Patents by Inventor Tetsuya Kameyama
Tetsuya Kameyama has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 7509872Abstract: Provided are a stress analysis method and stress analysis equipment that enable a detailed stress measurement, by using both a photoelasticity measurement method and a stress measurement (mechanoluminescence measurement) which utilizes a mechanoluminescent substance to measure a stress state of an object. Physical quantities that are measurable include individual principal stress component and a principal stress direction. The photoelasticity measurement method alone cannot measure individual principal stress component values.Type: GrantFiled: January 19, 2007Date of Patent: March 31, 2009Assignee: National Institute of Advanced Industrial Science and TechnologyInventors: Koji Hyodo, Chao-Nan Xu, Takashi Yamane, Motoyuki Akamatsu, Yoshiyuki Yokogawa, Tetsuya Kameyama
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Publication number: 20070186674Abstract: Provided are a stress analysis method and stress analysis equipment that enable a detailed stress measurement, by using both a photoelasticity measurement method and a stress measurement (mechanoluminescence measurement) which utilizes a mechanoluminescent substance to measure a stress state of an object. Physical quantities that are measurable include individual principal stress component and a principal stress direction. The photoelasticity measurement method alone cannot measure individual principal stress component values.Type: ApplicationFiled: January 19, 2007Publication date: August 16, 2007Applicant: NATIONAL INSTITUTE OF ADVANCED INDUSTRIALS SCIENCE AND TECHNOLOGYInventors: Koji Hyodo, Chao-Nan Xu, Takashi Yamane, Motoyuki Akamatsu, Yoshiyuki Yokogawa, Tetsuya Kameyama
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Publication number: 20050161120Abstract: The present invention provides an orthopedic and dental endosseous implant material having a ceramic coating with good adhesion on a metal substrate, and a method for producing this material, and a coating having a gradient composition composed of a ceramic or metal is formed on a ceramic or metal substrate to moderate the residual stress produced by the difference between the coefficients of thermal expansion of the substrate and the coating, thereby increasing the stability of the coating.Type: ApplicationFiled: June 14, 2004Publication date: July 28, 2005Applicants: Natl. Inst. of Adv. Indust. Sci. & Tech.Inventors: Masahiko Inagaki, Tetsuya Kameyama, Yukiharu Hasegawa
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Patent number: 6841143Abstract: This invention provides mesostructured oxide ceramics and a synthesizing method thereof, the synthesizing method employs a water-based solvent containing a metallic salt or metal complex as the ceramics precursor, template formed from an organic compound or the association thereof, and a precipitant, wherein mesostructured oxide ceramics are obtained from self-assembled oxide ceramics and organic substance by directly extracting oxide ceramics at a low temperature of 200° C. or less by utilizing a homogenous precipitation reaction from said ceramics precursor under the coexistence of a nanometer-sized template in the solvent, and separating and collecting the obtained precipitation, and mesostructured oxide ceramics is prepared by employing the synthesizing method described above.Type: GrantFiled: September 6, 2001Date of Patent: January 11, 2005Assignee: National Institute of Advanced Industrial Science and TechnologyInventors: Masahiko Inagaki, Atsushi Hozumi, Kei Teraoka, Kaori Nishizawa, Fukue Nagata, Yoshiyuki Yokogawa, Tetsuya Kameyama
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Patent number: 6733715Abstract: A method of manufacturing hollow ceramics fibers with the pores of the micron-scale hollow structure unidirectionally oriented, the method of manufacturing is characterized in the steps of dispersing organic fibers in a dielectric liquid and applying high voltage to the dielectric liquid containing the dispersed organic fibers to electrostatically align them to produce a fiber accumulation in which the organic fibers are unidirectionally oriented, using the fiber accumulation as a mold and dipping the fiber accumulation in a ceramics base solution, and then removing the mold by treatment with heat or organic solvents.Type: GrantFiled: September 19, 2001Date of Patent: May 11, 2004Assignee: National Institute of Advanced Industrial Science and TechnologyInventors: Atsushi Hozumi, Yoshiyuki Yokogawa, Tetsuya Kameyama
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Publication number: 20020070482Abstract: The present invention relates to a method of manufacturing hollow ceramics fibers with the pores of the micron-scale hollow structure unidirectionally oriented, the method of manufacturing is characterized in the steps of dispersing organic fibers in a dielectric liquid and applying high voltage to the dielectric liquid containing the dispersed organic fibers to electrostatically align them to produce a fiber accumulation in which the organic fibers are unidirectionally oriented, using said fiber accumulation as a mold and dipping said fiber accumulation in a ceramics base solution, and then removing said mold by treatment with heat or organic solvents.Type: ApplicationFiled: September 19, 2001Publication date: June 13, 2002Applicant: National Inst. of Advanced Ind. Science and Tech.Inventors: Atsushi Hozumi, Yoshiyuki Yokogawa, Tetsuya Kameyama
