EP0006431A1 - Panneau de construction creux en matière plastique extrudée - Google Patents

Panneau de construction creux en matière plastique extrudée Download PDF

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Publication number
EP0006431A1
EP0006431A1 EP79101370A EP79101370A EP0006431A1 EP 0006431 A1 EP0006431 A1 EP 0006431A1 EP 79101370 A EP79101370 A EP 79101370A EP 79101370 A EP79101370 A EP 79101370A EP 0006431 A1 EP0006431 A1 EP 0006431A1
Authority
EP
European Patent Office
Prior art keywords
groove
walls
board according
construction board
wall
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP79101370A
Other languages
German (de)
English (en)
Other versions
EP0006431B1 (fr
Inventor
Heinrich Oltmanns
Axel Ing. Grad. Granz
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.)
Oltmans Heinrich
Original Assignee
Oltmans Heinrich
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 Oltmans Heinrich filed Critical Oltmans Heinrich
Publication of EP0006431A1 publication Critical patent/EP0006431A1/fr
Application granted granted Critical
Publication of EP0006431B1 publication Critical patent/EP0006431B1/fr
Expired legal-status Critical Current

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04CSTRUCTURAL ELEMENTS; BUILDING MATERIALS
    • E04C2/00Building elements of relatively thin form for the construction of parts of buildings, e.g. sheet materials, slabs, or panels
    • E04C2/54Slab-like translucent elements
    • E04C2/543Hollow multi-walled panels with integrated webs
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/72Non-load-bearing walls of elements of relatively thin form with respect to the thickness of the wall
    • 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
    • E04D3/24Roof covering by making use of flat or curved slabs or stiff sheets with special cross-section, e.g. with corrugations on both sides, with ribs, flanges, or the like
    • E04D3/28Roof covering by making use of flat or curved slabs or stiff sheets with special cross-section, e.g. with corrugations on both sides, with ribs, flanges, or the like of glass or other translucent material
    • E04D2003/285Roof covering by making use of flat or curved slabs or stiff sheets with special cross-section, e.g. with corrugations on both sides, with ribs, flanges, or the like of glass or other translucent material with specially profiled marginal portions for connecting purposes
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F2201/00Joining sheets or plates or panels
    • E04F2201/01Joining sheets, plates or panels with edges in abutting relationship
    • E04F2201/0107Joining sheets, plates or panels with edges in abutting relationship by moving the sheets, plates or panels substantially in their own plane, perpendicular to the abutting edges
    • E04F2201/0115Joining sheets, plates or panels with edges in abutting relationship by moving the sheets, plates or panels substantially in their own plane, perpendicular to the abutting edges with snap action of the edge connectors
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F2201/00Joining sheets or plates or panels
    • E04F2201/01Joining sheets, plates or panels with edges in abutting relationship
    • E04F2201/0138Joining sheets, plates or panels with edges in abutting relationship by moving the sheets, plates or panels perpendicular to the main plane

