EP3323972B1 - Pièce d'assemblage de seuil et son utilisation - Google Patents

Pièce d'assemblage de seuil et son utilisation Download PDF

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Publication number
EP3323972B1
EP3323972B1 EP17202000.0A EP17202000A EP3323972B1 EP 3323972 B1 EP3323972 B1 EP 3323972B1 EP 17202000 A EP17202000 A EP 17202000A EP 3323972 B1 EP3323972 B1 EP 3323972B1
Authority
EP
European Patent Office
Prior art keywords
sleeper
holder
connector
hollow chamber
threshold
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
EP17202000.0A
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German (de)
English (en)
Other versions
EP3323972A1 (fr
Inventor
Alexander Kast
Bernd Mutter
Dennis Weigel
Norbert Wenz
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.)
Profine GmbH
Original Assignee
Profine GmbH
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Filing date
Publication date
Application filed by Profine GmbH filed Critical Profine GmbH
Publication of EP3323972A1 publication Critical patent/EP3323972A1/fr
Application granted granted Critical
Publication of EP3323972B1 publication Critical patent/EP3323972B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/96Corner joints or edge joints for windows, doors, or the like frames or wings
    • E06B3/9632Corner joints or edge joints for windows, doors, or the like frames or wings between a jamb and the threshold or sill of window or door frames
    • 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
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/96Corner joints or edge joints for windows, doors, or the like frames or wings
    • E06B3/964Corner joints or edge joints for windows, doors, or the like frames or wings using separate connection pieces, e.g. T-connection pieces
    • E06B3/9642Butt type joints with at least one frame member cut off square; T-shape joints

