EP3492684B1 - Bascule de déclenchement pour un dispositif d'étanchéité d'une porte pivotante - Google Patents

Bascule de déclenchement pour un dispositif d'étanchéité d'une porte pivotante Download PDF

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Publication number
EP3492684B1
EP3492684B1 EP18206690.2A EP18206690A EP3492684B1 EP 3492684 B1 EP3492684 B1 EP 3492684B1 EP 18206690 A EP18206690 A EP 18206690A EP 3492684 B1 EP3492684 B1 EP 3492684B1
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EP
European Patent Office
Prior art keywords
door
transmission element
pivoting
previous
area
Prior art date
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Active
Application number
EP18206690.2A
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German (de)
English (en)
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EP3492684A1 (fr
Inventor
Winfried Heck
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Holzbau Schmid GmbH and Co KG
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Holzbau Schmid GmbH and Co KG
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Publication of EP3492684A1 publication Critical patent/EP3492684A1/fr
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    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/16Sealing arrangements on wings or parts co-operating with the wings
    • E06B7/18Sealing arrangements on wings or parts co-operating with the wings by means of movable edgings, e.g. draught sealings additionally used for bolting, e.g. by spring force or with operating lever
    • E06B7/20Sealing arrangements on wings or parts co-operating with the wings by means of movable edgings, e.g. draught sealings additionally used for bolting, e.g. by spring force or with operating lever automatically withdrawn when the wing is opened, e.g. by means of magnetic attraction, a pin or an inclined surface, especially for sills
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/16Sealing arrangements on wings or parts co-operating with the wings
    • E06B7/18Sealing arrangements on wings or parts co-operating with the wings by means of movable edgings, e.g. draught sealings additionally used for bolting, e.g. by spring force or with operating lever
    • E06B7/20Sealing arrangements on wings or parts co-operating with the wings by means of movable edgings, e.g. draught sealings additionally used for bolting, e.g. by spring force or with operating lever automatically withdrawn when the wing is opened, e.g. by means of magnetic attraction, a pin or an inclined surface, especially for sills
    • E06B2007/202Actuator connected to wing frame