Definitions

  • the invention relates to a box-shaped banquet board made of extruded plastic with a series of cavities arranged between opposite side walls and end walls, separated from one another by transverse walls, and a fastening profile on the end walls which can be latched into engagement with the adjacent profile.
  • Windows are known to be a critical factor in thermal insulation in buildings. To improve the thermal insulation in windows, it is known to carry out so-called double or multiple glazing, in which glass panes are arranged at a short distance from one another and form an “vacuum chamber” which is sealed off from the outside.
  • Such glazings are, however, particularly for larger ones Space is expensive. There is also a risk that they can be destroyed by the use of force, which is particularly true in connection with all buildings for industrial plants or sports facilities.
  • the invention has for its object to provide a box-shaped construction board made of extruded plastic, which enables improved thermal insulation.
  • an end wall has a continuous groove section, in the bottom of which a resilient sealing material is attached, and into which a projection of the adjacent end wall, which is complementary to the groove section, can be sealingly engaged with the sealing material.
  • the groove section forms a labyrinth-like connection of adjacent building panels, as a result of which a considerable extension of the gap between adjacent building panels is formed, with the correspondingly favorable effect on thermal insulation.
  • the additional seal arranged in the groove section prevents any cold flow, so that the heat-insulating and sound-insulating properties of such a construction board are fully effective.
  • the sealing material is flexible, so that the sealing section, which is complementary to the groove section, is pressed against the seal when the building board is locked and engages with the latter under surface pressure.
  • An embodiment of the invention provides that the groove base is formed by a transverse wall against which the sealing material is supported and the projection can be brought into engagement with complementarily shaped groove walls. Since such building boards are normally hardly thicker than 4 to 5 cm, sufficient space is created for a single groove to perform the various functions. Building boards with a single groove in the end wall or a complementary locking profile do not pose any difficulties when pressing out with regard to stresses occurring, places of uneven wall thickness and particular risk in use.
  • the latching profile engages with the sealing material over its entire length, which is preferably elastically yielding.
  • This has the advantage that the sealing material can help to reinforce the locking or locking engagement.
  • the sealing material presses this when assembled Locking profile against corresponding contact surfaces of the groove walls in order to effectively lock these parts against one another. If thermal expansion occurs as a result of a rise in temperature, the increase in length is absorbed by the sealing material without causing undesirable deformations on parts of the building board.
  • the groove walls in the free end area face claw-like inwards and interact with correspondingly shaped locking grooves of the projection.
  • the groove side walls are bent slightly outwards from one another as long as the claw-like projections do not yet engage in the locking grooves.
  • the abutment to be formed as a boundary of the building boards in the direction of one another is preferably formed by end face sections running approximately parallel to the transverse walls on both sides of the groove, against which end face sections running on both sides of the latching profile abut when the groove and the projection are locked.
  • the section diverges outwards and converges immediately in front of the claw-like section, preferably at an approximately right angle to the diverging wall sections, while in the claw-like section the groove wall sections diverge again, preferably at the same angle as the other diverging groove wall sections.
  • the projection is shaped in a complementary manner, the side walls of the projection represent a wedge shape which is interrupted only in the region of the converging sections.
  • the converging sections of the groove side walls and the complementary sections of the projection form shoulder-like stop surfaces which are pressed against one another with the aid of the seal.
  • the transverse wall forming the base of the groove serves to support the sealing material.
  • Two preferably parallel ribs, spaced apart from one another, can be formed on the transverse wall, between which the sealing material is arranged.
  • the sealing material can be a strip of elastically yielding sealing material, for example foam rubber. It is preferably glued to the transverse wall with its rear side, the ribs ensuring a secure position and ensuring that the sealing material does not move too far to the side.
  • elastically yielding sealing material is plastically molded into the space between the ribs.
  • the end face of the locking projection is curved outwards.
  • the transverse wall forming the base of the groove can form a boundary surface for a stiffening profile on the side opposite the groove. It is easily possible to form a further transverse wall at a distance from the transverse wall forming the groove base, so that a relatively narrow cavity is formed, into which a stiffening profile can be inserted.
  • this measure is relatively expensive.
  • Ripper on the inside of the longitudinal walls. are integrally formed as an abutment for the stiffening profile.
