EP3290611B1 - 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
EP3290611B1
EP3290611B1 EP17188184.0A EP17188184A EP3290611B1 EP 3290611 B1 EP3290611 B1 EP 3290611B1 EP 17188184 A EP17188184 A EP 17188184A EP 3290611 B1 EP3290611 B1 EP 3290611B1
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EP
European Patent Office
Prior art keywords
profile
rafter
bearing
roofing device
section
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
EP17188184.0A
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German (de)
English (en)
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EP3290611A1 (fr
Inventor
Ingo Kneer
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Individual
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Individual
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Publication date
Priority claimed from DE102016216212.8A external-priority patent/DE102016216212A1/de
Priority claimed from DE202016005197.1U external-priority patent/DE202016005197U1/de
Priority claimed from DE202016005196.3U external-priority patent/DE202016005196U1/de
Priority claimed from DE102016216214.4A external-priority patent/DE102016216214A1/de
Application filed by Individual filed Critical Individual
Priority to PL17188184T priority Critical patent/PL3290611T3/pl
Publication of EP3290611A1 publication Critical patent/EP3290611A1/fr
Application granted granted Critical
Publication of EP3290611B1 publication Critical patent/EP3290611B1/fr
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    • 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
    • E04D2003/0868Mutual 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

Definitions

  • the present invention relates to a roofing device and a method for producing such a roofing device.
  • Roofs are used for a wide variety of applications.
  • a frequently encountered type of roofing represent so-called terrace roofing.
  • Terrace roofing often have a trained as a wall connection profile side rail profile, which is anchored by fastening means, such as bolts, on a wall. Due to structural or local conditions, a mounting height of such a wall connection profile may vary.
  • the patio roofing On a side facing away from the wall, the patio roofing is usually stored with a Pfette supported by posts. All these components are usually prefabricated parts, which are pre-produced in standard sizes. It is thus desirable to be able to vary during assembly a pitch angle of the rafters, which results from the mounting height of the wall connection profile and the height of the posts, in order to be able to react easily to structural or local conditions.
  • the publication US 4,998,389A describes a roof system which is provided with a wall connection.
  • wall connection fittings are provided which have a circular cylindrical recess.
  • a rafter holder has a corresponding Sparrenhalterbeschlag, which has a recordable in the recess circular cylinder.
  • the rafter holder fitting has a closure flange. In this way, the Sparrenhalterbeschlag is in a horizontal position on the wall connection fitting on and off. If a rafter holder fitting is pivoted into an angular position, the closure flange engages under the wall connection fitting so that the rafter holder is secured therein.
  • a roof panel lies here on the rafters. For sealing a separate web is provided on the wall connection profile, on which a pending on the roof panel seal is provided.
  • the present invention has the object to provide an improved roofing device and a method for their preparation.
  • this object is achieved by a roofing device having the features of patent claim 1 and / or by a method having the features of patent claim 13.
  • the finding underlying the present invention is that a change in the employment of a rafter is desirable not only in positive, but possible without structural change in the negative direction.
  • the wall connection profile or a bearing profile section of the wall connection profile to use a closed profile, so that a higher rigidity of the bearing profile section can be provided. This in turn can be taken into account in the design of the wall connection profile, so that material savings are possible.
  • the side rail profile may have different configurations, for example, it may be formed as a wall connection profile or as a purlin.
  • Sparrenhalter is any kind of suitable for holding a rafter on a side rail profile training.
  • Umgreifabites is a section of the rafter holder to understand, which is suitable for gripping the bearing section profile.
  • the bearing profile section is gripped at least partially, in particular at least on two opposite sides, in such a way that there is a form-fitting articulated coupling of the rafter holder with the longitudinal carrier profile.
  • a longitudinally locally limited insertion section is to be understood as meaning an insertion 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 is wide enough to introduce the locally except bearing profile section in the Umgreifabites the rafter holder.
  • the insertion portion thus has a width that is wider than the encompassing portion 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 side rail profile is formed in the longitudinal direction, in particular with a constant cross-sectional shape.