Definitions

  • the present invention relates to a revolving door according to claim 1.
  • Such an automatically lowerable door seal for threshold-free doors is, for example, from the German utility model DE 79 02 716 U1 known.
  • the automatic door seal described here has a seal housing in which a sealing strip and a mechanism for displacing the sealing strip are arranged relative to the seal housing. So that the floor seal only lowers shortly before the door is completely closed, the mechanism has a trigger on the side of the door leaf, which runs onto the frame when the door leaf is closed and is pressed inwards into the door leaf by the force that occurs. There, the floor seal is guided downwards by means of a force redirection over an inclined sliding surface.
  • the problem can arise that the trigger strikes an edge between a surface running in the soffit direction and a surface perpendicular to it when it closes, thereby tilting.
  • the trigger can then be clamped between the door leaf and the door frame, thereby preventing the seal from being released.
  • DE 20 2007 016 379 U1 proposed to provide the trigger with a mushroom-shaped enlarged head.
  • the document DE 3335308 A1 discloses a sealing rail for door leaves controlled with a pair of springs and an angle lever.
  • German utility model application DE 20 2017 103 556.5 discloses a special geometry of a frame and interacting door rebate profile.
  • the doors are each designed as revolving doors and hung on door hinges in such a way that the pivot point is close to the edge of the door leaf or the rebate edge.
  • the trigger of the floor seal would no longer hit the edge of the frame approximately vertically in a radial movement, but would be directed towards the frame edge or surface of the frame in a pivoting movement. This would result in shear forces on the trigger at the moment of impact with the frame edge, which would not only expose it to increased wear due to friction, but could also possibly tilt.
  • the object of the present invention is therefore to provide a sealing device which is also suitable as an automatic floor seal for revolving doors in which the axis of rotation runs through the door leaf.
  • the sealing device should preferably also be suitable for at least triple beveled frame or rebate geometries, as is particularly the case in DE 20 2017 103 556.5 are described.
  • the release element is provided with a release aid in the form of a transmission element, by means of which the shear forces which occur are removed, so that essentially only forces act on the release element via the release aid which are in whose direction of release are directed.
  • the transmission element can be used in particular in the DE 20 2017 103 556.5 described at least three times beveled frame or fold geometry act as a rocker, since the transmission element has a knee-shaped pressure area which is supported on the frame profile during the closing process and thereby a compressive force over a shorter lever compared to the fastening area of the transmission element, can be transmitted to the release element. For this reason, the transmission element is also referred to as a "trigger rocker".
  • the transmission element according to the invention which is preferably formed in one piece, therefore serves as a release aid for the actual release element and protects it from shear forces occurring when used in a revolving door with an axis of rotation running through the door leaf, in particular in the case of DE 20 2017 103 556.5 described at least three times beveled frame or rebate geometries.
  • the use of the sealing device according to the invention is not limited to such a type of revolving door. Rather, the sealing device with the transmission element can also be used for hinged hinged doors in which the axis of rotation is located near the edge of the door leaf.
  • the sealing device according to the invention can also be used for other closable openings, such as a window or the like.
  • the solution according to the invention offers the further advantage that a more uniform lowering of the seal is achieved by the shape of the transmission element according to the invention. Without the transmission element, apart from the problems associated with the shear forces that occur, the door seal would only be actuated at the last moment of the closing operation, which is perceived as disadvantageous in some cases.
  • the position of the seal or of the release element can be made more variable by using the transmission element.
  • the release device can thus be used directly on the door opening, which would normally not cause the seal to be released.
  • the sealing device could also be moved closer to the axis of rotation, so that the overall design options are significantly wider.
