EP2423405B1 - Couverture à joint debout - Google Patents

Couverture à joint debout Download PDF

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Publication number
EP2423405B1
EP2423405B1 EP20110177628 EP11177628A EP2423405B1 EP 2423405 B1 EP2423405 B1 EP 2423405B1 EP 20110177628 EP20110177628 EP 20110177628 EP 11177628 A EP11177628 A EP 11177628A EP 2423405 B1 EP2423405 B1 EP 2423405B1
Authority
EP
European Patent Office
Prior art keywords
leg
standing seam
cover according
seam cover
sheet
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
EP20110177628
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German (de)
English (en)
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EP2423405A1 (fr
Inventor
Walter Schneider
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.)
HSW Monteco GmbH
Original Assignee
HSW Monteco GmbH
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
Application filed by HSW Monteco GmbH filed Critical HSW Monteco GmbH
Publication of EP2423405A1 publication Critical patent/EP2423405A1/fr
Application granted granted Critical
Publication of EP2423405B1 publication Critical patent/EP2423405B1/fr
Active legal-status Critical Current
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
    • E04D3/36Connecting; Fastening
    • E04D3/361Connecting; Fastening by specially-profiled marginal portions of the slabs or sheets
    • E04D3/362Connecting; Fastening by specially-profiled marginal portions of the slabs or sheets by locking the edge of one slab or sheet within the profiled marginal portion of the adjacent slab or sheet, e.g. using separate connecting elements
    • 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
    • E04D3/36Connecting; Fastening
    • E04D3/361Connecting; Fastening by specially-profiled marginal portions of the slabs or sheets
    • E04D2003/3615Separate fastening elements fixed to the roof structure and consisting of parts permitting relative movement to each other, e.g. for thermal expansion