  • the bearing profile section is a bearing section of the side member profile extending linearly with a constant cross section, apart from the recess.
  • the production of a positive connection is made in particular by moving the rafter holder in the longitudinal direction of the longitudinal carrier profile out of the insertion section, that is to say in particular into a region without a recess of the bearing profile section.
  • the method for producing the roofing device is in particular a mounting method or a method for mounting a roofing device.
  • the bearing profile section has a cross-sectionally at least partially round profile.
  • the Umgreifabites has a corresponding at least partially round recess.
  • a sliding of the bearing profile section and the Umgreifabitess possible by the circular design, so that in a simple manner an angle is adjustable.
  • the bearing profile section is designed as a circular cylinder profile section.
  • the gripping portion is formed with a circular cylindrical portion-shaped recess. In this way, a sliding away of the bearing profile section and the Umgreifabitess in all enabled by the rest of the geometry of the components angular positions allows unlimited.
  • the encompassing section has a protruding into the at least partially round recess Bore, especially threaded hole, on.
  • the Umgreifabites is fixable by means of a fastened in the bore fastener, in particular a threaded therein screw, in a desired position on the bearing profile section.
  • a very simple and fast fixation in a desired position is possible in this way.
  • the bearing profile section is formed umgreifbar in a circumferential angle of greater than 180 °.
  • it is designed to be encompassable in a circumferential angle of at least 270 °, preferably 280 ° to 300 °.
  • a large pivoting range between the side rail profile and rafter holder allows.
  • the gripping portion is formed to engage around the bearing profile section in a circumferential angle greater than 180 °.
  • the circumferential angle is greater than 200 °, preferably between 210 ° and 260 °, more preferably between 230 ° and 250 °.
  • the bearing profile section can be grasped in the longitudinal direction away from the insertion section by the encompassing section in such a way that, while maintaining the positive locking, the rafter retainer can be pivoted into a positive position and into a negative position relative to the longitudinal carrier profile.
  • a positive employment is to understand a job in which a mounted on the rafter holder rafter from the side rail profile extends down.
  • a negative employment is accordingly a job to understand in which a mounted on the rafter holder rafter from the side rail profile upwards.
  • no structural change of the supporting components are made.
  • a pivoting range of the employment is at least -10 ° to + 30 °.
  • usual angle of attack covered by the pivoting range is at least -10 ° to + 30 °.
  • the side member profile is designed as a wall connection profile.
  • the employment is adjustable relative to a wall.
  • a wall is to understand any type of suitable for attaching the wall connection profile building. It may, for example, be a masonry wall, a wooden wall, a facade, a frame, a truss or the like.
  • the wall is a vertical wall. However, it is also conceivable to use a sloping wall or facade.
  • the side rail profile is designed as a purlin profile.
  • the purlin profile may be provided or formed in the form of a ridge purlin.
  • the roofing device can be installed in this way without a wall connection.
  • the purlin is oriented at a vertical, so that the angle of attack with respect to the vertical is aligned.
  • the side member profile on each side on a bearing profile section In this case, opposing rafter holders are in the side rail profile received.
  • This embodiment is provided in particular in a trained as a ridge purlin side rail.
  • a common side rail profile on two opposite sides of the side rail section a canopy may be two interconnected one-sided side member profiles.
  • two provided for wall connection side rail profiles can be connected to each other on their sides, so that a common profile is created with two-sided bearing profile sections.
  • the variety of components is reduced in this way, so that the production is simplified.
  • a purlin in particular in the form of a foot purlin, is provided on an end of the rafter opposite the rafter holder.
  • the purlin has a round bearing extension.
  • this is designed in the form of a circular cylinder profile section.
  • the rafter has a corresponding receiving extension, which is designed in particular in the form of a claw with a circular-cylindrical section-shaped recess.
  • the recording extension is designed to encompass the circular bearing extension.
  • the assembly of the round bearing extension with the receiving extension to produce a positive connection, preferably by longitudinal displacement of the Consfortatzes on the circular bearing extension.
  • a pivotable articulated in a large range pivotal connection of the purlin is thus created to save, so that a flexible adaptability of different angles of attack of the rafters is guaranteed here.
