Abstract:
Bereitgestellt wird ein Lichtleitkörper für einen lichtdurchlässigen Verbundkörper, ein lichtdurchlässiger Verbundkörper sowie Verfahren zur Herstellung eines Lichtleitkörpers sowie eines lichtdurchlässigen Verbundkörpers. Auf der Oberfläche des Lichtleitkörpers können photovoltaische Zellen angeordnet sein, die nach der Herstellung des Verbundkörpers im Wesentlichen vollständig in das Füllmaterialdes Verbundkörperseingebettet sind. An der Oberfläche des Verbundkörpers können ebenfalls photovoltaische Zellen aufgebracht sein. Die photovoltaischen Zellen werden vorzugsweise in einem Aufdampfverfahren aufgebracht.
Abstract:
A multiwall sheet can comprise walls, wherein the walls include: a first wall; a second wall; and a transverse wall, wherein the first wall, the second wall, and the transverse wall extend longitudinally; and a rib extending between adjacent walls, wherein a layer is formed by two adjacent walls; wherein the layer is filled with a nanoporous foam material; and wherein the multiwall sheet comprises a normalized thermal conductivity value of less than or equal to 1.00 W·m/kg·K. A method of making a multiwall sheet can comprise coextruding the multiwall sheet described above with a nanoporous foam material; wherein the layer is filled with a nanoporous foam material during coextrusion.
Abstract:
The present invention relates to a composite panel (10) based on cementitious mortar, passed through its entire thickness by a plurality of through openings (11), each of which is filled with a material transparent to light in the form of a preformed plate (12) housed in said opening (11), or formed in said opening, wherein said cement-based mortar contains at least 30 kg/m 3 of fibres selected from one or more of the following types : metallic fibres, steel fibres, glass fibres, polymeric resin fibres. The invention also relates to methods of production of said panel.
Abstract translation:本发明涉及一种基于水泥质砂浆的复合板(10),其通过多个通孔(11)穿过其整个厚度,每个通孔(11)填充有预成型板形式的透光材料 12),容纳在所述开口(11)中或形成在所述开口中,其中所述水泥基砂浆含有至少30kg / m 3的选自以下一种或多种的纤维:金属纤维,钢纤维,玻璃纤维 ,聚合物树脂纤维。 本发明还涉及所述面板的制造方法。
Abstract:
Some embodiments provide a fenestration apparatus including at least one glazing pane capable of being installed in an opening of a building envelope and a tessellated structure disposed adjacent to the at least one glazing pane. The tessellated structure can include at least one partition having a first face and a second face. The at least one partition can define a plurality of spatially separated cells within a substantially contiguous region of the opening. Each of the plurality of spatially separated cells can have a cell width and a cell depth. Each of the plurality of spatially separated cells can be at least partially surrounded by the first face of the at least one partition, the second face of the at least one partition, or a combination of the first face and the second face of the at least one partition.
Abstract:
A building panel (10) comprises a hollow elongate structure (12) having a generally rectangular cross-sectional profile. The elongate structure (12) comprises first and second outer skins (14a and 14b) joined by substantially parallel first and second side walls (16a and 16b). A connecting means (18) is provided on each side wall (16) respectively wherein, in use, adjacent panels (10) can be connected to each other side by side to form a segment (30) of a wall or roof. The elongate structure (12) further comprises a third inner skin in the form of a web (20) extending between the first and second side walls (16) so as to divide the interior of the elongate structure into two chambers. The duel chamber profile of the elongate structure (12) provides the panel (10) with additional structural strength and rigidity, as well as improved thermal and sound insulation properties. The panel (10) is preferably made of polycarbonate.
Abstract:
A pair of mutually complementary trim profiles (10a, 10b, 100a, 100b, 110, 110a, 110b) each having opposing edges connectors (28, 30, 128, 130) for engaging a respective edge (32, 120, 122) of a pair of opposing spaced apart panel sections (18, 19) and each having alignment means (42, 44, 134, 136) for securely engaging complementary alignment means of the complementary trim profile in the pair such that in use adjacent co-planar panel sections are supported and secured by complementary trim-profiles each of which is attached to a respective edge of two opposing panel sections (18, 19). The trim profiles are further provided with fastening means (54, 56) for facilitating secure attachment of the two complementary profiles to each other.
Abstract:
In one embodiment, a multiwall sheet comprises a first sheet comprising an inner surface and an outer surface, a second sheet comprising a first surface and a second surface; and a rib disposed between the inner surface and the first surface. The outer surface can have surface features and has a surface area of greater than or equal to 140% of a planar, flat, non- profiled surface area for a same unit area.
Abstract:
This invention relates to a mirror sheet for interior finishing of a building. The mirror sheet suitable for a building ceiling according to the present invention consists of polyvinyl chloride (PVC) sheet which can be stretched; non-stretchable clear protective film bonded to one side of said polyvinyl chloride; and a mirror surface established between said polyvinyl chloride and said clear protective film. According to the present invention, a new concept mirror sheet suitable for ceiling or wall and a mirror sheet for the interior finishing of buildings are provided by bonding the stretchable film and the non-stretchable film, which will not bend nor fold even long after its construction due to its stretchability.
Abstract:
The invention relates to a wall-opening apparatus that comprises a diversion means for diverting the light flowing therethrough, and a light-energy conversion material that intensifies the light in the visible spectrum.
Abstract:
A method of fabricating a door for a cover of a transport refrigeration unit includes the steps of forming first and second sheets of plastic material, forming a core member of foam material, assembling the core member of foam material between the first and second sheets of plastic material, and bonding the respective peripheral edges of the first and second plastic sheets together. A transport refrigeration unit has a front cover that includes a pair of front doors of composite structure. Each door is formed of an inner sheet and an outer sheet of plastic material bonded together at their respective peripheral edges about a core of preformed foam material between said first and second sheets.