EP3505701B1 - Dispositif formant toit et procédé de fabrication d'un dispositif formant toit - Google Patents

Dispositif formant toit et procédé de fabrication d'un dispositif formant toit Download PDF

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Publication number
EP3505701B1
EP3505701B1 EP18213072.4A EP18213072A EP3505701B1 EP 3505701 B1 EP3505701 B1 EP 3505701B1 EP 18213072 A EP18213072 A EP 18213072A EP 3505701 B1 EP3505701 B1 EP 3505701B1
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EP
European Patent Office
Prior art keywords
latching
profile
section
rafter
bearing profile
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
EP18213072.4A
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German (de)
English (en)
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EP3505701A1 (fr
Inventor
Ingo Kneer
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Individual
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Individual
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Filing date
Publication date
Priority claimed from DE202017006664.5U external-priority patent/DE202017006664U1/de
Priority claimed from DE102017223880.1A external-priority patent/DE102017223880A1/de
Application filed by Individual filed Critical Individual
Publication of EP3505701A1 publication Critical patent/EP3505701A1/fr
Application granted granted Critical
Publication of EP3505701B1 publication Critical patent/EP3505701B1/fr
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Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D3/00Roof covering by making use of flat or curved slabs or stiff sheets
    • E04D3/02Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant
    • E04D3/06Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor
    • E04D3/08Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor with metal glazing bars
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D3/00Roof covering by making use of flat or curved slabs or stiff sheets
    • E04D3/02Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant
    • E04D3/06Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor
    • E04D3/08Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor with metal glazing bars
    • E04D2003/0806Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor with metal glazing bars the supporting section of the glazing bar consisting of one single extruded or rolled metal part
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D3/00Roof covering by making use of flat or curved slabs or stiff sheets
    • E04D3/02Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant
    • E04D3/06Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor
    • E04D3/08Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor with metal glazing bars
    • E04D2003/0868Mutual connections and details of glazing bars
    • E04D2003/0875Mutual connections and details of glazing bars on the ridge of the roof or on intersecting roof parts
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D3/00Roof covering by making use of flat or curved slabs or stiff sheets
    • E04D3/02Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant
    • E04D3/06Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor
    • E04D3/08Roof covering by making use of flat or curved slabs or stiff sheets of plane slabs, slates, or sheets, or in which the cross-section is unimportant of glass or other translucent material; Fixing means therefor with metal glazing bars
    • E04D2003/0868Mutual connections and details of glazing bars
    • E04D2003/0881Mutual connections and details of glazing bars on the eaves of the roof

