EP2685040B1 - Composant précontraint et procédé de fonctionnement pour une fenêtre ou une porte-fenêtre - Google Patents

Composant précontraint et procédé de fonctionnement pour une fenêtre ou une porte-fenêtre Download PDF

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Publication number
EP2685040B1
EP2685040B1 EP13176007.6A EP13176007A EP2685040B1 EP 2685040 B1 EP2685040 B1 EP 2685040B1 EP 13176007 A EP13176007 A EP 13176007A EP 2685040 B1 EP2685040 B1 EP 2685040B1
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EP
European Patent Office
Prior art keywords
sash
pretensioning
component
frame
arm
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP13176007.6A
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German (de)
English (en)
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EP2685040A3 (fr
EP2685040A2 (fr
Inventor
Dirk Muegge
Gerhard Krey
Stefan Kording
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.)
Hautau GmbH
Original Assignee
Hautau GmbH
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.)
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Publication date
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Priority to PL13176007T priority Critical patent/PL2685040T3/pl
Publication of EP2685040A2 publication Critical patent/EP2685040A2/fr
Publication of EP2685040A3 publication Critical patent/EP2685040A3/fr
Application granted granted Critical
Publication of EP2685040B1 publication Critical patent/EP2685040B1/fr
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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
    • E05D15/06Suspension arrangements for wings for wings sliding horizontally more or less in their own plane
    • E05D15/10Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane
    • E05D15/1005Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane the wing being supported on arms movable in horizontal planes
    • E05D15/1013Suspension arrangements for wings for wings sliding horizontally more or less in their own plane movable out of one plane into a second parallel plane the wing being supported on arms movable in horizontal planes specially adapted for windows
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2201/00Constructional elements; Accessories therefore
    • E05Y2201/40Motors; Magnets; Springs; Weights; Accessories therefore
    • E05Y2201/404Motors; Magnets; Springs; Weights; Accessories therefore characterised by the function
    • E05Y2201/422Motors; Magnets; Springs; Weights; Accessories therefore characterised by the function for opening
    • E05Y2201/426Motors; Magnets; Springs; Weights; Accessories therefore characterised by the function for opening for the initial opening movement
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2201/00Constructional elements; Accessories therefore
    • E05Y2201/40Motors; Magnets; Springs; Weights; Accessories therefore
    • E05Y2201/47Springs; Spring tensioners
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Application of doors, windows, wings or fittings thereof for buildings or parts thereof characterised by the type of wing
    • E05Y2900/132Doors
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Application of doors, windows, wings or fittings thereof for buildings or parts thereof characterised by the type of wing
    • E05Y2900/148Windows

