EP2354432A2 - Vantail d'une porte coulissante et système de module destiné à la fabrication d'un tel vantail - Google Patents

Vantail d'une porte coulissante et système de module destiné à la fabrication d'un tel vantail Download PDF

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Publication number
EP2354432A2
EP2354432A2 EP20110152448 EP11152448A EP2354432A2 EP 2354432 A2 EP2354432 A2 EP 2354432A2 EP 20110152448 EP20110152448 EP 20110152448 EP 11152448 A EP11152448 A EP 11152448A EP 2354432 A2 EP2354432 A2 EP 2354432A2
Authority
EP
European Patent Office
Prior art keywords
profiles
profile
door leaf
spar
leaf according
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.)
Granted
Application number
EP20110152448
Other languages
German (de)
English (en)
Other versions
EP2354432A3 (fr
EP2354432B1 (fr
Inventor
Klaus Berlemann
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.)
BERLEMANN, NIKOLAUS
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
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Publication of EP2354432A2 publication Critical patent/EP2354432A2/fr
Publication of EP2354432A3 publication Critical patent/EP2354432A3/fr
Application granted granted Critical
Publication of EP2354432B1 publication Critical patent/EP2354432B1/fr
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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
    • E06B11/00Means for allowing passage through fences, barriers or the like, e.g. stiles
    • E06B11/02Gates; Doors
    • E06B11/04Gates; Doors characterised by the kind of suspension
    • E06B11/045Gates; Doors characterised by the kind of suspension exclusively for horizontally sliding gates
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/06Suspension arrangements for wings for wings sliding horizontally more or less in their own plane
    • E05D15/0617Suspension arrangements for wings for wings sliding horizontally more or less in their own plane of cantilever type
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/40Application of doors, windows, wings or fittings thereof for gates
    • E05Y2900/402Application of doors, windows, wings or fittings thereof for gates for cantilever gates
    • 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
    • E06B11/00Means for allowing passage through fences, barriers or the like, e.g. stiles
    • E06B11/02Gates; Doors