Definitions

  • Terrace canopies often have a longitudinal beam profile designed as a wall connection profile, which is anchored to a wall with fastening means, for example bolts. Due to structural or local conditions, an installation height of such a wall connection profile can vary.
  • the terrace covering On a side facing away from the wall, the terrace covering is usually stored with a purlin supported by posts. All of these components are usually prefabricated parts that are pre-produced in standard sizes. It is therefore desirable to be able to vary an angle of attack of the rafters during assembly, which results from the assembly height of the wall connection profile and the height of the posts, in order to be simple Way to be able to react to structural or local conditions.
  • the publication US 4,998,389A describes a roof system that is provided with a wall connection.
  • wall connection fittings are provided on a wall connection profile, which have a circular cylindrical recess.
  • a rafter holder has a rafter holder fitting corresponding thereto, which has a circular cylinder which can be received in the recess.
  • the rafter holder fitting has a locking flange. In this way, the rafter holder fitting can be attached and detached from the wall connection fitting in a horizontal position. If the rafter holder fitting is pivoted into an angular position, the locking flange engages under the wall connection fitting, so that the rafter holder is secured in it.
  • a roof panel rests on the rafters here.
  • a separate web is provided on the wall connection profile, on which a seal that is applied to the roof panel is provided.
  • the present invention is based on the object of specifying an improved roofing device and a method for its production.
  • the knowledge on which the present invention is based is that the addition of manufacturing and calibration tolerances when mounting a roofing device can be avoided by longitudinally securing rafter holders at predetermined latching sections.
  • a fitter does not need to fix the rafter holder, as was previously the case, by additional fastening means on the side member profile.
  • the correct assembly position which is already matched to the intended infill, is specified according to the invention by the corresponding prefabrication of the latching and counter-latching means and the longitudinal securing at the correct point is achieved automatically by the engagement of the latching and counter-latching means.
  • the installer therefore only needs to insert the rafter holder on the insertion section and move it in the longitudinal direction until the latching and counter-latching means snap into place.
  • the installation of a roofing device is made possible in a much simpler, safer, faster and less prone to error manner.
  • a very high level of occupational safety is also provided for the assembly, since the rafter holder once used can no longer get out of the longitudinal member profile unintentionally after it has been moved longitudinally.
  • An insertion section which is locally delimited in the longitudinal direction is to be understood as a locally recessed section which does not extend over the entire length of the side member profile but only over a comparatively small part or section of the length of the side member profile.
  • the width of the insertion section is wide enough to insert the locally excluded bearing profile section into the gripping section of the rafter holder.
  • the insertion section thus has a width which is wider than the gripping section of the rafter holder. For example, it can be a width of the insertion section in the range of one to two times the width of the rafter holder.
  • the method for producing the roofing device represents in particular an assembly method or a method for mounting a roofing device.
  • the latching and counter-latching means for longitudinal securing of the encompassing section are formed on the bearing profile section.
  • the latching and counter-latching means for longitudinal securing of the encompassing section are formed on the bearing profile section.
  • the latching and counter-latching means are designed to be rotatable relative to one another, so that the engaging section can be pivoted about the longitudinal axis of the bearing profile section in a latched state. In this way, a desired roof pitch can be freely and continuously adjusted.
  • the gripping section can be pivoted in a locked state by a predetermined angle about the longitudinal axis of the bearing profile section.
  • it can be pivoted through an angle which is between 10 ° and 45 °.
  • Such an angle is preferably between 15 ° and 35 °.
  • a particularly preferred angle is between 25 ° and 30 °.
  • the locking and counter-locking means are designed to be detachable by exceeding the predetermined angle.
  • the latching and counter-latching means are designed to be detachable by exceeding the predetermined angular section. In this way, the engagement between the latching and counter-latching means can advantageously also be released again without destruction, for example for dismantling the roofing device.
  • the locking means and the counter-locking means are formed with a resilient pressure piece and a circumferential groove corresponding thereto.
  • the pressure piece can, for example, be arranged in a threaded bore running transversely to the longitudinal axis in the encompassing section.
  • the circumferential groove can extend over a section of the lateral surface of the bearing profile section.
  • the circumferential groove describes an angular section around the longitudinal axis of the bearing profile section.
  • the circumferential groove is preferably formed with a thickness corresponding to the pressure piece.
  • the circumferential groove terminates with an incline at at least one end.
