Abstract:
The present invention relates to method for manufacturing a building element. The method comprising the steps of peeling a log in a lathe to form a veneer; forming the veneer to a veneer sheet (1) of a suitable size; impregnation of the veneer sheet, wherein impregnation chemicals is applied on both sides (2, 3) of the veneer sheet;drying the veneer sheet (1); applying glue (10) on at least one side of the veneer sheet (1); pressing a predetermined number of glued veneer sheets together to form a billet (4) in a pressing stage; trimming the edges of the billet (4), such that the billet is square formed; hot pressing the billet (4) for 10-90 minutes; applying glue (11) on at least one side of the billet; cold pressing a predetermined number of glued billets together to form a building element, and trimming the edges of the building element, such that the building element is square formed.
Abstract:
A flexible, wrappable multilayered heat shield is provided. The heat shield includes a reflective metal outermost layer, an innermost layer of high temperature yarn capable of withstanding temperatures up to about 650 degrees° C. continuously, and about 750° C. intermittently, and an intermediate layer of nonwoven material capable of withstanding temperatures up to about 550° C. continuously sandwiched between the outermost and innermost layers.
Abstract:
A method of producing an insulated corrugated fiber cement sheet (1) is described. The method comprises providing a cured corrugated fiber cement sheet, shrinking the cured corrugated fiber cement sheet and adhering a thermal insulation panel (2) having recesses (3) such that these engage with the undulations (4) of the fiber cement sheet (7) while leaving openings (5) for acclimatization. Disclosed is also an insulated corrugated fiber cement sheet (1), a thermal insulation panel (2) for producing such an insulated corrugated fiber cement sheet, and a kit of parts comprising the fiber cement sheet (7) and the thermal insulation panel (2).
Abstract:
A floor panel has a core, a print and a wear resistant layer. The core is assembled at least from a plurality of paper sheets, or other carrier sheets, impregnated with a thermosetting resin.
Abstract:
A ceiling system includes a grid support member, and first and second ceiling panels abutted at a joint. In the factory-supplied condition, each panel has a facing sheet already adhesively bonded to a central region of the panel. Perimeter portions of the facing are left un-bonded to an annular peripheral region of the surface surrounding the central region. This allows seams to be made in the field. The facing sheet comprises a cantilevered flap extending beyond a peripheral edge of the panel. During field installation, the flap of a first panel extends across the joint overlapping the second panel's un-bonded facing sheet in the peripheral region. The double thickness of facings is cut to form a seam laterally offset from the joint, which is concealed. A field applied or activated adhesive bonds the facing to the peripheral regions of each panel. A related installation method is disclosed.
Abstract:
The invention relates to a method for producing a component having a light-weight structure. According to the invention, impregnated fiber mats are applied to a light-weight structure that comprises hollow chambers.
Abstract:
A method of coating an expandable item (10) such as a pressure vessel or process vessel used for instance in the off shore oil industry. A compressible flexible intermediate layer (14) is provided on the item (10), and a support member (18) is embedded in the intermediate layer (14). The support member (18) comprises an open framework base (20) and a plurality of projecting members upstanding therefrom and extending out of the intermediate layer (14) away from the item (10). A thermally insulating coating layer (12) is applied over the intermediate layer (14) such that the projecting members (22) extend into the coating layer (12), and are wholly located in the coating layer (12).
Abstract:
Floor panel comprising a substrate (2) and a top layer (3); wherein the top layer (3) comprises a motif (4) formed by a printed synthetic material and a transparent or translucent wear layer (29) based on synthetic material and situated above the motif (4); wherein the top layer (3) and the substrate (2) are welded to each other; wherein the floor panel (1) comprises coupling means (9); characterized in that said substrate (2) substantially consists of a foamed synthetic material board, which has an average density of more than 300 kilograms per cubic meter; that said coupling means (9) substantially are realized in the foamed synthetic material board; and that at least one pair of horizontally active locking surfaces (20-21) of the coupling means (9) is realized in the substrate (2).