Abstract:
Die Erfindung betrifft ein Verfahren zur beidseitigen Beschichtung eines Holzwerkstoff- oder Gipswerkstoff-Formteils mit einer Kunststoff-Folie, dadurch gekennzeichnet, dass a) das Formteil in einer Kapsel zwischen den aufzutragenden Kunststoff-Folien in einem Abstandsverhältnis angeordnet und befestigt wird, sodass 3 Kammern A, B und C entstehen, Kammer A zwischen den beiden Kunststoff-Folien, in deren Mitte das Formteil positioniert ist und zwei Kammern (B und C) jeweils zwischen Kunststoff-Folie und Kapselwand, b) die Luft aus den Kammern A, B und C evakuiert wird, c) die Folien erwärmt werden, d) die Kammern B und C mit Außenluft auf Atmosphärendruck entspannt werden und e) die Folien dadurch auf entgegen gesetzte Flächen des Formteils gepresst werden, während zwischen den Folien ein Vakuum aufrechterhalten wird.
Abstract:
A thermally insulative label is provided. The label includes a first layer of material including an insulative coating, and a second layer of shrink material coupled to the first layer wherein the second layer includes graphics.
Abstract:
A method provides instructions for the application of a surface covering laminate material. A quantity of a surface covering laminate is provided. A portion of the quantity comprises a web material having a first side and a second side. The first side comprises an adhesive. The second side is releasably joined to a release liner material. The first side of a first portion of the surface covering laminate is disposed in contact with a target surface. The first side of a second portion is disposed in contact with the target surface. At least a portion of the first portion is disposed between a trim piece and the target surface. The release liner is removed from the first portion of the surface covering laminate.
Abstract:
A method provides instructions for the application of a surface covering laminate material. A quantity of a surface covering laminate is provided. A portion of the quantity comprises a web material having a first side and a second side. The first side comprises an adhesive. The second side is releasably joined to a release liner material. The first side of a first portion of the surface covering laminate is disposed in contact with a target surface. The first side of a second portion is disposed in contact with the target surface. At least a portion of the first portion is disposed between a trim piece and the target surface. The release liner is removed from the first portion of the surface covering laminate.
Abstract:
A laminator where curling of a sheet-like base laminated by upper and lower laminate films is prevented and where mutual displacement of the upper and lower laminate films due to loosening of their winding is prevented. The laminator (10) holds and laminates the sheet-like base (100) between the laminate films (21) drawn from laminate roll sections (20). The laminator has roll rotating sections (31) fitted to both ends of each laminate roll section (20) and freely rotating the laminate roll section (20), roll holding sections (39) each holding the laminate roll section (20) with a roll rotating section (31) interposed therebetween, and laminate adjusting means (31R) fitted to the roll rotating sections (31) at at least either of both ends of each of the upper and lower laminate roll sections (20) or fitted to the roll rotating section (31) at at least either of both ends of either of the upper and lower laminate roll sections (20), the laminate adjusting means (31R) adjusting, by varying a rotational load of the roll rotating sections (31), the tension of the laminate films (21) drawn from the laminate roll sections (20).
Abstract:
A radio IC chip (11) is attached to a film roll (6). The radio IC chip stores defect-portion information representing a position and an area of a defective portion of a film (3). An IC chip reader (62) reads the defect-portion information from the radio IC chip and inputs the read information into the laminate process controller (50) which totally controls a laminating apparatus (20). The laminate process controller identifies a carry position of the defective portion of the film on the basis of a carry position of the film and the defect-portion information. When the defective portion of the film is fed into a joining zone (22), feeding a substrate (2) into the joining zone is stopped. Further, a joining mechanism (67) is evacuated from the film while the defective portion of the film passes a press position of the joining mechanism.
Abstract:
The present invention relates generally to composite fiber-reinforced polymer (FRP) wind tower systems and methods of manufacture. More particularly, the present invention relates to a composite FRP wind tower system including a plurality of tower cells for functional engagement with adjacent tower cells along mating surfaces to form a tower section, each tower cell including a lower end and an upper end for telescopic engagement with a tower cell of an adjacent tower section.
Abstract:
A method and an apparatus for applying a decoration onto an object (50) use a chamber (22) that can be divided by a deformable foil (10) into a first space (24) and a second space (26). Said foil (10) comprises a carrier film (20), a decoration layer (16), and, at least, a varnish layer (18). The first and second spaces (24, 26) are evacuated simultaneously and, thereafter, a pressure gradient is generated to press the foil (10) against the object (50) to be decorated and to transfert at least the decoration layer (16) and the varnish layer (18) onto the object (50).