EP3868994B1 - Joint d'étanchéité pourvu de modules comportant un mécanisme d'abaissement - Google Patents

Joint d'étanchéité pourvu de modules comportant un mécanisme d'abaissement Download PDF

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Publication number
EP3868994B1
EP3868994B1 EP20168063.4A EP20168063A EP3868994B1 EP 3868994 B1 EP3868994 B1 EP 3868994B1 EP 20168063 A EP20168063 A EP 20168063A EP 3868994 B1 EP3868994 B1 EP 3868994B1
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EP
European Patent Office
Prior art keywords
module
seal
spring
modules
seal according
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Application number
EP20168063.4A
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German (de)
English (en)
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EP3868994A1 (fr
Inventor
Maico Ludwig
Julian Kowski
Sergej Hartung
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.)
Athmer OHG
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Athmer OHG
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Publication of EP3868994A1 publication Critical patent/EP3868994A1/fr
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Classifications

    • 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e.g. draught sealings additionally used for bolting, e.g. by spring force or with operating lever automatically withdrawn when the wing is opened, e.g. by means of magnetic attraction, a pin or an inclined surface, especially for sills
    • E06B7/215Sealing 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 with sealing strip being moved to a retracted position by elastic means, e.g. springs

Definitions

  • the use of a single spring to move the sealing strip from the sealing position to the release position in a modular seal has the disadvantage that the module in which the spring is provided is designed differently than the others or the other module. Although some of the same components are used in the modules with and without a return spring, not all components are the same. The advantage of identical modules with the same components is then not achieved.
  • Another disadvantage of using only one spring is that in order to move the sealing strip into the release position, it must move the entire mass of the sealing strip and parts of the movement mechanism and push rods. The force must also be sufficient to overcome frictional forces if the weatherstripping is to move. The spring must be sufficiently strong for this. In order for the force to be transmitted from the spring to the sealing strip, the components that are directly coupled to the spring and absorb the force provided by the spring must also have sufficient strength. The strength of the components and the strength of the spring make it difficult to make the seal particularly narrow.
  • the invention was therefore based on the object of improving a seal of the type mentioned in such a way that a particularly narrow seal is possible in which as many of the same components as possible can be used.
  • each module has a spring which is directly or indirectly coupled to the push rod and/or the movement mechanism and, when the trigger is relieved, a force is transferred from the spring via the push rods and the movement mechanisms or the movement mechanisms into the sealing strip is transferred, through which the sealing strip is moved from the sealing position to the release position.
  • each module In a seal according to the invention, a return spring is provided in each module.
  • Each of these springs only has to apply a portion of the force required to move the sealing strip from the sealing position to the release position.
  • the force of the springs together must be sufficient to move the sealing strip. Therefore, each of the springs can be made weaker than in a seal that only has a single return spring.
  • the components transmitting the force from the springs to the sealing strip can be designed so that they have less strength, since none of these components has to transmit the entire force for moving the sealing strip into the release position. Because each module has a spring for returning the sealing strip to the release position, more components are provided overall than if only one strong spring were used. Because the modules are now identical and the same components are used in all modules, material management and assembly are so simplified that the disadvantage of using more components is more than compensated for.
  • the seal according to the invention can be a floor seal, in particular an automatic floor seal, which is attached to the lower end of a door leaf and can seal a gap between the door leaf and the floor.
