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Masahiko Maeda

Masahiko Maeda, Settsu-Shi JP

Patent application numberDescriptionPublished
20080207860TREATING AGENT FOR MASONRY - The application to a masonry of a fluorine-containing polymer comprising (1) a fluoroalkyl group-containing monomer, and (2) a silicon-containing monomer in the amount of 2.0 to 6.0% by weight based on the polymer, can give a masonry having excellent water- and oil-repellency and soil resistance.08-28-2008
20100168304COATING COMPOSITION - There is provided a polyester coating composition having excellent action of preventing deposition of outdoor stain and stain caused by rainfall, being capable of extending a period of time (pot life) from the mixing to the coating, and comprising (A) a polyester resin, (B) one or more of fluorine-containing organosilicon compounds having a fluorine content of 5 to 30% by mass, (C) one or more of aliphatic hydrocarbon compounds having hydroxyl group and 1 to 10 carbon atoms, in which a part of hydrogen atoms bonded to carbon atom may be substituted by fluorine atoms and/or one or more of alkoxy compounds having 2 to 10 carbon atoms, in which a part of hydrogen atoms bonded to carbon atom may be substituted by fluorine atoms, and (D) an organic solvent.07-01-2010
20100180938COATING COMPOSITION FOR PROTECTION COVER OF SOLAR CELL - There is provided a protection cover of solar cell having processability at room temperature, solvent resistance, weather resistance and durability without impairing its transparency, and also a curable fluorine-containing coating composition being capable of forming the protection cover. The curable fluorine-containing coating composition for a protection cover of solar cell comprises (A) a curable fluorine-containing resin, (B) a curing agent and (C) a solvent and is used for forming a top coat layer (III) of a cured article comprising the fluorine-containing resin, in which the top coat layer is provided, directly or via a primer layer (IV), on a transparent resin layer (II) provided on the sunlight irradiation side of a solar cell module (I).07-22-2010
20110086971MASONRY-TREATING AGENT - A fluoropolymer for masonry treatment produced from (A) a fluoromonomer which has been substituted in the α-position by a X group and is represented by the formula (I):04-14-2011

Patent applications by Masahiko Maeda, Settsu-Shi JP

Masahiko Maeda, Nagoya-Shi JP

Patent application numberDescriptionPublished
20090306843HYBRID VEHICLE AND CONTROL METHOD THEREOF - When determined that a driver's accelerator operation is rough during the turn-on condition of an ECO switch 12-10-2009
20100038159VEHICLE AND CONTROL METHOD THEREOF - In a hybrid vehicle 02-18-2010
20100138090HYBRID VEHICLE AND CONTROL METHOD THEREOF - In a hybrid vehicle 06-03-2010
20100318249VEHICLE AND CONTROL METHOD THEREOF - In a hybrid vehicle 12-16-2010

Masahiko Maeda, Osaka JP

Patent application numberDescriptionPublished
20090306284Curable Fluorinated Copolymers and Coatings and Processes Thereof - A process for coating flexible substrates applying a curable fluorinated copolymer A which is the reaction product of FC and 12-10-2009
20100227173WATER-REPELLENT OIL-REPELLENT ANTIFOULING AGENT HAVING GOOD SOLUBILITY IN SOLVENT - Disclosed is a water-repellent oil-repellent antifouling agent containing a fluorine-containing polymer for a treatment for providing water repellency, oil repellency and antifouling property. The fluorine-containing polymer has a repeating unit (A) derived from a fluorine-containing acrylate monomer, and a repeating unit (B) derived from at least one non-fluorine acrylate monomer selected from the group consisting of a monomer (B1) having a cyclic hydrocarbon group and a monomer (B2) having a short chain hydrocarbon group. This water-repellent oil-repellent antifouling agent has good solubility in solvents, and exhibits excellent effects on various bases, especially on masonries.09-09-2010
20110110995SURFACE-TREATED POWDER AND COSMETIC COMPRISING THE SAME - Provided is a surface-treated powder having excellent usability and adhesion to skin. The powder is coated with a surface-treating agent including (a) a fluorine-containing monomer of a general formula (I) and (b) an alkoxy group-containing monomer of a general formula (II). The powder is used for various cosmetics.05-12-2011
20110135905HIGH ENERGY RAY-CURABLE COMPOSITION - Disclosed is a high energy ray-curable composition which is excellent in storage stability before curing and enables to form a cured coating film which is excellent in hardness, property of preventing adhesion of fats and oils, property of wiping off fats and oils, abrasion resistance, transparency, water repellency, adhesion, smoothness and uniformity. Specifically disclosed is a high energy ray-curable composition containing the following components (A)-(D). (A) 100 parts by weight of a polyfunctional acrylate (B) 1-30 parts by weight of an organoalkoxysilane having an aliphatic unsaturated bond (C) 1-100 parts by weight of colloidal silica (D) 0.2-20 parts by weight of a fluorine compound having an aliphatic unsaturated bond.06-09-2011

Patent applications by Masahiko Maeda, Osaka JP

Masahiko Maeda, Aichi-Ken JP

Patent application numberDescriptionPublished
20100076657VEHICLE AND CONTROL METHOD THEREOF - In a hybrid vehicle 03-25-2010
20100076663VEHICLE AND CONTROL METHOD THEREOF - In a hybrid vehicle 03-25-2010
20100082190VEHICLE AND CONTROL METHOD THEREOF - In a hybrid vehicle 04-01-2010

Masahiko Maeda, Tokyo JP

Patent application numberDescriptionPublished
20090253329HEAT-RESISTANT NONWOVEN FABRIC - The present invention provides a heat-resistant nonwoven fabric wherein the nonwoven fabric is formed from a poly(phenylene sulfide) fiber, and 30% by weight or more of the poly(phenylene sulfide) fiber has a crystallinity of 25 to 50%. Moreover, the properties of the heat-resistant nonwoven fabric can be further improved by making the nonwoven fabric have a multilayer structure in which layers composed of a poly(phenylene sulfide) filamentary fiber and layers composed of a poly(phenylene sulfide) fine fiber are stacked and integrated.10-08-2009