  • the construction board according to the invention can be installed in any position, ie vertically, horizontally or in an inclined position.
  • the side walls can be given an additional profile, for example a corrugation on the inside for the purpose Achieve certain lighting effects. It is also possible to achieve certain optical effects by coloring.
  • the length of the partition walls is somewhat greater than the distance between the transverse walls.
  • the intermediate walls between two adjacent transverse walls can be formed by two intermediate wall sections which are arranged at an obtuse angle to one another. Neither an expansion after a shortening leads to transverse forces acting on the transverse walls.
  • an additional panel element can be provided with a one-sided longitudinal wall, which on the
  • fastening means for example in the form of rivets, in an already existing building board, in which case rivet heads which protrude outwards can then engage in engagement with the undercuts of the webs.
  • channels are formed on the inside of a longitudinal wall, the side of which extending in the longitudinal wall plane is closed off by a film, the channels likewise having undercuts for receiving a fastener.
  • the fastener can then be pushed through the film in case of use and anchored in the channel, while the protruding end is in turn anchored with an additional panel element.
  • the groove is arranged parallel to the intermediate walls and is offset inwards relative to a locking profile strip on the same end wall.
  • the first step is the catches are produced with a slightly inclined building board, whereby the sealing engagement is only completely made by swiveling slightly inwards into the plane of the already assembled building boards.
  • the building boards can only have a certain thickness, which is usually between 30 and 40 mm. Improved thermal and acoustic insulation can also be achieved by providing one or more intermediate walls parallel to the side walls. While the previously known translucent building panels represented so-called single-chamber profiles, two- or multi-chamber profiles are created in the invention, as a result of which the overall thickness is considerably increased and the thermal insulation can be decisively improved. In this context, it is advantageous if the transverse walls are arranged offset on both sides of an intermediate wall in order to make the cold bridge, which is undoubtedly formed by transverse walls, as long as possible.
  • the building boards shown in FIG. 1 are generally designated 110 and have two spaced parallel side walls 111, 112, which are connected to one another by transverse walls, only one of which is shown at 113.
  • a groove or a channel 114 is formed in an end face, the bottom of which is formed by the transverse wall 113 and the side walls 115, 116 of which are spaced apart from the walls 111 and 112, so that chambers 117, 118 are formed between them, which face the end face of one to the transverse wall 113
  • the groove or channel walls 115, 116 are step-shaped. They are connected to the transverse wall 113 via sections 123, 124 parallel to the side walls 111, 112. This is followed by a short wall section 125 or 126 running at right angles to it. Wall sections 127, 128 diverging to the groove opening extend from this and are followed by short sections 129, 130 converging to the groove opening, through which oblique shoulder surfaces 131, 132 are formed. The converging wall sections 129, 130 are in turn followed by diverging wall sections 133, 134, the opening angle of which corresponds to that of the wall sections 127, 128. The diverging wall sections 133, 134 then merge into the straight end wall sections 119, 120.
  • the other building board 110 has a projection 135 in the form of a strip extending along the building board, the side walls of the projection 135 being complementary to the wall sections 127, 128, 129, 130, 133, 134, so that an outer oblique shoulder 136 or 137 with the inner shoulder 131 or 132 forms a locking stop.
  • the end wall 138 of the projection 135 is curved outward in an arc.
  • the cavity which forms in the interior of the projection 135 is closed off in the region of the end face of the building board 110 by a wall section 139 which lies in the same plane as the end wall sections 140 and 141 parallel to the transverse walls.
  • Adjoining the wall section 141 is an inclined wall section 142 which merges into the associated side wall 112, so that a groove 143 with a cross-section in the form of a cross is formed between adjoining panels 110.
  • the part adjoining the wall section 140 is turned inside the building area 1110 to form a curved groove 144 which extends in the direction of the side wall 111 and is designed to receive a hook-shaped fastening element 145 at the end.
  • the indented section 146 is held at a distance from the side wall 111.
  • Ribs 147, 148 directed into the interior of the channel are formed on the transverse wall 113 and extend parallel and at a distance from one another into the interior of the channel and in turn form a channel for receiving a sealing strip 149 made of elastically yielding material.
  • Ribs 150, 151 are formed on the inside of the side walls 111, 112 and extend parallel to the transverse wall 113 at a distance from one another.
  • the transverse wall 113 and the ribs 150, 151 form a receiving space for receiving a box-like stiffening profile 152, which consists, for example, of extruded metal or a sheet metal.
  • the side of the stiffening profile 152 facing the transverse wall 113 is essentially open.
