EP2894265B1 - Dispositif d'actionnement pneumatique - Google Patents

Dispositif d'actionnement pneumatique Download PDF

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Publication number
EP2894265B1
EP2894265B1 EP14151094.1A EP14151094A EP2894265B1 EP 2894265 B1 EP2894265 B1 EP 2894265B1 EP 14151094 A EP14151094 A EP 14151094A EP 2894265 B1 EP2894265 B1 EP 2894265B1
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EP
European Patent Office
Prior art keywords
actuation
actuator
lever
plane
actuating
Prior art date
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EP14151094.1A
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German (de)
English (en)
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EP2894265A1 (fr
Inventor
Dominik Risler
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.)
Geberit International AG
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Geberit International AG
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Publication date
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Priority to DK14151094.1T priority Critical patent/DK2894265T3/da
Priority to EP14151094.1A priority patent/EP2894265B1/fr
Publication of EP2894265A1 publication Critical patent/EP2894265A1/fr
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Publication of EP2894265B1 publication Critical patent/EP2894265B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D5/00Special constructions of flushing devices, e.g. closed flushing system
    • E03D5/02Special constructions of flushing devices, e.g. closed flushing system operated mechanically or hydraulically (or pneumatically) also details such as push buttons, levers and pull-card therefor
    • E03D5/024Operated hydraulically or pneumatically
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03DWATER-CLOSETS OR URINALS WITH FLUSHING DEVICES; FLUSHING VALVES THEREFOR
    • E03D5/00Special constructions of flushing devices, e.g. closed flushing system
    • E03D5/02Special constructions of flushing devices, e.g. closed flushing system operated mechanically or hydraulically (or pneumatically) also details such as push buttons, levers and pull-card therefor
    • E03D5/028Pusher plates and actuating mechanisms for built-in cisterns