  • a step of stationary mounting of the longitudinal beam profile is provided prior to insertion of the bearing profile section in the Umgreifabites.
  • the longitudinal displacement is made accordingly by moving the rafter holder along the side rail profile.
  • only the rafter holder needs to be manipulated in this way, so that the assembly is simplified.
  • a positive pivoting of the rafter holder is made relative to the side member profile.
  • a desired angle of attack of the rafter relative to the side member profile in particular in a swivel range with positive or negative employment, can be set.
  • Fig. 1 shows a roofing device 1 prior to assembly.
  • the roofing device 1 has a side rail profile designed as a side member 2, a rafter 5 and a trained for holding or storage of the rafter 5 on the side rail profile rafter holder 3.
  • the side member profile 2 has a bearing profile section 4 designed for supporting the rafter holder 3.
  • the bearing profile section 4 is formed with a partially round shape, here by way of example a hollow circular cylinder shape, which are connected in one piece via support struts 14 to a wall connection region of the wall connection profile 2.
  • the longitudinal member profile 2 is exemplified as an extruded profile.
  • it contains aluminum.
  • the bearing profile section 4 is accordingly preferably formed integrally with the remaining parts of the wall connection profile 2.
  • the rafter holder 3 has a gripping portion 6 corresponding to the bearing profile section 4.
  • the roofing device 1 is shown in a cross-sectional area which extends through an insertion section 7 of the side rail profile 2.
  • this insertion section 7 of the bearing section 4 is locally excluded, here by way of example with a crescent-shaped recess 15th
  • the recess 15 does not penetrate the material of the bearing profile section 4. It is accordingly a pocket-like recess 15.
  • the means of the recesses in the region of the insertion section 7 locally changed shape of the bearing profile section 4 allows the bearing profile section 4 here in the Umgreifabites 6 of the rafter holder 3 can be inserted.
  • Fig. 2 shows a section of an insertion section 7 according to an alternative embodiment. Shown here is only the differing region of the bearing profile section 4. Incidentally, the insertion section 7 is equal to Fig. 1 educated.
  • the insertion section 7 differs in comparison with the embodiment according to FIG Fig. 1 by the different shape of the recess 15 '.
  • the recess 15 ' is not sickle-shaped here, but secant-like.
  • the function of the secant-like recess 15 ' is equal to the crescent-shaped recess 15. Due to its straight course, it is comparatively easier to produce, for example by means of a straight crossing of a conventional milling cutter with cylindrical shape. When editing but will also removed slightly more material than when producing the crescent-shaped recess 15th
  • Fig. 3A shows a cross-sectional view through an insertion section 7 of the side rail section 2 and the rafter holder 3 of the roofing device 1 according to Fig. 1 ,
  • the rafter holder 3 has in the region of the Umgreifabitess 6 a circular cylindrical recess 8. This is designed for positive storage on the bearing profile section 4.
  • Fig. 3B shows the roofing device 1 according to Fig. 3A , wherein the bearing profile section 4 is inserted in the region of the insertion section 7 in the Umgreifabites 6 of the rafter holder 3.
  • Fig. 3C shows a perspective sectional view of the roofing device 1 according to Fig. 3B , wherein the rafter holder 3 is moved along the side rail profile 2 from the insertion section 7 out.
  • the longitudinal displacement is by means of a movement arrow in Fig. 3C located.
  • Fig. 3D shows a cross-sectional view of the roofing device 1 according to Fig. 3C in the region of the Umgreifabitess 6.
  • the encompassing section 6 surrounds the bearing profile section 4, so that a positive connection exists.
  • the bearing profile section 4 and the recess 8 of the Umgreifabitess 6 a pivoting of the rafter holder 3 relative to the side rail profile 2 allows.
  • Fig. 4 shows a cross-sectional view of the roofing device 1 according to Fig. 3D in a pivoted state.
  • the rafter holder 3 is pivotable relative to the side rail profile 2 while maintaining the positive connection in a pivoting region 13 in different angles of attack. This is achieved in that the bearing profile section 4 is formed umgreifbar in a larger circumferential angle, as the Umgreifabites 6 surrounds the bearing profile section 4.
  • a circumferential angle 12 in which the gripping portion 6 surrounds the bearing profile section 4.
  • this is more than 180 °, here purely by way of example 234 °.
  • transition radii and / or further sections of the side rail profile and the rafter holder limit the pivoting range, so that a usable pivoting range 13 is slightly smaller than a calculated pivoting range and, for example, 40 °.
  • Fig. 5 shows an enlarged view of the roofing device according to Fig. 4 with breakout in the area of a fastener.
  • the encompassing section 6 has a bore 9 extending into the recess 8.