Definitions

  • the disclosed and claimed invention relates generally to a window or a French window which contains at least one sash which can be opened by means of an actuating device so that an opening gap results between the sash and a frame of the window or the French window. This as a method and as a device.
  • the US 4912806 discloses a door closer having two lever arms hingedly connected at one end.
  • the door closer contains a spring force accumulator with a spiral spring, which exerts a force on the door leaf through a pre-set tension so that the door is pushed back into the closed position when it is open.
  • a gear ratio and a centrifugal brake are integrated in one of the lever arms.
  • the spiral spring is fixed at both ends and has a closing effect on the system, i.e. against the opening direction.
  • the EP 103 725 A2 shows a fitting for an at least sliding sash of a window, a door or the like, wherein one of the extension arms of the window sash contains a locking member that prevents the sash from being pushed back when the locking member has been pulled into its end position and is locked in a setting.
  • the DE 549 635 discloses a pushing scissor for skylight windows with rigid scissor arms, a pushing spring being placed around the scissor hinge to assist the opening process.
  • the spring ends are fixed in the legs of the scissors.
  • One object of the invention is to improve the ease of use for a window and / or a door with a view to opening a sash and maintaining an open position of the sash.
  • a biasing member comprises a first force transmission component which can be brought into contact with a sash of the window and / or the door.
  • the prestressing component further comprises a second force transmission component which can be brought into contact with a frame of the window and / or the door.
  • the prestressing component is provided with a mechanically operated prestressing device which is coupled to the first force transmission component and the second force transmission component and is designed to produce a force acting in the direction of an enlargement of an opening gap between the sash and the frame. This at least up to a predetermined width of the opening gap, which is predetermined by the scissors of the fitting.
  • the pretensioning component according to the invention is thus designed in such a way that, due to the mechanically operated pretensioning device, a force is exerted which tends to support the opening of the sash. During the opening process, in particular, a substantial proportion of the force required for this can be provided by the mechanically operated pretensioning device, so that the operator or an automatic opening system can use much less force.
  • the mechanically operated pretensioning device is a device in which the energy that is released during an opening process due to the acting force is stored by mechanical action on the pretensioning device during closing.
  • no electrical drive components are therefore required in order to provide the pre-tensioning force desired when a sash of the window or door is opened.
  • the pretensioning device is also designed to counteract this reduction when the opening gap is reduced. In this way, a more stable position of the wing is also ensured in the presence of an opening gap.
  • there is no undesirably high resistance when closing the sash since typically the greatest force of the prestressing component that occurs at the end of a closing process is essentially compensated for by the previously absorbed momentum of the often heavy sash.
  • the first force transmission component comprises a first arm and the second force transmission component comprises a second arm of a scissors arrangement.
  • the use of a scissors arrangement results in a very compact structure for the prestressing component, since the individual arms of the scissors arrangement can be provided as elongated components with a small thickness so that they can be attached to the sash or the frame in conventional designs without any major additional structural measures.
  • the arms of the scissors arrangement can be of the same or different lengths, so that an adaptation to the existing conditions in the basic construction of windows and doors can be achieved without great effort.
  • the opening gap between the sash and the frame can thus be varied by generating and adjusting an opening angle of the scissor arrangement, the two arms efficiently serving for power transmission.
  • the arms can thus function at least as part of the first and second components for power transmission, with additional mechanical components being able to be provided if necessary in order to actually contact the sash and / or the frame.
  • the first arm and the second arm each have a first end region with a common axis of rotation formed therein.
  • practically the entire length of the first and the second arm can be used to generate the largest possible opening gap at a given opening angle between the first arm and the second arm.
  • the corresponding axis of rotation can also be provided in a central area of the arms.
  • the first arm and / or the second arm are provided with a holding device which ensures permanent contact with the sash or the frame.
  • the holding device is advantageously designed in such a way that it can be installed in a suitable position on the frame or on the sash.
  • suitable fastening means are provided which enable installation on already existing fitting components.
  • a holding device as an angled rail can cover the prestressing component (seen from below).
  • the second end region of the first or the second arm is provided with a receptacle for attachment to the slide rail of the prestressing component.
  • the prestressing component of the invention can be provided in a sliding window or a French door with parallel displacement of the sash after the opening gap has been produced (shutdown movement).
  • the prestressing component is designed in the form of a fitting component of the sash of the window and / or the door and thus enables space-saving assembly at a suitable position of the sash or the frame.