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Patent number: 6402517Abstract: The invention provides an artificial tooth root having acid resistance and anti-adherence of sordes and various germs, consisting of a substrate and a coating of calcium phosphate based ceramic having bioaffinity formed on the surface of this substrate, the substrate is composed of a polymer, ceramic, metal, or other material, the surface of the ceramic coating on the substrate surface is endowed with a protrusion-and-recession configuration, and is, chemically modified, and to a method for producing the artificial tooth root, by forming a coating of calcium phosphate based ceramic having bioaffinity over a substrate while imparting protrusions and recessions thereto, masking an area of the ceramic coating surface of which bioaffinity is required, and fixing a silane coupling agent exclusively over a predetermined area of the ceramic coating surface.Type: GrantFiled: February 25, 2000Date of Patent: June 11, 2002Assignee: Agency of Industrial Science and TechnologyInventors: Atsushi Hozumi, Masahiko Inagaki, Kaori Nishizawa, Fukue Nagata, Yoshiyuki Yokogawa, Tetsuya Kameyama
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Publication number: 20020031470Abstract: This invention provides mesostructured oxide ceramics and a synthesizing method thereof, the synthesizing method employs a water-based solvent containing a metallic salt or metal complex as the ceramics precursor, template formed from an organic compound or the association thereof, and a precipitant, wherein mesostructured oxide ceramics are obtained from self-assembled oxide ceramics and organic substance by directly extracting oxide ceramics at a low temperature of 200° C. or less by utilizing a homogenous precipitation reaction from said ceramics precursor under the coexistence of a nanometer-sized template in the solvent, and separating and collecting the obtained precipitation, and mesostructured oxide ceramics is prepared by employing the synthesizing method described above.Type: ApplicationFiled: September 6, 2001Publication date: March 14, 2002Applicant: Nat'l Inst. of Adv. Industrial Science and Tech.Inventors: Masahiko Inagaki, Atsushi Hozumi, Kei Teraoka, Kaori Nishizawa, Fukue Nagata, Yoshiyuki Yokogawa, Tetsuya Kameyama
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Patent number: 6153266Abstract: The present invention provides a method for producing a calcium phosphate coating film on the surface of a substrate, even a substrate which has poor heat resistance. The method comprises the steps of soaking a substrate in a first solution containing phosphate ions, inter alia, aqueous solutions of a basic phosphate salt such as Na.sub.3 PO.sub.4 or Na.sub.2 HPO.sub.4 ; removing the substrate and drying it; and soaking the substrate in a second solution (aqueous solution) containing calcium ions, to thereby obtain a coating film comprising hydroxyapatite or a mixture containing hydroxyapatite and a hydroxyapatite precursor. The substrate removed from the second solution may be soaked in a third solution (aqueous solution) containing an apatite component at a substantially saturated or supersaturated concentration, to thereby form a hydroxyapatite coating film. There may be used substrates formed of metals, ceramics, organic polymer materials, etc.Type: GrantFiled: December 7, 1998Date of Patent: November 28, 2000Assignees: Japan as represented by Director General Agency of Industrial Science and Technology, NGK Spark Plug Co., Ltd.Inventors: Yoshiyuki Yokogawa, Tetsuya Kameyama, Yukari Kawamoto, Kaori Nishizawa, Fukue Nagata, Kohji Okada, Hiroshi Sumi
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Patent number: 4588438Abstract: The present invention provides a moulded object of alumina matter-containing raw material for aluminum smelting by a blast furnace method. The moulded object for aluminum smelting is formed by coating a moulded object comprising the alumina matter-containing raw material and a carbon material with carbon material coating layers on its surface.Type: GrantFiled: December 27, 1984Date of Patent: May 13, 1986Assignee: Agency of Industrial Science and TechnologyInventors: Masao Fujishige, Masayuki Dokiya, Tetsuya Kameyama, Harumi Yokokawa, Seiichi Ujiie, Kenzo Fukuda
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Patent number: 4445934Abstract: This invention provides a method of smelting aluminum by using a blast furnace. An oxygen gas is introduced into a carbon material packed in a reactor, to burn the same to form a plurality of raceways and a high-temperature reduction region among the raceways. A mixture containing an alumina-containing starting material and a carbon material is then supplied selectively into the high-temperature reduction region while substantially preventing the mixture from contacting the raceways, to reduce the alumina to aluminum.Type: GrantFiled: February 3, 1983Date of Patent: May 1, 1984Assignee: Agency of Industrial Science and TechnologyInventors: Masao Fujishige, Masayuki Dokiya, Tetsuya Kameyama, Harumi Yokokawa, Seiichi Ujiie, Kenzo Fukuda, Akihiro Motoe
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Patent number: 4225733Abstract: Provided is a method for hydrogenating an aromatic compound by reacting the aromatic compound with hydrogen iodide in the presence of ruthenium catalyst.Type: GrantFiled: June 28, 1978Date of Patent: September 30, 1980Assignee: Agency of Industrial Science & TechnologyInventors: Tetsuya Kameyama, Masayuki Dokiya, Kenzo Fukuda