EP3699385B1 - 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 - Google Patents

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 Download PDF

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Publication number
EP3699385B1
EP3699385B1 EP19216649.4A EP19216649A EP3699385B1 EP 3699385 B1 EP3699385 B1 EP 3699385B1 EP 19216649 A EP19216649 A EP 19216649A EP 3699385 B1 EP3699385 B1 EP 3699385B1
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EP
European Patent Office
Prior art keywords
bearing
shear
scissor
bearing pin
locking element
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
EP19216649.4A
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German (de)
English (en)
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EP3699385A1 (fr
Inventor
Maico Ludwig
Sergej Hartung
Julian Kowski
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
Original Assignee
Athmer OHG
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Publication of EP3699385A1 publication Critical patent/EP3699385A1/fr
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Publication of EP3699385B1 publication Critical patent/EP3699385B1/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 present invention relates to an automatic door seal with at least one holding means, at least one scissor mechanism with two scissor elements and a sealing strip, one scissor element being pivotably connected to the holding means directly or indirectly via a first bearing and the other scissor element being pivotably connected to the holding means via a second bearing Sealing strip is connected, and the scissor elements are pivotally connected to each other via a third bearing.
  • the document DE 60 2004 009 845 T2 and the document CH 465 830 seals are known with lowering mechanisms having first and second scissor elements.
  • One advantage of these seals is that they allow the sealing strip to be lowered parallel to the holding means—usually the so-called outer profile or housing—and without lateral displacement of the sealing strip.
  • seals usually have a minimum width of the holding means of about 12 mm. There are only a few seals that have a smaller width, for example 8 mm. In many applications, however, seals are required that have a smaller width, for example only a width of 8 mm. There is a need for different models of narrow seals.
  • the object of the inventions is to propose automatic seals, in particular those with scissor elements, which have a small width.
  • the bearing pin of the first scissor element is inserted into the hole in the second scissor element from a first side in order to assemble the scissor elements to one another.
  • the end of the bearing pin protrudes from the first section of the hole.
  • the central part of the first of the two scissor elements is preferably located between two ends of the first scissor element.
  • the first or the second bearing is provided at one of these two ends.
  • the locking element projecting from the bearing journal substantially transversely thereto is pushed through the first section of the hole and is no longer located in the first section after assembly. It is expedient if the first section of the hole in the second scissor element has a depth that corresponds to the distance between the cantilevered locking element and the middle part of the first scissor element and that the bearing pin of the first scissor element reaches through the first section of the hole.
  • the first scissor element and the second scissor element are designed in such a way that they can be pivoted towards one another.
  • the projecting locking element is moved by pivoting in relation to the first section of the hole in such a way that it can no longer be pulled back through the first section as long as the first and second scissor elements are not in the position in relation to one another that they were in when the had scissor mechanism.
  • the hole in the second scissor element can have a second section in which a part of the bearing pin and the cantilevered locking element are pivotably arranged.
  • the second section can have a clear cross section which corresponds to the cross section of the bearing journal and of the locking element projecting from the bearing journal plus a recess.
  • the recess can accommodate the projecting locking element when the bearing pin is rotated in the hole, that is to say the first and the second scissor element are rotated in relation to one another.
  • the bearing pin and the projecting locking element can be pivoted between a first end position and a second end position.
  • first end position for example, the cantilevered locking element through the first Section of the hole are pushed through to assemble the scissor elements together.
  • end positions can be defined in various ways.
  • the second section of the hole in the second scissor element can have at least a first boundary surface and a second boundary surface, with the first boundary surface forming a stop for the projecting locking element in the first end position and the second boundary surface forming a stop for the cantilevered locking element forms in the second end position.
  • the second boundary surface can be a boundary surface of the recess.
  • the automatically lowerable door seal according to the invention shown in the figures has a holding means 2 which has a housing 20 .
  • This can be fastened in a groove of a door, for example, by means of fastening brackets 1 . Fastening to an outside of a door is also possible with other fastening means.
  • the housing 20 has itself in one Longitudinally uniform profile.
  • the housing is preferably an aluminum extruded profile.
  • the guide parts 21, 22 and a support member 23 are fixed.
