the clamping member 27 to extend as far from the pinion 9 remove that this pinion 9 can turn freely.
  • the main advantage of this embodiment is that the directions of force application are defined and so that any deadlock tendencies are eliminated can.
  • All of the design variants described are characterized by simple and space-saving structure and characterized in that the required night ventilation position via the actuator stem actuation, that is, by means of the normal operating handle can be done for the turn-tilt fitting.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Air-Conditioning For Vehicles (AREA)
  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)
  • Air-Flow Control Members (AREA)

Claims (12)

  1. Ferrure oscillo-battante pour fenêtres, portes et similaires, comprenant une barre d'entraínement (2) guidée sur un rail embouti (1), et un bras de déploiement (3) articulé sur le rail embouti (1) avec faculté de rotation et de translation, et un bras de soutien (4) prévu entre le bras de déploiement (3) et le rail embouti (1), ainsi qu'un agencement pour la fixation du battant dans des positions angulaires de basculement prédéterminées, dans lequel est prévu un dispositif de verrouillage (8) agissant entre le rail embouti (1) et le bras de soutien (4), qui bloque ou qui libère le mouvement de pivotement du bras de soutien (4) en dépendance du réglage de la barre d'entraínement (2),
    caractérisée en ce qu'il est prévu au niveau de la face extérieure radiale de l'axe (7) fermement relié au bras de soutien (4), ou d'un pignon (9) relié solidairement en rotation à l'axe (7) du bras de soutien, ou similaire, des dentures ou des cannelures, et en ce que le dispositif de verrouillage (8) comprend au moins un organe de blocage (10, 11, 27) comportant un tronçon d'engagement et réalisé de façon sensiblement complémentaire aux dentures ou cannelures, susceptible d'être amené par déplacement de la barre d'entraínement (2) en engrènement avec les dentures où les cannelures, grâce à quoi on empêche une rotation de l'axe (7) du bras de soutien.
  2. Ferrure oscillo-battante selon la revendication 1, caractérisée en ce que l'organe de blocage comporte au moins un levier de blocage (10, 11) monté en pivotement sur le rail embouti (1), susceptible d'être actionné via une came de commande (16) prévue sur la barre d'entraínement (2), et susceptible d'être amené en engagement de verrouillage avec les dentures ou les cannelures.
  3. Ferrure oscillo-battante selon la revendication 2, caractérisée en ce que l'organe de blocage comprend deux leviers de blocage (10, 11) disposés dans un plan entre le rail embouti (1) et la barre d'entraínement (2), lesdits leviers étant montés sur des tourillons de montage (12, 13) disposés l'un à côté de l'autre sur le rail embouti (1) en entourant le pignon (9) à la manière de ciseaux de serrage, et en ce qu'entre les bras (10', 11') des leviers de blocage détournés du pignon (9) est définie une course libre (14) pour la came de commande prévue sur la barre d'entraínement (2), assurant la rotation libre du pignon (9) ou similaire, et une course de serrage (15), dans laquelle la came de commande (16) ferme les bras de la pince de serrage (17, 18) en écartant les bras des ciseaux et verrouille le pignon (9).
  4. Ferrure oscillo-battante selon le la revendication 3, caractérisée en ce que la course de serrage (15) est située dans la région des extrémités libres en des bras des leviers de blocage.
  5. Ferrure oscillo-battante selon l'une ou l'autre des revendications 3 et 4, caractérisée en ce que les leviers de blocage (10, 11) montés en rotation sur le rail embouti (1) sont disposés l'un au-dessus de l'autre dans des plans différents et capables de pivoter de façon limitée l'un par rapport à l'autre, en ce que les leviers de blocage (10, 11) sont susceptibles d'attaquer en blocage le pignon (9) ou similaire, sur l'un des côtés du palier de rotation (12, 13), au moyen de leurs surfaces frontales (21, 22) adaptées à la périphérie du pignon et en particulier dentées, et l'actionnement des leviers de blocage (10, 11) a lieu via la came de commande (16), prévue sur la barre d'entraínement (2), susceptible d'être engagée dans la course de serrage (15) pour le blocage du pignon (9) ou similaire, et en ce que dans la position de la barre d'entraínement (2) qui correspond à la pleine ouverture en basculement, un talon d'écartement (25) sur la barre d'entraínement (12) s'engage entre deux talons (19, 20) prévus sur les leviers de blocage (10, 11) du côté du pignon, en écartant les leviers de blocage (10,11), le diamètre du pignon (9) correspondant de préférence approximativement à la largeur du rail embouti (1).
  6. Ferrure oscillo-battante selon la revendication 2, caractérisée en ce que les leviers de blocage (10, 11), qui entourent le pignon (9) ou similaire et présentent la forme de mâchoires de serrage avec des talons d'actionnement (19, 20) s'étendant en direction de la barre d'entraínement (2), en particulier dans la région des extrémités libres des mâchoires de serrage, sont montés de façon mobile sur le rail embouti (1), et en ce qu'il est prévu sur la barre d'entraínement (2) un coulisseau de commande (24) dans lequel s'engagent les talons d'actionnement (19, 20), ledit coulisseau présentant pour les talons d'actionnement (19, 20) une course libre (14) et une course de serrage (15) plus étroite par comparaison à cette dernière, ainsi qu'un talon d'écartement (25) du côté extrémité, susceptible d'être introduit entre les talons d'actionnement (19, 20).
  7. Ferrure oscillo-battante selon la revendication 6, caractérisée en ce que les leviers de blocage (10,11) sont repoussés l'un contre l'autre de façon élastique, sous la forme de mâchoires de serrage.
  8. Ferrure oscillo-battante selon l'une ou l'autre des revendications 6 et 7, caractérisée en ce que le coulisseau de commande (24) est réalisé sous forme d'un composant séparé, lequel est fixé sur une zone coudée (26) de la barre d'actionnement (2).
  9. Ferrure oscillo-battante selon l'une ou l'autre des revendications 6 et 7, caractérisée en ce que le coulisseau de commande (24) est réalisé sous la forme de renfoncement dans la barre d'entraínement (2).
  10. Ferrure oscillo-battante selon la revendication 1, caractérisée en ce qu'il est prévu au voisinage du pignon (9) un organe de serrage (27) monté de façon mobile, celui-ci étant et susceptible d'être actionné via un levier de positionnement (29) à deux bras qui est monté en pivotement sur le rail embouti (1) et est doté dans la région de son bras de levier long (31) d'un évidement (32) formant coulisseau de commande, dans lequel s'engage une came de commande (16) prévue sur la barre d'entraínement (2) provoquant le pivotement du levier de positionnement (29) en dépendance de la position de la barre d'entraínement, et ce faisant, celui-ci amène l'organe de serrage (27) en engagement avec le pignon (9) en le bloquant, ou bien libère le pignon (9) en vue de sa rotation.
  11. Ferrure oscillo-battante selon la revendication 10, caractérisée en ce que le levier de positionnement (29) actionne l'organe de serrage (27) via un engagement à coin entre le bras de levier court (30) du levier de positionnement (29) et l'organe de serrage (27).
  12. Ferrure oscillo-battante selon la revendication 10, caractérisée en ce qu'il est prévu entre l'extrémité libre du levier de positionnement (29) et l'organe de serrage (27) une denture (33) qui engrène en coopération de formes dans la position de blocage du pignon (9) et qui est en engagement avec jeu dans la position de libération du pignon (9).
EP97106194A 1996-04-24 1997-04-15 Ferrure pour battant oscillo-battant avec fente de ventilation variable Expired - Lifetime EP0803627B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE29607465U 1996-04-24
DE29607465U DE29607465U1 (de) 1996-04-24 1996-04-24 Dreh-Kippbeschlag mit variabler Spaltlüftung