  • the slope is designed such that the pressure piece can be pressed out of the circumferential groove by releasing the predetermined angle of rotation and / or the predetermined angle section in order to release the latching and counter-latching means. If the pressure piece is formed with a round head, the pressure piece can only be pushed out of the groove to a large extent for loosening and the remaining spring force can be overcome with a longitudinal displacement by means of the round shape.
  • the spring force of the pressure piece advantageously always counteracts the release, so that a certain resistance is provided which avoids unintentional or automatic loosening. Further advantageously, no tools for loosening are required.
  • the release is made non-destructive.
  • a groove that cuts the bearing profile section secant-like would also be conceivable as a counter-latching means.
  • a secant-like groove in the case of a cylindrical bearing profile section automatically has a groove base that runs obliquely to the lateral surface, so that there is no need for an additional slope at the outlet of the groove.
  • the counter-latching means is arranged in a latching section of the bearing profile section that predetermines an installation position of the rafter holder in the longitudinal direction.
  • the latching and counter-latching means can be brought into engagement with one another by longitudinally displacing the encompassing section on the bearing profile section from the insertion section to the latching section.
  • the latching section can be used to achieve a complete form fit be dimensioned around the encompassing section and the bearing profile section and accordingly also has unprocessed sections of the bearing profile section.
  • the dimensioning of the latching section is preferably provided in such a way that the latching and counter-latching means come into engagement with one another when the complete positive locking is achieved.
  • the latching section is assigned two insertion sections which are arranged on both sides next to the latching section. In this way, the installation can be carried out in accordance with the installation situation or accessibility from both sides.
  • the bearing profile section has a profile which is at least partially round in cross section.
  • the gripping section has a corresponding, at least sectionally round recess.
  • the bearing profile section is at least partially circular-cylindrical and the recess is likewise at least partially circular-cylindrical.
  • the round design advantageously allows the bearing profile section and the encompassing section to slide against one another, so that an angle of attack can be set.
  • the encompassing section has a bore, in particular a threaded bore, projecting into the recess, which is round at least in sections.
  • the locking means can be attached.
  • it can be a pressure piece which is resiliently received in a sleeve provided with an external thread.
  • the latching means can be positioned in a desired position on the wrap-around section during the prefabrication of a roofing device.
  • the positioning need not be changed particularly advantageously because of the lack of training during assembly. In particular, this represents a great advantage compared to a threaded pin that was previously often used for fixation.
  • the bearing profile section can be encompassed at a circumferential angle of greater than 180 °.
  • it is designed to encompass at a circumferential angle of at least 270 °, preferably 280 ° to 300 °. In this way, a large pivoting area between the longitudinal beam profile and rafter holder is advantageously made possible.
  • the encompassing section is designed to encompass the bearing profile section at a circumferential angle greater than 180 °.
  • the circumferential angle is greater than 200 °, preferably between 210 ° and 260 °, particularly preferably between 230 ° and 250 °.
  • the swivel range of the employment is at least 0 ° to + 30 °. Swivel ranges from 0 ° to + 45 ° are also conceivable. In this way, conventional angles of attack are advantageously covered by the swivel area, in particular for terrace roofing.
  • the side member profile is designed as a wall connection profile.
  • the position can be adjusted relative to a wall.
  • a wall is understood to mean any type of structure suitable for attaching the wall connection profile. It can be, for example, a brick wall, a wooden wall, a facade, a frame, a framework or the like.
  • the wall is a vertical wall.
  • an inclined wall or facade can also be used.
  • the side member profile has a bearing profile section on both sides.
  • opposite rafters can be accommodated in the side member profile.
  • This version is provided in particular in the case of a longitudinal beam profile designed as a ridge purlin.
  • a roof can advantageously be realized with a common longitudinal beam profile on two opposite sides of the longitudinal beam profile.
  • such a longitudinal beam profile with a bearing profile section on both sides can be two interconnected one-sided longitudinal beam profiles.
  • two longitudinal beam profiles provided for wall connection can be connected to one another on their wall sides, so that a common profile with bearing profile sections on both sides is created.
  • the variety of components is advantageously reduced in this way, so that production is simplified.
  • a step of the stationary mounting of the side member profile is provided before the bearing profile section is inserted into the encompassing section.
  • the longitudinal displacement is carried out accordingly by moving the rafter holder along the longitudinal beam profile.
  • only the rafter holder needs to be manipulated in this way, so that the assembly is simplified.
  • Fig. 1 shows a roofing device 1 before assembly.
  • the roofing device 1 has a longitudinal beam profile 2 designed as a wall connection profile, a rafter 5 and a rafter holder 3 designed and fastened, for example screwed, to the longitudinal beam profile 2 to hold or support the rafter 5.
  • the longitudinal beam profile 2 has a bearing profile section 4 designed for mounting the rafter holder 3.