  • the guide parts guide a rod 40 which, together with two scissor mechanisms in the example, form a lowering mechanism.
  • the scissor mechanisms each have a first scissor element 41 and a second scissor element 42 .
  • the sealing strip 5 can be moved from a raised position to a lowered position.
  • the sealing strip 5 is in two parts and includes an inner rail 50 and a sealing profile 51, which can be applied tightly to a surface, for example the floor.
  • the lowering mechanism is coupled to a trigger 3, via which a force required to actuate the seal can be introduced into the lowering mechanism.
  • the trigger 3 of the seal according to the invention is constructed in two parts. It has a head 31 and a coupling element 32 .
  • the relative position of head 31 and coupling element 32 to each other can be changed. This makes it possible to adjust the length of the trigger in the longitudinal direction.
  • a length adjustment of an actuator can be used to adjust the stroke of a seal.
  • the trigger 3 is also designed in two parts. It has a head 31 and a coupling element 32 .
  • the relative position of head 31 and coupling element 32 to each other can be changed. This makes it possible to adjust the length of the trigger in the longitudinal direction.
  • a length setting of a trigger can be used to set the stroke of a seal.
  • the head 31 of the trigger 3 also has a stop surface 310 via which an external force can be introduced into the trigger 3 or the lowering mechanism 4 .
  • the head 31 has a support body 311 on which the stop surface 310 is provided.
  • a guide structure 312 is provided on an upper side of the support body 311 . This is formed by two laterally overhanging webs that are slidably arranged in complementary guide structures of the outer profile.
  • the head has a receptacle 314 which is internally threaded.
  • the coupling element 32 of the trigger 3 has a supporting body, namely the supporting body 320 .
  • This support body 320 carries guide structures 321, which are designed exactly like the guide structure 312 of the head 31.
  • the coupling element 32 has a threaded rod 326 on a side facing the head 31. This threaded rod is flattened and smooth on the side. Only a top and a bottom of the rod are rounded and have portions of the thread pitch of a conventional thread.
  • the threaded rod 326 carries an incomplete thread which is screwed into the socket 314 .
  • a connection structure 325 is provided on the end of the support body 320 opposite the threaded rod 326 and serves to connect the trigger to the lowering mechanism 4 .
  • the guide parts 21, 22 and the support element 23 are molded parts which have an outer contour adapted to the housing 20, so that the guide parts 21, 22 and the support element 23 are inserted into the housing 20 and fastened there can become.
  • the housing 20 has inwardly projecting webs 200, which are engaged behind by complementary connecting structures of the guide parts 21, 22 and the support element 23 as well as by the guide structures 312, 321 of the head 3.
  • First guide parts 21 and second guide parts 22 of the guide parts 21, 22 have a channel through which the rod 40 is passed.
  • This rod is in several parts and has several sections lying one behind the other, which are connected to one another.
  • One of these sections is a sliding part 401, which has a special function for the lowering mechanism 4 and will be described in more detail later.
  • Another portion of the rod 40 is connected to the trigger.
  • This section has a connection structure 49 coupled to the connection structure 325 of the trigger 3 .
  • the support part 23 is provided at the end of the rod 40 . It has a seat into which the end of the rod 40 is inserted.
  • a return spring 44 of the lowering mechanism is arranged on a mandrel 230 in the receptacle. After release of the trigger 3, this return spring 44 causes the seal to transition from the actuated to the non-actuated state.
  • the restoring spring presses on the end of the rod 40 which is arranged in the receptacle of the third guide part 22 .
  • the return spring is a helical compression spring. However, it could also be a spring that has a wave, triangular, sawtooth or similarly curved profile.
  • the rod 40 is coupled to the scissors mechanisms, which are identical and which comprise the first scissors element 41 and the second scissors element 42 .
  • the first scissors element 41 is pivotable on the second via a first bearing L1 Guide part 22 stored.
  • the second scissor element 42 is pivotably connected to an inner profile 50 of the sealing strip 5 in a second bearing L2.
  • the first bearing L1 and the second bearing L2 have pivot axes lying in a plane perpendicular to the longitudinal direction of the seal.
  • the first scissor element 41 and the second scissor element 42 are mounted on one another such that they can be pivoted relative to one another.
  • the first, second and third bearings L1, L2, L3 are pivot bearings.
  • the first scissors member 41 is bifurcated at the end supported in the first bearing L1.
  • the fork legs 413 created by the fork have outwardly protruding bearing pins 410 which are mounted in recesses 220 in the second guide part 22 .
  • the trunnions 410 and the recesses 220 form the first bearing L1.
  • the two fork legs 413 are spaced apart so that the rod 40 can be passed between the two fork legs.
  • the first scissors member 41 has at a central portion 415 another pivot 411 which forms the third bearing L3 together with a hole 421 provided in the second scissors member 42 and into which the pivot 411 is inserted.