Definitions

  • the present invention relates to an operating device for a drain valve of a cistern according to the preamble of claim 1.
  • the invention relates to a pneumatic actuating valve.
  • the invention has for its object to provide a pneumatic actuator, which overcomes the disadvantages of the prior art.
  • the flexibility of the arrangement of the parts should be increased.
  • Another aspect is the reduction of the required installation space.
  • an actuator for a drain valve of a cistern comprises at least one Actuator element with an actuator plunger, which serves actuator element of the actuation of a drain valve in the cistern, at least one actuator button for actuating the actuator element, which actuating button along an actuation movement from an initial position to an end position is movable, per actuator a pivotable about a pivot axis actuating lever, wherein the actuating button on the actuating lever acts and wherein the actuating lever acts on the Aktuatorstössel, and a receptacle on which the at least one actuator element, the at least one actuating button and the actuating lever or the actuating lever are mounted.
  • the actuating key is movable in the actuating movement along a first direction and acts on the actuating lever.
  • the actuator tappet is movable along the second direction by the actuating lever acting as a deflecting element, which second direction is inclined at an angle, in particular at right angles, to the first direction.
  • the actuator element is a pneumatic actuator and the actuator plunger is a piston.
  • the direction of movement of the actuating button is deflected with respect to the direction of movement of the Aktuatorstössels.
  • This deflection has the advantage that the individual parts can be arranged more flexibly, whereby, for example, the installation space can be optimized, in particular reduced in size.
  • the direction of the actuating movement is deflected by the actuating lever.
  • the actuating movement is deflected by 90 °.
  • the actuating lever is acted upon by the actuating button with a movement such that the actuating lever moves angularly with respect to this movement about the pivot axis and thus acts on the actuator tappet.
  • the operating lever with respect to the direction of movement of the actuating button can be designed as a rocker arm.
  • the actuating device is a pneumatic actuating device and comprises as at least one actuator element a pneumatic actuator element.
  • the pneumatic actuator element works together with a pneumatically controllable drain valve.
  • a pneumatic cistern assembly includes a pneumatic drain valve and an actuator with said actuator element.
  • the inventive Actuator according to the invention has the advantage that a pneumatic actuator whose minimum volume is usually predetermined by the piston or cylinder size, can be arranged flexibly.
  • the actuating button is movably mounted in a first guide along the first direction and the Aktuatorstössel is movably mounted in a second guide along the second direction, which second guide is inclined at an angle, in particular at right angles to the first guide.
  • the angle between the first guide and the second guide corresponds to the angle between the first direction and the second direction.
  • the direction of movement of the actuating button is inclined at an angle, in particular at right angles, to the direction of movement of the actuator plunger.
  • the first direction defines a first plane or its orientation and the second direction is inclined at an angle, in particular at right angles, to this first plane.
  • a second plane runs parallel to the second direction and is thus inclined at an angle, in particular at right angles, to the first plane.
  • the movement of the actuation keys can also be defined with respect to the levels as follows:
  • the actuation key is movable during the actuation movement out of the second plane or a plane extending parallel thereto and acts on the actuation lever.
  • the actuating lever acts on the actuator plunger, which is movable out of a first plane, which planes are inclined at an angle, in particular at right angles to each other.
  • the first plane extends in the installed position in the vertical, while the second direction is in the installed position in the horizontal.
  • the first plane extends in the installed position in the horizontal, while the second direction is in the installed position in the vertical
  • Other orientations are also conceivable.
  • the pivot axis of the actuating lever is preferably parallel and preferably spaced from the first plane and the second direction.
  • the movement of the actuating button is a rectilinear movement or is a pivoting movement.
  • the said movement takes place essentially in the first plane or parallel to it.
  • the movement of the actuator ram is preferably a rectilinear motion.
  • a third plane which is perpendicular to the first and the second plane, extends centrally through the actuating lever.