Definitions

  • the present invention relates to a door leaf of a sliding gate, wherein a lower part of the door leaf is formed by a lower spar and an upper part of the Torblatts by an upper spar and wherein between the lower spar and the upper spar a Torblatt Stahl is arranged. Moreover, the invention relates to a modular system for producing such a door leaf.
  • the lower beam and the upper beam each consist of a one-piece profile, which, for example, seen in cross-section C- or U-shaped.
  • the profiles are also usually Abkantprofile steel or extruded aluminum.
  • the profiles that make up the lower beam and the upper beam must be suitably dimensioned in order to safely and permanently absorb the static and dynamic loads occurring during operation of an associated sliding gate. Because door leaves can have very different sizes, a manufacturer of sliding gates or door leaves must accordingly manufacture or buy many different profiles, which requires a high manufacturing and logistical effort.
  • the task is to create a door leaf of the type specified above, which can be produced as required in terms of male loads and thereby requires a reduced effort manufacturing technology.
  • the solution of the door leaf part of the task succeeds according to the invention with a door leaf of the type mentioned, which is characterized in that the lower beam in a modular design of at least one pair consists of two in a plane parallel to Torblattebene plane interconnected profiles.
  • a door leaf here at least be the essential supporting function aus accordingder sub-spar
  • the lower beam consists of two interconnected profiles.
  • the connecting plane of the interconnected profiles lies in a plane parallel to the door leaf level, wherein a position is included in the Torblattebene.
  • differently dimensioned profiles may be used.
  • a further advantage of the invention is that the manufacture and joining of two smaller profiles is simpler and less expensive than the production of a one-piece or one-piece large profile corresponding in size to the two smaller interconnected profiles. The number of required in practice for the door leaf according to the invention differently dimensioned profiles can thus be kept low, which simplifies the production of the door leaf and makes it cheaper.
  • the invention proposes that the upper spar consists of modular construction of at least a pair of two in a plane parallel to the Torblattebene plane interconnected profiles.
  • end and / or intermediate bars connecting the lower beam and the upper beam in a modular construction each consist of at least one pair of two profiles interconnected in a plane parallel to the door leaf plane.
  • the end and / or intermediate rods are included in the cheap modular design.
  • the profiles of a pair are identical to each other and are arranged mirror-symmetrically to each other.
  • the profiles of a pair are identical to each other and are arranged mirror-symmetrically to each other.
  • each of the profiles of a pair are different from each other, for example, if for functional reasons, a non-symmetrical design of the lower spar or the upper spar or the end and / or intermediate rods is necessary. It remains unchanged, however, that in each case the profiles of a pair are connected to each other in a plane parallel to the door leaf level or in the Torblattebene.
  • the invention provides that in each case the profiles of a pair are connected to each other by at least one continuous connecting profile or by a plurality of adjoining or spaced apart in the profile longitudinal direction of the connecting profile sections.
  • connection profiles or connecting profile sections allow a simple and secure connection of the profiles of a pair with each other, without the need for elaborate machining operations or welds on the profiles.
  • a spar, in particular the most heavily loaded lower beam, of the door leaf may be modularly composed of two or more profile pairs.
  • the invention provides that the profiles of adjacent pairs are connected to one another by an arrangement of at least two parallel, continuous connection profiles or by a plurality of adjoining or spaced arrangements in the profile longitudinal direction of at least two parallel connection profile sections, wherein the parallel connection profiles or connection profile sections are clamped or braced against each other transversely to the profile longitudinal direction.
  • the profiles it is further preferred for the profiles to have positive or negative undercut edge regions in cross-section at their lateral or longitudinal edges facing each other, and that the connection profile or the connection profile sections have / have complementary, negative or positive undercut edge regions ,
  • edge regions in cross-section are preferably positive or negative hook-shaped or hammerhead-shaped.
  • a further development preferably provides that the clamping means are formed by clamping screws or rivets and that the connecting profiles or connecting profile sections are provided with prefabricated apertures for the clamping means and / or for filling rods to be attached.
  • a particularly favorable ratio of weight to bearing capacity of the profiles of the door leaf can be achieved in that the profiles are extruded profiles, preferably hollow-chamber extruded sections, made of light metal, preferably aluminum.
  • the door leaf at least one, preferably latchable or clampable or anklebbares, cover profile, preferably made of plastic, having a longitudinal joint two interconnected pairs of profiles is concealable.
  • a cover profile contribute to the improvement of the visual appearance, for example in such a way that two interconnected pairs of profiles outwardly offer the appearance of a one-piece profile.
  • At least one of the profiles in cross-section is C-shaped and that in the connected state of two of these profiles by means of a mounted on the upper longitudinal edge connection profile or pair of two parallel connection profiles, the profiles a rectangular in cross-section, below a continuous slot and inside two upper and two lower roller tracks having Holm form.
