EXOTHERMIC BODY, AND MANUFACTURING METHOD AND USE THEREOF
PROBLEM TO BE SOLVED: To provide an exothermic body excellent in an exothermic efficiency, thermal conductivity, heat resistance, mechanical properties, abrasion resistance or the like, and applicable for technical fields such as a snow melting system. SOLUTION: The exothermic body is provided with...
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creator | TSUBOTA MINORU SAITO JUNICHIRO |
description | PROBLEM TO BE SOLVED: To provide an exothermic body excellent in an exothermic efficiency, thermal conductivity, heat resistance, mechanical properties, abrasion resistance or the like, and applicable for technical fields such as a snow melting system. SOLUTION: The exothermic body is provided with a glass fiber-made grid base cloth 5, an electric conductive film 6 and an insulation layer 7, and the glass fiber-made grid base cloth is an assembly of flat straps of a width 5 to 30 mm made of a combination of a plurality of glass fibers, in a lattice form of 10 to 100 mm in longitudinal and horizontal dimensions in each opening part, and the electric conductive film contains in a bonding resin 40 to 90 mass% of an electric conductive filler composed of graphite of a mean particle diameter of 5 to 200 μm and electric conductive carbon black of a mean particle diameter of 10 to 100 μm, and a mass ratio of the graphite against the conductive carbon black in the conductive filler is 0.1 to 10, and the insulation layer is a heat resistant polymer layer which does not melt and is undecomposable in a condition of a temperature of 150°C held for 5 hours continuously. COPYRIGHT: (C)2010,JPO&INPIT |
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SOLUTION: The exothermic body is provided with a glass fiber-made grid base cloth 5, an electric conductive film 6 and an insulation layer 7, and the glass fiber-made grid base cloth is an assembly of flat straps of a width 5 to 30 mm made of a combination of a plurality of glass fibers, in a lattice form of 10 to 100 mm in longitudinal and horizontal dimensions in each opening part, and the electric conductive film contains in a bonding resin 40 to 90 mass% of an electric conductive filler composed of graphite of a mean particle diameter of 5 to 200 μm and electric conductive carbon black of a mean particle diameter of 10 to 100 μm, and a mass ratio of the graphite against the conductive carbon black in the conductive filler is 0.1 to 10, and the insulation layer is a heat resistant polymer layer which does not melt and is undecomposable in a condition of a temperature of 150°C held for 5 hours continuously. 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SOLUTION: The exothermic body is provided with a glass fiber-made grid base cloth 5, an electric conductive film 6 and an insulation layer 7, and the glass fiber-made grid base cloth is an assembly of flat straps of a width 5 to 30 mm made of a combination of a plurality of glass fibers, in a lattice form of 10 to 100 mm in longitudinal and horizontal dimensions in each opening part, and the electric conductive film contains in a bonding resin 40 to 90 mass% of an electric conductive filler composed of graphite of a mean particle diameter of 5 to 200 μm and electric conductive carbon black of a mean particle diameter of 10 to 100 μm, and a mass ratio of the graphite against the conductive carbon black in the conductive filler is 0.1 to 10, and the insulation layer is a heat resistant polymer layer which does not melt and is undecomposable in a condition of a temperature of 150°C held for 5 hours continuously. 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SOLUTION: The exothermic body is provided with a glass fiber-made grid base cloth 5, an electric conductive film 6 and an insulation layer 7, and the glass fiber-made grid base cloth is an assembly of flat straps of a width 5 to 30 mm made of a combination of a plurality of glass fibers, in a lattice form of 10 to 100 mm in longitudinal and horizontal dimensions in each opening part, and the electric conductive film contains in a bonding resin 40 to 90 mass% of an electric conductive filler composed of graphite of a mean particle diameter of 5 to 200 μm and electric conductive carbon black of a mean particle diameter of 10 to 100 μm, and a mass ratio of the graphite against the conductive carbon black in the conductive filler is 0.1 to 10, and the insulation layer is a heat resistant polymer layer which does not melt and is undecomposable in a condition of a temperature of 150°C held for 5 hours continuously. 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subjects | AGRICULTURE ANIMAL HUSBANDRY CLEANING BEACHES CLEANING OF PERMANENT WAYS CONSTRUCTION OF ROADS, RAILWAYS, OR BRIDGES CONSTRUCTION OF, OR SURFACES FOR, ROADS, SPORTS GROUNDS, ORTHE LIKE CULTIVATION OF VEGETABLES, FLOWERS, RICE, FRUIT, VINES, HOPSOR SEAWEED DISPERSING ELECTRIC HEATING ELECTRIC LIGHTING NOT OTHERWISE PROVIDED FOR ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR ELECTRICITY FISHING FIXED CONSTRUCTIONS FOG IN GENERAL FORESTRY HORTICULTURE HUMAN NECESSITIES HUNTING MACHINES OR AUXILIARY TOOLS FOR CONSTRUCTION OR REPAIR STREET CLEANING TRAPPING WATERING |
title | EXOTHERMIC BODY, AND MANUFACTURING METHOD AND USE THEREOF |
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