  • the pivot axis extends at right angles to the third plane and parallel to the second plane.
  • the actuating lever is pivoted relative to the second plane or a parallel plane. In other words, the angle between parts of the operating lever and the second plane changes.
  • the actuating lever preferably comprises a first lever arm and a second lever arm connected at an angle, preferably at right angles, to the first lever arm, wherein the first lever arm has a contact portion via which the actuating key acts on the actuating lever and wherein the second lever arm acts on the actuator plunger.
  • it is preferably an angled or cranked operating lever.
  • the contact portion is preferably a cam which extends from the operating lever in the direction of the actuating button. The cam comes into contact with the actuating button.
  • the first lever arm comprises a pivot bearing pin, with which the actuating lever is pivotally mounted on a pivot bearing pin receptacle on the receptacle, wherein the pivot bearing pin is preferably arranged at the free end of the first lever arm. The free end is opposite the junction between the first lever arm and the second lever arm.
  • two pivot bearing pins are provided, which protrude on both sides of the actuating lever.
  • the second lever arm acts with its free end on the actuator tappet.
  • the free end of the second lever arm is opposite to the connection point between the first lever arm and the second lever arm.
  • the actuator element is a pneumatic actuator.
  • the actuator stem is preferably in communication with the piston of the pneumatic actuator or is part of the piston.
  • the piston has a diameter that is several times greater than the path of movement of the piston in the piston chamber. It is therefore a flat trained pneumatic actuator.
  • the pneumatic actuator comprises a piston chamber and a movable piston in the piston chamber plate with a rotating rolling diaphragm, which piston plate is in communication with the actuator plunger and is operable with this and is parallel to the first plane.
  • actuators are also conceivable.
  • electric actuators are also conceivable.
  • actuator elements are arranged and there are exactly two operating levers present, wherein in each case an actuating lever is associated with an actuator.
  • the actuator plunger of one actuator element is movable in a different direction than the actuator plunger of the other actuator element and the actuating lever can be pivoted in different pivoting directions.
  • the required installation space can be further optimized.
  • a bearing for the actuating button is provided on the receptacle between the actuating levers, which acts on both actuating lever, wherein the actuating button is designed as a rocker which is pivotable about an axis defined by the bearing rocker axis, which rocker axis parallel to the second direction and at right angles to the pivot axis runs.
  • the receptacle comprises a flange with an opening, wherein the flange adjoins the opening around a housing portion which extends in the direction of the first plane.
  • the housing section substantially comprises two housing chambers, in each of which an actuating lever is arranged.
  • the actuating lever protrudes from the housing chamber, wherein it comes outside of the same with the actuator tappet in contact.
  • an operating device 1 for a drain valve of a cistern is shown.
  • the actuator 1 is used to control the drain valve in the cistern, with the drain valve flushing water from the cistern is removed.
  • the actuating device 1 comprises at least one actuator element 2 with an actuator tappet 3, which actuator element 2 is the operation of a drain valve in the cistern, at least one actuator button 4 for actuating the actuator element 2, which actuating button 4 along an actuating movement of a starting position in an end position is movable to a pivot axis V pivotable actuating lever 5, wherein the actuating button 4 acts on the actuating lever 5 and wherein the actuating lever 5 acts on the Aktuatorstössel 3, and a receptacle 6, on or in which the at least one actuator element 2, the at least one actuating button 4 and the at least an actuating lever 5 are mounted.
  • an actuating lever 5 is arranged in each case.
  • the actuating button 4 Upon actuation of the actuating button 4, the actuating button 4 is moved in the direction of the actuating lever 5, whereby the actuating lever 5 is pivoted about the pivot axis V accordingly. As a result of this pivoting movement, the actuating lever 5 acts on the actuator plunger 3 of the actuator element 2 and actuates it accordingly.
  • the direction of the actuating movement is deflected by the actuating lever 5 from the actuating direction of the actuating button 4 to the actuating direction of the Aktuatorstössels 3.
  • the direction of movement of the actuating button 4 is inclined at an angle, in particular at right angles, to the direction of movement of the actuator tappet 3. The movement to the actuating button 4 is thereby deflected by the actuating lever 5 accordingly.