Definitions

  • the invention relates to a standing seam roofing according to the preamble of claim 1.
  • the sliding holder for profiled sheet stand seam roofing membranes.
  • the sliding holder has a foot part, which can be fastened to a substructure, and a head part, which can be displaced with respect to the foot part.
  • the headboard has a sliding foot.
  • the sliding foot stands with a standing surface on the foot part and is guided with a rail. Between rail and Gleitfuss there is a lateral clearance, which allows a shift of the Gleitfusses with respect to the rail transversely to the rail direction and thereby also allows rotation. As a result, the required precision when moving the sliding holder is less high and reduces the shear load of the mounting screws.
  • the foot part is about 20 to 35 cm long and therefore on the one hand can bridge a deep bead of a trapezoidal sheet metal and on the other hand gives sheet metal tracks of 50 meters and more enough room for expansion.
  • this slide holder is relatively complicated. This inevitably leads to increased production costs.
  • the respective slide holder must be mounted before the respective roof element is attached to this. The position of the slide holders must therefore be precisely measured in advance.
  • a simple way of a sliding mount is in the EP 1 249 556 disclosed. Characterized in that at the respective profiled sheet web of a roof covering along the longitudinal flange, which is overlapped by the adjacent profiled sheet web, a plurality of slots are provided. By at least two of the slots screws are passed, which serve the slidable fixing of the profiled sheet web to the ground.
  • the profiled sheet is on the one hand reliably fixed by means of screws on the ground and on the other hand is displaceable relative to the screws, between the screw head and slot each a sliding clamp or a washer and a support plate is arranged.
  • this bracket design has the disadvantage that for the flexible fixing of the roof elements, a plurality of slots must be present. Also, the longitudinal displacement of the roof elements is limited by the length of the slots.
  • Object of the present invention is therefore to provide a cost-effective roof element holder. Yet another object is that the determination of the holder on the ground as quickly as possible, so without high precision requirements for the placement of the holder is feasible. Another object is that the thermal expansion of the individual roof elements is made possible by the holder without restriction.
  • the object is achieved in a device according to the preamble of claim 1, characterized in that the holding plate is U-shaped by a first leg and a second leg of the slide holder, and that the slide holder with a third leg connected to the first leg between the second Stehfalzsteg and the holding web engages.
  • the slide holder works like a rail, along which the profiled sheet metal sheet is guided and can expand unrestricted.
  • Another advantage of the slide holder is that the profiled sheet tracks can extend almost noiselessly along the slide holder due to the unrestricted rail-like guidance. The usual noise in standing seam coverings noise during the expansion of the profiled sheet metal tracks is therefore prevented.
  • the attachment of the profiled sheet tracks to the substructure by means of a plurality of pushers as very easy and quick to carry out.
  • Unwanted transverse displacements of the profiled sheet web are prevented by the third leg.
  • the length of the third leg is dimensioned to protrude sufficiently between the second standing seam ridge and the retaining web to prevent the profiled sheet web from transverse displacement, but not longer than necessary to minimize material costs.
  • the sides of the first and third legs, which face the second leg, can be made ribbed in the longitudinal direction of the sliding holder. As a result, an improved sliding of the profiled sheet web is ensured along the slide holder.
  • the slide holder and the profiled sheet metal tracks are made of aluminum, an increased frictional resistance between the slide holder and profiled sheet is prevented by the longitudinal corrugation.
  • the holding plate is free of fastening openings.
  • the production cost of profiled sheeting is thereby significantly reduced.
  • a variety of provided at regular intervals along the entire length of the retaining plate slots, as they are otherwise necessary for the flexible fixing to the substructure, are therefore superfluous. It is conceivable, however, that profile sheet tracks, which already have slots described, are combined for attachment to the base with the at least one slide holder.
  • the U-profile has a first leg, with which the U-profile can be placed on the flat substructure, a second leg, which extends parallel or substantially parallel to the first leg and shorter than the first leg and a third leg formed by the free end of the first leg extending at right angles in the direction of the second leg.
  • This simple design of the sliding holder this can be adapted during manufacture without effort to the dimensions of the profiled sheet metal.
  • the slide holder fulfills the task of holding the profiled sheet web with a simultaneous unrestricted longitudinal displacement and avoiding transverse displacement of the profiled sheet web.
  • an opening between the free end of the second leg and the third leg as well as a gap between the first and second legs are dimensioned to snap in place allow the holding plate and the holding web under elastic deformation of the holding plate and / or the second leg.
  • the sliding holder is therefore not necessarily pushed onto the retaining plate, but can also be snapped on directly at the mounting point on the retaining plate.