  • the bore 9 is formed here by way of example as a threaded bore.
  • a fastening means 10 here for example a threaded pin, for fixing the rafter holder 3 is introduced to the bearing profile section 4.
  • the fastening means 10 is provided to fix the rafter holder 3 to the bearing profile section 4 in a desired position or a desired angle of attack of the rafter holder 3.
  • a receiving profile 20, which is provided for receiving a infill in a longitudinal adjoining the longitudinal beam profile of the rafter holder 3 area, are attached.
  • the receiving profile 20 is provided for receiving the infill between two rafters.
  • Fig. 6A shows the roofing device 1 according to Fig. 4 with a receiving profile 20 inserted into a gap 25.
  • the rafter holder has a first surface 21 and a second surface 22.
  • the first surface 21 is flat and arranged in an upper region of the rafter holder 3, while the second surface 22 is formed as a vertical leg of a receiving angle 27 and disposed in a lower region of the rafter holder 3.
  • the gap 25 is provided between the side rail section 2, the first surface 21 and the second surface 22.
  • the receiving profile 20 is obliquely from below into the intermediate space 25 between the first surface 21 and the side rail section 2, in particular its bearing section 4, inserted. It will, as with the movement arrow Fig. 6A indicated at the height of the central region of the rafter holder 3 by an existing between the first surface 21 and the bearing profile section 4 gap obliquely inserted from bottom to top so that it enters the gap 25.
  • the receiving profile 20 has a support nose 29, which is also formed corresponding bearing profile section.
  • the support lug 29 is also inserted through the gap over the bearing profile section 4 away in the gap 25.
  • Fig. 6B shows the roofing device 1 according to Fig. 6A with swiveled receiving profile 20.
  • the pivoting of the receiving profile 20 is in accordance with the in Fig. 6B drawn movement arrow and serves for bringing a supporting surface 23 of the receiving profile provided for support on the first surface 21 into contact with the first surface 21. Further, a locking surface 24 which is provided for locking the receiving profile 20 by support on the second surface 22, pivoted to a position in which it can be brought by moving the receiving profile 20 from top to bottom with the second surface 22 into engagement.
  • Fig. 6C shows the roofing device 1 according to Fig. 6B with shifted receiving profile 20.
  • the shifting is from top to bottom according to the in Fig. 6C drawn movement arrow made.
  • the receiving profile 20 is received in the receiving angle 27 such that the locking surface 24 is in contact with the second surface 22 of the rafter holder.
  • the receiving profile is brought by the displacement in the region of the support lug 29 into abutment with the bearing profile section 4.
  • the displacement from top to bottom is performed so far parallel to the first surface 21 and the adjoining support surface 23 until the receiving profile 20 is present with its lower edge on the other leg 28 of the receiving angle 27.
  • Fig. 6D shows the roofing device 1 according to Fig. 6C with locked receiving profile 20.
  • the lock is in particular slightly biased. This is achieved in that in the region of the support lug 29, a slight shoulder 34 is provided, which in the move from top to bottom according to Fig. 6C is overcome. As a result, the support surface 23 is slightly pressed against the first surface 21 and the stopper surface 24 slightly against the second surface 22.
  • channel-like seal receivers 32 are brought into line with each other, so that they are aligned to receive a common seal 33 throughout.
  • Fig. 7 shows the roofing device according to Fig. 6D with inserted seal 33.
  • the seal 33 is formed as insect protection seal and is used with its lower end in the seal receptacle 32 of the female profile 20 and the rafter holder 3. At an upper end, the seal 33 is inserted into a receptacle provided on the cover projection.
  • the trained as insect seal seal 33 is used in particular to protect against invading nest-building insects, such as wasps or hornets. In addition, it can also be used to displace moisture, for example extreme precipitation or under the cover projection 26 oppressendem wind serve.
  • the seal 33 is designed to be flexible, so that a pivoting of the rafter holder 3 relative to the side rail profile 2 is not hindered.
  • Fig. 8 shows a perspective sectional view of the roofing device according to Fig. 7 .
  • Both the rafters 5 and the receiving profile 20 furthermore have a fastening groove 36, by means of which a infill, not shown here, can be fixed to the receiving sections 35 by means of a profile which can additionally be fastened in the fastening groove 36.
  • the receiving profile 20 rests only in a region adjacent to the rafter holder 3 with the support surface 23 on the here concealed first surface 21 of the rafter holder 3.
  • the locking surface 24 rests only in a region adjacent to the rafter holder 3 on the second surface 22 of the rafter holder 3 which is concealed here.