  • the actuating button 4 is moved during the actuating movement from a first direction R1 and acts on the actuating lever 5.
  • the actuating lever 5 is pivoted upon the action of the actuating movement about the pivot axis V and acts on the Aktuatorstössel 3, which then along a second Direction R2 is moved.
  • the second direction R2 is preferably inclined at an angle, in particular at right angles, to the first direction R1.
  • the actuator 1 By deflecting the direction of movement from the first direction R1 in the second direction R2, the actuator 1 can be made more compact.
  • the first direction R1 defines a first plane E1.
  • the first direction R1 defines the first plane such that the first direction R1 is in this first plane or parallel thereto.
  • a second plane E2 is defined by the second direction R2.
  • the first plane E1 is therefore inclined at an angle, in particular at right angles, to the second plane E2.
  • the actuating button 4 lies in the starting position in the second plane E2 or parallel thereto and then becomes relative to this second plane E2, in particular out of the plane E2, emotional.
  • the movement out of the plane E2, for example, is a movement at right angles or along a curved curve to the second plane E2 and parallel to the first plane E1.
  • the actuating button 4 is moved during the actuating movement out of a second plane E2 and acts on the actuating lever 5.
  • the actuating button 4 is in the starting position in the second plane E2 and then relative to this second plane E2 out of the plane E2 moved out.
  • the actuator plunger 3, which is actuated by the actuating lever 5, is moved out of its rest position in or parallel to the first plane E1 out of the first plane E1 into its end position.
  • the actuator tappet 3 is preferably moved at right angles to said first plane E1.
  • the first plane E1 is parallel to the drawing sheet plane and the second plane E2 is at right angles to the drawing sheet plane.
  • the actuating button 4 is already shown pressed, the actuating button 4 has been moved from its initial position in the first direction R1 in its final position. In the embodiment shown here, the operation key 4 has been pivoted accordingly. A linear translatory movement would also be conceivable.
  • the actuating key 4 hits the actuating lever 5, whereupon it is pivoted about the pivot axis V.
  • the actuating lever 5 is already shown in the pivoted position.
  • the actuating button 4 is already here in the end position.
  • the actuator plunger 3 which has been moved in the second direction R2 inclined at an angle to the first direction R1.
  • the actuator plunger 3 is here in the starting position and is moved out during a possible actuation along the second direction R2.
  • the pivot axis V is parallel and preferably spaced from the first plane E1 and the second plane E2.
  • the movement of the operation key 4 may be a rectilinear motion. In the figures, however, the embodiment of a pivoting movement is shown.
  • the actuating button 4 is pivoted about a rocker axis W.
  • the actuating button 4 has the shape of a rocker.
  • the actuator tappet 3 preferably moves along a rectilinear motion, as well as in the FIGS. 5 and 6 is shown.
  • a third plane E3 which is perpendicular to the first and the second plane E1, E2, preferably extends centrally through the actuating lever.
  • This third plane is substantially perpendicular to the pivot axis V.
  • the operating lever which in the Figures 3 . 5 and 6 can be well recognized comprises in the present embodiment, a first lever arm 7 and an angle, preferably at right angles, in the first lever arm 7 subsequent second lever arm. 8
  • the first lever arm 7 has a contact section 9, via which the actuating button 4 acts on the actuating lever 5.
  • the actuating button 4 is therefore in contact with the contact section 9 of the actuating lever 5 with the actuating lever 5.
  • the second lever arm 8 acts as in the Figures 3 . 5 and 6 shown, on the actuator tappet 3. About this second lever arm 8 of the actuator tappet 3 is actuated accordingly.
  • the contact section 9 has the shape of a cam, which extends from the first lever arm 7 in the direction of the actuating button 4.
  • the first lever arm 7 comprises two pivot bearing pins 10, which extend laterally to the first lever arm 7.
  • the pivot bearing pins 10 are arranged at the free end 12 of the first lever arm 7.
  • the free end 12 is located opposite the connection point 21 between the first lever arm 7 and the second lever arm 8.
  • the pivot bearing journal 10 is mounted in a pivot bearing journal receptacle 11.
  • the pivot bearing pin receptacle 11 is part of the receptacle. 6
  • the second lever arm 8 acts with its free end 13 on the Aktuatorstössel 3.
  • the free end 13 is opposite to the connection point 21 is arranged.