  • the projection 135 When assembling the building boards 110, the projection 135 is in the Channel 114 inserted, the wedge-shaped head of the projection 135 on the sides bending the side walls 115, 116 of the groove slightly apart until the shoulder surfaces 131, 136 and 132, 137 engage behind one another in a latching manner.
  • the sealing strip 149 is compressed somewhat via the curved section 138, so that an effective seal is achieved at this point.
  • the spring action of the sealing material 149 also ensures that the shoulder surfaces 131, 136 and 132, 137 are effectively seated.
  • the transverse gap formed between the wall sections 119, 120 and 140, 141 is to be kept as narrow as possible, but must not be less than a minimum width, since in the event of thermal expansion, a collision of the panels 110 would lead to a lateral bulge.
  • the ribs 150, 151 according to FIG. 1 are omitted and a box-shaped stiffening profile 152b is supported between the transverse wall 113 and the first shoulder of the groove side walls 115, 116.
  • the stiffening profile 152b has in on the side facing the groove opening, an indentation 163 for receiving a leg of an angular sealing strip, the other leg of which lies obliquely to the opening and bears against the end face of the projection 135.
  • the ribs 147c, 148c have undercuts for receiving feet 164.165 of a hollow sealing profile strip 166 which bears against the end faces of the ribs 147c, 148c and is supported with the opposite curved side against the projection 135.
  • the feet 164, 165 are ar. the outside is complementary to the ribs 147c, 148c and spread outwards in order to maintain the undercut at all times.
  • FIG. 5 shows a closed box profile as a stiffening strip 152d which bears on one side of a transverse wall 113 and bears on the opposite side on ribs 150d, 151d which protrude into the interior of the groove.
  • a groove is formed between the ribs 150d, 151d and the first shoulder of the groove side walls 115, 116, as seen from the transverse wall 113, into which a sealing strip 167 is inserted, which has a section 168 which is curved toward the groove opening and against which the projection 135 bears.
  • FIG. 6 shows a building board 170 which is designed with respect to the shape at the ends similar to that shown in FIGS. 1 to 5. For this reason, the connection of several building boards170 should no longer be described.
  • a special feature of the Bautafol 170 lies in the fact that the individual cross walls 171, which connect the longitudinal walls 111, 112 to one another, are connected to one another by intermediate walls which consist of two sections 172, 173, which run at an obtuse angle to one another. As a result, the entire intermediate wall is longer than the distance between adjacent transverse walls 171, so that changes in the length of the intermediate walls have no influence on the transverse walls.
  • FIG. 6 also shows an additional construction board 180 which only consists of a single longitudinal wall 181. End wall sections 182 adjoin the ends, which lie in the same plane as the end wall sections of the building board 170, as can be clearly seen from FIG. 6. For manufacturing reasons, a section 183 is also formed inward from the end wall section 182 parallel to the first longitudinal wall 181. Such a wall section 183 of an additional construction board 180 can also serve to fasten the additional construction board 180 to the outside of the longitudinal wall 117 by gluing.
  • ribs 184, 185 are formed on the inside of the longitudinal wall 181, which run perpendicular to it and at a distance and parallel to one another. They have locking projections186 facing each other at the free ends and are also connected to one another by a web187. Also shown is a fastener 188, such as a rivet, which is conventionally inserted into the longitudinal wall 112, for example by pre-drilling a hole and then securing the rivet. The outwardly projecting head 189 of the fastening means engages behind the projections 186 and thus anchors the additional component 180 on the component 170. It is understood that several rivets and multiple ribs 184, 185 can be provided to achieve the desired attachment.
  • a fastening means 190 can also be used which has a head 197 projecting from the outside of the longitudinal wall 112 and a tip 192 at the opposite end.
  • the anchoring of the head 191 corresponds to the anchoring of the head 189 of the fastening means 188.
  • the tip 192 which forms shoulders with the shaft of the fastening means 190, engages in a channel 1193 which is rectangular in cross section and which is formed on the inside of the longitudinal wall 112.
  • the channel has a slot 194 that is narrower than the channel 113, so that the shoulders of the head 192 can engage behind the edges of the slot 194.
  • the building board 170 is first shaped so that the slot 194 is closed by a film 195. Only when an additional component board 180 is installed is the firm penetrated at the desired points with the aid of the fastening means 19 0.
  • the fastening center 1190 can also be designed as a fastening strip with the cross section shown in FIG. 6.
  • FIG. 7 is an extruded box profile made of preferably translucent plastic (which is also true of all other embodiments to be described) and has two side walls 10, 11, transverse walls 12 connecting them and end walls 13, 14 parallel to them.
  • the walls 10 to 14 form separate chambers 15, which ensure favorable thermal insulation.
  • Angle profiles 16, 17 are formed on the end walls 13, 14 with a connected leg 18 or 19 and a free leg 20 or 21.
  • the free legs 20, 21 run parallel to the end wall 13, 14.
  • Between the free leg 20 and the End wall 13 is formed in a cross-sectionally U-shaped sealing groove 22, in which a sealing strip 23 made of bare sealing material is inserted.