  • the structure of the prestressing component according to the invention can be in the form of a fitting component in such a way that it can be integrated into existing fitting components, with no or only very minor structural changes in the structure of existing types of construction of windows and doors.
  • the pretensioning device has a spring element.
  • Suitable components for example in the form of a leg spring, a tension spring, a compression spring and the like, can be used so that the force-generating component in the pretensioning device can be adapted efficiently as a function of the structural requirements.
  • the pretensioning device has a compressed gas volume which is provided, for example, in the form of a shock absorber and the like. In this way, too, a desired adaptation to the structural requirements can be efficiently achieved, since a large number of corresponding gas pressure springs are available.
  • a spring element is provided and this is mounted in the direction of the axis of rotation of the scissors arrangement in an installation space that is formed between the first arm and the second arm.
  • the spring element is provided in the form of a leg spring which is fastened to the first and the second arm with suitable fastening means.
  • the wire guidance of the leg spring takes place in advantageous embodiments in such a way that the maximum pretensioning force results at an opening angle of zero, so that in particular during the otherwise force-demanding opening process in the initial phase a pronounced supporting force is provided by the prestressing component.
  • a structural height of the prestressing component is not greater than the height of an installation space between a sash rebate and a frame rebate or the structural height between an overlying frame-side guide rail (or receptacle) and a sash retaining rail (or receptacle) is accommodated by the prestressing component.
  • the prestressing component can be integrated (and covered) in windows and doors with otherwise known properties and dimensions without further additional structural measures.
  • a window and / or door device which has a frame and a sash with an actuating device provided for opening the sash. Furthermore, a prestressing component is provided in the window and / or door device according to the invention, as described above or below, which develops a force between the frame and the sash. In one embodiment variant, the prestressing component is mounted on an upper area of the frame or the sash.
  • the prestressing component is mounted on a vertical region of the frame or the sash. That is, the prestressing component according to the invention can be arranged in a suitable position on the vertical or horizontal areas in order to achieve efficient power development without changes in the basic structure of the window and / or door device being necessary.
  • the prestressing component is advantageously mounted in an installation space between the sash and the frame.
  • a prestressing component advantageously in the form of a fitting component, which emits an additional force to support the opening movement of the sash and supports this position in the open state of the sash by means of a remaining prestressing.
  • the closing forces on the sash, on the fitting or on the actuator do not increase or only increase slightly.
  • the assembly of this component takes place in the form of an additional component, so that the respective standard fitting can continue to be used for the different window opening types.
  • the design of the scissor arms can be designed so that a wide variety of connections to the sash / frame are possible.
  • the possibility of inserting a scissor arm into a wing retaining rail and the design of the second scissor arm in such a way that a movable piece, in particular coupled as a sliding piece, can be attached opens up the possibility that the scissors arrangement with the wing can be moved laterally .
  • known and customary operation of the parallel parking (tilting) sliding door can be made much easier.
  • FIG. 11 shows a perspective view of a window device 100, which has a frame 1 and at least one sash 2 which is movable with respect to the frame 1.
  • the device 100 has an actuating device 3 (as a lever) with which the wing 2 can be locked or unlocked in the closed position by the action of force and then the wing 2 can be brought from a closed position into an open position by the action of force an opening gap 2a between the frame 1 and the wing 2 results.
  • an actuating device 3 as a lever
  • the window device 100 is an opening window with a sash 2 that can be moved in parallel, while tilting windows, top-hung windows and the like are also used in other design variants.
  • the device 100 is also available as one Door device or provided as a window door, since the prestressing member 10 can be applied to a variety of different types of window devices and door devices.
  • FIG 1 the sash 2 is shown in an open position in which the sash is mechanically guided in relation to the frame 1 by means of known fitting components 6.
  • a prestressing component 10 is provided which is designed in such a way that one for reaching the in Figure 1 Opening gap 2a shown, a force F is exerted during the opening process.
  • the pretensioning component 10 continues to exert a force, also referred to as F, which counteracts the reduction in the size of the opening gap 2a. This results in a more stable definition of the opening gap 2a and an undesired change in the opening gap 2a in the direction of the closed position in the absence of any action by an operator is essentially avoided.
  • the prestressing component 10 is provided in the form of a scissors arrangement, in which a prestressing device, which is described in detail below, for example in the form of a spring or also as a pneumatic-hydraulic component or the like is provided, which provides the force support desired for the opening process F provides.
  • Figure 2 shows a plan view of the prestressing component 10, which has a first arm 15 and a second arm 16 as a scissors arrangement, which are each connected to one another at corresponding end regions 15a, 16a by a common axis of rotation 14.