  • the seal could also be attached to the upper end of a door and seal a gap between the door leaf and a lintel, a crossbar of a door frame or a ceiling.
  • a first end of the module's spring can be connected to the module's push rod and a second end of the module's spring be connected to the module carrier.
  • the spring can be a tension spring, in particular a helical tension spring. It is also possible for a compression spring, in particular a helical compression spring, to be used. Compared to a tension spring, a compression spring has the disadvantage that it tends to deflect laterally when loaded. Due to the lateral deflection, the compression spring could come into contact with a housing of the seal and rub against the housing when it moves. This can not only lead to noise, but also wear and tear on the spring, which can cause it to fail.
  • each module may be a scissor mechanism having a first scissor element and a second scissor element connected to one another via a pivot bearing, a first end of the first scissor element being connected to the module carrier of the module, a first end of the second scissor element being connected to the push rod of the Module and a second end of the second scissor element is rotatably connected to the sealing strip.
  • a seal according to the invention can have a housing in and/or to which the module carriers can be attached.
  • a seal according to the invention can have one or more push rods that do not belong to a module and which are arranged between two modules and connect the push rods of these two modules to one another.
  • Such push rods make it possible for the modules to have a distance from one another that is so large that the push rods of the modules are not directly connected to one another.
  • a seal according to the invention can have at least one guide element.
  • the guide element can be fastened in the housing between the modules and/or between the trigger and one of the modules, the guide elements having a guide channel in which the ends of two of the push rods are guided.
  • the trigger can have at least two components, with the first and second components being connected to one another via a screw connection.
  • the length of the trigger can be adjusted using the screw connection.
  • the second component can have a threaded pin that has a T-shaped cross section.
  • the first component can have a threaded hole into which the threaded pin is screwed.
  • the first component of a trigger according to the invention can have a stop surface with which the stop can strike a door frame.
  • the second component can be connected to one of the push rods via a snap connection.
  • the snap connection can be subjected to pressure. It can withstand tension up to a certain degree, although the tensile strength only needs to be so great that the trigger does not easily fall away from the rest of the seal.
  • the snap connection can be guided in the guide element or in one of the guide elements.
  • the seal according to the invention shown in the figures is a seal that can be used as an automatic floor seal in wing doors.
  • the seal can also be used on other doors, for example on sliding doors, or at other locations on a door, for example at an upper end of the door. This may require changes, but these do not affect the properties that distinguish the seal from known ones.
  • the seal has a housing 1 and a sealing strip 2, 3.
  • the sealing strip 2, 3 has a holding rail 2 and a sealing profile 3 made of an elastomer.
  • the sealing strip 2, 3 is connected to the housing 1 via a movement mechanism 4.
  • the movement mechanism is connected via push rods 5, 5a to a trigger 6, which projects beyond the housing 1 on one end face. By pressing the trigger 6, the sealing strip 2, 3 can be moved from a release position into a sealing position. If the trigger 6 is relieved, the sealing strip is moved into the release position by springs 7 and held in this release position.
  • the movement mechanisms are provided in modules M of the seal.
  • the seal shown has two modules M. Especially with longer seals, more than two modules can be provided.
  • each of the modules has a module carrier 8, one of the push rods 5 and one of the springs 7.
  • the module carrier 8 is fastened in the housing 1. In the attached state it cannot be moved relative to the housing 1.
  • the movement mechanism 4 of each module M is a scissor mechanism with a first scissor element 41 and a second scissor element 42.
  • the two shear elements are connected to one another via a pivot bearing L.
  • a first end of the first scissor element 41 is rotatably connected to the module carrier 8 of each module M.