Definitions

  • the invention relates to a multi-part sleeper connector for connecting a hollow chamber profile to the top of a sleeper with a sleeper holder and a filler core that can be inserted into a hollow chamber of the hollow chamber profile, and to a system with a hollow chamber profile, sleeper and multi-part sleeper connector.
  • Threshold connectors are used to connect a hollow chamber profile, in particular a post or frame profile with an approximately T, L or Z-shaped cross section, to a threshold profile, the threshold profile not having a flat surface.
  • two different methods are used in the prior art for connecting hollow chamber profiles with such sleepers: in the first method, the end face of the hollow chamber profile is milled in such a way that it corresponds exactly to the surface contour of the threshold profile.
  • the end face of the hollow chamber profile is generally cut to length and connected to the threshold profile using a sleeper connector, the sleeper connector compensating for the uneven surface contour of the sleeper, at least in partial areas.
  • the invention relates to a system according to the second method.
  • the end face of the hollow chamber profile usually has to be sealed against the top of the sleeper connector.
  • permanently elastic seals are often used, which, in order to achieve the desired sealing effect, have to be compressed at least a few tenths of a millimeter when the sleeper connector is installed.
  • a mechanical connector for connecting a hollow chamber profile to a frame in which the connector consists in one piece of a base body and a filling core which projects vertically from it and can be inserted into a hollow chamber of the hollow chamber profile. Due to the special arrangement of the fastening elements between the sleeper connector and the frame profile, sealing in this area is not required.
  • From the DE 197 34 876 A1 is a connecting element for connecting a hollow chamber profile with a butting profile part in door or window construction with a plug-in holding element into the hollow profile, in which a spreading element is arranged in the holding element, which is displaceable or rotatable such that surfaces of the holding element against the Hollow chamber profile can be pressed.
  • a connecting element for connecting a hollow chamber profile with a butting profile part in door or window construction with a plug-in holding element into the hollow profile, in which a spreading element is arranged in the holding element, which is displaceable or rotatable such that surfaces of the holding element against the Hollow chamber profile can be pressed.
  • a generic multi-part sleeper connector with a base body (sleeper holder) and a separate filling core that can be inserted into a hollow chamber of the hollow chamber profile is known.
  • the filling core must first be positioned exactly in the hollow chamber of the hollow chamber profile and screwed there to the hollow chamber profile, in order to then achieve a sufficient contact force between the end face of the hollow chamber profile and the top by at least one screw connection protruding through the threshold and the sleeper holder into the filling core to enable the threshold holder.
  • This exact positioning of the filling core in the hollow chamber of the hollow chamber profile when screwing is, however, complex and, if carried out incorrectly, leads to the connection being unsealed.
  • threshold connector and threshold holder are often used interchangeably.
  • the basic body of a multi-part sleeper connector is referred to as a sleeper holder which, when used as intended, rests with its underside on the top of the sleeper and with its top against the end face of the hollow chamber profile.
  • the combination of threshold holder and the filler core which can be inserted into a hollow chamber of the hollow chamber profile is referred to as a threshold connector.
  • the invention achieves the above-mentioned object by a sleeper connector according to claim 1, preferably in conjunction with one or more of the features of dependent claims 2-6, or by a system according to claim 7 and a method according to claim 8.
  • the threshold holder and filling core are flexible, but spaced apart, before final assembly.
  • the distance between the end face of the filling core facing the sleeper holder to the top of the sleeper holder is a few tenths to a few millimeters, preferably 0.2 to 6 mm.
  • this flexible but spaced attachment of the filling core to the sleeper holder allows without additional measures an exact positioning of the filling core, so that when the connection is subsequently screwed on, the end face of the hollow chamber profile can be pressed together with the sleeper holder or a seal arranged between them. Due to the flexible but spaced attachment of the filling core to the sleeper holder according to the invention, the actual assembly is made considerably easier and the sealing function between the end face of the hollow chamber profile and the sleeper holder is ensured.
  • the spaced-apart, flexible fastening of the filling core to the sleeper holder is effected by elastic elements, preferably spring-elastic elements such as resilient tongues, webs or the like, in connection with latching elements or the like.
  • elastic elements preferably spring-elastic elements such as resilient tongues, webs or the like, in connection with latching elements or the like.