  • the pretensioning component 10 further comprises a pretensioning device 18 which, in the embodiment shown, is provided as a leg spring.
  • the pretensioning device 18 is designed in such a way that the force F acts between the two arms 16 and 15 at least up to a certain opening angle ⁇ , which leads to an increase in the opening angle.
  • a spring is provided for the pretensioning device 18, a force thus results which is dependent on the size of the opening angle ⁇ and, in the embodiment shown, is greatest at an opening angle of zero.
  • the arms 15, 16 are provided with different lengths, while in other embodiments these can be provided with the same length.
  • the arms 15, 16 preferably have the dimensions of generally used cover rail material, similar to strip steel, with other design variants also being possible depending on the available installation space.
  • FIG. 10 is a side view of the biasing member 10 and FIG Figure 4 a view from below.
  • the arms 15 and 16 are arranged in the vertical direction, that is to say in the direction of the axis of rotation 14, in such a way that an intermediate space Z results in which the pretensioning device 18 is arranged.
  • the scissor arms are thus spaced apart from one another in order to accommodate the pretensioning device in the form of a spring element in this intermediate space of height Z, which in this exemplary embodiment is designed as a leg spring about the axis of rotation 14.
  • a spring leg 18a is assigned to the arm 15 and connected to it in a form-fitting manner, while a second spring leg 18b is assigned to and connected to the arm 16, this being done with suitable fastening means.
  • An example of this is in Figure 4 a fastening means 19a on the arm 16 is shown. Both connections result in a scissor package with an internal leg spring.
  • the opening angle ⁇ is only as large as the maximum opening angle of the relaxed spring allows. In this state, the prestressing component 10 has no prestress whatsoever.
  • the maximum opening force is increased by further reducing the opening angle up to the parallel orientation of the two arms 15, 16 in the same longitudinal extension, i.e. i.e., lying one on top of the other, which corresponds to an opening angle ⁇ of 0 °.
  • a holding device as Fasteners 17 ( Figure 3 ), e.g. B. in the form of a protruding receptacle, for example as a riveted bolt that can be inserted into a slider or sash bracket.
  • the second arm 16 is designed with its one axis of rotation end 16a and with another end region 16b in such a way that receiving bores 16c for fastening means 19b, for example clamping bolts, screws, are provided, which act as a clamping device when the arm 16 is dimensioned so that it can be pushed into an existing sash retaining rail and secured against shifting.
  • receiving bores 16c for fastening means 19b for example clamping bolts, screws
  • Figure 5 shows a side cross-sectional view in which the frame 1 and the wing 2 are in a closed position.
  • the arm 16 is fastened in a holding rail 2b of the wing 2 by means of the fastening means 19b and is thus in permanent contact with the wing 2.
  • the arm 15 of the prestressing component 10 is connected via the holding device 17 to a movement element as, for example, a slider 20, which in turn is guided in a rail 1a on the frame 1.
  • the pretensioning device 18 produces a maximum force between the sash 2 and the frame 1 in order to support or trigger an opening process that takes place after unlocking.
  • Figure 6 shows the frame 1 and the sash 2 in an open position, in which the arm 15 and the arm 16 thus enclose a non-zero opening angle with one another, as is the case, for example, in FIG Figures 2 and 4 is shown.
  • a force F produced by the pretensioning device 18 acts, which tends to increase the opening angle ⁇ further, unless the maximum opening angle 2a is reached, in which the pretensioning device 18 does not have any further Biasing force exerts (and the scissors 6b limit this opening width 2a).
  • the overall height H of the prestressing component 10 - which is defined here essentially by the two arms 15 and 16 as well as the prestressing device 18 located in between - is dimensioned such that it is no greater than the installation space BR (its height) between wing 2 (Upper edge) and frame 1 (lower edge of slide rail 1a); the installation space under an overlying frame-side guide rail (or receptacle 1a) and the sash retaining rail 2b (its mounting point or its horizontal section of the angle 2b). This is usually the upper edge of the wing on which the angled support rail 2b is mounted.
  • Figure 7 shows an exploded perspective view in which conventional standard fitting components, which are collectively designated by 6, are shown, while the prestressing component 10 is integrated at an upper position in cooperation with the standard fitting components 6 so that no additional structural measures with regard to the otherwise specified Structure of the window or the door are required.
  • sliding elements 6c of the standard fitting components 6 are shown together with corresponding standard opening scissors 6b, which enable an opening gap 2a to be created and the sash to be displaced, but with high operator forces being required.
  • the prestressing component 10 is arranged between the two scissors opening 6b.
  • a scissors arrangement 10 is additionally provided which provides the desired, pre-tensioning force F during the opening process and also maintains a pre-tensioning force in the open position.
  • pretensioning device 18 shown in the figures as a spring of the pretensioning component 10 is only an advantageous variant.
  • Other forms and directions of action, e.g. B. tension / compression spring or gas spring are possible.
  • biasing member 10 is placed on the outside of the upper end of the frame / sash, another positioning, e.g. B. possible on the side of / on the vertical profiles.
  • Another possible assembly space can also be the distance br1 between the frame and sash frame (in the rebate space), shown in FIG Figure 5 , but without pre-tensioning scissors inserted there 10.