  • the bearing profile section 4 is formed with a sectionally round shape, here for example a hollow circular cylinder shape, which is connected in one piece to a wall connection area of the wall connection profile 2 via support struts 16.
  • the bearing profile section 4 is accordingly preferably formed in one piece with the other parts of the wall connection profile 2.
  • the bearing profile section 4 is locally excluded, here, for example, with a secant-like recess 17.
  • a groove cutting the bearing profile section in the manner of a secant would also be conceivable as counter-latching means.
  • the secant-like cutting groove automatically has a groove base that runs obliquely to the lateral surface, so that there is no need for a slope at the outlet of the groove.
  • Fig. 2 shows a cross-sectional view of a rafter holder 3.
  • the rafter holder 3 has a gripping section 6 with a recess 18 corresponding to the bearing profile section 4. Accordingly, the illustrated embodiment is, for example, a circular cylindrical recess 18.
  • a latching means 8 is arranged on the encompassing section 6.
  • Bearing profile section 4 of the longitudinal beam profile 2 shown is provided in the region of a latching section 15 in the region of a latching section 15, in the longitudinal direction offset to the insertion section 7 and acting in the longitudinal direction.
  • the latching and counter-latching means 8, 9 are designed such that they can be brought into engagement with one another by longitudinally displacing the encompassing section 6 on the bearing profile section 4, so that a longitudinal securing of the encompassing section 6 on the bearing profile section 4 is made possible, which is achieved by the engagement.
  • latching and counter-latching means 8, 9 are designed to be rotatable relative to one another despite an engagement, that is to say in a latched state.
  • the gripping section 6 can thus still be pivoted about the longitudinal axis of the bearing profile section 4 in a locked state of the latching and counter-latching means 8, 9.
  • the bearing profile section 4 is inserted here in the area of the insertion section 7 into the gripping section 6 of the rafter holder 3. From the in Fig. 1 shown position, the rafter holder 6 for this purpose or for mounting in the region of the recessed insertion section 7 with the recess 18 is pushed onto the bearing profile section 4, which is made possible by the locally provided recess 15.
  • the locking means 8, which in one Fig. 2 shown relaxed state protrudes into the recess 18 is biased.
  • the pretension usually does not have to be applied manually when the latching means is pretensioned upward or obliquely upward, as in the exemplary embodiment shown, since the weight of the rafter 5 connected to the rafter holder 3 detaches the gripping section 6 against the spring force of the latching means 8 when it is inserted presses down.
  • the rafter holder 3 can now be moved along the longitudinal beam profile 2 or in the longitudinal direction on the bearing profile section 4.
  • Figure 3B shows an enlarged cross-sectional view of the canopy device according to Figure 3A in the area of the encompassing section.
  • the secant-like recess 17 of the insertion section 7 is shown in detail here.
  • the recess 17 clearly does not penetrate the material of the bearing profile section 4. Accordingly, it is a pocket-like recess 17.
  • the shape of the bearing profile section 4 which is changed locally by means of the recess 17 in the region of the insertion section 7 enables the bearing profile section 4 to be inserted here into the encompassing section 6 of the rafter holder 3.
  • the insertion section 7 can also be formed with a different shape of the recess 17.
  • the recess 17 can also be crescent-shaped, for example.
  • the function of the secant-like recess 17 is the same as that of a crescent-shaped recess. Due to its straight course, the secant-like recess is comparatively easier to produce, for example by means of a straight crossing of a conventional milling cutter with a cylindrical shape.
  • Figure 4A shows a cross-sectional view through a latching section 15 of the longitudinal beam profile 2 and the rafter holder 3 of the roofing device 1.
  • the position shown here is based on the position Figure 3A taken by longitudinally moving the rafter holder 3.
  • the rafter holder 3 is accordingly shifted longitudinally along the bearing profile section 4 from the insertion section 7 to the latching section 15.
  • Figure 4B shows a detailed view of the canopy device 1 according to Figure 4A in the area of the encompassing section.
  • the latching means 8 is formed with a resilient pressure piece 12 arranged in the encompassing section 6, and the counter-latching means 9 is formed with a circumferential groove 13 made in the bearing profile section 4.
  • this slides accordingly 3A and 3B pressure piece pressed into the encompassing section 6 along the surface of the bearing profile section 4 and snaps into the circumferential groove 13 due to its spring preload when the circumferential groove 13 is reached.
  • the circumferential groove 13 thus limits the longitudinal displacement, so that the rafter holder 3 is secured longitudinally.
  • the rafter holder 3 can be pivoted relative to the longitudinal beam profile 2 while maintaining the positive fit in a pivoting range of an angle 10 about the longitudinal axis of the bearing profile section into different angles of attack. This is achieved in that the bearing profile section 4 is designed to encompass a larger circumferential angle than the encompassing section 6 encompasses the bearing profile section 4.
  • the gripping section 6 can therefore be pivoted about an angle of rotation 10 predetermined with the circumferential groove about the longitudinal axis of the bearing profile section 4.
  • the angle 10 is 27 °, for example.