  • the sealing strip 23 is preferably self-adhesive.
  • a partially cylindrical locking profile bar 24 is formed, which is connected to the free leg 20 via a web 25, which is thinner than the diameter dimension of the profile bar 24.
  • the construction panel shown is foamed on the inside with plastic material, all connecting transverse walls can also be omitted, so that two separate side walls are connected to one another only via a foam core. Otherwise, the profiles shown for fastening and sealing on the end faces are shaped in the manner shown.
  • the free leg 21 of the angle profile 17 forms with the end wall 14 a groove 25 for receiving the free leg 20 and a complementary to the profile bar 24 and the web 25 formed locking groove 27.
  • Any number of a construction board shown in FIG. 7 can be arranged in a row next to one another, the free leg 21 engaging with the free end of the sealing strip 23 with simultaneous locking of the locking strip 24 in the locking groove 27.
  • FIG. 8 The embodiment of FIG. 8 is similar to that of FIG. 7, so that the same parts are provided with the same reference numerals.
  • the main difference is that an intermediate wall 30 is provided which is parallel to the formere walls 10, 11 and divides the entire building board symmetrically into two halves.
  • the free legs 21 and 20 are also provided with partitions 31 and 32 aligned with them. With the same distance between the partition walls 10, 11, the building board becomes considerably more stable due to the partition wall 30. With the same stability, it is possible to increase the spacing of the side walls 10, 11 and thus to improve the thermal insulation properties.
  • transverse walls 33 and 34 are offset on both sides of the intermediate wall.
  • the embodiment according to FIG. 9 again has side walls 10, 11 and transverse walls 12.
  • a locking groove 40 and a sealing groove 41 are provided on one side, while a locking strip 42 and a sealing strip 43 are provided on the opposite side.
  • Locking groove 40 and sealing groove 41, on the one hand, and locking strip 42 and sealing strip 43, on the other hand, are designed to be complementary to one another, so that any number of the flat panels shown can be arranged next to one another in series and locked, although assembly must take place in the plane of the construction panels.
  • the sealing groove in turn contains a sealing strip.
  • a transverse wall 44 is designed such that it encloses a stiffening element 45, which can be a steel or aluminum strip, for example.
  • the end faces of the construction panels are of identical design and have two locking grooves 50 running perpendicular to the end face with parallel walls which expand cylindrically towards the bottom.
  • the legs of a double-T profile 51 are received by the grooves, the ends of which are shaped complementarily to the grooves in order to enable locking.
  • a seal 53 is embedded in the end faces, which engages with the web 52.
  • the embodiment according to FIG. 11 differs from that according to FIG. 9 only by an intermediate wall 60 formed in the longitudinal center, in order to form a "double chamber" building board.
  • the transverse walls 61 and 62 are in turn offset on both sides of the intermediate wall 60.
  • FIG. 12 corresponds to that according to FIG. 11.
  • Box-shaped stiffening profiles 64 are arranged in the chambers formed by the individual walls.
  • the embodiment according to FIG. 13 shows a main construction board 70 and an additional construction board 71.
  • the main construction board 70 corresponds approximately to that according to FIG. 7 and is therefore provided with the same reference numerals as far as the same parts are concerned.
  • the additional board 71 has a side wall 72 and transverse walls 73, so that open chambers are formed on one side.
  • the end transverse walls 73 are, as shown at 74, hook-shaped and can be brought into engagement with a locking groove 75 in the end wall 14 or the outside of the free leg 20.
  • the locking described here can also be designed in another suitable manner .
  • Another middle transverse wall 73 has a locking channel 76 at the free end, into which a strip-shaped locking knob 77, which is formed in the region of the transverse wall 12 on the side wall 11 of the main building board, is brought into locking engagement.
  • a strip-shaped knob 78 is formed at the end, which is in locking engagement with a locking groove 79 in the side wall 11 in the region of a transverse wall 12 of the main building board 70.
  • the additional component board 71 can in turn be provided with locking means to accommodate another additional component board.
  • a plurality of grooves having a sealing strip can be provided in each case, while in the exemplary embodiments only one is shown in each case in one end wall. So z. B. two or more grooves may be provided.
  • the number of locking profiles in the end walls is not limited to one per end wall.
  • a locking groove or a locking bar could be provided on both sides of a sealing groove or a projection complementary thereto.
  • a cross profile or other profiles can be used, which engage in end wall grooves and contribute to the sealing if appropriate seals are provided in the end wall.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Finishing Walls (AREA)
  • Building Environments (AREA)
EP79101370A 1978-06-30 1979-05-04 Panneau de construction creux en matière plastique extrudée Expired EP0006431B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE2828769 1978-06-30
DE19782828769 DE2828769A1 (de) 1978-06-30 1978-06-30 Kastenfoermige bautafel aus extrudiertem kunststoff