Claims (14)

  1. Élément de précontrainte (10) pour un mécanisme de fenêtre ou de porte (100) avec un premier composant transmettant la force (15) qui peut être mis en contact avec un vantail (2) du mécanisme (100) et avec
    - un deuxième composant transmettant la force (16) qui peut être mis en contact avec un châssis dormant (1) du mécanisme (100) ;
    - un dispositif de précontrainte (18) mécanique qui est couplé au premier composant transmettant la force (15) et au deuxième composant transmettant la force (16) et conformé pour produire une force (F) agissant dans le sens d'un agrandissement d'un entrebâillement (2a) entre le vantail (2) et le châssis dormant (1) jusqu'à une largeur donnée de l'entrebâillement (2a),
    - le premier composant transmettant la force (15) étant un premier bras et le deuxième composant transmettant la force (16) un deuxième bras d'un parallélogramme ;
    - le premier bras (15) et le deuxième bras (16) présentant chacun une première zone d'extrémité (15a, 16a) dans laquelle est formé un axe de rotation commun (14) ;
    - le premier bras (15) et/ou le deuxième bras (16) étant munis d'un mécanisme de maintien (17, 19b) qui garantit un contact permanent avec le vantail (2) ou le châssis dormant (1) ;
    caractérisé en ce que l'élément de précontrainte (10) présente un rail de glissement (la) et le mécanisme de maintien (17) est muni d'un logement destiné à se mettre en place sur le rail de glissement (1a).
  2. Élément de précontrainte selon la revendication 1, dans lequel le dispositif de précontrainte (18) est en outre conformé pour s'opposer à une diminution de l'entrebâillement (2a) si cette diminution venait à se produire.
  3. Élément de précontrainte selon la revendication 1 ou 2, dans lequel l'élément de précontrainte (10) est conformé comme une ferrure du vantail (2) du mécanisme de fenêtre et/ou de porte (100).
  4. Élément de précontrainte selon l'une des revendications précédentes, dans lequel le dispositif de précontrainte (18) comporte un élément de ressort mécanique.
  5. Élément de précontrainte selon l'une des revendications précédentes, dans lequel le dispositif de précontrainte (18) comporte un volume de gaz comprimé.
  6. Élément de précontrainte selon l'une des revendications précédentes, dans lequel le dispositif de précontrainte (18) est monté, en particulier sous la forme d'un élément de ressort (18) en direction de l'axe de rotation (14), dans un espace intermédiaire (Z) formé entre le premier bras (15) et le deuxième bras (16).
  7. Élément de précontrainte selon l'une des revendications précédentes, dans lequel une hauteur de construction (H) de l'élément de précontrainte (10) ne dépasse pas la hauteur (BR) d'un espace de montage entre le rail de glissement (1a) appliqué du côté du châssis dormant et un rail de maintien du vantail ou un logement (2b).
  8. Élément de précontrainte selon l'une des revendications précédentes, dans lequel la largeur donnée de l'entrebâillement (2a) est définie par des compas d'entrebâillement (6b) situés au-dessus, en particulier un tel compas de déboîtement (6b) est disposé de chaque côté de l'élément de précontrainte (10).
  9. Élément de précontrainte selon l'une des revendications précédentes, dans lequel un rail de maintien (2b) en forme de cornière pour le vantail (2) cache la vue par le bas sur l'élément (10).
  10. Mécanisme de porte ou de fenêtre avec un châssis dormant (1), un vantail (2) avec un dispositif d'actionnement (3) destiné à verrouiller et déverrouiller le vantail (2) et avec un élément de précontrainte (10) selon l'une des revendications 1 à 7 agissant entre le châssis dormant (1) et le vantail (2), lequel vantail (2) étant un vantail coulissant à déboîtement.
  11. Mécanisme selon la revendication 10, dans lequel l'élément de précontrainte (10) est monté sur une partie supérieure du châssis dormant (1) ou du vantail (2).
  12. Mécanisme selon la revendication 11, dans lequel l'élément de précontrainte (10) est monté sur une partie verticale du châssis dormant (1) ou du vantail (2).
  13. Mécanisme selon l'une des revendications 10 à 12, dans lequel l'élément de précontrainte (10) est monté dans un espace de construction (br1) entre le vantail (2) et le châssis dormant (1) ou occupe un espace de construction entre deux rails de maintien (1a, 2b) sur le vantail (2) ou le châssis dormant (1).
  14. Procédé pour la manœuvre d'un mécanisme de fenêtre ou de porte (100) muni d'un vantail (2) et d'un élément de précontrainte selon les revendications 1 à 9 ou dans un mécanisme selon l'une des revendications 10 à 13, dans lequel un composant transmettant la force (15) est en contact avec le vantail et avec
    - un deuxième composant transmettant la force (16) qui peut être mis en contact avec un châssis dormant (1) du mécanisme (100) ;
    - un dispositif de précontrainte (18) mécanique qui est couplé au premier composant transmettant la force (15) et au deuxième composant transmettant la force (16) et conformé pour produire une force (F) agissant dans le sens d'un agrandissement d'un entrebâillement (2a) entre le vantail (2) et le châssis dormant (1) jusqu'à une largeur donnée de l'entrebâillement (2a).
EP13176007.6A 2012-07-10 2013-07-10 Composant précontraint et procédé de fonctionnement pour une fenêtre ou une porte-fenêtre Active EP2685040B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL13176007T PL2685040T3 (pl) 2012-07-10 2013-07-10 Element naprężający i sposób eksploatacji dla okna lub drzwi okiennych