  • the angle 10 can be in the range from 10 ° to 45 °, preferably in the range from 15 ° to 35 °, particularly preferably in the range from 25 ° to 30 °.
  • the Range of a possible angular position 11 of the rafter holder 3 to the longitudinal beam profile 4 in a locked state between 3 ° and 30 °.
  • differently dimensioned areas of a possible angular position 11 are possible, for example from 0 ° to 45 °. In theory, negative areas of the angular position 11 are also conceivable.
  • Figure 5A shows a cross-sectional view of the canopy device 1 according to Figure 4A in a level state.
  • a position of the rafter holder 3 and the rafter 5 relative to the longitudinal beam profile 2 is accordingly 0 ° here. Since, in the case of a mounted roofing device, at least a small angle of inclination is generally provided in order to ensure that precipitation runs off, this is a position which is only relevant for assembly or disassembly.
  • Figure 5B shows an enlarged view of the canopy device 1 according to Figure 5A in the area of the locking and counter-locking means 8, 9.
  • the circumferential groove 13 ends at its upper end with an incline 14.
  • the latching connection of the latching and counter-latching means 8, 9 can thus be released by pushing the pressure piece 12 back into the encompassing section 6 by crossing the horizontal position and in this way. can be pressed out of the circumferential groove 13.
  • the pressure piece 12 At the end of the slope 14, the pressure piece 12 thus rests on the outer surface of the bearing profile section 4 and can accordingly slide again longitudinally along the bearing profile section 4 when the rafter holder 3 is displaced longitudinally.
  • the pressure piece 12 is formed with a rounded head in the embodiment shown. It can now be pressed out in the horizontal or 0 ° position shown, in which it is already largely pushed out of the circumferential groove 13, by the rounded shape with a little effort, for example a rubber hammer blow, directly in the longitudinal direction of the bearing profile section 4.
  • Fig. 6 shows a perspective view of a latching section 15.
  • the latching section 15 has a width which corresponds at least to the width of the encompassing section 6 of the rafter holder 3 and is largely formed with the profile of the bearing profile section 4.
  • the counter-latching means 9, here in the form of the circumferential groove 13, is arranged within the latching section 15, preferably in the center.
  • latching sections 7 are assigned to latching section 15, which are arranged on both sides directly next to latching section 15.
  • the latching and counter-latching means 8, 9 can be brought into engagement with one another starting from both insertion sections 7 by longitudinally displacing the encompassing section 6 inserted into the bearing profile section 4 from the respective insertion section 7 to the latching section 15.
  • the rafter holder 3 is arranged in the center of the bearing profile section 4 between the two insertion sections 7 in accordance with the arrangement of the latching section 15.
  • Fig. 8 shows a perspective view of a terrace roof with wall connection.
  • the roofing device 1 has a plurality of parallel rafters 5, which are held on the side member profile 2.
  • a infill 24 runs between the rafters 5, which is designed as a glass infill, for example.
  • an infill 24 can also be provided in the form of different types of panels, for example so-called double-wall panels or opaque panels.
  • rafters 5 At an end of the rafters 5 opposite the longitudinal beam profile 2, they are supported via a pivot bearing on a purlin 19 running parallel to the longitudinal beam profile 2.
  • An angle of attack of the rafters 5 is positive relative to the wall 20 or the wall connection profile 2 fixed thereon, so that the roofing device 1 falls from the side member profile 2 towards the purlin 19.
  • the purlin 19 thus forms a foot purlin here.
  • the purlin 19 is supported by two posts 21 attached to it at the ends, which are anchored in a floor 22.
  • a gutter 23 running transversely to the rafters 5 or parallel to the purlin 19 is also provided, with an associated drain pipe for receiving and removing precipitation.
  • the roofing device 1 is not designed to be connected to a wall, but rather is free-standing and sloping on both sides.
  • the longitudinal beam profile 2 is accordingly designed as a ridge purlin and has a bearing profile section 4 on both sides, as well as all other elements of the longitudinal beam profile 2 described in relation to the preceding figures.
  • the longitudinal beam profile 2, which is designed as a ridge purlin, is articulated by means of a pivot bearing on a purlin 19 'which runs parallel to the longitudinal beam profile 2 and is supported at the end on middle posts 21'.
  • Fig. 10 shows a perspective sectional view of a roofing device 1 according to Fig. 1 with infill 24.
  • the infill 24 is placed with an expansion joint 29 on a respective glass gasket 26 inserted into the receiving sections of a support profile 25 inserted between the rafter holders 3 and the rafter 5 and held by means of profiles 28 fastened in fastening grooves 27.
  • Fig. 11 shows a longitudinal sectional view through a terrace roof in the area of infills 24.
  • the rafters 5 are also shown in cross section here.
  • An expansion joint 29 is provided between the rafters 5 and the infills 24. According to the invention, these expansion joints 29 are optimally guaranteed by the predetermined positioning of the rafter holder 3 and thus the rafters 5 in the longitudinal direction of the longitudinal beam profile 2 without additional measurement. A last infill 24 'in the assembly order therefore does not need to be shortened in order to correctly set an expansion joint 29' in the assembly order.
  • a groove that cuts the bearing profile section in the manner of a secant would also be conceivable as counter-latching means.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Roof Covering Using Slabs Or Stiff Sheets (AREA)

