EP1101878B1 - Panneaux isolants de sous-toiture - Google Patents

Panneaux isolants de sous-toiture Download PDF

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Publication number
EP1101878B1
EP1101878B1 EP00119529A EP00119529A EP1101878B1 EP 1101878 B1 EP1101878 B1 EP 1101878B1 EP 00119529 A EP00119529 A EP 00119529A EP 00119529 A EP00119529 A EP 00119529A EP 1101878 B1 EP1101878 B1 EP 1101878B1
Authority
EP
European Patent Office
Prior art keywords
roof
insulation
panels
thermal insulation
panel
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.)
Expired - Lifetime
Application number
EP00119529A
Other languages
German (de)
English (en)
Other versions
EP1101878A2 (fr
EP1101878A3 (fr
Inventor
Joachim Wolfram Herr
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.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Publication of EP1101878A2 publication Critical patent/EP1101878A2/fr
Publication of EP1101878A3 publication Critical patent/EP1101878A3/fr
Application granted granted Critical
Publication of EP1101878B1 publication Critical patent/EP1101878B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
    • E04D13/16Insulating devices or arrangements in so far as the roof covering is concerned, e.g. characterised by the material or composition of the roof insulating material or its integration in the roof structure
    • E04D13/1606Insulation of the roof covering characterised by its integration in the roof structure
    • E04D13/1612Insulation of the roof covering characterised by its integration in the roof structure the roof structure comprising a supporting framework of roof purlins or rafters
    • E04D13/1618Insulation of the roof covering characterised by its integration in the roof structure the roof structure comprising a supporting framework of roof purlins or rafters with means for fixing the insulating material between the roof covering and the upper surface of the roof purlins or rafters
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D12/00Non-structural supports for roofing materials, e.g. battens, boards