  • the free end 13 of the second lever arm 8 in this embodiment has a contact point 25 which acts on the actuator tappet 3.
  • the actuator element 2 is a pneumatic actuator.
  • the actuator plunger 2 is a piston or part of the piston of the pneumatic actuator.
  • the actuator element 3 may also be an electrical or other actuator element.
  • FIGS. 5 and 6 From the sectional views of the FIGS. 5 and 6 the most preferred pneumatic actuator element 3 is shown.
  • the piston chamber 14 opens to a connecting piece 22, which is connected to the drain valve via a pneumatic line.
  • the actuator tappet 3 is fastened here to the piston plate 15.
  • the Actuating button 4 Upon actuation of the Actuating button 4, the actuating lever 5 acts as described above on the Aktuatorstössel 3 and thereby the piston plate 15 is inserted into the piston chamber 3, whereby the volume is reduced and the air in the piston chamber 14 is displaced through the connection 22 to the drain valve of the cistern. This allows the waste set to be operated accordingly.
  • the piston plate 15 is connected to a rolling diaphragm 16 in connection, which on the one hand has sealing effect and on the other hand serves as a return element.
  • the rolling diaphragm 16 is unrolled accordingly, as well as in the FIG. 6 is shown, as soon as the pressure on the actuating button 4 and the operating lever 5 is omitted, the corresponding parts are returned to their original position.
  • the rolling diaphragm 16 has the function of a restoring element.
  • Further return elements can also be arranged within the receptacle 6. These return elements can act, for example, on the back of the actuating button 4 and then move them from the end position back to the starting position.
  • exactly two actuator elements 2 are arranged.
  • One of the actuator elements 2 serves to trigger a full-flush and the other of the actuator 2 serves to trigger a partial flush.
  • exactly two actuating levers are present, wherein in each case an actuating lever 5 is assigned to one of the two actuator elements 2.
  • a single actuating button is arranged, which is designed as a rocker switch and on which one or the other actuating lever 5 acts. The user can select the full flush or the Operamengen Introduceung by appropriate actuation of this rocker switch.
  • a key can also be arranged per actuating lever 5, the key then being assigned to the respective actuating lever 5.
  • the actuator elements 2 are arranged with respect to their position different from each other.
  • One of the actuator elements 2 stands upside down with respect to the other actuator element 2. Consequently, actuator tappet 3 of the actuator element 2 in a different, in particular opposite, direction moved as the Aktuatorstössel 3 of the other actuator element 2.
  • the two operating lever 5 are arranged upside down with respect to each other.
  • One of the actuating lever 5 is thereby pivoted in one direction and the other actuating lever 5 is pivoted in the other direction.
  • This type of arrangement has the advantage that the available space is best possible divisible.
  • FIGS. 1 and 2 can be well recognized that between the two operating levers 5 on the receptacle 6 a bearing 17 is arranged.
  • the bearing 17 is used to support the actuating button 4.
  • the bearing 17 comprises in the present embodiment, two openings 23, in which the actuating button 4 engages with correspondingly formed pin 24.
  • the bearing 17 provides with the openings 23 and the pin 24 a rocker axis W ready.
  • the operation button 4 is pivotable.
  • the rocker axis W is arranged at right angles to the first plane E1 and preferably at right angles to the pivot axis V.
  • the receptacle 6 comprises a flange 18 with an opening 19.
  • the flange 18 defines the orientation of the second plane E2.
  • the flange 18 is adjoined, around the opening 19, by a housing section 20, which extends away from the second plane E2.
  • the housing portion 20 extends in substantially the same direction as the first plane E1.
  • the actuating lever 5 are arranged.
  • the pivot bearing journal receptacle 11 is likewise located in the housing section 20 or is an integral part thereof. The same applies to the bearing 17 for the actuating button. 4
  • the actuator elements 3 are likewise arranged on the housing section 20 or part thereof.
  • the housing portion 20 also has a threaded portion 26, with which the actuator 1 can be attached to a corresponding receptacle.
  • the threaded portion 26 is in communication with a threaded nut, not shown, and the threaded nut clamps the actuator 1 together with the flange 18 to a support structure.
  • the actuating button 4 has a multiplicity of receiving elements 27. These receiving elements 27 serve to receive a cover plate via which the user then gives the force to the actuating button 4.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Aviation & Aerospace Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)
  • Mechanically-Actuated Valves (AREA)