  • the sealing device can thus be installed at the position that is optimal with regard to the layer structure.
  • Mechanisms which can be used according to the invention for displacing the sealing strip relative to the sealing housing are fundamentally known to the person skilled in the art. In principle, all solutions known from the prior art could be used, for example the one as shown in DE 20 2007 016 379 U1 or also in DE 79 02 716 U1 are described.
  • the floor seal used can also be designed in such a way that it can easily be shortened to the required length on site. Such systems are in EP 2 143 868 A1 and can be used in the present invention.
  • the transmission element can be designed in such a way that the ramp-shaped run-up surface is composed of a sliding section and a curved slope area adjoining the pressure area. In this way, a continuous pressure build-up on the release element can be realized when the door is closed, so that the sealing strip is lowered more uniformly.
  • the fastening area and the ramp-shaped run-up surface can enclose an angle of 130 to 170 °, in particular of 135 to 165 °, in particular in the sliding section thereof.
  • the ramp-shaped run-up surface in particular in its sliding section, can enclose an angle of at least 90 °, in particular from 90 to 100 °, with the slope section of the step of the contact region stepped in the door leaf fold direction.
  • the contact area has, at its end opposite the fastening area, a surrounding area which partially encompasses the release element.
  • the trigger element is protected from possible tilting, among other things.
  • the wiper bristles do not get caught so quickly.
  • the release element and preferably also the transmission element, are designed to be resilient in such a way that, after application and subsequent removal of the external force, the release element and the transmission element are returned to their starting position.
  • the transmission element is expediently made for this purpose constructed of an elastic material that is selected in particular from metals, preferably steel, plastics, fiber-reinforced plastics or combinations of these, particularly preferably spring steel.
  • the transmission element can have the necessary restoring forces itself, such as in the embodiment in which the transmission element is made of spring steel.
  • a spring such as a spiral spring, can be arranged below the transmission element, which has the required restoring force and, after the external force has been removed, brings the transmission element back into its starting position.
  • the transmission element can be configured, for example, in the form of a strip, in particular as a leaf spring.
  • the dimensioning is adapted to the requirements, that is, the width of the strip-shaped transition element is usually selected so that it corresponds at least to the width of the trigger element.
  • the length of the strip-shaped transition element depends, for example, on the thickness of the door leaf and the desired slope angle of the ramp-shaped run-up surface.
  • the width can be chosen, for example, between 6 and 25 mm and, independently of this, the length about 40 to 120 mm.
  • the width is preferably about 10 to 18 mm and the length is about 60 to 100 mm.
  • the length specifications are understood to be the longitudinal extent in the top view. In this respect, the actual length of the material is generally greater than the length specifications given above due to bends or bends in the transmission element.
  • the transmission element For the most efficient transmission of force through the transmission element, 40 to 70% of the total length of the transmission element in the top view of the fastening area, 15 to 25% of the contact surface, and 5 to 15% of the contact area are preferably used, the respective remaining lengths in other areas of the Transmission element, such as the pressure area and / or the surrounding area, are eliminated.
  • the transmission element according to the invention is expediently designed in such a way that it can be attached to a door leaf fold.
  • holes are expediently provided for at least two screws in order to be able to attach the transmission element to the door leaf fold in a rotationally fixed manner.
  • the transmission element is provided in an advantageous embodiment in its attachment area with at least two holes for fastening screws. These holes can further preferably have a conical profile, so that countersunk screws can be used for fastening, so that the elevation of the transmission element does not result in elevations which could impair the functioning.
  • An object of the present invention relates to a revolving door according to claim 1.