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102012106191.2A DE102012106191B4 (de) 2012-07-10 2012-07-10 Vorspannbauteil für eine Fenster- oder Türvorrichtung und Fenster- oder Türvorrichtung

Publications (3)

Publication Number Publication Date
EP2685040A2 EP2685040A2 (fr) 2014-01-15
EP2685040A3 EP2685040A3 (fr) 2018-01-17
EP2685040B1 true EP2685040B1 (fr) 2021-10-06

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EP13176007.6A Active EP2685040B1 (fr) 2012-07-10 2013-07-10 Composant précontraint et procédé de fonctionnement pour une fenêtre ou une porte-fenêtre

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EP (1) EP2685040B1 (fr)
DE (1) DE102012106191B4 (fr)
PL (1) PL2685040T3 (fr)

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DE102018201994B4 (de) * 2018-02-08 2020-10-01 Roto Frank Ag Unterstützungsbeschlag für einen kippbaren Flügel eines Fensters oder einer Tür

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Publication number Priority date Publication date Assignee Title
DE549635C (de) * 1928-01-24 1932-04-29 Wilhelm Hautau Aufdrueckschere fuer Oberlichtfenster mit starren Scherenarmen und einer um das Scherengelenk gelegten Aufdrueckfeder
DE3234677C2 (de) * 1982-09-18 1986-10-23 Gretsch-Unitas GmbH Baubeschläge, 7257 Ditzingen Beschlag für einen zumindest parallelabstellbaren Flügel eines Fensters, einer Tür od. dgl.
JPS63206584A (ja) * 1987-02-20 1988-08-25 株式会社三協精機製作所 ドアクロ−ザ−
FR2762867B1 (fr) * 1997-04-30 1999-07-09 Ecodis Sa Dispositif d'articulation d'une coupole sur une costiere d'un lanterneau
CH699371B1 (de) * 2005-04-22 2010-02-26 Eku Ag Mitnehmer für eine Endlageeinzugs- und Endlagedämpfungsvorrichtung und eine Endlageeinzugs- und Endlagedämpfungsvorrichtung für eine Schiebetür.
EP2050908A1 (fr) * 2007-10-16 2009-04-22 Jeld Wen Türen GmbH Mécanisme integré

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DE102012106191B4 (de) 2014-12-24
EP2685040A3 (fr) 2018-01-17
EP2685040A2 (fr) 2014-01-15
DE102012106191A1 (de) 2014-01-16

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