  • the first scissor element has two outwardly directed pivot pins which engage in recesses in the module carrier 8.
  • a second end of the first scissor element 41 is rotatably and displaceably mounted in or on the holding rail 2 of the sealing strip 2, 3.
  • a first end of the second scissor element 42 is rotatably connected to the push rod 5 of the module M.
  • an axis of the second scissor element is accommodated in a recess in the push rod 5.
  • a second end of the first scissor element 42 is rotatably connected to the holding rail 2 of the sealing strip 2, 3.
  • a pin is provided at the second end, which engages in a channel of the holding rail 2.
  • the module carrier 8 has a guide element 81, which forms a guide channel in which the push rod 5 is guided, so that this can be moved linearly relative to the module carrier 8 and the housing 1.
  • the push rod 5 is displaced in such a way that the first end of the second scissor element 42 is moved towards the first end of the first scissor element, the second ends of the scissor elements 41, 42 are moved downwards, whereby the sealing strip 2, 3 is lowered downwards becomes.
  • the push rods 5 of the modules M are coupled to one another via the push rod 5a.
  • the coupling of the push rods 5 of the modules M with the push rod 5a takes place in guide elements 10 which are fastened in the housing. These have a guide channel in which the ends of the push rods 5 or the push rod 5a are guided.
  • the push rods 5, 5a butt against one another in the guide channel.
  • the push rods 5, 5a are not attached to each other. Therefore, only a compressive force but not a tensile force can be transmitted between the push rods 5, 5a.
  • the guide elements 10 are so long that the joint between the push rods 5, 5a remains in the guide channel even when the push rods 5, 5a are moved when the seal is actuated.
  • the push rod of the module 5, which is arranged adjacent to the trigger 6, is connected to the trigger on the trigger side.
  • This connection is also provided in a guide element 10.
  • the connection is a snap connection that can be subjected to compression and, within certain limits, tension. Because the connection can also be subjected to tension within certain limits, it is possible to transmit a compressive force exerted on the trigger 6 for actuating the seal to the push rods 5, 5a and the movement mechanisms 4. At the same time, the trigger 6 is held in the housing 1 by the snap connection and cannot fall off from the rest of the seal. However, if a pulling force exerted on the trigger 6 exceeds a certain limit, the snap connection is released and the trigger 6 can be removed from the housing 1. This may be necessary if the length of the trigger 6 needs to be adjusted.
  • the trigger 6 is composed of two components 61, 62.
  • the first component 61 has a stop surface at a first end lying outside the housing 1, with which the trigger 6 can hit a door frame when the door is closed. As a result, a pressure force is transmitted to the trigger 6, which leads to the displacement of the sealing strip 2, 3 from the release position into the sealing position.
  • the first component 61 of the trigger 6 has a threaded hole.
  • the second component 62 of the trigger 6 has a threaded pin at an end facing the first component 61.
  • This threaded pin has a T-shaped cross-sectional profile. Only the outer sides of the pin lie on a circular line and have threads that interact with the thread of the threaded hole in the first component 61.
  • the length of the trigger 6 can be determined by selecting the depth of screwing the threaded pin into the threaded hole.
  • the push rod 5 of each module M has a recess in which the spring 7 is accommodated.
  • This spring 7 has a first end which is connected to the push rod 5 of the module M.
  • a second end of the spring 7 of the module M is connected to the module carrier 8 of the module M.
  • the attachment point of the spring 7 on the module carrier 8 lies in the direction of movement of the push rod 5 when actuated by pressure on the trigger 6 in front of the attachment point of the spring 7 on the push rod 5.
  • This causes the spring 7 to open when the seal is actuated by pressure the Trigger extended and therefore cocked.
  • the spring 7 is a tensile stress.
  • the sealing strip is moved from the release position into the sealing position by actuating the seal by pressing the trigger 6, the sealing strip 2, 3 being displaced parallel to the housing 1 in the direction out of the housing 1.
  • the springs 7 can relax and contract.
  • the movement mechanisms 4 are actuated in the opposite direction and the sealing strip 2, 3 is raised and held in the raised position by the springs 7.

