HEAT-INSULATIVE ALUMINUM CURTAIN WALL
PROBLEM TO BE SOLVED: To largely reduce the incident heat into a room, to inhibit the temperature rise of a building, to contribute to energy conservation by largely decreasing air-cooling load by the inhibition of the temperature rise, to obtain a building material gentle even to a person because a...
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creator | MATSUBARA SEIJI UNO KIYOBUMI OHASHI SHINICHI MIKI KATSUO |
description | PROBLEM TO BE SOLVED: To largely reduce the incident heat into a room, to inhibit the temperature rise of a building, to contribute to energy conservation by largely decreasing air-cooling load by the inhibition of the temperature rise, to obtain a building material gentle even to a person because a surface temperature is not heightened, to abound even in a color variation, and to prevent the contamination of the surface of a solar-heat shield film and even the deterioration of the reflection of solar rays on the solar-heat shield film. SOLUTION: An anodized film or a formation film 2 is formed on the surface of aluminum or an aluminum alloy 1 constituting an aluminum face plate, the upper section of the film 2 is coated with solar-heat shield paints 3 in a film thickness as thick as 10 to 50 μm, and the upper section of the paints 3 is coated with a low contamination clear coating 4 in the film thickness as thick as 5 to 20 μm. The anodized film or the formation film 2 is formed on the surface of aluminum or the aluminum alloy 1 constituting the aluminum face plate, and the upper section of the film 2 is coated with the solar-heat shield paints 3 in the film thickness as thick as 10 to 50 μm. COPYRIGHT: (C)2003,JPO |
format | Patent |
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SOLUTION: An anodized film or a formation film 2 is formed on the surface of aluminum or an aluminum alloy 1 constituting an aluminum face plate, the upper section of the film 2 is coated with solar-heat shield paints 3 in a film thickness as thick as 10 to 50 μm, and the upper section of the paints 3 is coated with a low contamination clear coating 4 in the film thickness as thick as 5 to 20 μm. The anodized film or the formation film 2 is formed on the surface of aluminum or the aluminum alloy 1 constituting the aluminum face plate, and the upper section of the film 2 is coated with the solar-heat shield paints 3 in the film thickness as thick as 10 to 50 μm. 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SOLUTION: An anodized film or a formation film 2 is formed on the surface of aluminum or an aluminum alloy 1 constituting an aluminum face plate, the upper section of the film 2 is coated with solar-heat shield paints 3 in a film thickness as thick as 10 to 50 μm, and the upper section of the paints 3 is coated with a low contamination clear coating 4 in the film thickness as thick as 5 to 20 μm. The anodized film or the formation film 2 is formed on the surface of aluminum or the aluminum alloy 1 constituting the aluminum face plate, and the upper section of the film 2 is coated with the solar-heat shield paints 3 in the film thickness as thick as 10 to 50 μm. 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SOLUTION: An anodized film or a formation film 2 is formed on the surface of aluminum or an aluminum alloy 1 constituting an aluminum face plate, the upper section of the film 2 is coated with solar-heat shield paints 3 in a film thickness as thick as 10 to 50 μm, and the upper section of the paints 3 is coated with a low contamination clear coating 4 in the film thickness as thick as 5 to 20 μm. The anodized film or the formation film 2 is formed on the surface of aluminum or the aluminum alloy 1 constituting the aluminum face plate, and the upper section of the film 2 is coated with the solar-heat shield paints 3 in the film thickness as thick as 10 to 50 μm. COPYRIGHT: (C)2003,JPO</abstract><edition>7</edition><oa>free_for_read</oa></addata></record> |
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subjects | APPLYING LIQUIDS OR OTHER FLUENT MATERIALS TO SURFACES, IN GENERAL BUILDING CEILINGS FIXED CONSTRUCTIONS FLOORS GENERAL BUILDING CONSTRUCTIONS INSULATION OR OTHER PROTECTION OF BUILDINGS LAYERED PRODUCTS LAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT ORNON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM PERFORMING OPERATIONS PROCESSES FOR APPLYING LIQUIDS OR OTHER FLUENT MATERIALS TOSURFACES, IN GENERAL ROOFS SPRAYING OR ATOMISING IN GENERAL TRANSPORTING WALLS, e.g. PARTITIONS |
title | HEAT-INSULATIVE ALUMINUM CURTAIN WALL |
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