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    • 13. 发明专利
    • FIREPROOF/FIRE-RESISTANT COMPOSITE MATERIAL
    • JPH01314157A
    • 1989-12-19
    • JP14439888
    • 1988-06-10
    • KOHMIX CO LTD
    • KOKUTA NAOTOKOKUTA KENJIKOKUTA KATSUHIROKOKUTA HIROSHI
    • B32B15/14B32B7/02B32B9/00
    • PURPOSE:To obtain a flexible heat-resistant non-combustible composite material by using an aqueous film forming inorg. compound having specific components alone or using the same as a compositional material in combination with various natural or synthetic mineral products. CONSTITUTION:Various natural or synthetic mineral powders, fibers or laminar compounds such as mineral powders, kaolin, pozzolan, silica fume, bauxite, pyrophyllite, metal oxides, metal hydroxides, cement or the like are mixed with an aqueous film forming inorg. compound represented by formula and the resulting mixture is used as a surface coating material or an adhesive material. In this case, even when this material is exposed to a high temp. burner, heat conduction is obstructed by the removal of the water of crystallization without damaging an inorg. film and, further, said material becomes a heat- resistant film to prevent the inflow of radiant heat. In addition, this material has fire-resistant bonding strength, generates no release and has a characteristic flexible in normal state in spite of an inorg. composition. Therefore, a fire- resistant/fireproof composite material of every kind can be prepared.
    • 14. 发明专利
    • CONTAINER OF HYDRATED HEAT GENERATING MATERIAL
    • JPH01170432A
    • 1989-07-05
    • JP32925487
    • 1987-12-25
    • KOHMIX CO LTD
    • KOKUTA NAOTOKOKUTA KENJIKOKUTA KATSUHIROKOKUTA HIROSHI
    • B65D81/34A47J36/28
    • PURPOSE:To obtain a safe container which neither melts nor burns down even when heat generating material in the container is hydrated and gives off much heat to produce high temperature, by placing the heat generating material on a barrier laid on the inner bottom of the container or wrapping the heat generating material with water-absorbing paper or paper which dissolves after absorbing water. CONSTITUTION:A container 3 composed of material such as polypropylene has hydrated heat generating material 5 whose heat source is hydrated quick line, and a barrier 6 which is placed between the container 3 and the hydrated heat generating material 5, and which is composed of the following material: heat-resistant material such as metal foil, heat-resistant paper, ceramic paper, a glass sheet (wool cloth), and synthetic resin film; material becoming heat-resistant after absorbing water or melting such as hygroscopic paper, unwoven cloth, textile, water-absorbing paper, and wood; starch paper which dissolves after absorbing water; and material which becomes heat-resistant after absorbing water such as PVA paper and water-absorbing resin paper. The polypropylene container with heat-resistant at 120 deg.C does not melt even when the temperature of the hydrated heat generating material becomes from 120 deg.C at least to 200 deg.C in the extreme case.
    • 17. 发明专利
    • CASSET TYPE CONTAINER FOR HEATING FOOD
    • JPH0232978A
    • 1990-02-02
    • JP17228988
    • 1988-07-11
    • KOHMIX CO LTD
    • KOKUTA HIROSHISHIRATORI JUNZO
    • B65D81/34A47J36/28
    • PURPOSE:To permit a rapid and accurate heat generation by partially defining a bridge spacing in a heat generating structure which is received within the bottom dividing plates of a receiving container together with liquid reactant bags and providing an inner container above the receiving container and also a fracture means to break the liquid reactant bags. CONSTITUTION:A supporting frame 21 is provided on an outer container 17 and bottom dividing plates 18 thereof receive a heat generating structure 19, above which an inner container 22 is provided. The inner container 22 is provided in its bottom with a plurality of small holes 27, over which a nonwoven fabric 23 is laid. The heat generating structure 19 is formed by integrally covering with a film 4 the film 3 filled with a liquid reactant 2 located in the upper part thereof, a heating material 1 filled in the central portion thereof and almond-shaped heating materials 5 on each end of the heating material 1. With a 250g of pouched rice with tea 24 filled within the nonwoven fabric 23, when the upper end 25a of a fracture pin 25 is pushed down as shown by the arrow 26, the lower end 25b thereof breaks the film 3 and 4 to rapidly bring the reaction liquid 2 into contact with the heating materials 1 and 5 for heat generation. The upper end 25a of the fracture pin 25 covers a pin inserting hole of the outer lid 21 to eliminate the possibility of a hot vapor escaping to the outside.
    • 19. 发明专利
    • INORGANIC COMPOUND CAPABLE OF FORMING FILM BY HYDRATION
    • JPH01313303A
    • 1989-12-18
    • JP14439788
    • 1988-06-10
    • KOHMIX CO LTD
    • KOKUTA NAOTOKOKUTA KENJIKOKUTA KATSUHIROKOKUTA HIROSHI
    • C01B9/08C01B35/06C01B35/10C04B41/50
    • PURPOSE:To obtain an inorganic compd. having a large mol. wt. and being capable of forming a flexible and heat-resistant coating film by hydration by allowing a metal to react with a specified compd. of a mineral acid and an alkali metal at a regulated temp. CONSTITUTION:The title inorganic compd. is obtd. by allowing a metal to react with a mineral acid compd. capable of dissociating boric acid or hydrofluoric acid, and an alkali metal by hydration by a process described hereunder. A solid metal is allowed to react with a conc. soln. of the alkali metal in water or in a soln. of the mineral acid compd., and the mineral acid compd. is further allowed to react therewith. In this stage, the reaction temp. is controlled to >=50 deg.C and =1.1 specific gravity and can form a film at room temp. or by heating. It is preferred that the reaction is proceeded after adding 0.5-100wt.% Hf-contg. compd. basing on the amt. of the mineral acid compd. so as to control the reaction temp. automatically in order to prevent boiling due to the heat of reaction. Suitable metal to be used is at least one kind of metals of the group I-VIII of the periodic table, but metallic Si or metallic Al is more preferred generally.