Publications (2)

Publication Number Publication Date
EP0006431A1 true EP0006431A1 (fr) 1980-01-09
EP0006431B1 EP0006431B1 (fr) 1981-10-14

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Application Number Title Priority Date Filing Date
EP79101370A Expired EP0006431B1 (fr) 1978-06-30 1979-05-04 Panneau de construction creux en matière plastique extrudée

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US (1) US4299070A (fr)
EP (1) EP0006431B1 (fr)
CA (1) CA1112018A (fr)
DE (1) DE2828769A1 (fr)

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GB2145446A (en) * 1983-08-26 1985-03-27 Guinness And Sons Plc Arthur Insulated wall unit
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FR2602964A1 (fr) * 1986-08-21 1988-02-26 Guilpain Jean Paul Perfectionnement aux dispositifs modulaires de presentation d'articles a la vente
FR2615927A1 (fr) * 1987-05-27 1988-12-02 Guilpain Jean Paul Module profile superposable avec raidisseur pour realisation de presentoir
EP0381339A2 (fr) * 1989-01-19 1990-08-08 Polygal Panneau de construction
DE9115940U1 (de) * 1991-12-21 1992-02-20 Röhm GmbH, 6100 Darmstadt Lichtdurchlässiges Bauprofil
EP0522541A1 (fr) * 1991-07-09 1993-01-13 S.E.P. SOCIETA' EUROPEA PLASTICA S.r.l. Elément de panneau alvéolaire en polycarbonate
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AT402082B (de) * 1984-12-24 1997-01-27 Hoesch Ag Wand- oder dachelement aus zwei durch einen schaumstoffkern auf abstand gehaltene metallische deckschichten
EP0771913A1 (fr) * 1995-11-03 1997-05-07 Röhm Gmbh Dispositif pour l'isolation thermique transparente
GB2318133A (en) * 1996-10-11 1998-04-15 Ultraframe Uk Ltd Hollow roofing panels
FR2757198A1 (fr) * 1996-12-13 1998-06-19 Peillex Paul Panneau transparent ou translucide pour toiture
US5996301A (en) * 1997-03-20 1999-12-07 Estruseone Materie Plastische Wall panel assembly
WO2007144861A1 (fr) * 2006-06-13 2007-12-21 Kingspan Research And Developments Limited Panneau translucide
AT510056A1 (de) * 2010-07-09 2012-01-15 Alutechnik Matauschek Gmbh Verbindung von zwei profilstäben
WO2017103859A1 (fr) * 2015-12-18 2017-06-22 Sabic Global Technologies B.V. Film multi-parois léger à rigidité élevée et procédé de fabrication de celui-ci