  • support rollers and / or drive rollers as well as a correspondingly "slim" shaped drive unit with motor and gear can be arranged inside the spar or the spars.
  • the present invention also provides an embodiment in which at least one of the profiles is flat rectangular in cross-section, wherein in the connected state of two of these profiles by means of two attached at the upper and lower longitudinal edges parallel connecting profiles form the profiles a cross-sectionally closed spar or rod.
  • a closed spar is preferably used as an upper spar.
  • Such a spar can also be used as a lower spar if the carrying rollers and / or drive rollers and a drive unit of the sliding gate are arranged outside the lower beam.
  • the spar or bar has seen in cross-section bevelled or rounded outer and / or inner corner regions.
  • the door leaf in a concrete, particularly preferred embodiment of the invention, it is provided for the door leaf that it can be produced in a modular system of only three differently sized cross-section profiles and a uniform connection profile, wherein the largest profile for forming the lower spar and / or Oberholms is usable wherein the central profile for reinforcing the sub-spar and / or for forming the upper spar and / or for forming the end and / or intermediate rods is usable and wherein the smallest profile for reinforcing the sub-spar and / or to form the upper spar and / or Forming the end and / or intermediate rods is usable.
  • advantageously only three differently executed profiles and a uniform connection profile are needed, so a total of only four different profiles. With this very small number of different profiles door leaves can be made over the entire size range required in practice, each with matching static and dynamic load capacity by each of the necessary and suitable profiles are combined.
  • the module system according to the invention is characterized in that it consists of only three profiles of different dimensions and a uniform connection profile, the largest profile serving to form the lower spar and / or the upper spar of a door leaf, the middle profile reinforcing the lower spar and / or or to form the upper spar and / or to form the end and / or intermediate bars of a door leaf, and wherein the smallest profile for reinforcing the lower spar and / or for forming the upper spar and / or for forming the end and / or intermediate bars of a Torblatts serves.
  • this module system differently dimensioned door leaves for sliding gates can be produced from a few parts and thereby cost-effectively.
  • FIG. 1 shows a section of a door leaf 1 in a perspective view in a first embodiment, which is particularly suitable for smaller door leaves.
  • a lower beam 11 forms the main supporting part of the door leaf 1 and consists of two cross-sectionally C-shaped profiles whose open sides face each other and which are interconnected along their parallel upper edges.
  • Another supporting part of the door leaf 1 forms its upper beam 12, which is also formed of two in cross-section C-shaped, compared to the lower beam 11 smaller profiles, which are also facing each other with their open sides and along both their parallel upper edges are also interconnected along their parallel lower edges.
  • end or intermediate rods 13 At the two ends of the door leaf 1 or if necessary between them are arranged end or intermediate rods 13 vertically, forming a stable connection between the lower beam 11 and upper beam 12.
  • the in FIG. 1 visible intermediate rod 13 is identical to the upper spar 12 executed.
  • Parallel to the intermediate rods 13 extend a plurality of filler rods 14, which have no supporting function, but form a filling of the door leaf 1.
  • FIG. 2 shows the structure of the door leaf 1 and its parts in detail with reference to an end view of the door leaf 1. Below the lower beam 11 is visible from which extends the end or intermediate rod 13 upwards. Above is the upper beam 12, which closes the door leaf 1 upwards.
  • the lower beam 11 is composed of two mutually mirror-symmetrically arranged profiles 2.1, which are interconnected along their upper parallel edges by means of two connecting profiles 3.
  • the two profiles 2.1 are identical to each other and made here as extruded profiles of, for example, aluminum.
  • the profiles 2.1 are double-walled with hollow chambers 25.
  • each profile has 2.1 in its upper corner areas and its lower corner each have a circular cross-section channel 25 '. These channels 25 'are used to connect butt sections of the profiles 2.1, which is based on the FIG. 12 will be explained in more detail below.
  • the profiles 2.1 are C-shaped in cross-section and face each other with their open sides. Since the profiles 2.1 are connected to each other only at their upper parallel edges, remains at the bottom of the sub-spar 11 is a continuous Slot 11.1.
  • This slot 11.1 serves for the passage of support elements, the rollers and drive rollers and possibly also receive a drive unit of the associated sliding gate.
  • the two profiles 2.1 form two parallel upper and two parallel lower roller tracks 11.2.
  • the inner corner regions 29 of the profiles 2.1 are rounded or chamfered to guide the rollers and the lower beam 11 relative to each other well.
  • the outer corner regions 28 of the profiles 2.1 are chamfered to avoid sharp corners
  • connection profile 3 has at its longitudinal edges two hook-shaped edge portions 30 which engage positively behind correspondingly shaped edge portions 20 of the profiles 2.1.
  • a grid spacing clamping means 4 here screws, the two connecting profiles 3 against each other firmly but releasably braced so that they connect the two profiles 2.1 to the lower beam 11 together.
  • FIG. 2 visible end or intermediate rod 13 is also by means of another connecting means 4, such as a screw, with the upper of the two connecting sections 3 of the sub-spar 11, but releasably connected.
  • another connecting means 4 such as a screw
  • visible filler rods 14 connected to the lower beam 11 and its upper connecting section 3.