  • an opening between the free end of the second leg and the third leg as well as a gap between the first and the second legs are dimensioned so that they allow only a sliding movement of the holding plate in profile sheet longitudinal direction.
  • the tolerances between the slide holder, retaining plate and retaining web are lower, which leads to an even stronger bracket between profiled sheet and sliding holder.
  • a plurality of first through openings are provided on the first leg and a plurality of second through openings are aligned in pairs, the diameters of the first through openings being smaller than a head of a fastening means and the diameters of the second through openings being greater than the head of the fastener are.
  • the special dimensioning of the passage openings allows the individual attachment means to be inserted through the second passage openings and the head of the attachment means to rest on the first passage opening. The space between the first and second legs is therefore free to receive the retaining plate.
  • fastening means are provided with a head and a shank for fastening the sliding holder on the base.
  • An attachment of the slide holder to the base is done quickly with conventional fasteners such as screws or nails.
  • the sliding holders are reliably fixed to the substructure.
  • the length of the first leg expediently corresponds substantially to the width of the holding plate. This is the profiled sheeting Sliding easily in the slide holder and still has little play.
  • a mounting flange is provided on the side of the U-profile, which faces away from the profiled sheet metal web. Accordingly, the position of the sliding holder on the substructure does not have to be determined prior to assembly of the profiled sheet metal tracks, but is predetermined by the profile sheet trays laid one after the other on the substructure. Only after the equipped with the mounting flange slide holder is pushed onto the retaining plate, this is fixed with fasteners on the substructure.
  • the mounting flange is formed by the fact that the first and second leg are superimposed in a region which projects beyond the width of the retaining plate.
  • the sliding holder is therefore quickly and cheaply produced from a sheet metal train.
  • the slide holder is made in an extrusion process.
  • the extruder leaves a profile with the cross section of the slide holder. This extruded profile is then subdivided into a plurality of sliding holders of appropriate length.
  • the preferred material for the extrusion process is aluminum or an aluminum alloy, although all other extrudable metals and alloys can be used.
  • the first and second through holes are provided on the mounting flange and aligned in pairs, the first and second through holes preferably having a diameter which is smaller than the head of the fastener and larger than the shank of the fastener.
  • the sliding holder is therefore in particular after it has been pushed onto the retaining plate, fixed to the substructure with the fastening means.
  • the slide holder is made of a single sheet metal strip. This considerably reduces the manufacturing costs of the sliding holder.
  • the sliding holder is in two parts, wherein the first and third leg forms the first part and the wide leg forms the second part. This is of relevance if the profiled sheets are made very long. Due to the bipartite of the slide holder, it is possible to arrange the first and the second part directly to the mounting location on the retaining plate without the Slide holder would have to be postponed for a long time. It is understood that one-piece embodiments can be dimensioned so that they can be attached directly to the mounting location on the retaining plate. However, the tolerances which are predetermined by the holding plate, must be inevitably increased.
  • a bead is provided following the first Stehfalzsteg whose height and width provide space for receiving the slide holder, which serves to attach the adjacent profiled sheet.
  • a further aspect of the invention advantageously relates to a holder provided above the roof surface, which is approximately N-shaped and thus has two webs directed parallel to one another and a bridge connecting the webs, indentations for receiving the head formation of a standing seam being formed on the webs , so that the holder is pushed onto a standing seam.
  • This holder has the advantage that it can be arranged on any standing seam of the roofing without damaging the roofing in any way.
  • At least two mutually aligned bores are provided on the webs in the region between the indentations and the bridge of the holder profile.
  • the webs of the holder, in particular the indentations can be pressed with pressed parts, in particular screws, against the head training on standing seam.
  • the roofing is therefore not damaged by fasteners, since the determination of the holder is based solely on clamping forces.
  • a profiled sheeting is in the EP 1 249 556 disclosed.
  • slots are provided on a mounting flange, which in the FIG. 1 are no longer shown. Through the slots fasteners are guided to set the profile tracks on the substructure.
  • the present invention relates to a standing seam covering, which is designated overall by the reference numeral 11 ( FIG. 4 ).
  • the standing seam roofing consists of a plurality of profiled sheet metal sheets 13, as in the FIGS. 1 and 4 shown, and sliding holders in the form of U-profiles 15.
  • the U-profiles 15 serve the longitudinally displaceable mounting of the profiled sheet metal tracks 13 to a substructure, not shown.
  • Three different embodiments of the slide holder are in the FIGS. 2, 3 and 4 shown.