  • fixed stops for example small cams, webs or the like, can also be used which have a predetermined breaking point, tear off under a defined load and thus bring about the necessary flexibility.
  • the sleeper holder has a seal on its upper side facing the filling core and thus the end face of the hollow chamber profile, which is compressed during final assembly or when the connection is subsequently tightened.
  • This seal can be a flat seal, for example made of foam rubber, which at least partially covers the outer contour of the end face of the hollow chamber profile during final assembly.
  • This seal can lie loosely on the top of the sleeper holder or, for example, glued to the top of the sleeper holder, connected in a force-fitting, material-locking or positive-locking manner or mechanically fastened.
  • the threshold holder can also have a completely or partially circumferential linear seal, for example made of thermoplastic elastomer (TPE), foam rubber or another foam, the linear seal, for example, with the top of the threshold holder glued, non-positively, materially or positively connected or mechanically attached and which at least partially covers the outer contour of the end face of the hollow chamber profile during final assembly.
  • TPE thermoplastic elastomer
  • the sleeper holder has a full or partial surface seal on its underside facing the sleeper, which seal can consist, for example, of foam rubber.
  • the underside of the sleeper holder can also have a completely or partially circumferential linear seal, for example made of thermoplastic elastomer (TPE), foam rubber or another foam, the linear seal being glued to the underside of the sleeper holder, for example, non-positively, materially or positively connected or mechanically attached.
  • TPE thermoplastic elastomer
  • the filling core is preferably made of plastic, particularly preferably by injection molding. This makes it possible in a particularly efficient manner to provide spring-elastic elements, in particular one or more spring tongues, on the underside of the filler core facing the sleeper holder. Corresponding resilient elements can alternatively also be provided on the top of the sleeper holder.
  • the threshold holder is preferably made of plastic, particularly preferably by injection molding. This enables locking elements and guide pins or the like in a particularly rational manner. provided.
  • the attachment between the sleeper holder and the filling core is made by means of at least one clip connection, this can consist, for example, of one or more latching hooks on the top of the sleeper holder and corresponding undercut webs on the underside of the filling core Filling core engage the locking hooks behind the webs on the top of the sleeper holder.
  • the length of the latching hook (s) is advantageously chosen so that the spring tongues or the like do not or only little load and thus not or at least not fully pressed in, so that a desired elastically flexible but spaced fastening of the filling core to the sleeper holder is achieved.
  • one or more spring webs connected in one piece to the filling core or the sleeper holder are used, the connection between the spring webs and the filling core or the sleeper holder being designed as a predetermined breaking point at one of the two ends.
  • the predetermined breaking point breaks open and enables better compliance between the filler core and the sleeper holder. At the same time, this ensures that in the preassembly of the sleeper holder and filler core to the sleeper connector, a connection that is still elastic but relatively stiff, but is easier to yield after breaking the predetermined breaking point.
  • the filler core is first flexibly spaced from the sleeper holder and the sleeper holder is firmly connected to the top of the sleeper.
  • the order of these two process steps is not critical.
  • the sleeper connector is preferably delivered pre-assembled, i.e. the filling core and sleeper holder are already flexibly connected at the factory.
  • the threshold holder and sleeper are preferably connected - as is known in the prior art - by screws which are rotated either from the underside of the sleeper into the sleeper holder or preferably from the top of the sleeper holder into the sleeper.
  • the hollow chamber profile is then placed on the sleeper connector or the filling core is inserted into the hollow chamber. Then the filling core is firmly connected to the hollow chamber profile, in particular by a screw connection.
  • the hollow chamber profile is pressed onto the upper side of the sleeper holder and / or the seal arranged between the hollow chamber profile and the upper side of the sleeper holder, the distance between the filling core and Threshold holder reduced accordingly and the seal is compressed.
  • the filling core is introduced into a hollow chamber of the hollow chamber profile
  • this of course also includes the possibility of inserting the filling core into a reinforcement profile, which in turn has been introduced into a hollow chamber of the hollow chamber profile.
  • Fig. 1 is a perspective view of a system in the form of an exploded view with threshold 1, the threshold connector 11 consisting of threshold holder 11 and filler core 12 and the hollow profile 20 extruded as a Z-shaped frame profile made of plastic before assembly.
  • the threshold 1 is made in several parts in a manner known per se and essentially comprises the threshold base body 2, the plastic strip 3 and the threshold cover 4.