  • the upper beam 12 consists here of two parallel profiles 2.3 which are significantly smaller than the profiles 2.1 in their dimensions.
  • the profiles 2.3 can also be used for the end or intermediate rods 13; Alternatively, the profiles for the end or intermediate rods 13 may also be slightly smaller than the profiles 2.3.
  • the profiles 2.3 are identical to each other and also as hollow extruded profiles, for example made of aluminum.
  • the profiles 2.3 are connected to each other via connecting profiles 3, wherein in each case a connecting profile 3 is attached to the top and at the bottom of the upper spar 12 here.
  • the two connection profiles 3 are against each other by the clamping means 4, also here a screw, fixed, but releasably braced.
  • connection profiles 3 which are identical to the connection profiles 3 of the sub-spar 11, the hook-shaped edge regions 30 at their longitudinal edges, which engage positively behind correspondingly shaped edge regions 20 of the two profiles 2.3. Furthermore, runs through each profile 2.3 a round in cross-section channel 25 ', which serves for butt-splitting connection of profiles 2.3.
  • connection profiles 3 and the clamping means 4 all parts of the door leaf 1 by releasable connection means, namely the connection profiles 3 and the clamping means 4, connected to each other. Therefore, the door leaf 1 can be disassembled harmless into its parts to replace, if necessary, individual parts in case of damage.
  • manufacture of the door leaf requires no complex welding, which simplifies the production and avoids undesirable and straightening required warping the door panel 1 by the heat generated during welding.
  • FIG. 3 shows an example of the door leaf 1, in which compared to the example of the FIGS. 1 and 2 the lower beam 11 is made reinforced.
  • the lower beam 11 consists of two pairs of interconnected profiles, the lower profile pair of the lower beam 11 according to FIG. 1 corresponds to which now another profile pair, which is identical to the upper beam 12, is placed.
  • the carrying capacity of the sub-spar 11 is compared to the example FIG. 1 and 2 elevated.
  • the end or intermediate rod 13 and the filler rods 14 correspond in the example according to FIG. 3 the first embodiment.
  • FIG. 4 shows in detail in front view of the structure of the door leaf 1 according to FIG. 3 , Below the lower beam 11 is shown, which is composed of two profile pairs.
  • the lower profile pair consists of two profiles 2.1, as they are already in FIG. 2 have been described.
  • connection profiles 2.1 and 2.3 of each pair serve again here two connection profiles 3, which are connected to the connection profiles 3 according to FIG. 2 are identical.
  • a centering profile 3 ' is arranged here between the profile pairs.
  • the connecting profiles 3 and also the centering profile 3 ' here have the hook-shaped edge regions 30, which form-fit behind accordingly oppositely shaped edge regions 20 of the profiles 2.1 and 2.3.
  • the lower connection profile 3 is fixedly connected to the centering profile 3 'via fasteners 4, here screws, which are attached side by side and in the longitudinal direction at a grid spacing.
  • both the profiles 2.1 and 2.3 within each profile pair and the two profile pairs are connected to each other to the lower beam 11.
  • the lower beam 11 again has the longitudinal slot 11.1.
  • the upper beam 12 here corresponds to the upper beam 12 according to FIG. 2 and is the same as in FIG. 2 connected to the end or intermediate rod 13. Regarding the further in FIG. 4 The reference numbers appearing on the description of the FIG. 2 directed.
  • FIG. 5 a third example of a door leaf 1 is shown, for which it is characteristic that the lower beam 11 is reinforced here again.
  • the sub-spar 11 composed of two profile pairs.
  • the upper profile pair of the sub-spar 11 but larger dimensions, so that there is a further increase the carrying capacity of the sub-spar 11.
  • the sub-spar 11 In its other parts corresponds to the door leaf 1 of Figure five by example FIG. 3 ,
  • FIG. 6 shows the structure of the door leaf 1 after FIG. 5 in detail on the basis of a front view.
  • the lower beam 11 consists, as mentioned, of two superposed profile pairs of two profiles 2.1 and two profiles 2.2.
  • the profiles 2.1 of the lower profile pair of the sub-spar 11 are in accordance with the profiles 2.1 of the lower profile pair of the sub-spar 11 FIG. 4 identical.
  • the upper profile pair of the sub-spar 11 according to FIG. 6 consists here of the two profiles 2.2, which have the same width as profile pair in interconnected state as the profile pair of the profiles 2.1, but these have a lower height.
  • the sub-beam 11 forming profiles 2.1 and 2.2 are connected to each other by means of the connecting profiles 3 and the centering 3 'in the same manner as the profiles 2.1 and 2.3 of the sub-spar 11 according to FIG. 4 , so that reference is made in this regard to the preceding description.
  • FIG. 7 shows another example of a door leaf 1, the lower beam 11 and end or intermediate rod 13 the example according to the Figures 5 and 6 correspond. This is different in the example FIG. 7 the upper beam 12 is formed, namely with a larger profile dimensioning in order to achieve a further increase in the load capacity of the door leaf 1.
  • FIG. 8 shows the door leaf 1 FIG. 7 in detail again in front view.
  • the lower beam 11 and the end bar 13 according to FIG. 8 identical to the version according to FIG. 6 , whose description is referenced.
  • the two profiles are 2.2 by means of two parallel connecting profiles 3 and this against each other bracing clamping means 4, here again screws, sufficiently strong, but releasably connected to each other.
  • the connection profiles 3 in the upper beam 12 are identical to the connection profiles 3 used in the lower beam 11 again.
  • the upper beam 12 is connected through its lower connection profile 3 passes through to the upper end of the end bar 13.
  • not visible here clamping means of the upper beam 12 is also with the in FIG. 8 concealed, not visible Sleepstäben connected.