  • the profiled sheeting 13 has a clothing surface 17, which is located between a first and second longitudinal edge 19,21.
  • a vertical Stehfalzsteg 23 is formed to which a concave shape 25 connects.
  • a head formation 27 is formed, which of a further Stehfalzsteg 29 and a holding web 31 is worn.
  • the holding web 31 includes a holding plate 33 at.
  • the retaining plate 33 may have double sheet thickness when the sheet is bent once down. This gives the retaining plate 33 sufficient stability against the effects of force caused by weathering.
  • Each profiled sheet 13 is held by a plurality of sliding holders 15 slidably on the base.
  • the number of sliding holder 15 is dependent on the length of the profiled sheet metal sheets 13 and the expected weather conditions such as storm or snow loads.
  • the slide holder 15 in the form of U-profiles, which in the FIGS. 2 and 3 are shown are bent from a sheet metal strip or produced by means of an extrusion process.
  • aluminum is used as the material, although other materials can also be used, provided that they meet the requirements of a standing seam roofing, in particular the requirements of temperature differences, weathering and strength.
  • the slide holder 15 has a first leg 35 and a second leg 37, which runs almost parallel to the first leg. The first leg 35 rests on the substructure.
  • the two legs 35,37 are spaced from each other such that the holding plate 33 is slidably received between the two legs.
  • the first leg 35 is bounded by a third leg 39.
  • the third leg 39 can be made in a simple manner by the open end of the first leg 25 is bent by 90 degrees in the direction of the second leg 37.
  • the first leg 35 is bent at one point to the third leg 39, so that the length of the first leg 35 is dimensioned so that the retaining plate 33 is still slightly displaceable in the slide holder 15, but has no unnecessary margin in the slide holder 15. If the slide holder 15 is produced by the extrusion process, then it goes without saying that the bending of the legs is eliminated.
  • the profile which is divided into the individual slide holder 15, already has the cross section of the slide holder 15 when it leaves the extruder. If the slide holder 15 is pushed onto the profiled sheet web 13, the third leg 39 projects into the intermediate space 41, which is delimited by the standing seam web 29 and the holding web 31. As a result, undesirable transverse displacements of the profiled sheet metal strip 13 relative to the sliding holder 15 are prevented.
  • the slide holder 15 is fixed with fastening means 43, preferably tapping screws, to the substructure.
  • the inner sides of the slide holder 15 may have a corrugation in the longitudinal direction (not shown in the figures) to improve the sliding properties of the slide holder.
  • the slide holder 15 has a mounting flange 45, which is formed by the fact that the first and second legs 35,37 are pressed against each other.
  • the width of the mounting flange 45 projects slightly beyond the diameters of superposed first and second through holes 47, 49 provided in the first and second legs 35, 37, respectively.
  • the through holes 47,49 are provided centrally on the legs.
  • the head 53 must therefore be recessed by the second leg 37, so that the fastening means 43 releases the space for receiving the retaining plate 33.
  • the diameter of the second passage opening must therefore be larger than the head 53.
  • the slide holder 15 is made in two parts.
  • the first and third legs 35,39 form the first part and the second leg 37 forms the second part.
  • the second leg 37 is received in a form-fitting manner in the first leg 39.
  • the two parts are held together by the fastening means 51.
  • a bead 54 is provided on the profiled sheeting 13, which is arranged above the sliding holder 15.
  • the bead 54 is dimensioned such that the underlying slide holder 15 finds enough space.
  • the mounting of the standing seam roofing 11 can be done very quickly and flexibly, since the position of the slide holder 15 is freely selectable along the retaining plate 33. Also, the individual slide holder 15 need not be set in advance on the base, but are pushed onto the profiled sheet 13 before the position of the profiled sheet 13 is fixed to the base by means of the slide holder 15.
  • FIG. 4 can be seen that in the assembled state, two adjacent profiled sheet metal tracks 13 are connected by the fact that the concave shape 25 of a second Profilblechblech the head formation 27 of a first profiled sheet web surrounds.
  • This connection is used for attaching a holder 55.
  • the holder 55 has the shape of a ⁇ -profile.
  • two symmetrical webs 59 are arranged vertically.
  • the webs 59 each have a bulge 61, which serves to receive the concave shape 25, when the holder is pushed onto the connection of adjacent profile sheet tracks.
  • the distance between the two webs 59 is dimensioned such that the standing seam webs 23, 29 and the retaining web 31 find space between the two webs.
  • the holder 55 is frictionally fixed to the standing seam.
  • the clamping effect is generated by the two webs 59 are clamped together.
  • the clamping effect is enhanced by the fact that the inner sides 65 of the webs 59 are fluted.
  • the holders 55 may be disposed at any position of the standing seam roofing 11 at which a standing seam is located. This makes the holder 55 extremely flexible.
  • the holders 55 can be used, for example, for holding gutters, roof end profiles or solar cells. Mentioned attachments are held on the holder 55 or a plurality of holders, for example by means of screws or rivets on the bridges 57 are held.