Definitions

  • the invention relates to a roof insulation by means of thermal insulation panels for the Under a roof covered with roofing tiles, the Heat insulation panels overlap each other on all sides, can be hung on the roof battens are and at their top nubs for hanging the roofing plates have, and wherein in first eaves direction, the thermal insulation panels each form a straight row, in which the thermal insulation panels to each other are not offset laterally.
  • thermal insulation panels for a sub-roof known. They are relocated with each other, making laying difficult will be created and significant amounts of waste. Furthermore, it is from the EP 150 865 B1 known, thermal insulation panels without offset in horizontal rows relocate. The thermal insulation panels have a straight in the direction of fall Edge up. It has been shown that the plates against each other so can move that there are gaps and thus leaks and Cold bridges is coming.
  • the object of the invention is thermal insulation boards of the type mentioned to improve so that the thermal insulation panels with low waste and Cuttings and uncomplicated construction are easy and quick to lay and ensure safe water drainage to the eaves. It is too Object of the invention, the susceptibility of the thermal insulation panels against damage to reduce.
  • the inclined Side edge of the thermal insulation board has a stepped recess, which is overlapped by the side edge of the adjacent thermal insulation board and has in its upper side a parallel to the side edge groove, which in a Channel of the underlying thermal insulation plate opens, and that the upper horizontal edge of the thermal insulation board a stepped return which, from the side edge of the overlying thermal insulation panels is overlapped, with the overlying side edge at its lower horizontal Longitudinal edge has a chamfer .
  • the step-shaped projection on the lateral edge of the thermal insulation panel prevents a mutual displacement of the plates in the direction of the roof, so that a safe water flow is given without leaks.
  • a further increase of security against penetrating water is thereby achieved that the additional bevel with the underlying plate a gutter which safely removes accumulating water to both sides.
  • the thermal insulation board 1 has a middle part and runs to the first page 8 and the eaves page 15 wedge-shaped, wherein the length of pickup nubs 12, for the battens, to the ridge side 8, on the underside B / D of the insulation board, is about the same length as the length on the Top of the insulation board A / C, between the receiving surface for roofing panels, the upper side to the first side Nubbin row 6 and the eaves lying lower Plate edge 15.
  • the bottom 10 of the eaves-side plate part D and the top 7 of the ridge-side plate part A form in the Eindekkung plane plant surfaces.
  • the area lies with the Support nubs 16 for the roof battens in the direction of the center of the board on the parallel edge of the ridge side (see Figure 1 and Figure 5).
  • the end of the bottom 13 of the upper part A / B ends with the Plant surface 14 in the firing direction as a roof battens.
  • the width of the surface 14 corresponds approximately to the width a batten.
  • FIG. 2 shows the top side in the firing direction Thermal insulation panel with side overlaps 18 and 24 for sealing the adjacent plates in lateral Direction.
  • the angled side edges 19, with the left lower overlap in the direction of the fire incorporated gutter 20, including the one-sided Outlet funnel 17, ensure the outflow of accumulating Rain, dew and condensation water, on the surface of the in the direction of the fire on the left, in the row of the lower ones Thermal insulation board.
  • the plane left lower overlap area in the firing direction on the left is from the right next to it, plan, overlapped upper overlapping surface.
  • roofing tiles on the sub-roof become the overlapping areas the individual thermal insulation panels firmly together pressed so that a lateral heat, wind and dustproof situation arises.
  • Rain, dew and condensation water, which comes to the surface of the sub-roof, is via the water supply and ventilation channels, the perpendicular to the rows of nubs 2 and 5 for the Dacheindekkungsplatten 28 and this at equal intervals break through, including the top and bottom funnel-shaped water outlets 22 and 23, towards the eaves derived.
  • FIG. 4 illustrates a roofing panel 28 Under the roof of the type described on battens 26 and Rafter 25 dar. It can be seen as the Einzzanoppen 29 of the roofing panels 28 on the lower row of nubs 2 with the receiving surface 3 and the upper row of nubs 5 with the receiving plate 6 rest. Furthermore, it can be seen as the lower Aufwinoppen for battens 12 on lying in the direction of fire roof batten top 26 rests. The variant shown is a double roofing of roofing tiles.
  • Figure 6 illustrates and illustrates a thermal barrier panel in 3D the spatial spread of a plate.
  • the sub-roof is thus in the direction of fall and laterally overlapping each other on the top side with two hanging knobs provided for the roofing panels and on the underside with a EinHonoppen for recording Roof battens provided thermal insulation panels 1.
  • the single thermal insulation panel is constructed so that it is approx. from the middle out, which is most trained, to the eaves side as well also wedge-shaped leaking to the first side.
  • the top of the thermal insulation board is designed so that the upper part in the firing direction for recording and overlapping the overlying, lying to the ridge side Bottom of the lower half of the insulation board is used and the lower Part of the lower thermal insulation panel with two rows of nubs the inclusion of roofing tiles (single or double row) serves.
  • the underside of the thermal insulation board is designed so that the upper part by means of the pimple to hang on the Top of the roof battens serves, the upper end to the ridge side towards rests on the overlying batten and the lower part for receiving and overlapping the eaves side Thermal insulation panels is used.