  • a receptacle of the receiving profile 20 is provided in a similar manner to an adjacent rafter holder, not shown here, so that the receiving profile 20 is locked at both ends.
  • Fig. 9A shows the roofing device 1 according to Fig. 7 with a negative employment of the rafter holder 3.
  • a negative angle of attack 16 of the rafter holder 3 or a rafter 5 mounted thereon relative to the side rail profile 2 causes the rafter 5 to be aligned with the side rail profile 2 in a sloping or lowered position.
  • the angle of attack 6 is exemplary -10 °.
  • the receiving profile 20 is pivoted together and in the same way with the rafter holder 3.
  • Fig. 9B shows the roofing device 1 according to Fig. 7 with a positive employment of the rafter holder 3.
  • a positive angle of attack 17 of the rafter holder 3 or a rafter 5 mounted thereon relative to the side rail profile 2 causes the rafter 5 to be aligned with the side rail profile 2 in an upward direction.
  • the angle of attack 6 is by way of example + 30 °.
  • the receiving profile 20 is pivoted together with the rafter holder 3.
  • the seal 33 deforms due to their flexibility adapted to the respective angle of attack 16; 17 and remains stored in the seal receptacle 32 and the cover projection 26.
  • Fig. 10 shows a perspective view of a patio roof with wall connection.
  • the side rail section 2 is formed as attached to a wall 50 wall connection profile.
  • the roofing device 1 has a plurality of parallel rafters 5, which are mounted on the side rail profile 2.
  • the purlin 14 is supported by two ends 18 attached thereto posts, which are anchored in a bottom 51.
  • Fig. 11 shows a cross-sectional view of the terrace roof according to Fig. 10 , the side rail section 2 is anchored by means of bolts 56 to the wall 50. Between the rafters 5 runs a infill 30, which is exemplified as a glass infill.
  • the rafter 5 is mounted on the purlin 14 by means of a pivotable about a pitch pivot bearing 52. This has a fixed to the purlin 14 round bearing extension 15 and attached to the rafters 5 recording extension 16.
  • the gutter 19 is attached by a clamp 45 to the rafters 5.
  • the drain pipe extends from the gutter 19 near the bottom and is guided along the posts 18 in the bottom 51.
  • Fig. 12 shows a perspective view of a patio roof with ridge purlin.
  • the roofing device is here not in connection to a wall, but freestanding and sloping on both sides.
  • the side rail section 2 is accordingly designed here as a ridge purlin and has on both sides depending on a bearing profile section 4, a cover extension 26 and all other elements described in relation to the above figures of the side rail profile 2.
  • the side rail section 2 is articulated by means of a pivot bearing 52 on a parallel to the side rail section 2 extending purlin 14, which is mounted end to posts 18.
  • Both sides are here at the end remote from the longitudinal beam profile 2 end of the rafters 5 arranged as document purlins 14 and gutters 19 are provided, which in the same way as in relation to 10 and 11 are formed described.
  • Fig. 13 shows a cross-sectional view of the terrace roof according to Fig. 12 .
  • Fig. 11 is configured as a ridge purlin side rail profile 2 here idealized aligned to a vertical 40.
  • the actual orientation of the side rail profile 2 results here by the positioning of the purlins 14 and the angle of attack of the rafters 5, so that the vertical orientation of the side rail section 2 shown here can also vary slightly.
  • the longitudinal beam profile 2 in this embodiment all elements on both sides.
  • these are two identical and interconnected profiles, as in the embodiment according to 10 and 11 individually used as a wall connection profile.
  • two wall connection profiles are thus joined to each other on the wall connection side and firmly connected to one another, for example by means of bolts.
  • the storage of the trained as a ridge purlin side rail 2 on the parallel purlin 14 is realized in the same way as the storage of the rafters 5 with a pivot bearing 52.
  • Fig. 14 shows a perspective sectional view of a roofing device 1 according to Fig. 8 with inserted infill 30.
  • the roofing device 1 is in particular a patio roof according to 10 and 11 .
  • the infill 30 in a patio roof according to FIGS. 12 and 13 be used.
  • the infill 30 is a glass infill. This is placed on a respectively inserted into the receiving portions 35 of the support profile 20 and the rafter 5 glass seal 31 and held by means secured in the mounting grooves 36 profiles 37.
  • Fig. 15 shows a cross-sectional view of the roofing device according to Fig. 14 .
  • the infill 30 is mounted at a height which is above the receiving angle 27.
  • the glass seal 31 is mounted for storage of the glass infill in a groove formed by the receiving profile 20.
  • the profile 37 which has at its foot a standing with the infill 30 in contact bearing seal, latched by locking lugs in the mounting groove 36 of the receiving profile 20.
  • Fig. 16 shows a longitudinal sectional view through a terrace roofing 1 according to one of FIGS. 10 to 13 in the area of infillings 30.
  • rafters 5 are also shown here.
  • the rafters 5 are formed with an extruded profile, in particular aluminum.