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

Claims (15)

  1. Couverture de toit à assemblage par agrafage sur bords relevés (11) avec
    - une multitude de feuilles de tôle profilée (13) placées l'une à côté de l'autre pour la fixation à une structure porteuse avec
    - une surface de revêtement (17) entre un premier et un second bord orienté dans le sens de la longueur (19, 21),
    - pour le premier bord (19) une première entretoise d'assemblage par agrafage sur bords relevés (23) avec un évidement moulé (25) faisant saillie vers le côté extérieur de la feuille de tôle profilée (13) et concave sur le côté intérieur,
    - pour le second bord (21) de la feuille de tôle profilée (13) une secondeentretoise d'assemblage par agrafage sur bords relevés (29) avec une configuration de tête (27) pouvant être enveloppée par l'évidement moulé concave (25) d'une seconde feuille de tôle profilée adjacente (13) et une entretoise de retenue qui y est moulée (31), parallèlement à la secondeentretoise d'assemblage par agrafage sur bords relevés (29), et une tôle de retenue (33) coudée à partir de l'entretoise de retenue(31),
    des appuis coulissants (15) coopérant avec la tôle de retenue (33) étant prévus pour le support de la feuille de tôle profilée (13) sur la structure porteuse,
    la tôle de retenue (33) étant enserrée en forme de U par un premier montant (35) et un second montant (37) de l'appui coulissant (15),
    caractérisé en ce que l'appui coulissant (15) s'engrène avec un troisième montant (39) relié au premier montant (35) entre la secondeentretoise d'assemblage par agrafage sur bords relevés (29) et l'entretoise de retenue (31).
  2. Couverture de toit à assemblage par agrafage sur bords relevés selon la revendication 1, caractérisé en ce que la tôle de retenue (33) est libre d'ouvertures de fixation.
  3. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 2, caractérisé en ce que le second montant (37) s'étend substantiellement parallèlement au premier montant (35) et est plus court que le premier montant (35).
  4. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 3, caractérisé en ce qu'une ouverture entre l'extrémité libre du second montant (37) et le troisième montant (39) ainsi qu'également un espace intermédiaire entre le premier et le second montant (35, 37) sont dimensionnés tels qu'ils permettent un enclenchement de la tôle de retenue (33) et de l'entretoise de retenue (31) en déformant élastiquementla tôle de retenue (33) et/ou le second montant (37).
  5. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 3, caractérisé en ce qu'une ouverture entre l'extrémité libre du second montant (37) et le troisième montant (39) ainsi qu'également un espace intermédiaire entre le premier et le second montant (35, 37) sont dimensionnés tels qu'ils permettent uniquement un mouvement de glissement de la tôle de retenue (33) dans le sens longitudinal de la tôle profilée.
  6. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 5, caractérisé en ce qu'une pluralité de premières ouvertures de passage (47) sont prévues sur le premier montant (35) et une pluralité de secondes ouvertures de passage (49) sur le second montant (37) qui sont alignées par paires les unes avec les autres, les diamètres despremières ouvertures de passage (47) étant plus petits que la tête (53) d'un moyen de fixation pour la fixation de l'appui coulissant (15) sur la structure porteuse et les diamètres des secondes ouvertures de passage (49) sont plus grandes que la tête (53) du moyen de fixation.
  7. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 6, caractérisé en ce que la longueur du premier montant (35) correspond à la largeur de la tôle de retenue (33).
  8. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 7, caractérisé en ce qu'il est prévu une bride de fixation (45) sur l'appui coulissant (15) sur le côté opposé à la feuille de tôle profilée (13).
  9. Couverture de toit à assemblage par agrafage sur bords relevés selon la revendication 8, caractérisé en ce que la bride de fixation (45) est formée par le fait que le premier et le second montant (35, 37) sont posés l'un au-dessus de l'autre dans une zone qui dépasse la largeur de la tôle de retenue (33).
  10. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 6 à 9, caractérisé en ce que les premières et les secondes ouvertures de passage (47, 49) sont prévues sur la bride de fixation (45) et sont alignées par paires, la première et la seconde ouverture de passage (47, 49) possédant un diamètre qui est plus petit que la tête (53) et plus grand que la tige (51) du moyen de fixation.
  11. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 10, caractérisé en ce que le support coulissant (15) est produit en une partie à partir d'une bande de tôle.
  12. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 11, caractérisé en ce que le support coulissant (15) est en deux parties, le premier montant (35) et le troisième montant (39) formant la première partie et le second montant (37) formant la seconde partie.
  13. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 12, caractérisé en ce qu'une moulure (54) est prévue à la suite dela première entretoise d'assemblage par agrafage sur bords relevés (23), moulure, dont la hauteur et la largeur offre de la place pour loger le support coulissant (15), qui sert à fixer lafeuille de tôle profilée (13) voisine.
  14. Couverture de toit à assemblage par agrafage sur bords relevés selon l'une des revendications 1 à 13, caractérisé en ce qu'un support (44) est prévu au-dessus de la surface du toit, lequel support (55) est configuré à peu près en forme de π et qui présente ainsi deux entretoises (59) orientées parallèlement l'une à l'autre et un pont (57) qui relie les entretoises, cependant que des évidements courbés (61) sont configurés pour loger la configuration de tête (27) d'un assemblage par agrafage sur bords relevés si bien que le support (55) peut être enfilé sur unassemblage par agrafage sur bords relevés.
  15. Couverture de toit à assemblage par agrafage sur bords relevés selon la revendication 14, caractérisé en ce qu'au moins deux forures alignées l'une sur l'autre sont prévues sur les entretoises (59) dans la zone entre les évidements courbés (61) et le pont (57) du profil du support et que donc les entretoises (59) du support (55), en particulier les évidements courbés (61), peuvent être pressés avec des pièces faisant pression, en particulier des vis (63), contre la configuration de tête (27) sur l'assemblage par agrafage sur bords relevés.
EP20110177628 2010-08-26 2011-08-16 Couverture à joint debout Active EP2423405B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CH01380/10A CH703646A1 (de) 2010-08-26 2010-08-26 Stehfalzeindeckung.