Claims (16)

  1. Dispositif d'actionnement (1), pour une soupape de décharge d'un réservoir de chasse, comprenant
    au moins un élément d'actionneur (2) avec un poussoir d'actionneur (3), ledit élément d'actionneur (2) servant à l'actionnement d'une soupape de décharge dans le réservoir de chasse,
    au moins une touche d'actionnement (4) pour l'actionnement de l'élément d'actionneur (2), ladite touche d'actionnement (4) étant déplaçable d'une position initiale à une position finale le long d'un mouvement d'actionnement,
    par élément d'actionneur (2), un levier d'actionnement (5) pouvant pivoter autour d'un axe de pivotement (V), dans lequel la touche d'actionnement (4) agit sur le levier d'actionnement (5) et dans lequel le levier d'actionnement (5) agit sur le poussoir d'actionneur (3), et
    un logement (6), sur lequel ledit au moins un élément d'actionneur (2), ladite au moins une touche d'actionnement (4) et le levier d'actionnement (5) sont supportés,
    dans lequel le levier d'actionnement (5) est réalisé sous forme d'élément de renvoi, dans lequel lors de l'actionnement la touche d'actionnement (4) est déplaçable le long d'une première direction (R1) et agit sur le levier d'actionnement (5), et dans lequel le poussoir d'actionneur (3) est déplaçable le long d'une deuxième direction (R2) par le levier d'actionnement (5) agissant comme élément de renvoi, la deuxième direction (R2) étant inclinée d'un certain angle, en particulier d'un angle droit, par rapport à la première direction (R1),
    caractérisé en ce que l'élément d'actionneur (2) est un actionneur pneumatique et le poussoir d'actionneur est un piston.
  2. Dispositif d'actionnement selon la revendication 1, caractérisé en ce que la première direction définit l'orientation d'un premier plan (E1) et en ce que la deuxième direction (R2) est inclinée d'un certain angle, en particulier d'un angle droit, par rapport à ce premier plan (E1).
  3. Dispositif d'actionnement selon la revendication 2, caractérisé en ce que le premier plan (E1) vu dans la position de montage s'étend verticalement, tandis que la deuxième direction (R2) en position de montage s'étend horizontalement ou en ce que le premier plan (E1) vu dans la position de montage s'étend horizontalement, tandis que la deuxième direction (R2) en position de montage s'étend verticalement.
  4. Dispositif d'actionnement selon une des revendications 2 à 3, caractérisé en ce que l'axe de pivotement (V) est situé parallèlement au et de préférence à distance du premier plan (E1) et à la deuxième direction (R2).
  5. Dispositif d'actionnement selon l'une quelconque des revendications précédentes, caractérisé en ce que le mouvement de la touche d'actionnement (4) est un mouvement rectiligne ou est un mouvement de pivotement et/ou en ce que le mouvement du poussoir d'actionneur (3) est un mouvement rectiligne.
  6. Dispositif d'actionnement selon l'une quelconque des revendications précédentes 2 à 5, caractérisé en ce que le levier d'actionnement (5) peut pivoter par rapport audit premier plan (E1).
  7. Dispositif d'actionnement selon l'une quelconque des revendications précédentes, caractérisé en ce que le levier d'actionnement (5) comprend un premier bras de levier (7) et un deuxième bras de levier (8) se raccordant au premier bras de levier (7) sous un certain angle, de préférence perpendiculairement, dans lequel le premier bras de levier (7) présente une section de contact (9), par laquelle la touche d'actionnement (4) agit sur le levier d'actionnement (5) et dans lequel le deuxième bras de levier (8) agit sur le poussoir d'actionneur (3).
  8. Dispositif d'actionnement selon l'une quelconque des revendications 2 à 7, caractérisé en ce que, lorsque le levier d'actionnement (5) n'est pas actionné, le premier bras de levier (7) est incliné d'un certain angle, en particulier d'un angle droit, par rapport au premier plan (E1), tandis que le deuxième bras de levier (8) est essentiellement parallèle au premier plan (E1).
  9. Dispositif d'actionnement selon la revendication 7 ou 8, caractérisé en ce que le premier bras de levier (7) comprend un tenon de palier de pivotement (10), avec lequel le levier d'actionnement (5) est monté sur un logement de tenon de palier de pivotement (11) sur le logement (6), dans lequel le tenon de palier de pivotement (10) est disposé de préférence à l'extrémité libre (12) du premier bras de levier (7).