  • Other extrudable materials, such as plastics, are conceivable for forming the rafters 5.
  • the rafters 5 each have a reinforcement 38, which may be formed in particular as a steel core.
  • the reinforcement 38 can ever according to design or desired load of the roofing device also be formed with a different material or omitted if only slight load.
  • the profiles 37 are provided on both sides of a recess 30 for mounting. On the outer sides of the outer rafters, where no infill is provided, 37 end strips 39 are provided instead of the profiles.
  • Fig. 17 shows a cross-sectional view of a roofing device 1 according to an embodiment with wall-side gutter.
  • a gutter 19 is provided, in particular only with a negative angle of attack of the rafters 5, which also forms an angle of attack of the infill 30.
  • a lower termination of the side rail profile 2, as he, for example, in Fig. 7 is shown to be cropped. In this way, a provided on the side rail section 2 fixing strip 41 is accessible.
  • the gutter 19 is hung with a hook-on nose 42 provided thereon.
  • the gutter 19 is supported in the assembled state with a support portion 43 on the wall 50 and is secured by a provided on the underside of the hanger 42 locking projection 44 by snapping.
  • Fig. 18 shows a cross-sectional view of a roofing device according to an embodiment in the region of the spar rail end facing away from the longitudinal beam profile with gutter 19th
  • the gutter 19 is usually provided with a positive angle of attack of the rafters 5 and the infill 30.
  • the rafter end is completed with a cap 47.
  • Fig. 19 shows a perspective sectional view of a roofing device 1 in the region of a purlin 14th
  • the pivot bearing has the circular bearing extension 15, which is formed as a circular cylinder profile section.
  • the receiving extension 16 is designed as a fastener attachable to the rafters fitting and has a claw with circular cylindrical section-shaped recess for receiving the circular cylindrical profile section of the circular bearing extension 15.
  • a support profile 48 is provided between the rafter 5 and provided for receiving a further rafter pivot bearing 52. This is mounted on the circular bearing extension 15 of the purlin 14 and is provided with a glass support seal 49 to which the glass infill can be placed.
  • the fixing rod 51 extends, in particular, from the receiving extension 16 provided on the rafter 5 through the supporting profile 48 into the receiving extension 16 of the adjacent pivot bearing 52.
  • Fig. 20 shows a cross-sectional view of a purlin 14 and a pivot bearing 52nd
  • the pivot bearing 52 is shown here with its individual components.
  • the round bearing extension 15 which round, is formed here by way of example as a hollow circular cylindrical profile section, is formed integrally with the purlin profile.
  • An intangible circumferential angle of the circular bearing extension 15 is in particular more than 270 °, preferably more than 300 °.
  • the receiving extension 16 is formed as fastenable with fastening means 53 on the rafters 5 fitting. It is designed to surround the circular bearing extension 15 in a circumferential angle of greater than 180 °, for example 270 °, so that there is a pivotable form-fitting connection.
  • the receiving extension 16 can be pushed laterally, for example, at one lateral end on the circular bearing extension 15 and along the purlin 14 to be displaced to the predetermined position for him.
  • the fastening means 53 are formed here by way of example in the form of a threaded bolt connection, wherein two bolts 57 are fastened in a base plate 58.
  • the base plate 58 is mounted longitudinally displaceable in the profile of the rafter 5, wherein the bolts 57 by a in protrude the profile of saving 5 provided groove. In this way, the fastening means 53 along the rafter 5 are freely positionable.
  • a respective bolt 57 is arranged on the left and right of the claw of the receiving extension 16 and screwed by a nut with the receiving extension 16.
  • a rectangular tube 55 may be provided in the purlin profile for reinforcement. At low load, a version without reinforcements 54 or a rectangular tube 55 is conceivable.
  • Fig. 21 shows a cross-sectional view of a purlin 14 and a pivot bearing 52 according to another embodiment.
  • the bolts 57 are both located to the left of the claw of the receiving extension 16 here. Accordingly, provided on the receiving extension 16 for receiving the bolts 57 through holes provided to the left of the claw.
  • Fig. 22 shows a cross-sectional view of a purlin 14 and a pivot bearing 52 according to yet another embodiment.
  • the bolts 57 and the associated through holes are here each both arranged to the right of the claw of the receiving attachment 16.
  • Fig. 23 shows a cross-sectional view of a purlin 14 and a Abstützprofils 48 for supporting a infill 30.
  • the support profile 48 also has a claw, which surrounds the circular bearing extension 15 but only in a circumferential angle of 180 °. In this way, the support profile 48 is subsequently placed after the threading of the receiving extensions 16 between them on the circular bearing extension 15.