  • the release element and the transmission element can be arranged on the door leaf fold adjacent to the axis of rotation and / or on the door leaf fold on which the door lock is attached.
  • a release aid can be attached either to one of the two door leaf folds or on both sides.
  • the sealing housing is preferably arranged in the region between the axis of rotation and the door leaf surface in the opening direction and the transmission element on its fastening region between the axis of rotation and the door leaf surface in the closing direction.
  • the door leaf is rotatably held in the door frame and the revolving door is designed such that when the revolving door closes, the transmission element comes into contact with the door frame on its ramp-shaped run-up surface, in particular with a stop device which is fastened in the door frame and adjustable in height and / or depth in the direction of the door leaf fold , wherein the ramp-shaped run-up surface slides along the frame surface, in particular on the stop device, during the continuous closing process and, upon reaching the knee-shaped pressure area pointing in the direction of the door leaf fold, transmits the force that occurs to the release element.
  • This configuration offers the possibility of using the depth and / or height adjustment of the stop device to adapt the lowering movement of the sealing strip induced by the transmission element, for example, to the rebate geometry of the door frame and / or the door leaf without the shape of the transmission element having to be changed for this purpose.
  • the depth and / or height adjustment of the stop device can be used for later adjustment if, for example, the revolving door should have settled or slightly warped after installation.
  • the revolving door can further preferably be designed such that when the revolving door is closed, the transmission element first comes into contact with the door frame at its surrounding area, in particular with the stop device, before the ramp-shaped ramp surface slides along the frame surface, in particular on the stop device, during the continuous closing process .
  • the height-adjustable stop device fastened in the door frame is preferably formed by a screw, in particular by a screw with an external hexagon head.
  • the door leaf can be provided with a recess on its door leaf fold for receiving the transmission element.
  • the transmission element can be covered visually.
  • Another object of the present invention relates to a revolving door, wherein a height and / or depth adjustable stop device is preferably provided in the door frame, which is formed in particular by a screw, more preferably by a screw with an external hexagon head.
  • both the door leaf and the door frame have at least a triple beveled rebate geometry, preferably as in the as yet unpublished German utility model application DE 20 2017 103 556.5 disclosed.
  • the largely form-fittingly interacting profiles of the frame and the door leaf are preferably configured such that the narrow surface of the door or window leaf connecting the side edges of the side surfaces of the door or window leaf has four adjoining partial surfaces, wherein the first partial surface forms an obtuse angle with a side surface of the side surfaces of the door or window leaf, the first partial surface forms an obtuse angle with the second partial surface, the second partial surface is perpendicular to the side surfaces of the door or window leaf, the second partial surface forms an angle with the third partial surface, the third partial area forms an obtuse / raised angle with the fourth partial area, and the fourth partial surface forms an obtuse angle with the other side surface of the side surfaces of the door or window leaf, the surface of the stop profile opposite the narrow surface of the door or window leaf in the closed state of the door or window has four adjoining partial surfaces, wherein the first partial surface encloses an acute angle with a plane running parallel to the one side surface of the side surfaces of the door or window leaf when the door
  • a sealing device 1 known from the prior art is shown in the form of an automatically lowerable floor seal.
  • the sealing device 1 comprises a sealing housing 2, a sealing strip which is not visible in the plan view and a mechanism for displacing the sealing strip relative to the sealing housing 2, which is not shown for reasons of simplification.
  • the mechanism comprises a release element 3 for actuating the sealing strip when the door is closed.
  • the sealing device is installed in the area of the bottom edge of a door leaf 4.
  • the door leaf 4 is hinged to a door frame 6 by means of hinge straps 5, the axis of rotation 7 of the door leaf 4 being in the vicinity of the door leaf fold edge, ie not running through the door leaf 4.