  • the sum of the length of the middle and the eaves Plate part measured in the direction of fall corresponds to the approx Sum of the length of the middle and the ridge-side plate part, whose length corresponds approximately to the roof battens.
  • the insulation boards are laid so that the Panels in eaves firing direction and in the lateral direction overlap their function accordingly.
  • the thermal insulation panels are in the direction of the eaves side First side and at the same time from the right side of the roof laid to the left side of the roof.
  • the accumulating dew, rain and Condensation in the joints of the side by side lying thermal insulation boards can run on the underlying Heat insulation plate in the direction of fall on again passed the top of the insulation board.
  • the water supply of accumulating rain, dew and condensation takes place on the surface of the thermal insulation boards below the roofing by means of the designated Water supply and ventilation channels right up to the eaves.
  • the accumulating water will be back on top of the Thermal insulation panels and transported to the eaves. An additional Underlay above or below the thermal insulation boards is not necessary for this reason.
  • the distance between the pickup knobs for roofing tiles in the direction of fall is designed so that both a single cover as well as a double cover with specific Roofing tiles can be made.
  • the thermal insulation panel (1) extends from the center, the strongest, decreasing towards the edges wedge-shaped.
  • the ridge-side plate part passes through a Step on the top and the eaves side plate part with the pickup knobs for the in-line direction Roof batten top in the center section above.
  • the lateral plate edges are from the ridge side to arranged continuously to the eaves side. They are, in the direction of the company seen on the left side of the plate in the lower part Plate area and on the right side of the plate in the upper Plate area arranged.
  • the size and shape of the thermal insulation board described Art is chosen so that the plate is easy to handle and easy to lay.
  • the plate size is chosen so that a laying of roofing tiles on top of each other in a downward direction lying row of thermal insulation panels from the side is possible. This is a hanging of roof ladders or entering the thermal insulation boards is not mandatory.
  • the side edges of the thermal insulation board are angled, so that the overlap of two adjacent plates in the direction of the fire, always on the left side the surface, the heat insulation plate underneath in the firing direction empties. This ensures that the Water supply of possibly accumulating rain, dew and Condensation that collects between two plate joints, on the surface of the left in the direction of fire lying thermal insulation board and further derived to the eaves becomes.
  • thermo insulation board In the thermal insulation board is between the two rows of nubs for receiving the roofing panels a recess. 4 incorporated, which is a safe deposit of a roof ladder, laid according to roofing rules, guaranteed. On the under-roof the type in question can Dacheindekkungsplatten single-layered and with roofing panels provided for this purpose also be laid in two layers.
  • the plate center has the greatest thickness (height, thickness) and runs in the upper part of the plate A, B in the firing direction approximately wedge-shaped to a lower thickness 8 out.
  • thickness thickness
  • the plate center has the greatest thickness (height, thickness) and runs in the upper part of the plate A, B in the firing direction approximately wedge-shaped to a lower thickness 8 out.
  • the bottom of the plate top B begins at the strongest point with the pickup nubs 12 for Roof slats 26 and tapers in over the roof slat receiving surface 14 to the surface 8 up to the surface 16 of the overlying insulation board.
  • the lower part of the thermal insulation board in eaves direction is on the top C by two for roofing plates male rows of nails 2.5 marked. Between the rows of pimples is a Recess 4, when laying roofing tiles 28 are used to receive a roof ladder can. To the plate edge 15 tapers in eaves direction the thermal insulation board at its lowest Strength.
  • the lower side 10 of the lower plate part D is plan and serves as a support for the upper part of the A upper plate side 7 of the overlying in First Scheme Plate.
  • the surface 8 at the lying in the direction of fire plate top lies parallel to the surface of the roof bat receiving stop 12 and the surface 15 at the eaves lying bottom is parallel to the surface 6 of the upper roofing receiving stop.
  • the lateral plate edges 19 are angled and form an obtuse return R, allowing them placed next to each other in an exact fit with the surfaces 18,24 overlap.
  • the lateral overlaps 18,24 are simple, robust and insensitive to damage, two plates overlapping next to each other in first and eaves direction at each point the same Strength, like the corresponding place of the auxiliary plate, along the lateral axis.
  • the thermal insulation panels 1 have seen in the middle over the entire laid roof surface is the same throughout Strength on.
  • the side edges 19 of the thermal insulation panels 1 are angled.
  • the water drainage in the direction of fall to the eaves is guaranteed, though the Wasserabflußrinnen 21 including the discharge funnel 22,23 on top of the thermal insulation panels be designed throughout.
  • Minor bumps of the Roof battens as well as small deviations in the battens distance of the normal measure become by the overlap of the Thermal insulation panels in lateral direction 18,24 and in the fall direction 7,10 balanced.
  • a water guide trough 20th incorporated with one-sided funnel-shaped outlet 17 is.
  • the thermal insulation boards collects the possibly resulting condensation or rain or condensate that is between the collision of two next to each other lying thermal insulation panels running in the Water supply channel 20 and runs over the one-sided funnel-shaped outlet 17 on the in the surface C recessed water supply and ventilation trough 21, the eaves lying underneath thermal insulation board right up to the eaves.
  • the sub-roof both single-layer as well as with roofing panels provided therefor, be covered in two layers.

