Abstract:
A light assembly adapted for being mounted onto insulated panels, wherein the insulated panel comprises an insulating core sandwiched between an outer skin portion and an inner skin portion, the assembly comprising; a first light panel and a second light panel, said panels being adapted for housing a lighting arrangement; a first connecting arrangement provided on the first light panel for connecting the first light panel to an outer skin portion of the insulated panel; a second connecting arrangement provided on the second light panel for connecting the second light panel to an inner skin of the insulated panel; and a variable spacing arrangement for spacing and inter-connecting the first and second light panels during use.
Abstract:
The present invention relates to one or a plurality of multipurpose channels (3) which are placed inside roof panel (A) and facade panel (B), which are used as roof, facade coating material or dividing wall, during production step. By means of this channel (3) or channels (3), the carrying capacity of both roof panel (A) and facade panel (B) will be affected positively, and the roof panel (A) and the facade panel (B) can be used as a part of the systems for fire extinguishing, providing resistance against fire, heating, cooling, air conditioning, acoustic and decorative, cabling which provides audio, light, visual, information and electrical conduction.
Abstract:
A construction element (100) comprises two covering sheets (101, 102) forming a space between them, and a load bearing sheet (103) in said space between said covering sheets. The space between the covering sheets and around said load bearing sheet is filled at least partially with insulating material (104). The construction element is adapted to receive or comprises at least one support member (105), which is arranged through said insulating material (104) to extend to the surface of the load bearing sheet (103) in order to transfer at least portion of the load introduced by the load bearing sheet outside the construction element.
Abstract:
Ein Dachbedeckungsmodul mit einem Modulkörper, der in eine Hausdachbedeckung integrierbar ist, sowie mit einer Photovoltaikeinheit, die auf dem Modulkörper befestigt ist, ist bekannt. Erfindungsgemäß ist vorgesehen, dass der Modulkörper als zweischaliger Kunststoffhohlköprer (3) gestaltet ist, wobei die beiden Schalen (5, 6) an ihren Randbereichen umlaufend miteinander verschweißt sind. Einsatz für Satteldächer.
Abstract:
The invention relates to an energy supplying device intended to be used for energy collection, energy transfer and energy release, but also for cooling and storing energy, which energy supplier (1) has at least one elongated cavity (2), produced by the extrusion of at least one profile (3) in a direction of extrusion (4) by means of at least one tool, said cavity (2) provides space for at least one medium (17), such as air or fluid, to circulate or be stored in the energy supplier (1). Said cavity (2) is enclosed by at least one formation (5) constituting, for example, a wall, floor or roof formation, said formation (5) constitutes at least part of an actively supporting structure (6), for direct or indirect mechanical support of loads, whilst at the same time forming at least one part of a structural element (7), for example to form a house roof, a wall, a board, a bridge, a pier, a road, a pavement, a terrace or balcony, said actively supporting structure (6), which statically has a predetermined wall thickness, and which is the strongest part of the energy supplier (1) for supporting the load directed principally transversely to the direction of extrusion (4), comprises, in an imaginary section transverse to the direction of extrusion (4), at least one beam formation (8), which is statically dimensioned to resist predetermined loads and is constructed, for example, as an I-, L-, O-, T-, U-, V-, X-, Y- or Z-beam.
Abstract:
Die Erfindung beschreibt ein Verbundsystem umfassend ein Hohlkammerprofil (10) aus thermoplastischem Kunststoff und ein Wärmeisolationselement (20), wobei das Hohlkammerprofil (10) wenigstens aus einem transparenten Oberteil (12) und einem strahlungsabsorbierenden Unterteil (14) besteht, welche durch in Längsrichtung verlaufende Stege (16) derart miteinander verbunden sind, dass parallele Strömungskanäle (30) gebildet werden, welches dadurch gekennzeichnet, dass die Aussenseite des Unterteils (14) mit einem Wärmeisolationselement (20) verbunden ist.
Abstract:
Building panels (10) are provided, comprising a skin (12) and a conduit (30) in thermal contact with the skin (12). The conduit (30) may be used to convey a fluid for transferring heat to or from the building panel (10). The building panel (10) may be a roofing panel, a flooring panel, or a wall cladding panel, or may be used for constructing a ceiling.
Abstract:
A lower wall (22) is arranged at a distance beneath an upper wall (21). The lower wall (22) is convex from a central region (23) and then at least approximately espouses the shape of the upper wall (21). An overlap region (27) is thus formed. On the opposite side the lower wall (22) is bent upwards parallel to and flush with the longitudinal edge (26) towards the upper wall (21) and follows the latter back to the centre of the plate. A second overlap region (28) is thus formed. This design avoids the formation of a hollow space in the bonding region of the neighbouring metal plate. In addition, it permits the insertion of metal strips running parallel to the longitudinal edges of both walls. It is also possible to fit a spacer extending over the entire central region (23) in the space between the upper (21) and lower (22) walls to reinforce the entire structure.
Abstract:
Solar PV devices are disclosed, wherein these devices are produced as an integral part of a structural panel. The structural panel may subsequently be used in any number of ways, including being made an integral part of a building structure such as a wall or a roof or another type of barrier structure, or simply a stand-alone array or even a retrofit addition to an existing structure. In embodiments, the panel comprises a semi-monocoque structure, which can provide strength and stiffness. The core of this semi-monocoque can provide an enclosure that functions to confine the solar PV's electrical system within an electrically insulating structure that provides dual insulation and may enables a dual-insulated rating. Embodiments of the panels disclosed herein also can provide cooling air flow to provide cooling to the panel.
Abstract:
A photovoltaic solar collector (10) is mounted to a profiled external sheet (2) of an underlying composite insulating panel. The solar collector (10) comprises a photovoltaic sheet (20) and a protective translucent cover (21) for the photovoltaic sheet (20). A first adhesive layer (22) is provided between the photovoltaic sheet (20) and the translucent cover (21). A second adhesive layer (23) is provided between the underside of the photovoltaic sheet (20) and the external surface of the composite panel upper or external sheet (2). The adhesive layers (22), (23) may be of the same hot melt adhesive. In the invention sheets of the photovoltaic (20), the adhesive (22), (23), and the cover (21) are drawn from supply reels, are cut to length, and then laid on top of the upper sheet (2) of the insulated panel. Using a pressure laminating process the various layers are heated and pressed to adhere to and conform to the outer sheet 2 of the insulated panel.