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  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Roof Covering Using Slabs Or Stiff Sheets (AREA)

Claims (15)

  1. Dispositif d'auvent (1), en particulier auvent de terrasse, doté :
    d'un profil de support longitudinal (2), lequel est disposé pour le stockage d'un maintien de chevron (3) et comporte une section de profil de stockage (4) ; et
    d'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 stockage (4), conçue pour le stockage en complémentarité de formes sur la section de profil de stockage (4),
    caractérisé en ce que le profil de support longitudinal (2) comporte une section d'introduction (7) délimitée localement dans la direction de la longueur, la section de profil de stockage (4) étant adaptée à celle-ci de telle sorte qu'elle peut être introduite dans la section d'enveloppement (6) du maintien de chevron (3) pour le montage, et
    en ce que la section d'enveloppement (6) est disposée pour être déplacée longitudinalement sur la section de profil de stockage (4) et une complémentarité de formes peut être établie entre la section d'enveloppement (6) et la section de profil de stockage (4) par déplacement longitudinal.
  2. Dispositif d'auvent selon la revendication 1, caractérisé en ce que la section de profil de stockage (4) possède un profil au moins partiellement rond dans sa section et la section d'enveloppement (6) possède une cavité (8) au moins partiellement ronde correspondante.
  3. Dispositif d'auvent selon la revendication 2, caractérisé en ce que la section de profil de stockage (4) est conçue comme section de profil cylindrique et/ou la section d'enveloppement (6) est conçue avec une cavité formant une section cylindrique.
  4. Dispositif d'auvent selon la revendication 2 ou 3, caractérisé en ce que la section d'enveloppement (6) comporte une perforation (9) dépassant dans la cavité (8) au moins partiellement ronde, en particulier une perforation filetée, et peut être fixée à la section de profil de stockage (4) dans une position souhaitée au moyen d'un moyen de fixation (10) pouvant se fixer dans la perforation, en particulier une tige filetée vissable dans la perforation.
  5. Dispositif d'auvent selon l'une des revendications précédentes, caractérisé en ce que la section de profil de stockage (4) est disposée en enveloppement avec un angle solide (11) supérieur à 180°, en particulier d'au moins 270°, de préférence de 280° à 300°.
  6. Dispositif d'auvent selon l'une des revendications précédentes, caractérisé en ce que la section d'enveloppement (6) est conçue pour envelopper la section de profil de stockage (4) avec un angle solide (11) supérieur à 180°, en particulier supérieur à 200°, de préférence entre 210° à 260°, tout particulièrement entre 230° et 250°.
  7. Dispositif d'auvent selon l'une des revendications précédentes, caractérisé en ce que la section de profil de stockage (4) peut être enveloppée par la section d'enveloppement (6) dans la direction de la longueur à l'écart de la section d'introduction (7) de telle sorte que tout en maintenant la complémentarité de formes le maintien de chevron (3) peut pivoter dans un pas positif et dans un pas négatif relativement au profil de support longitudinal (2).
  8. Dispositif d'auvent selon la revendication 7, caractérisé en ce qu'un intervalle de pivotement (13) du pas est au moins compris entre -10° et +30°.
  9. Dispositif d'auvent selon la revendication 7 ou 8, caractérisé en ce que le profil de support longitudinal (2) est conçu comme profil de raccord mural, dans lequel dans l'état monté le pas relativement à un mur (50), en particulier un mur vertical, est réglable.
  10. Dispositif d'auvent selon la revendication 7 ou 8, caractérisé en ce que le profil de support longitudinal (2) est conçu comme profil de panne, en particulier sous forme d'une panne faîtière, de sorte qu'à l'état monté le pas relatif est réglable.
  11. Dispositif d'auvent selon la revendication 9, caractérisé en ce que le profil de support longitudinal (2) comporte de chaque côté une section de profil de stockage et les maintiens de chevron (3) opposés peuvent y être accueillis.
  12. Dispositif d'auvent selon l'une des revendications précédentes, caractérisé en ce qu' une panne, en particulier sous forme d'une sablière, est prévue à une extrémité du chevron opposée au maintien de chevron, dans lequel la panne comporte un prolongement de stockage rond (15), en particulier sous forme d'une section de profil cylindrique et le chevron comporte un prolongement d'accueil correspondant (16), en particulier sous forme d'un sabot doté d'une cavité formant une section de profil cylindrique, dans lequel le prolongement d'accueil (16) est conçu pour envelopper le prolongement de stockage rond (15).
  13. Procédé de fabrication d'un dispositif d'auvent (1), en particulier un dispositif d'auvent selon l'une des revendications précédentes, avec les étapes :
    de préparation d'un profil de support longitudinal (2) pour l'accueil d'un maintien de chevron (3), lequel comporte une section de profil de stockage (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 stockage (4) ;
    d'introduction de la section de profil de stockage (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
    de fabrication d'une complémentarité de forme entre la section d'enveloppement (6) et la section de profil de stockage (4) par déplacement longitudinal de la section d'enveloppement (6) relativement à la section de profil de stockage (4).
  14. Procédé selon la revendication 13 caractérisé en ce qu'avant l'introduction de la section de profil de stockage (4) dans la section d'enveloppement (6), une étape du montage fixe de la section de profil de stockage (4) est prévue et le déplacement longitudinal est effectué par déplacement du maintien de chevron (3) le long du profil de support longitudinal (2).
  15. Procédé selon la revendication 13 ou 14, caractérisé en ce qu'après le déplacement longitudinal un pivotement par complémentarité de forme du maintien de chevron (3) est effectué relativement au profil de support longitudinal (2).
EP17188184.0A 2016-08-29 2017-08-28 Dispositif formant toit et procédé de fabrication d'un dispositif formant toit Active EP3290611B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL17188184T PL3290611T3 (pl) 2016-08-29 2017-08-28 Urządzenie do pokrycia dachowego i sposób wytwarzania urządzenia do pokrycia dachowego