  10. Dispositif d'actionnement selon la revendication 8 ou 9, caractérisé en ce que le deuxième bras de levier (8) agit avec son extrémité libre (13) sur le poussoir d'actionneur (3).
  11. Dispositif d'actionnement selon l'une quelconque des revendications précédentes, caractérisé en ce que l'actionneur pneumatique comprend une chambre de piston (14) et une plaque de piston (15) déplaçable dans la chambre de piston (14) avec une membrane déroulante périphérique (16), la plaque de piston (15) étant en liaison avec le poussoir d'actionneur et pouvant aussi être actionnée avec celui-ci et étant de préférence parallèle au premier plan (E1).
  12. Dispositif d'actionnement selon l'une quelconque des revendications précédentes, caractérisé en ce que l'élément d'actionneur (2) comprend un élément de rappel, qui rappelle l'élément d'actionneur (2) après la réalisation d'un actionnement, dans lequel le mouvement de rappel produit par l'élément de rappel agit par le levier d'actionnement sur la touche d'actionnement, et/ou en ce que la touche d'actionnement (4) est munie d'un élément de rappel supplémentaire.
  13. Dispositif d'actionnement selon l'une quelconque des revendications précédentes, caractérisé en ce que deux éléments d'actionneur (2) exactement sont agencés et il se trouve exactement deux leviers d'actionnement (5), dans lequel un levier d'actionnement (5) est associé respectivement à un élément d'actionneur (2).
  14. Dispositif d'actionnement selon la revendication 13, caractérisé en ce que le poussoir d'actionneur (3) d'un premier élément d'actionneur (2) est déplaçable dans une direction différente de celle du poussoir d'actionneur (3) de l'autre élément d'actionneur (2) et en ce que les leviers d'actionnement (5) peuvent pivoter dans des directions de pivotement différentes.
  15. Dispositif d'actionnement selon la revendication 13 ou 14, caractérisé en ce qu'il est prévu sur le logement (6), entre les leviers d'actionnement (5), un point d'appui (17) pour la touche d'actionnement (4), qui agit sur les deux leviers d'actionnement (5), dans lequel la touche d'actionnement (4) est réalisée sous forme de bascule, qui peut pivoter autour d'un axe de bascule (W) défini par le point d'appui (17), ledit axe de bascule (W) s'étendant perpendiculairement au premier plan (E1) et parallèlement à la deuxième direction (R2).
  16. Dispositif d'actionnement selon l'une quelconque des revendications précédentes, caractérisé en ce que le logement (6) comporte une bride (18) avec une ouverture (19) et en ce qu'une partie de boîtier (20) se raccorde à la bride (18) autour de l'ouverture (19) et s'éloigne de la bride (18), dans lequel la partie de boîtier (20) s'étend essentiellement dans la même direction que le premier plan (E1).
EP14151094.1A 2014-01-14 2014-01-14 Dispositif d'actionnement pneumatique Active EP2894265B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
DK14151094.1T DK2894265T3 (da) 2014-01-14 2014-01-14 Pneumatisk aktiveringsindretning
EP14151094.1A EP2894265B1 (fr) 2014-01-14 2014-01-14 Dispositif d'actionnement pneumatique

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP14151094.1A EP2894265B1 (fr) 2014-01-14 2014-01-14 Dispositif d'actionnement pneumatique

Publications (2)

Publication Number Publication Date
EP2894265A1 EP2894265A1 (fr) 2015-07-15
EP2894265B1 true EP2894265B1 (fr) 2017-08-09

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EP14151094.1A Active EP2894265B1 (fr) 2014-01-14 2014-01-14 Dispositif d'actionnement pneumatique

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EP4353918A1 (fr) * 2022-10-13 2024-04-17 Geberit International AG Dispositif d'actionnement

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DE19508865C2 (de) * 1995-03-11 1999-10-07 Schwab Sanitaer Plastic Gmbh Halterung für Betätigungsorgane eines Spülkastens
ITMI20062167A1 (it) * 2006-11-13 2008-05-14 Oliveira & Irmao Sa Dispositivo di comando per valvole di scarico di cassette di riaciacquo
EP2169126B1 (fr) 2008-09-29 2012-04-25 Geberit International AG Dispositif d'actionnement pneumatique
CN201395837Y (zh) * 2009-05-07 2010-02-03 上海科勒电子科技有限公司 手自动一体冲水驱动装置

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EP2894265A1 (fr) 2015-07-15

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