  • FIG. 9 shows a reinforced embodiment of a door leaf 1. Characteristic of this embodiment of the door leaf 1 is that the lower beam 11 is formed of two identical, superimposed pairs of profiles. The upper beam 12, the end or intermediate rod 13 and the filler rods 14 according to the embodiment of the FIGS. 7 and 8th , whose description is referenced.
  • FIG. 10 is the door leaf 1 off FIG. 9 again shown in a detailed front view.
  • the lower beam 11 here consists of two identical pairs of profiles 2.1, which are arranged one above the other and connected to each other.
  • the lower profile pair and the upper profile pair of the lower spar 11 form a horizontally extending longitudinal joint 26, which is due to the bevelled outer corner regions 28 of the profiles 2.1 in each case an outwardly open wedge-shaped recess.
  • the outer corner regions 28 are provided with longitudinal locking grooves 26 'in order to be able to attach a cover profile there if required, as shown in FIG. 11 will be described.
  • the two profiles 2.1, 2.2, 2.3 of a pair are identical to each other. If necessary, especially for technical reasons, the profiles of a pair may differ from each other be, but always their connectivity in a connecting plane that runs parallel to the Torblattebene or in Torblattebene remains. For example, in otherwise existing agreement, one of the two profiles of a pair may have a groove for receiving a rack, while the other of the two profiles of the pair may not have such a groove.
  • FIG. 11 shows in an enlarged section of an end view of a lower beam 11, the attachment of the aforementioned cover profile 6.
  • Bottom of FIG. 11 is a profile 2.1 and above a profile 2.2 of the sub-spar 11 visible, both having beveled outer corner regions 28.
  • the profiles abut each other.
  • Left in FIG. 11 is still a part of a connection profile 3 and a centering profile 3 'visible; the respectively symmetrically arranged second profile 2.1 and 2.2 of each profile pair of the sub-spar 11 is in FIG. 11 not visible anymore.
  • a latching groove 26 ' is provided, in which a cover profile 6 formed as a plastic profile is latched by means of two latching tongues 60 with latching hooks engaging in the latching grooves 26'.
  • the wedge-shaped recess in the region of the longitudinal joint 26 is optically hidden, so that the external impression arises that the profiles 2.1 and 2.2 are integral with one another.
  • the cover profile 6 protects the lower beam 11 against harmful penetration and deposition of dirt and moisture in the region of the longitudinal joint 26th
  • the profiles used are 2.1 - 2.3 extruded aluminum profiles.
  • the possibilities of assembling, in particular, the lower beam 11 or the upper beam 12 from butt section sections 2.1 'and 2.1 serve, in each case in the region of an obtuse joint 27, a bridging element 5 can be used in the example FIG. 12 the bridging element 5 consists of two threaded sleeves 51 and 52.
  • the first threaded sleeve 51 is screwed with a self-tapping external thread from the free end of a profile section 2.1 'in the channel 25' and has a bore with a threadless inner circumference.
  • the second threaded sleeve 52 is also screwed into the channel 25 'with a self-tapping thread from the free end of the other profile section 2.1 and has a bore with an internal thread Profile section 2.1 "survives.
  • the centering 52' protrudes into the channel 25 'of the first profile section 2.1', whereby the profile sections 2.1 'and 2.1" are aligned with each other exactly.
  • a screw 53 which is inserted through the first threaded sleeve 51 with the interposition of a washer 54 and screwed into the internal thread of the second threaded sleeve 52, the profile sections 2.1 'and 2.1 "are mechanically fixed, but non-destructively releasably connected to one another the screw 53 is a sufficiently long screwing, which is introduced from the joint 27 remote from the other free end of the first profile section 2.1 'in the channel 25'.
  • the profile sections 2.1 'and 2.1 "to be connected to one another may each have one or more channels 25.
  • blunt joints 27 in the two profiles are expediently arranged offset sufficiently far in the longitudinal direction of the profile.
  • connection profile 3 is shown, which here an attachment means 35 for a flat door leaf filling 15, which can be used instead of parallel filler bars 14 has.
  • the connecting profile 3 has hook-shaped contours on its two lateral edge regions 30, which serve for the form-fitting engagement with the correspondingly oppositely shaped edge regions of the profiles to be connected to one another.
  • the attachment means 35 is integrally formed in the form of a right angle from the surface of the connecting profile 3 upstanding flange, which is reinforced by a likewise one-piece diagonal support.
  • connection profile 3 is arranged when using the flat door leaf filling 15 on the underside of the upper spar, so that the flat door leaf filling 15 can be fixed at the top and bottom.
  • a correspondingly formed connection profile 3 with attachment means 35 may also be provided on the end or intermediate rods in order to be able to fix the flat door leaf filling 15 also at its vertical edges.
  • FIG. 14 shows a section of a connection profile 3 in plan view.
  • two types of openings are provided in the connection profile 3, which are expediently installed in advance in an automatic machining process.
  • larger openings 33 are provided, which in FIG. 14 are visible in the right end of the connection profile 3 and are arranged in a rectangle or square. These larger openings 33 serve to connect the connection profile 3 with an end or intermediate rod.
  • pairs of smaller openings 34 are provided on a longitudinal center line of the connection profile 3 in a grid spacing, which serve in each case for connecting the connection profile 3 with a filler rod.
  • FIG. 15 Finally, in an enlarged section shows the interaction of two connecting profiles 3, on the one hand connect two profiles 2.1 of a pair of profiles together and also form a connection to an end or intermediate rod 13 and a filler rod 14.