  • the hole 421 of the second scissor element has a first section with a circular section and a rectangular section 4210 connected thereto and continuing to the circular section. From the end of the pivot 411 of the first scissor element 41 protrudes a cantilevered locking element 4110, which has the same cross-section as the rectangular area 4210. The pivot 411 can only be inserted into the hole 421 or pulled out of the hole when the locking element 4110 and the rectangular area 4210 are in register.
  • the locking element 4110 and the rectangular area 4210 overlaps in a position of the scissor elements 41, 42 which does not correspond to the position in which the sealing strip 5 is lowered, so that the scissor elements 41, 42 cannot separate from one another when the sealing strip is in the lowered state.
  • the hole 421 in the second scissor member has a second portion in which the cantilever latch member 4110 is located.
  • This second section of the hole 421 has the same clear cross-section as the first section, with the difference that a recess 4211 also belongs to this second section.
  • the locking element 4110 is arranged in this recess 4211 when the sealing strip is lowered.
  • the second section of the hole 421 has a first boundary surface 4212 and a second boundary surface 4213. These define end positions which the locking element 4110 can reach in the second section of the hole 421 when the scissor elements 41, 42 pivot towards one another.
  • the maximum stroke of the sealing strip is limited by the second delimiting surface 4213 .
  • the first scissor element has an end 414 lying beyond the third bearing L3, viewed from the first bearing L1.
  • a section 412 of the first scissor element extends between this end 413 and the third bearing L3.
  • the end 414 is guided in a channel of the inner rail 50, which is delimited by side walls 501, 502 and a web 503 projecting from the side wall 502 in the direction of the first side wall 501.
  • the channel forms a linear bearing in which the end 414 is guided.
  • the section 412 has a slot on its side facing the rod 40 which is approximately as wide as the rod 40. In the non-actuated state of the seal, the rod 40 engages in the slot.
  • the position of the first scissor element is determined by the engagement of the rod 50 in the Slot and held in particular by the guide in the channel in the transverse direction.
  • the second bearing L2 in which the second scissor element 42 and the inner rail 50 are mounted together, is formed by a bearing journal 420 and a channel which extends through the floor 500, the side walls 501, 502 and from the side wall 502 towards the first Side wall 501 projecting web 503 is formed.
  • the bearing pin 420 engages behind the web 503 .
  • the second scissor element 42 has an end 423 lying beyond the third bearing L3 as viewed from the second bearing L2. This end 423 is connected to the rod 40 via a fourth bearing L4.
  • the fourth bearing L4 is a bearing with two degrees of freedom, which allows rotation and translation of the end of the second scissor element 42 with respect to the rod 40 .
  • the second scissor element In the transverse direction, the second scissor element is not displaceable in either the second bearing L2 or the fourth bearing L4. As a result, the second scissor element 42 cannot be displaced in the transverse direction, if at all.
  • the end of the second scissor element 42 is prevented from shifting relative to the rod 40 by an overload spring 43, which pulls the end 423 of the second scissor element 42 to an edge of a recess 4011 in the displacement part 401, specifically to an edge of the recess 4011 on the the side facing away from the trigger 3.
  • the spring 43 is suspended at the end 423 of the second scissor element 42 and suspended from a hook 4010 of the rod 40 at the end of the recess 4011 facing away from the trigger 3 . Only in special cases solve the end 423 of the second scissor element and the edge of the recess 4011 against the tension of the spring 43 from each other.
  • the end 423 of the second scissor element 42 is displaced in relation to the first bearing L1, which is firmly connected to the housing 20 via the second guide part 22.
  • the second bearing L2 which connects the second scissor element 42 to the inner profile 50, is lowered linearly downwards in the third bearing L3 due to the connection of the first and the second scissor element 41, 42.
  • the sealing strip 5 is thereby lowered transversely to the longitudinal direction of the seal and pressed against the floor, so that the sealing profile 51 bears against the floor. Due to the fact that two identical scissor mechanisms are provided and these are actuated synchronously by the rod 40, the sealing strip 5 is lowered parallel to the housing 2.
  • the sealing strip 5 is now on the ground, it cannot be moved further down.
  • the second bearing L2 can then also not be moved any further downwards, as a result of which the end 423 of the second scissor element is prevented from moving further with the rod 40. If, however, further pressure is then exerted on the rod 40 via the trigger 3 and this pressure exceeds the force of the overload spring 43, the end 423 of the second scissor element 42 detaches from the edge of the recess 4011 and the end 423 moves in the recess 4011 , since the rod 40 is displaced with respect to the end 423. This interaction of the recess 4011, the end 423 of the second scissor element 42 and the overload spring 43 prevents the lowering mechanism 4 from being overloaded, which could lead to damage to the seal.
  • Structures in the manner of segments of a circle are provided at the second end 423 of the second scissor element. These rest on the inside of a web 201 of the housing 20 or are arranged at only a small distance from the inside of this web 201 and move when the seal is actuated, possibly at a distance, along the inside of the housing 20.