Claims (14)

  1. Dispositif formant toit (1), en particulier auvent de terrasse, comportant :
    un profil de support longitudinal (2), lequel est configuré afin de supporter un maintien de chevron (3) et comporte une section de profil de logement (4) ;
    un maintien de chevron (3) destiné à maintenir un chevron (5) sur le profil de support longitudinal (2), dans lequel le maintien de chevron comporte une section d'enveloppement (6) correspondant à la section de profil de logement (4), réalisée pour être supportée en complémentarité de formes sur la section de profil de logement (4),
    dans lequel le profil de support longitudinal (2) comporte une section d'introduction (7) délimitée localement dans la direction longitudinale, la section de profil de logement (4) étant adaptée à celle-ci de telle sorte qu'elle peut être insérée dans la section d'enveloppement (6) du maintien de chevron (3) pour le montage,
    dans lequel la section d'enveloppement (6) est réalisée pour être déplacée longitudinalement sur la section de profil de logement (4) et une complémentarité de formes peut être établie entre la section d'enveloppement (6) et la section de profil de logement (4) par déplacement longitudinal,
    caractérisé en ce
    qu'un moyen d'encliquetage (8) est prévu sur la section d'enveloppement (6) du maintien de chevron (3) et un moyen de contre-encliquetage (9) agissant dans la direction longitudinale et agencé en décalage dans la direction longitudinale par rapport à la section d'introduction (7) est prévu sur la section de profil de logement (4) du profil de support longitudinal (2), ces moyens étant réalisés pour pouvoir entrer en prise l'un avec l'autre par déplacement longitudinal de la section d'enveloppement (6) sur la section de profil de logement (4).
  2. Dispositif formant toit selon la revendication 1,
    caractérisé en ce
    que les moyens d'encliquetage et de contre-encliquetage (8, 9) sont réalisés pour l'immobilisation longitudinale de la section d'enveloppement (6) sur la section de profil de logement (4).
  3. Dispositif formant toit selon la revendication 2,
    caractérisé en ce
    que les moyens d'encliquetage et de contre-encliquetage (8, 9) sont réalisés pour pouvoir tourner l'un par rapport à l'autre, de sorte que la section d'enveloppement (6) peut, dans un état emboîté, pivoter autour de l'axe longitudinal de la section de profil de logement (4).
  4. Dispositif formant toit selon la revendication 3,
    caractérisé en ce
    que la section d'enveloppement (6) peut, dans un état emboîté, pivoter autour de l'axe longitudinal de la section de profil de logement (4) d'un angle prédéterminé (10), en particulier d'un angle (10) valant entre 10° et 45°, de préférence entre 15° et 35°, tout particulièrement entre 25° et 30°.
  5. Dispositif formant toit selon la revendication 3 ou 4,
    caractérisé en ce
    que la section d'enveloppement (6) peut, dans un état emboîté, pivoter autour de l'axe longitudinal de la section de profil de logement (4) d'un secteur angulaire prédéterminé d'une position du maintien de chevron (3) par rapport au profil de support longitudinal (2), en particulier en cas d'une position angulaire (11) du maintien de chevron (3) par rapport à la section de profil de logement (4) entre 0° et 45°, de préférence entre 0° et 35°, tout particulièrement entre 3° et 30°.
  6. Dispositif formant toit selon la revendication 4 ou 5,
    caractérisé en ce
    que les moyens d'encliquetage et de contre-encliquetage (8, 9) sont réalisés pour se détacher par dépassement de l'angle de rotation prédéterminé (10) et/ou de la section d'angle prédéterminée (11).
  7. Dispositif formant toit selon la revendication 6,
    caractérisé en ce
    que le moyen d'encliquetage (8) et le moyen de contre-encliquetage (9) sont formés avec une pièce de pression (12) élastique et avec une gorge périphérique (13) correspondant à celle-ci.
  8. Dispositif formant toit selon la revendication 7,
    caractérisé en ce
    que la gorge périphérique (13) se termine avec une pente (14) à au moins une extrémité, de sorte que pour détacher les moyens d'encliquetage et de contre-encliquetage (8, 9) la pièce de pression peut être poussée hors de la gorge périphérique (13) par dépassement de l'angle de rotation prédéterminé (10) et/ou de la section d'angle prédéterminée (11) .
  9. Dispositif formant toit selon la revendication 7 ou 8,
    caractérisé en ce