Landscapes

  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)
  • Bearings For Parts Moving Linearly (AREA)
  • Slide Fasteners (AREA)

Claims (12)

  1. Joint d'étanchéité
    - avec au moins deux modules (M), qui présentent respectivement un support de module (8), une tige de poussée (5) et un mécanisme de mouvement (4),
    - dans lequel la tige de poussée (5) de chacun des modules (M) est couplée au mécanisme de mouvement (4) du module (M) et le mécanisme de mouvement (4) peut être actionné au moyen de la tige de poussée (5),
    - avec une bande d'étanchéité (2, 3) qui est reliée aux mécanismes de mouvement (4) et qui peut être déplacée par rapport au support de module (8) entre une position d'étanchéité et une position de libération par un actionnement des mécanismes de mouvement (4),
    - avec un déclencheur (6) qui est couplé directement ou indirectement aux tiges de poussée (5) et lors de l'actionnement duquel une force est transmise du déclencheur (6) au moyen des tiges de poussée (5) et des mécanismes de mouvement (4) dans la bande d'étanchéité (2, 3), par laquelle la bande d'étanchéité (2, 3) est déplacée de la position de libération à la position d'étanchéité,
    caractérisé en ce que
    chaque module (M) présente un ressort (8) qui est couplé directement ou indirectement à la tige de poussée (5) et/ou au mécanisme de mouvement (4) et, lorsque le déclencheur (6) est relâché, une force est transmise par le ressort (7) soit au moyen
    des tiges de poussée (5) et des mécanismes de mouvement (4), soit au moyen des mécanismes de mouvement (4) dans la bande d'étanchéité (2, 3), grâce à laquelle la bande d'étanchéité (2, 3) est déplacée de la position d'étanchéité à la position de libération.
  2. Joint d'étanchéité selon la revendication 1, caractérisé en ce que dans chaque module (M), une première extrémité du ressort (7) du module (M) est reliée à la tige de poussée (5) du module (M) et une seconde extrémité du ressort (7) du module (M) est reliée au support de module (8).
  3. Joint d'étanchéité selon la revendication 1 ou 2, caractérisé en ce que le ressort (7) est un ressort de traction, en particulier un ressort de traction hélicoïdal.
  4. Joint d'étanchéité selon l'une quelconque des revendications 1 à 3, caractérisé en ce que le mécanisme de déplacement (4) de chaque module (M) est un mécanisme à ciseaux qui présente un premier élément de ciseaux (41) et un second élément de ciseaux (42) reliés entre eux par un palier de rotation, dans lequel une première extrémité du premier élément de ciseaux (41) est reliée de manière rotative au support de module (8) du module (M), une première extrémité du second élément de ciseaux (42) est reliée de manière rotative à la tige de poussée (5) du module (M) et une seconde extrémité du second élément de ciseaux (42) est reliée de manière rotative à la bande d'étanchéité (2, 3).
  5. Joint d'étanchéité selon l'une quelconque des revendications 1 à 4, caractérisé en ce que le joint d'étanchéité présente un boîtier (1) dans et/ou sur lequel sont fixés les supports de module (8).
  6. Joint d'étanchéité selon la revendication 5, caractérisé en ce que le joint d'étanchéité présente une ou plusieurs tiges de poussées (5a) qui n'appartiennent à aucun module (M) et qui sont agencées entre deux modules (M) et relient entre elles les tiges de poussées (5) desdits deux modules (M).
  7. Joint d'étanchéité selon la revendication 4 ou 5, caractérisé en ce que le joint d'étanchéité présente des éléments de guidage (10) qui sont fixés entre les modules (M) et/ou entre le déclencheur (6) et l'un des modules (M) dans le boîtier (1), dans lequel les éléments de guidage (10) présentent un canal de guidage dans lequel les extrémités de deux des tiges de poussée (5, 5a) sont guidées.
  8. Joint d'étanchéité selon l'une quelconque des revendications 1 à 7, caractérisé en ce que le déclencheur (6) présente au moins deux composants (61, 62), dans lequel le premier et le second composant (61, 62) sont reliés l'un à l'autre par un assemblage vissé.
  9. Joint d'étanchéité selon la revendication 8, caractérisé en ce que le second composant (62) présente un tourillon fileté qui présente une section transversale en forme de T, et le premier composant (61) présente un trou fileté dans lequel le tourillon fileté est vissé.
  10. Joint d'étanchéité selon la revendication 8 ou 9, caractérisé en ce que le premier composant (61) présente une surface de butée avec laquelle la butée peut buter contre un cadre de porte.
  11. Joint d'étanchéité selon l'une quelconque des revendications 8 à 10, caractérisé en ce que le second composant (62) est relié à l'une des tiges de poussée (5) par un assemblage par encliquetage.
  12. Joint d'étanchéité selon la revendication 7 et la revendication 11, caractérisé en ce que l'assemblage par encliquetage est guidé dans l'élément de guidage (10) ou dans l'un des éléments de guidage (10).
EP20168063.4A 2019-02-20 2020-04-03 Joint d'étanchéité pourvu de modules comportant un mécanisme d'abaissement Active EP3868994B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP19158350 2019-02-20
EP20158446.3A EP3699386B1 (fr) 2019-02-20 2020-02-20 Joint automatique d'étanchéité de porte doté un moyen pour guider une tige de pousser et methode pour positioner ladite tige de pousser dans un bôtier pour ledit joint d'étanchéité

Publications (2)

Publication Number Publication Date
EP3868994A1 EP3868994A1 (fr) 2021-08-25
EP3868994B1 true EP3868994B1 (fr) 2023-09-27

Family

ID=65529424

Family Applications (5)