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 (7)

  1. Joint de porte automatique avec au moins un moyen de retenue (2), au moins un mécanisme articulé avec deux éléments articulés (41, 42) et une bande d'étanchéité (5),
    dans lequel l'un des éléments articulés (41) est relié de façon pivotante indirectement ou directement au moyen de retenue (2) par l'intermédiaire d'un premier palier (L1) et l'autre élément articulé (42) est relié de façon pivotante à la bande d'étanchéité (5) par l'intermédiaire d'un deuxième palier (L2), et les éléments articulés (41, 42) sont reliés de façon pivotante l'un à l'autre par l'intermédiaire d'un troisième palier (L3),
    caractérisé en ce qu'
    un premier des deux éléments articulés (41, 42) comprend un tourillon de palier (411) faisant saillie d'une partie centrale du premier élément articulé (41) et un élément de verrouillage (4110) faisant saillie du tourillon (411), dans lequel une distance (A) est entre l'élément de verrouillage en saillie (4110) et la partie centrale (415),
    un second des deux éléments articulés (42) présente un trou (421) avec une première section qui a une section transversale libre qui correspond à la section transversale du tourillon (411) et de l'élément de verrouillage (4110) faisant saillie du tourillon (411), et
    le troisième palier (L3) comprend le tourillon (411) et le trou (421).
  2. Joint de porte selon la revendication 1, caractérisé en ce que la première section du trou (421) dans le second élément articulé (42) a une profondeur qui correspond à la distance (A) entre l'élément de verrouillage (4110) en saillie et la partie centrale (415) du premier élément articulé (41) et en ce que tourillon de palier (411) du premier élément articulé (41) passe à travers la première section du trou (421).
  3. Joint de porte selon la revendication 1 ou 2, caractérisé en ce que le trou (421) dans le second élément articulé (42) a une seconde section dans laquelle une partie tourillon de palier (411) et l'élément de verrouillage (4110) en saillie sont agencés de manière pivotante.
  4. Joint de porte selon la revendication 3, caractérisé en ce que la seconde section a une section transversale libre qui correspond à la section transversale du tourillon (411) et de l'élément de verrouillage (4110) faisant saillie du tourillon (411) en plus d'un évidement (4211),
  5. Joint de porte selon la revendication 3 ou 4, caractérisé en ce que le tourillon (411) et l'élément de verrouillage (4110) en saillie peuvent pivoter entre une première position d'extrémité et une seconde position d'extrémité.
  6. Joint de porte selon la revendication 5, caractérisé en ce que la seconde section du trou (421) dans le second élément articulé (42) présente au moins une première surface limite (4212) et une seconde surface limite (4213), dans lequel la première surface limite (4212) forme une butée pour l'élément de verrouillage (4110) en saillie dans la première position d'extrémité et la seconde surface limite (4213) forme une butée pour l'élément de verrouillage (4110) en saillie dans la seconde position d'extrémité.
  7. Joint de porte selon la revendication 6, caractérisé en ce que la seconde surface limite (4213) est une surface limite de l'évidement (4211).
EP19216649.4A 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 Active EP3699385B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP19158350 2019-02-20
EP19166220.4A 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

Publications (2)

Publication Number Publication Date
EP3699385A1 EP3699385A1 (fr) 2020-08-26
EP3699385B1 true EP3699385B1 (fr) 2022-02-09

Family

ID=65529424

Family Applications (5)

Application Number Title Priority Date Filing Date
EP22181870.1A Active EP4105432B1 (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
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 (2)

Application Number Title Priority Date Filing Date
EP22181870.1A Active EP4105432B1 (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
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

Family Applications After (2)

Application Number Title Priority Date Filing Date
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

Country Status (2)

Country Link
EP (5) EP4105432B1 (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
EP4001577B1 (fr) * 2020-11-24 2024-11-06 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 Fa. F. Athmer, 59757 Arnsberg Türdichtungsvorrichtung
EP3284897B1 (fr) 2016-08-18 2022-03-09 Athmer oHG Joint d'étancheite comprenant une baguette d'etancheite mobile et un mecanisme de sur-course et/ou de rappel
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
EP3699386A1 (fr) 2020-08-26
EP3868994B1 (fr) 2023-09-27
EP4105432A1 (fr) 2022-12-21
EP4105432B1 (fr) 2025-05-07
EP3868994A1 (fr) 2021-08-25
EP3699386B1 (fr) 2022-01-05
EP3699385A1 (fr) 2020-08-26
EP3699384A1 (fr) 2020-08-26
EP3699384B1 (fr) 2022-08-17

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