Landscapes

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

Claims (6)

  1. Isolation de toit au moyen de panneaux calorifuges (1) pour la sous-toiture d'un toit couvert de panneaux de couverture de toit, dans laquelle les panneaux calorifuges (1) se recouvrent les uns les autres de tous côtés, peuvent être accrochés aux liteaux et présentent sur leur côté supérieur des boutons pour accrocher les panneaux de couverture de toit et dans laquelle, dans la direction faíte-gouttière, les panneaux calorifuges (1) forment à chaque fois une rangée droite dans laquelle les panneaux calorifuges (1) ne sont pas décalés latéralement les uns par rapport aux autres, caractérisée en ce que le bord latéral incliné du panneau calorifuge (1) présente un épaulement (R) en forme d'échelon, qui est recouvert par le bord latéral du panneau calorifuge (1) adjacent et présente dans son côté supérieur une rigole (20) parallèle au bord latéral qui débouche dans une rigole (21) du panneau calorifuge (1) situé en dessous, et que le bord horizontal supérieur du panneau calorifuge (1) présente un épaulement (7) en forme d'échelon, qui est recouvert par le bord latéral (10, 15) des panneaux calorifuges (1) situés par dessus, le bord latéral en appui présentant un chanfrein (9) sur son bord longitudinal horizontal inférieur (15).
  2. Isolation de toit selon la revendication 1 caractérisée en ce que la rigole (20) dans l'épaulement (R) en forme d'échelon débouche dans une rigole (21) du panneau calorifuge situé en dessous, qui est disposée entre deux boutons (2, 5) sur le côté supérieur du panneau calorifuge (1).
  3. Isolation de toit selon l'une des revendications 1 et 2,
    caractérisée en ce que le panneau calorifuge (1) forme sur son côté supérieur dans la zone non recouverte par le panneau calorifuge situé par dessus une rainure horizontale (4), dans laquelle peut être accroché un profilé horizontal d'une échelle de toit.
  4. Isolation de toit selon l'une des revendications précédentes,
    caractérisée en ce que le panneau calorifuge (1) présente la plus forte épaisseur dans la zone centrale et se termine en forme de coin à une épaisseur moindre en direction du faíte.
  5. Isolation de toit selon l'une des revendications précédentes,
    caractérisée en ce que le côté supérieur de la partie de panneau supérieure est plan, afin de recevoir le côté inférieur (10) plan du panneau (1) situé par dessus en direction du faíte.
  6. Isolation de toit selon l'une des revendications précédentes,
    caractérisée en ce que les bords s'étendant dans la direction du rampant présentent un double coude (19).
EP00119529A 1999-11-16 2000-09-07 Panneaux isolants de sous-toiture Expired - Lifetime EP1101878B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE19954836A DE19954836A1 (de) 1999-11-16 1999-11-16 Wärmedämmplatten für ein Unterdach
DE19954836 1999-11-16

Publications (3)

Publication Number Publication Date
EP1101878A2 EP1101878A2 (fr) 2001-05-23
EP1101878A3 EP1101878A3 (fr) 2001-08-08
EP1101878B1 true EP1101878B1 (fr) 2005-04-20

Family

ID=7929062

Family Applications (1)

Application Number Title Priority Date Filing Date
EP00119529A Expired - Lifetime EP1101878B1 (fr) 1999-11-16 2000-09-07 Panneaux isolants de sous-toiture

Country Status (3)

Country Link
EP (1) EP1101878B1 (fr)
AT (1) ATE293728T1 (fr)
DE (2) DE19954836A1 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2424426A (en) * 2005-03-22 2006-09-27 Lafarge Roofing Technical Centers Ltd Insulated roof system

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3557180A (en) * 1968-07-02 1971-01-19 Du Pont 2,4-bis(isocyanatocyclohexylmethyl) cyclohexyl isocyanate
DE2842347C2 (de) * 1978-09-28 1982-08-19 Thermodach Dachtechnik GmbH, 8598 Waldershof Auf Dachsparren verlegbare Wärmedämmplatten
DE3403645A1 (de) * 1984-02-02 1985-08-08 Thermodach Dachtechnik GmbH, 8598 Waldershof Ueber dachsparren verlegte waermedaemmplatten
DE3508631A1 (de) * 1985-02-15 1986-08-21 Helfrecht, Manfred, 8598 Waldershof Waermedaemmelement fuer ein unterdach
DE3919511C1 (fr) * 1989-06-15 1990-09-13 Eugen 7084 Westhausen De Feil
DE4424976C1 (de) * 1994-07-15 1996-03-14 Eugen Feil Unterdach für mit Dacheindeckungsplatten eingedeckte Dächer

Also Published As

Publication number Publication date
EP1101878A2 (fr) 2001-05-23
DE19954836A1 (de) 2001-05-17
ATE293728T1 (de) 2005-05-15
EP1101878A3 (fr) 2001-08-08
DE50010095D1 (de) 2005-05-25

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