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE102016216212.8A DE102016216212A1 (de) 2016-08-29 2016-08-29 Überdachungsvorrichtung und Verfahren zur Herstellung einer Überdachungsvorrichtung
DE202016005197.1U DE202016005197U1 (de) 2016-08-29 2016-08-29 Überdachungsvorrichtung
DE202016005196.3U DE202016005196U1 (de) 2016-08-29 2016-08-29 Überdachungsvorrichtung
DE102016216214.4A DE102016216214A1 (de) 2016-08-29 2016-08-29 Überdachungsvorrichtung und Verfahren zur Herstellung einer Überdachungsvorrichtung

Publications (2)

Publication Number Publication Date
EP3290611A1 EP3290611A1 (fr) 2018-03-07
EP3290611B1 true EP3290611B1 (fr) 2019-06-26

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Application Number Title Priority Date Filing Date
EP17188187.3A Active EP3290612B1 (fr) 2016-08-29 2017-08-28 Dispositif formant toit et procédé de fabrication d'un dispositif formant toit
EP17188184.0A Active EP3290611B1 (fr) 2016-08-29 2017-08-28 Dispositif formant toit et procédé de fabrication d'un dispositif formant toit

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP17188187.3A Active EP3290612B1 (fr) 2016-08-29 2017-08-28 Dispositif formant toit et procédé de fabrication d'un dispositif formant toit

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EP (2) EP3290612B1 (fr)
PL (2) PL3290612T3 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3620591A1 (fr) * 2018-09-07 2020-03-11 Johann Haidl Dispositif de couverture
DE102019002578A1 (de) * 2019-04-09 2020-10-15 Stobag Ag Überdachung in Form einer Pergola, eines Glasdachs oder eines Wintergartens

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE680607A (fr) * 1966-05-06 1966-10-17
BE1005740A5 (nl) * 1992-03-05 1994-01-11 Allan Thomsen N V Koppelstuk voor bouwprofielen en veranda's, wintertuinen en dergelijke constructies, ermede uitgerust.
JP3253521B2 (ja) * 1995-12-25 2002-02-04 ワイケイケイアーキテクチュラルプロダクツ株式会社 構造材の支持構造
GB2383347A (en) * 2001-12-20 2003-06-25 Dennis Anthony Jones Panel end fitting
DE20216881U1 (de) * 2002-11-02 2003-02-13 Seifert Gmbh Profilanordnung zur Befestigung von Anbauten an einem Bauwerk
DE102004049668B4 (de) * 2004-10-12 2008-04-17 Akotherm Gmbh Pfette-Sparren-Anordnung, insbesondere für Wintergärten
DE102006003212B4 (de) * 2006-01-24 2007-11-22 Erhardt Markisenbau Gmbh Überdachung

Non-Patent Citations (1)

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

Also Published As

Publication number Publication date
EP3290611A1 (fr) 2018-03-07
PL3290612T3 (pl) 2019-12-31
EP3290612A1 (fr) 2018-03-07
PL3290611T3 (pl) 2019-11-29
EP3290612B1 (fr) 2019-06-12

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