  • the sleeper connector 10 essentially consists of the sleeper holder 11 forming the base body 13 and the fill core 12. Before assembly, the sleeper holder 11 and the fill core 12 elastically resiliently connected (“pre-assembled state"). The distance between the bottom of the filling core 12 and the top 14 of the sleeper holder 11 is 3.5 mm in the preassembled state.
  • the filling core 12 is injection molded from thermoplastic, for example ABS, polycarbonate or rigid PVC.
  • a central bore 33 receives the screw 8 during later assembly.
  • the spring bars 25 are integrally connected to the filling core 12.
  • the spring bars 25 are connected at both ends to the filling core 12, one of them on one side via a predetermined breaking point. It is hereby achieved that the filling core 12 is initially connected to the threshold holder 11 relatively stiffly, but at a distance from it. When the screw 8 is tightened later, this predetermined breaking point breaks, so that the spring bars 25 are only connected on one side to the filling core 12 and the screw 8 can be screwed in more easily.
  • the threshold holder 11 has on its upper side 14 a plurality of centering pins 19 which engage in various hollow chambers of the hollow chamber profile 20 during later assembly, rest on the inner walls of these hollow chambers and thus ensure a torsionally rigid connection between the hollow chamber profile 20 and the threshold 1.
  • the two guide pins 27 also perform a similar function in relation to a torsionally rigid connection between the sleeper holder 11 and the filling core 12.
  • Fig. 7 is the detail "C" of the threshold holder 11 according to Fig. 5 shown enlarged.
  • the length of these latching hooks 28 and the position of the two webs 26 are designed such that the distance caused by the spring webs 25 between the underside 34 of the filling core 12 and the top side 14 of the sleeper holder 11 is approximately 3.5 mm and thus the seal 16 is not compressed in the pre-assembled state.
  • the sleeper connector 10 is first placed on the upper side 31 of the sleeper base body 2 in such a way that the centering pins 18 ( Fig. 6 ) engage in the holes 6 of the sleeper base body 2 and, when the screw 32 is screwed into the sleeper base body 2, the underside 15 is pressed in a sealing manner while compressing the seal 17 onto the sleeper base body 2 and into the vertebral canal 7.
  • a rollover cover 5 is additionally used, which replaces the threshold cover 4 in the end region of the threshold 1 and the inner rollover 21 ( Fig. 8 ) of the hollow chamber profile 20 on the inside 24 closes down.
  • the rollover cover 5 has a plurality of centering pins 29 on its upper side, which engage in hollow chambers of the inner rollover 21 of the hollow chamber profile 20 when the hollow chamber profile 20 is later placed on it and further increase the torsional rigidity of the connection.
  • the rollover cover 5 is fastened to the threshold 1 by means of the two screws 9.
  • the hollow chamber profile 20 is thus with its end face on the top 14 of the pre-assembled sleeper connector 10 that the filling core 12, which at this time is still flexibly spaced and connected to the sleeper holder 11, projects completely into the hollow chamber 22.
  • the filling core 12 which at this time is still flexibly spaced and connected to the sleeper holder 11, projects completely into the hollow chamber 22.
  • the next step by screwing in the two screws 30 through the wall of the hollow chamber profile 20 into the filling core 12, a firm connection between the filling core 12 and the hollow chamber profile 20 is established.
  • the central screw 8 is screwed from the underside of the sleeper base body 2 through the sleeper holder 11 into the filling core 12. Since the filling core 12 with its underside 34 on the one hand has a distance of approximately 3.5 mm to the top 14 of the sleeper holder 11 and on the other hand is firmly connected to the hollow chamber profile 20 by the screws 30, this becomes when screwing the screw 8 into the filling core 12 Hollow chamber profile 20 pulled axially with its end face in the direction of the upper side 14 of the threshold holder 11 and the seal 16 pressed against the corresponding contour of the end face of the hollow chamber profile 20. Here, the seal 16 is compressed and the sealing function is established. After tightening the screw 8, the filling core 12 does not have to touch the top 14 of the sleeper holder 11. Rather, the original distance of approximately 3.5 mm from the top 14 of the sleeper holder 11 is designed such that even larger tolerances when inserting the sleeper connector 10 with the filling core 12 into the end face of the hollow chamber profile 20 can be compensated for.
  • the hollow chamber profile 20 and the threshold 1 is shown in different sections.
  • the filler core 12 is already firmly connected to the hollow chamber profile 20 by means of the two screws 30, but is still 3.5 mm apart connected to the sleeper holder 11 by the latching connection consisting of the latching hooks 28 and the webs 26.
  • the filling core 12 and the hollow chamber profile 20 firmly connected to it are pulled with their end face onto the upper side 14 of the sleeper holder 11, whereby the seal 16 compresses and the end face of the hollow chamber profile 20 is pressed firmly onto the upper side 14 of the sleeper holder 11.
  • the two spring bars 25 are elastically deformed, as in Fig. 11 in comparison to Fig. 10 can be seen.
  • Fig. 8 Finally, the finished connection between the hollow chamber profile 20 and the threshold 1 is shown in an oblique view from the outside 23.