  • the door frame 6 is provided with an all-round insertable lip seal 8. In the floor area of the door, the sealing strip of the sealing device takes over the sealing.
  • the trigger element 3 hits the surface of the door frame 6 with the door almost completely closed, into which a pressure plate 9 made of metal is inserted at this point to protect against possible wear.
  • the force acting on the release element 3 until the door leaf 4 is completely closed is deflected via the mechanism of the sealing device, so that the sealing strip located on the underside of the door leaf 4 is moved out until it makes contact with the floor and thus seals the door passage.
  • Fig. 2 shows the door Fig. 1 in the closed state, in which case the trigger element 3 is pushed into the interior of the sealing device and the sealing strip on the underside is thus fully extended.
  • Fig. 3 is an arrangement according to the invention from a rotating door held in a door frame 18 with an axis of rotation 17 extending through a door leaf 11 is shown in a sectional view from above with the door leaf 11 open.
  • the revolving door is equipped with a sealing device 10 according to the invention.
  • Fig. 4 shows this arrangement with the door leaf 11 closed and accordingly extended to the ground contact sealing strip 13, as from the Fig. 5 and 6 is recognizable.
  • the sealing device 10 comprises a sealing housing 12, a sealing element in the form of a sealing strip 13 and a mechanism (not shown here) for displacing the sealing strip 13, which cannot be seen in this illustration relative to the sealing housing 12.
  • the mechanism comprises a trigger element 14 when it is acted upon by an external one Due to the internal mechanism, the sealing strip 13 is displaced relative to the sealing housing 12 in the direction of the bottom 15 in this illustration, not to be seen.
  • the trigger element 14 and the transmission element 16 are arranged on the door leaf fold adjacent to the axis of rotation 17 and / or on the door leaf fold.
  • the seal housing 12 is fastened in the region between the axis of rotation and the door leaf surface in the opening direction and the transmission element 16 is fastened to its fastening region 100 by means of two screws between the axis of rotation and the door leaf surface in the closing direction. So that the transmission element 16 does not protrude beyond the door leaf fold, the latter is provided in the lower region of the door leaf 11 with a recess 105 for receiving the transmission element 16.
  • the dimensions of the recess are slightly larger than the dimensions of the transmission element 16, which in the present embodiment has a length in the top view of 80 mm and a width of 15 mm.
  • the trigger element 14 is covered with a transmission element 16.
  • the transmission element 16, which serves as a release aid or release rocker for the release element 14, is made from a strip-shaped piece of spring steel. Due to this choice of material, the triggering element 14 is designed to be resilient in such a way that the triggering element 14 again after the external force has been applied and then removed is returned to its starting position. Likewise, the transmission element 16 is not shown to be resilient, so that this is also returned to its starting position after the external force has been applied and then removed.
  • the transmission element 16 is formed in one piece and is divided into several successive sections, namely a fastening area 100 for attaching the transmission element 16 to the pivot point of the door leaf fold, and an adjoining knee-shaped pressure region 101 pointing in the direction of the door leaf fold for resilient actuation of the door leaf Transmission element 16, an adjoining ramp-shaped run-up surface 102, and a contact area 103 stepped in the door leaf fold direction, which can be brought into contact with the release element 14.
  • the ramp-shaped ramp surface 102 is composed of a sliding section 102a and a curved slope region 102b adjoining the pressure region 101, the fastening region and the ramp-shaped ramp surface 102 including an angle W1 of approximately 156 ° in its sliding section 102a.
  • the ramp-shaped ramp surface 102 includes an angle W2 of approximately 94 ° in its sliding section 102a with the slope section of step 103a of the contact area 103 stepped in the door leaf fold direction.
  • the slope portion of step 103a is shown in FIG Fig. 7 marked with a dashed line.
  • the contact area 103 has a surrounding area 103b which partially engages around the trigger element 14.
  • a stop device 104 which is adjustable in depth in the door leaf folding direction, in the form of an external hexagon screw.
  • the height of the stop device 104 can be adjusted by screwing in or out the hexagon socket screw.