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Securing Of Glass Panes Or The Like (AREA)
  • Wing Frames And Configurations (AREA)
EP11152448.4A 2010-01-29 2011-01-28 Vantail d'une porte coulissante Active EP2354432B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE202010001589 2010-01-29
DE202010001883U DE202010001883U1 (de) 2010-01-29 2010-02-04 Torblatt eines Schiebetors und Modulsystem zum Herstellen eines solchen Torblatts

Publications (3)

Publication Number Publication Date
EP2354432A2 true EP2354432A2 (fr) 2011-08-10
EP2354432A3 EP2354432A3 (fr) 2012-12-19
EP2354432B1 EP2354432B1 (fr) 2015-11-04

Family

ID=43920398

Family Applications (1)

Application Number Title Priority Date Filing Date
EP11152448.4A Active EP2354432B1 (fr) 2010-01-29 2011-01-28 Vantail d'une porte coulissante

Country Status (2)

Country Link
EP (1) EP2354432B1 (fr)
DE (1) DE202010001883U1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112901057A (zh) * 2021-01-29 2021-06-04 红门智能科技股份有限公司 平移门

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL9300990A (nl) * 1993-06-09 1995-01-02 Franciscus Bernardus Maria Rui Hek en werkwijze voor het vervaardigen van een drager voor een hek.
NL1023808C2 (nl) * 2003-07-03 2005-01-04 Mammoet Hekwerk B V Zelfdragend hek met geprofileerde ligger en werkwijze voor het vervaardigen van een zelfdragend hek.
GB2454534B (en) * 2007-11-12 2009-12-16 Muskita Aluminium Ind Plc Sealing system for a movable panel and a panel for use with such a system

Non-Patent Citations (1)

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

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112901057A (zh) * 2021-01-29 2021-06-04 红门智能科技股份有限公司 平移门
CN112901057B (zh) * 2021-01-29 2022-05-10 红门智能科技股份有限公司 平移门

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Publication number Publication date
EP2354432A3 (fr) 2012-12-19
DE202010001883U1 (de) 2011-06-09
EP2354432B1 (fr) 2015-11-04

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