    que le moyen d'encliquetage (8) est formé avec la pièce de pression (12) agencée dans la section d'enveloppement (6) et le moyen de contre-encliquetage (9) est formé avec la gorge périphérique (13) pratiquée sur la section de profil de logement (4).
  10. Dispositif formant toit selon l'une des revendications précédentes,
    caractérisé en ce
    que le moyen de contre-encliquetage (9) est agencé dans une section d'encliquetage (15) de la section de profil de logement (4) prédéterminant une position de montage du maintien de chevron (3) dans la direction longitudinale et les moyens d'encliquetage et de contre-encliquetage (8, 9) peuvent entrer en prise l'un avec l'autre par déplacement longitudinal de la section d'enveloppement (6) sur la section de profil de logement (4) de la section d'introduction (7) à la section d'encliquetage (15).
  11. Dispositif formant toit selon la revendication 10,
    caractérisé en ce
    que la section d'introduction (7) est agencée immédiatement à côté de la section d'encliquetage (15).
  12. Dispositif formant toit selon la revendication 10 ou 11,
    caractérisé en ce
    que deux sections d'introduction (7) sont ordonnées à la section d'encliquetage (15), lesquelles sont agencées à côté de la section d'encliquetage (15), des deux côtés.
  13. Procédé de fabrication d'un dispositif formant toit selon l'une des revendications précédentes, avec les étapes :
    de préparation d'un profil de support longitudinal (2) pour loger un maintien de chevron (3), lequel comporte une section de profil de logement (4), et d'un maintien de chevron (3) destiné à maintenir un chevron (5) sur le profil de support longitudinal (2), lequel comporte une section d'enveloppement (6) correspondant à la section de profil de logement (4), dans lequel un moyen d'encliquetage (8) est prévu sur la section d'enveloppement (6) du maintien de chevron (3) et un moyen de contre-encliquetage (9) agissant dans la direction longitudinale et agencé en décalage par rapport à la section d'introduction (7) est prévu sur la section de profil de logement (4) du profil de support longitudinal (2) ;
    d'introduction de la section de profil de logement (4) dans la section d'enveloppement (6) dans la zone d'une section d'introduction (7) sur le profil de support longitudinal, délimitée localement dans la direction de la longueur ; et
    d'établissement d'une complémentarité de formes entre la section d'enveloppement (6) et la section de profil de logement (4) par déplacement longitudinal de la section d'enveloppement (6) relativement à la section de profil de logement (4) ; et
    d'établissement d'une immobilisation longitudinale de la section d'enveloppement (6) sur la section de profil de logement (4) au moyen de l'entrée en prise des moyens d'encliquetage et de contre-encliquetage (8, 9) par la déplacement longitudinal de la section d'enveloppement (6) sur la section de profil de logement (4).
  14. Procédé selon la revendication 13,
    caractérisé en ce
    qu'après le déplacement longitudinal, un pivotement en complémentarité de formes, immobilisé dans la direction longitudinale, du maintien de chevron (3) par rapport au profil de support longitudinal (2) est effectué afin de régler une inclinaison de toit dans l'état emboîté.
EP18213072.4A 2017-12-29 2018-12-17 Dispositif formant toit et procédé de fabrication d'un dispositif formant toit Active EP3505701B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE202017006664.5U DE202017006664U1 (de) 2017-12-29 2017-12-29 Überdachungsvorrichtung
DE102017223880.1A DE102017223880A1 (de) 2017-12-29 2017-12-29 Überdachungsvorrichtung

Publications (2)

Publication Number Publication Date
EP3505701A1 EP3505701A1 (fr) 2019-07-03
EP3505701B1 true EP3505701B1 (fr) 2020-07-15

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ID=64744447

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Application Number Title Priority Date Filing Date
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Country Status (1)

Country Link
EP (1) EP3505701B1 (fr)

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE680607A (fr) * 1966-05-06 1966-10-17
GB0306473D0 (en) * 2003-03-21 2003-04-23 Burnden Holdings Uk Ltd Improvements in and relating to connectors
DE102006003212B4 (de) * 2006-01-24 2007-11-22 Erhardt Markisenbau Gmbh Überdachung
DE202016005196U1 (de) * 2016-08-29 2016-11-07 Ingo Kneer Überdachungsvorrichtung

Non-Patent Citations (1)

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

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Publication number Publication date
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