Landscapes

  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Connector Housings Or Holding Contact Members (AREA)
  • Mutual Connection Of Rods And Tubes (AREA)

Claims (8)

  1. Pièce d'assemblage de seuil (10) pour assembler un profilé de chambre creuse (20) présentant au moins une chambre creuse (22) avec le côté supérieur (31) d'un seuil (1), comprenant au moins un élément de retenue de seuil (11) et un cœur de remplissage (12) pouvant être introduit dans la chambre creuse, l'élément de retenue de seuil (11) présentant, sur son côté supérieur (14) tourné vers le cœur de remplissage (12), une garniture d'étanchéité (16), caractérisée en ce que le cœur de remplissage (12) et/ou l'élément de retenue de seuil (11) présentent des moyens qui produisent une fixation espacée, flexible, du cœur de remplissage (12) à l'élément de retenue de seuil (11) .
  2. Pièce d'assemblage de seuil (10) selon la revendication 1, caractérisée par des moyens pour l'assemblage fixe, en particulier le vissage, du cœur de remplissage (12) au profilé de chambre creuse (20).
  3. Pièce d'assemblage de seuil (10) selon la revendication 1 ou 2, caractérisée en ce que l'élément de retenue de seuil (11) présente une garniture d'étanchéité (17) sur son côté inférieur (15) tourné vers le seuil (1).
  4. Pièce d'assemblage de seuil (10) selon l'une quelconque des revendications 1 à 3, caractérisée en ce que le cœur de remplissage (12) se compose de plastique.
  5. Pièce d'assemblage de seuil (10) selon l'une quelconque des revendications 1 à 4, caractérisée en ce que la fixation espacée, flexible, du cœur de remplissage (12) à l'élément de retenue de seuil (11) est réalisée sous forme élastique.
  6. Pièce d'assemblage de seuil (10) selon l'une quelconque des revendications 1 à 5, caractérisée en ce que la fixation espacée, flexible, du cœur de remplissage (12) à l'élément de retenue de seuil (11) présente une zone destinée à la rupture.
  7. Système comprenant un seuil (1), un profilé de chambre creuse (20) et une pièce d'assemblage de seuil en plusieurs parties selon l'une quelconque des revendications 1 à 6.
  8. Procédé pour l'assemblage d'un profilé de chambre creuse (20) présentant au moins une chambre creuse (22) avec le côté supérieur (31) d'un seuil (1) en utilisant une pièce d'assemblage de seuil (10) selon l'une quelconque des revendications 1 à 6, présentant un cœur de remplissage (12) et un élément de retenue de seuil (11), comprenant les étapes de procédé suivantes :
    a) le cœur de remplissage (12) est assemblé à distance, de manière flexible, à l'élément de retenue de seuil (11),
    b) l'élément de retenue de seuil (11) est assemblé fixement au côté supérieur (31) du seuil (1) ;
    c) le profilé de chambre creuse (20) est posé sur la pièce d'assemblage de seuil (10) ou le cœur de remplissage (12) est introduit dans la chambre creuse (22) ;
    d) le cœur de remplissage (12) est assemblé fixement, en particulier par vissage (30), au profilé de chambre creuse (20) ;
    e) le profilé de chambre creuse (20) est pressé sur le côté supérieur (14) de l'élément de retenue de seuil (11) et/ou sur la garniture d'étanchéité (16) disposée entre le profilé de chambre creuse (20) et le côté supérieur (14) de l'élément de retenue de seuil (11) au moyen d'au moins une vis (8) qui est vissée depuis le côté inférieur du seuil (1) à travers l'élément de retenue de seuil (11) dans le cœur de remplissage (12), la distance entre le cœur de remplissage (12) et l'élément de retenue de seuil (11) diminuant sous l'effet de la compression de la garniture d'étanchéité (16),
    les étapes de procédé a) et b) pouvant également s'effectuer dans la séquence inverse.
EP17202000.0A 2016-11-17 2017-11-16 Pièce d'assemblage de seuil et son utilisation Active EP3323972B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP16199343.1A EP3323971A1 (fr) 2016-11-17 2016-11-17 Pièce d'assemblage de seuil et son utilisation

Publications (2)

Publication Number Publication Date
EP3323972A1 EP3323972A1 (fr) 2018-05-23
EP3323972B1 true EP3323972B1 (fr) 2020-02-19

Family

ID=57345810

Family Applications (2)

Application Number Title Priority Date Filing Date
EP16199343.1A Withdrawn EP3323971A1 (fr) 2016-11-17 2016-11-17 Pièce d'assemblage de seuil et son utilisation
EP17202000.0A Active EP3323972B1 (fr) 2016-11-17 2017-11-16 Pièce d'assemblage de seuil et son utilisation

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP16199343.1A Withdrawn EP3323971A1 (fr) 2016-11-17 2016-11-17 Pièce d'assemblage de seuil et son utilisation

Country Status (2)

Country Link
EP (2) EP3323971A1 (fr)
DE (1) DE102017126954A1 (fr)

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19734876A1 (de) * 1997-08-12 1999-02-18 Peter Willrich Verbindungselement zur Verbindung eines Hohlteils mit einem auf Stoß anliegenden Profilteil im Tür- oder Fensterbau
DE20022411U1 (de) 2000-05-02 2001-08-16 Deflex Dichtsysteme Gmbh Rahmen-Pfosten-Verbindung
DE202007015357U1 (de) 2007-11-02 2009-03-19 Rehau Ag + Co Mechanischer Verbinder
DE202013103308U1 (de) 2013-07-23 2014-09-24 Profine Gmbh System mit Pfostenprofil, Schwelle und Schwellenhalter

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

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Publication number Publication date
EP3323972A1 (fr) 2018-05-23
DE102017126954A1 (de) 2018-05-17
EP3323971A1 (fr) 2018-05-23

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