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)

Claims (15)

  1. Porte pivotante munie d'un vantail et d'un dormant de porte, dotée d'un axe de rotation (17) passant au centre du vantail (11) et d'un dispositif d'étanchéité (10), d'un logement de joint (12), d'une baguette d'étanchéité (13) et d'un mécanisme pour déplacer la baguette d'étanchéité (13) par rapport au logement de joint (12), le mécanisme comprenant un élément de déclenchement (14), ce mécanisme sollicité par la force externe repoussant la baguette d'étanchéité (13) par rapport au logement de joint (12), un élément de transfert (16) étant affecté à l'élément de déclenchement (14), l'élément de transfert (16) comportant
    • une zone de fixation (100) pour poser l'élément de transfert sur la feuillure du vantail du côté du point de rotation (16),
    • un bord de pression (101) en forme de coude s'y raccordant, orienté dans le sens de la feuillure du vantail pour l'actionnement amortisseur de l'élément de transfert (16),
    • une surface de roulement en forme de rampe s'y raccordant (102) et
    • une surface de contact étagée en retrait, orientée vers la feuillure du vantail (103), pouvant être amenée en contact avec l'élément de déclenchement (14),
    le logement de joint (12) étant agencé dans la zone entre l'axe de rotation (17) et la surface du vantail dans le sens d'ouverture et l'élément de transfert (16) étant agencé sur sa zone de fixation (100) entre l'axe de rotation (17) et la surface du vantail dans le sens de fermeture,
    caractérisés en ce que
    le vantail dans le dormant de porte (18) est supporté en rotation et en ce que la porte pivotante est conçue de manière à ce que, lors de la fermeture de la porte pivotante, l'élément de transfert (16) entre en contact avec le dormant de porte (18) sur sa surface de roulement en forme de rampe (102), la surface de roulement en forme de rampe (102) glisse le long de la surface de la chambranle (102) lors du processus de fermeture régulier, et transfère la force générée ici sur l'élément de déclenchement (14), lors de l'atteinte du bord de pression de forme coudée orienté dans le sens de la feuillure du vantail (101).
  2. Porte pivotante selon la revendication 1, caractérisée en ce que la surface de roulement en forme de rampe (102) se compose d'une partie coulissante (102a) et d'une plage de pente courbée (102b) adjacente à la zone de pression (101).
  3. Porte pivotante selon la revendication 1 ou 2, caractérisée en ce que la zone de fixation et la surface de roulement en forme de rampe (102), notamment dans leur partie coulissante (102a), comprennent un angle (A1) de 130 à 170 °.
  4. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que la surface de roulement en forme de rampe (102), notamment dans sa partie coulissante (102a) et en ce que la section inclinée du niveau (103a) de la zone de contact étagée en retrait et orientée vers la feuillure du vantail (103), comprennent un angle (A2) d'au moins 90 °, en particulier de 90 à 100°.
  5. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que la surface de contact (103) sur l'extrémité opposée à la zone de fixation (100), comprend une zone enveloppante (103b) qui entoure en partie l'élément de déclenchement (14).
  6. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que l'élément de déclenchement (14) et/ou l'élément de transfert (16) sont conçus de manière tellement élastique qu'après l'application et puis le retrait de la force externe, l'élément de déclenchement (14) et l'élément de transfert (16) sont ramenés à leur position initiale.
  7. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que l'élément de transfert (16) est construit en matériau élastique particulièrement sélectionné en métaux, de préférence en acier, en matières plastiques, en matières plastiques renforcées de fibres ou dans les combinaisons de ces matières, la préférence étant accordée en particulier à l'acier à ressort.
  8. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que l'élément de transfert (16) est conçu en forme de bandes, particulièrement comme ressort à lame.
  9. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que l'élément de déclenchement (14) et l'élément de transfert (16) sont agencés sur la feuillure du vantail adjacente à l'axe de rotation (17) et/ou sur la feuillure du vantail sur laquelle la serrure de la porte est posée.
  10. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que la porte pivotante est conçue de sorte que, lors de la fermeture de la porte, l'élément de transfert (16) entre en contact avec un dispositif d'arrêt (104) fixé dans le chambranle (18) et réglable en hauteur et/ou en profondeur dans le sens de la feuillure du vantail sur sa surface de roulement en forme de rampe (102).
  11. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que la surface de roulement en forme de rampe (102) glisse le long du dispositif d'arrêt (104), lors du processus de fermeture régulier, et transfère la force générée ici sur l'élément de déclenchement (14) lors de l'atteinte du bord de pression de forme coudée (101), orienté dans le sens de la feuillure du vantail.
  12. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que la porte pivotante conçue de sorte que, lors de la fermeture de la porte, l'élément de transfert (16) entre d'abord en contact avec le chambranle (18) sur sa zone enveloppante (103b), particulièrement dans le sens des butées (104), avant que la surface de roulement en forme de rampe (102) ne glisse le long de la surface du chambranle, particulièrement le long du dispositif d'arrêt (104), lors du processus de fermeture régulier.
  13. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que le vantail (11) est muni d'une cavité (105) pour loger l'élément de transfert (16) sur sa feuillure de vantail.
  14. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce qu'un dispositif d'arrêt (104) réglable en hauteur et/ou en profondeur est prévu dans le chambranle (18), particulièrement constitué d'une vis, de préférence encore d'une tête hexagonale extérieure.
  15. Porte pivotante selon l'une des revendications précédentes, caractérisée en ce que le vantail (11) et le chambranle (18) présentent au moins une triple géométrie de sertissage biseauté.
EP18206690.2A 2017-11-29 2018-11-16 Bascule de déclenchement pour un dispositif d'étanchéité d'une porte pivotante Active EP3492684B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202017107248.7U DE202017107248U1 (de) 2017-11-29 2017-11-29 Auslösewippe für eine Dichtungseinrichtung einer Drehtür

Publications (2)

Publication Number Publication Date
EP3492684A1 EP3492684A1 (fr) 2019-06-05
EP3492684B1 true EP3492684B1 (fr) 2020-07-22

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3981942A1 (fr) * 2020-10-07 2022-04-13 Athmer OHG Agencement doté d'un joint d'étanchéité de sol pour une porte, un espace intermédiaire étant situé entre un battant de porte et un cadre, dans lequel s'étend un axe de rotation du battant de porte
EP4242412B1 (fr) * 2022-03-10 2024-05-29 Athmer OHG Joint d'étanchéité doté d'une baguette d'étanchéité mobile à l'aide d'un mécanisme de mise en mouvement, le mécanisme de mise en mouvement étant actionnable au moyen d'un actionneur au moins partiellement pivotant

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FR2082899A5 (fr) * 1970-03-27 1971-12-10 Dumenil Claude
CH627228A5 (en) 1978-02-06 1981-12-31 Jaggi Matthias Planet Automatic door seal for doors without thresholds
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