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US5404283A (en) * 1992-03-31 1995-04-04 Phoenix Products Company, Inc. Outdoor framing projector
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DE4235249A1 (de) * 1992-10-20 1994-04-21 Mba Design & Display Produkt G Trennwandung, insbesondere für Messehallen
SE9301595L (sv) 1993-05-10 1994-10-17 Tony Pervan Fog för tunna flytande hårda golv
SE509060C2 (sv) 1996-12-05 1998-11-30 Valinge Aluminium Ab Metod för tillverkning av byggnadsskiva såsom en golvskiva
US7775007B2 (en) 1993-05-10 2010-08-17 Valinge Innovation Ab System for joining building panels
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FR2602964A1 (fr) * 1986-08-21 1988-02-26 Guilpain Jean Paul Perfectionnement aux dispositifs modulaires de presentation d'articles a la vente
EP0295994A1 (fr) * 1987-05-27 1988-12-21 Jean-Paul Guilpain Module profile superposable avec raidisseur pour réalisation de présentoir
FR2615927A1 (fr) * 1987-05-27 1988-12-02 Guilpain Jean Paul Module profile superposable avec raidisseur pour realisation de presentoir
EP0381339A3 (fr) * 1989-01-19 1992-03-18 Polygal Panneau de construction
EP0381339A2 (fr) * 1989-01-19 1990-08-08 Polygal Panneau de construction
EP0522541A1 (fr) * 1991-07-09 1993-01-13 S.E.P. SOCIETA' EUROPEA PLASTICA S.r.l. Elément de panneau alvéolaire en polycarbonate
DE9115940U1 (de) * 1991-12-21 1992-02-20 Röhm GmbH, 6100 Darmstadt Lichtdurchlässiges Bauprofil
US5293728A (en) * 1992-09-17 1994-03-15 Texas Aluminum Industries, Inc. Insulated panel
FR2699614A1 (fr) * 1992-12-18 1994-06-24 Colombo Daniel Dispositif d'assemblage de deux profilés et profilés à profil mâle et/ou femelle.
WO1994015035A1 (fr) * 1992-12-18 1994-07-07 Daniel Colombo Dispositif d'assemblage de deux profiles et profiles a profil male et/ou femelle
EP0771913A1 (fr) * 1995-11-03 1997-05-07 Röhm Gmbh Dispositif pour l'isolation thermique transparente
GB2318133A (en) * 1996-10-11 1998-04-15 Ultraframe Uk Ltd Hollow roofing panels
US5901528A (en) * 1996-10-11 1999-05-11 Ultraframe Plc Of Enterprise Works Building elements
GB2318133B (en) * 1996-10-11 2001-03-07 Ultraframe Uk Ltd Building elements
FR2757198A1 (fr) * 1996-12-13 1998-06-19 Peillex Paul Panneau transparent ou translucide pour toiture
US5996301A (en) * 1997-03-20 1999-12-07 Estruseone Materie Plastische Wall panel assembly
WO2007144861A1 (fr) * 2006-06-13 2007-12-21 Kingspan Research And Developments Limited Panneau translucide
US8316598B2 (en) 2006-06-13 2012-11-27 Kingspan Research And Developments Limited Translucent panel
AT510056A1 (de) * 2010-07-09 2012-01-15 Alutechnik Matauschek Gmbh Verbindung von zwei profilstäben
AT510056B1 (de) * 2010-07-09 2012-05-15 Alutechnik Matauschek Gmbh Verbindung von zwei profilstäben
WO2017103859A1 (fr) * 2015-12-18 2017-06-22 Sabic Global Technologies B.V. Film multi-parois léger à rigidité élevée et procédé de fabrication de celui-ci

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EP0006431B1 (fr) 1981-10-14
CA1112018A (fr) 1981-11-10
US4299070A (en) 1981-11-10
DE2828769A1 (de) 1980-01-03

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