Application Number Title Priority Date Filing Date
EP22181870.1A Pending EP4105432A1 (fr) 2019-02-20 2019-03-29 Joint automatique d'étanchéité doté d'un élément de guidage pour guider une tige de poussée et procédé pour positionner ledit élément de guidage dans un boîtier du joint
EP19166220.4A Active EP3699384B1 (fr) 2019-02-20 2019-03-29 Joint d'étanchéité doté d'une bande d'étanchéité pouvant être abaissée au moyen d'un mécanisme d'abaissement actionnable à l'aide d'un déclancheur
EP19216649.4A Active EP3699385B1 (fr) 2019-02-20 2019-12-16 Joint automatique d'étanchéité de porte doté d'au moins un moyen de maintien, d'au moins un mécanisme de ciseaux pourvu de deux éléments de ciseaux et d'une bande d'étanchéité
EP20158446.3A Active EP3699386B1 (fr) 2019-02-20 2020-02-20 Joint automatique d'étanchéité de porte doté un moyen pour guider une tige de pousser et methode pour positioner ladite tige de pousser dans un bôtier pour ledit joint d'étanchéité
EP20168063.4A Active EP3868994B1 (fr) 2019-02-20 2020-04-03 Joint d'étanchéité pourvu de modules comportant un mécanisme d'abaissement

Family Applications Before (4)

Application Number Title Priority Date Filing Date
EP22181870.1A Pending EP4105432A1 (fr) 2019-02-20 2019-03-29 Joint automatique d'étanchéité doté d'un élément de guidage pour guider une tige de poussée et procédé pour positionner ledit élément de guidage dans un boîtier du joint
EP19166220.4A Active EP3699384B1 (fr) 2019-02-20 2019-03-29 Joint d'étanchéité doté d'une bande d'étanchéité pouvant être abaissée au moyen d'un mécanisme d'abaissement actionnable à l'aide d'un déclancheur
EP19216649.4A Active EP3699385B1 (fr) 2019-02-20 2019-12-16 Joint automatique d'étanchéité de porte doté d'au moins un moyen de maintien, d'au moins un mécanisme de ciseaux pourvu de deux éléments de ciseaux et d'une bande d'étanchéité
EP20158446.3A Active EP3699386B1 (fr) 2019-02-20 2020-02-20 Joint automatique d'étanchéité de porte doté un moyen pour guider une tige de pousser et methode pour positioner ladite tige de pousser dans un bôtier pour ledit joint d'étanchéité

Country Status (2)

Country Link
EP (5) EP4105432A1 (fr)
DK (1) DK3699384T3 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CZ2020558A3 (cs) 2020-10-13 2022-04-27 RenĂ© Göndör Sestava pohyblivé těsnicí lišty dveřního křídla a dveřní křídlo s touto sestavou
EP4001577A1 (fr) * 2020-11-24 2022-05-25 Athmer OHG Joint d'étanchéité automatique doté d'un ressort de surcharge en élastomère

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CH465830A (de) 1967-10-03 1968-11-30 Arquint Joseph Türabdichtung gegenüber einem schwellenlosen Boden
AUPN527795A0 (en) * 1995-09-06 1995-09-28 Raven Products Pty. Ltd. Door dropseal
KR200183456Y1 (ko) * 1999-12-22 2000-05-15 이강호 문턱제거형 도어의 기밀장치
IT1314655B1 (it) * 2000-03-10 2002-12-31 Aldo Comaglio Dispositivo parafreddo perfezionato per porte
NL1022757C2 (nl) 2003-02-21 2004-08-24 Elton Bv Ind & Handel Afdichtinrichting voor een deur, deur voorzien van een dergelijke afdichtinrichting, alsmede bewegingsmodule voorzien van een bewegingsmechanisme voor een dergelijke afdichtinrichting.
DE20306091U1 (de) * 2003-04-15 2003-07-03 Athmer Fa F Türdichtungsvorrichtung
PL3284897T3 (pl) 2016-08-18 2022-08-01 Athmer Ohg USZCZELKA Z DAJĄCĄ SlĘ PRZEMIESZCZAĆ LISTWĄ USZCZELNIAJĄCĄ I Z MECHANIZMEM PRZYWRACANIA l/ALBO NADMIERNEGO SKOKU
DE202016105669U1 (de) 2016-10-11 2018-01-12 Athmer Ohg Dichtung mit einem geführten, einstellbaren Auslöser

Also Published As

Publication number Publication date
DK3699384T3 (da) 2022-10-24
EP3699384A1 (fr) 2020-08-26
EP3699386A1 (fr) 2020-08-26
EP3699384B1 (fr) 2022-08-17
EP4105432A1 (fr) 2022-12-21
EP3868994A1 (fr) 2021-08-25
EP3699385B1 (fr) 2022-02-09
EP3699386B1 (fr) 2022-01-05
EP3699385A1 (fr) 2020-08-26

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