Publications (2)

Publication Number Publication Date
EP2423405A1 EP2423405A1 (fr) 2012-02-29
EP2423405B1 true EP2423405B1 (fr) 2013-03-06

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Family Applications (1)

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EP20110177628 Active EP2423405B1 (fr) 2010-08-26 2011-08-16 Couverture à joint debout

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EP (1) EP2423405B1 (fr)
CH (1) CH703646A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101701431B1 (ko) 2015-03-24 2017-02-03 아이솔라에너지 주식회사 태양전지모듈 설치용 패널
EP3957805B1 (fr) * 2020-08-20 2023-11-08 Sandrini Metalli S.p.A. Structure pour revêtement de surface

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1069256A1 (fr) 1999-07-13 2001-01-17 Schneider & Co. Leichtbausysteme Support glissant et construction de toiture à doubles parois muni d'un tel support
DE50202408D1 (de) * 2001-04-04 2005-04-14 Walter Senior Schneider Profilblechbahn
DE20116359U1 (de) * 2001-10-04 2002-01-31 Heuel & Soehne Gmbh J Befestigungseinheit für die Befestigung von Dachkomponenten an einem Verbindungsbereich zweier nebeneinander angeordneter Dachabschnitte eines Aluminiumdachs
US20050055903A1 (en) * 2003-09-12 2005-03-17 Percy Greenberg Standing seam roofing panel
US7788874B2 (en) * 2004-11-10 2010-09-07 Miller Jr John L Roofing clip for metal roofing
DE102005005745C5 (de) * 2005-02-07 2011-09-29 Hans Pauli Profilplatte zum Eindecken eines Gebäudedachs sowie Gebäudedach
GB2428051B (en) * 2005-07-06 2009-12-16 Rigidal Systems Ltd System for interconnecting and securing metal sheets
ATE521762T1 (de) * 2008-03-26 2011-09-15 Ct Metal S R L Modul-dachplatte für gebäudedächer

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CH703646A1 (de) 2012-02-29
EP2423405A1 (fr) 2012-02-29

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