Publications (3)

Publication Number Publication Date
EP0803627A2 EP0803627A2 (fr) 1997-10-29
EP0803627A3 EP0803627A3 (fr) 1998-09-16
EP0803627B1 true EP0803627B1 (fr) 2002-06-19

Family

ID=8023082

Family Applications (1)

Application Number Title Priority Date Filing Date
EP97106194A Expired - Lifetime EP0803627B1 (fr) 1996-04-24 1997-04-15 Ferrure pour battant oscillo-battant avec fente de ventilation variable

Country Status (3)

Country Link
EP (1) EP0803627B1 (fr)
AT (1) ATE219547T1 (fr)
DE (2) DE29607465U1 (fr)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10013697A1 (de) * 2000-03-21 2001-09-27 Siegenia Frank Kg Feststellvorrichtung
WO2016168797A1 (fr) 2015-04-16 2016-10-20 Krzysztof J Wajnikonis Connecteur mécanique de longue durée de vie à la fatigue sous l'effet de la torsion et de la flexion
DE102017208059A1 (de) * 2017-05-12 2018-11-15 Roto Frank Ag Fenster oder Tür mit einbruchsicherer Kippöffnungsbegrenzung

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE430766C (de) * 1923-12-14 1926-06-21 Georges Haarnagell Fensteranordnung fuer Automobiltueren mit feststehender Zahnstange und unter Federwirkung stehender Feststellvorrichtung
DE1708430C2 (de) * 1967-02-18 1982-06-09 Geze Gmbh, 7250 Leonberg Feststellvorrichtung für einen Kippflügel
DE3041399C2 (de) * 1980-11-03 1994-04-14 Fa. Aug. Winkhaus, 4404 Telgte Drehkippbeschlag für Fenster od.dgl.
DE3202798A1 (de) * 1982-01-28 1983-08-04 SCHÜCO Heinz Schürmann GmbH & Co, 4800 Bielefeld Fenster oder tuer mit einem drehkippbeschlag
DE4019603A1 (de) * 1990-06-20 1991-01-03 Franek Johann Dipl Ing Fh Spaltluefungsvorrichtung fuer drehkippfluegel
DE9305812U1 (de) * 1993-04-19 1993-06-24 Otto, Christian, 4432 Gronau Feststellvorrichtung für Fenster und Türen, insbesondere mit Dreh-Kipp-Scharnieren, in Gebäuden
DE4422213C2 (de) * 1994-06-24 2003-07-10 Winkhaus Fa August Drehkippbeschlag

Also Published As

Publication number Publication date
DE59707546D1 (de) 2002-07-25
EP0803627A2 (fr) 1997-10-29
DE29607465U1 (de) 1997-08-28
EP0803627A3 (fr) 1998-09-16
ATE219547T1 (de) 2002-07-15

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