O-containing Metal Compound Patents (Class 428/701)
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Publication number: 20110311805Abstract: The invention relates to a cutting tool having a substrate base body and a single or multi-layered coating attached thereupon, wherein at least one layer of the coating is a metal oxide layer produced in the PVD process or in the CVD process and the metal oxide layer has a grain structure wherein there is structural disorder within a plurality of the existing grains that are characterized in that in electron diffraction images of the grains, point-shaped reflections occur up to a maximum lattice spacing dGRENZ and for lattice spacing greater than dGRENZ no point-shaped reflections occur, but rather a diffuse intensity distribution typical for amorphous structures.Type: ApplicationFiled: March 18, 2010Publication date: December 22, 2011Applicant: WALTER AGInventors: Veit Schier, Oliver Eibl, Wolfgang Engelhart
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Patent number: 8080182Abstract: The oxide sintered body mainly consists of gallium, indium, and oxygen, and a content of the gallium is more than 65 at. % and less than 100 at. % with respect to all metallic elements, and the density of the sintered body is 5.0 g/cm3 or more. The oxide film is obtained using the oxide sintered body as a sputtering target, and the shortest wavelength of the light where the light transmittance of the film itself except the substrate becomes 50% is 320 nm or less. The transparent base material is obtained by forming the oxide film on one surface or both surfaces of a glass plate, a quartz plate, a resin plate or resin film where one surface or both surfaces are covered by a gas barrier film, or on one surface or both surfaces of a transparent plate selected from a resin plate or a resin film where the gas barrier film is inserted in the inside.Type: GrantFiled: September 16, 2009Date of Patent: December 20, 2011Assignee: Sumitomo Metal Mining Co., Ltd.Inventors: Tokuyuki Nakayama, Yoshiyuki Abe
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Patent number: 8080323Abstract: A coated cutting insert for use in a chip-forming material removal operation wherein the coated cutting insert includes a substrate that has a flank surface and a rake surface and the flank surface intersects the rake surface to form a cutting edge at the intersection. There is a wear-resistant coating scheme that adheres to at least a portion of the substrate. The wear-resistant coating scheme includes one or more coating layers of one or more of alumina, hafnia and zirconia. There is a wear indicating coating that adheres to at least a portion of the wear-resistant coating scheme. The wear indicating coating includes M(OxCyNz) wherein M is selected from the group comprising one or more of the following titanium, hafnium, zirconium, chromium, titanium-aluminum alloy, hafnium-aluminum alloy, zirconium-aluminum alloy, chromium-aluminum alloy, and their alloys, and x>0, y?0, z?0 and y+z>0.Type: GrantFiled: March 28, 2008Date of Patent: December 20, 2011Assignee: Kennametal Inc.Inventors: Zhigang Ban, Mark J. Rowe, Yixiong Liu, Alfred S. Gates, Jr., Kent P. Mizgalski, Mark S. Greenfield
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Patent number: 8080312Abstract: A coated body that includes a substrate and a coating scheme on the substrate. The coating scheme includes a CVD titanium carbonitride coating layer containing titanium carbonitride grains that are of a pre-selected grain size. The coating scheme further includes a first titanium/aluminum-containing coating layer containing first titanium/aluminum-containing grains applied so as to be farther away from the substrate than the titanium carbonitride coating layer. The first titanium/aluminum-containing grains are of a pre-selected grain size. The coating scheme also includes a CVD alumina coating layer containing alumina grains applied so as to be farther away from the substrate than the first titanium/aluminum-containing coating layer. The alumina grains are of a pre-selected grain size.Type: GrantFiled: June 22, 2006Date of Patent: December 20, 2011Assignee: Kennametal Inc.Inventors: Charles G. McNerny, Pankaj K. Mehrotra, Alfred S. Gates, Jr., Peter R. Leicht
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Patent number: 8075996Abstract: A ceramics sintered compact is provided in which a relative dielectric constant and an electromechanical coupling coefficient are improved in superior balance and which shows a relatively high piezoelectric coefficient. A ceramics sintered compact having a perovskite structure is provided in which a (002)/(200) ratio by X-ray diffraction after polarization is applied is 1.0 or greater.Type: GrantFiled: June 24, 2009Date of Patent: December 13, 2011Assignee: Hitachi Metals, Ltd.Inventor: Genei Nakajima
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Patent number: 8076005Abstract: High density oxide films are deposited by a pulsed-DC, biased, reactive sputtering process from a titanium containing target to form high quality titanium containing oxide films. A method of forming a titanium based layer or film according to the present invention includes depositing a layer of titanium containing oxide by pulsed-DC, biased reactive sputtering process on a substrate. In some embodiments, the layer is TiO2. In some embodiments, the layer is a sub-oxide of Titanium. In some embodiments, the layer is TixOy wherein x is between about 1 and about 4 and y is between about 1 and about 7. In some embodiments, the layer can be doped with one or more rare-earth ions. Such layers are useful in energy and charge storage, and energy conversion technologies.Type: GrantFiled: March 22, 2007Date of Patent: December 13, 2011Assignee: SpringWorks, LLCInventors: Richard E. Demaray, Hong Mei Zhang, Mukundan Narasimhan, Vassiliki Milonopoulou
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Patent number: 8076011Abstract: An electronic device housing is provided. The electronic device housing comprises a substrate, a base paint coating formed on the substrate, and a metallic coating formed on the base paint coating. The metallic coating comprises a plurality of first layers interleaved with a plurality of second layers, and a third layer provided outermost. The first layer and the second layer are respectively a zirconium dioxide layer and an aluminum oxide layer, or are respectively composite component layer of niobium pentoxide and zirconium dioxide, and silicon dioxide layer. The third layer is a magnesium fluoride layer.Type: GrantFiled: November 19, 2010Date of Patent: December 13, 2011Assignees: Shenzhen Futaihong Precision Industry Co., Ltd., FIH (Hong Kong) LimitedInventors: Chwan-Hwa Chiang, Qi-Jian Du
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Patent number: 8071166Abstract: There is provided a method of making a heat treated (HT) coated article to be used in shower door applications, window applications, or any other suitable applications where transparent coated articles are desired. For example, certain embodiments of this invention relate to a method of making a coated article including a step of heat treating a glass substrate coated with at least a layer of or including diamond-like carbon (DLC) and an overlying protective film thereon. In certain example embodiments, the protective film may be of or include both (a) an oxygen blocking or barrier layer, and (b) a release layer. Following and/or during heat treatment (e.g., thermal tempering, or the like) the protective film may be removed. Other embodiments of this invention relate to the pre-HT coated article, or the post-HT coated article.Type: GrantFiled: August 29, 2008Date of Patent: December 6, 2011Assignee: Guardian Industries Corp.Inventors: Rudolph Hugo Petrmichl, Jiangping Wang, Nestor P. Murphy, Maximo Frati, Jose Nunez-Regueiro
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Patent number: 8071211Abstract: A surface-coated cutting tool according to the present invention includes a base material and a coating film formed on the base material. The coating film includes one or more hard layer and one or more oxygen-rich hard layer. The hard layer is crystalline in its entirety or crystalline with a part thereof being amorphous. The oxygen-rich hard layer and the hard layer are stacked and the oxygen-rich hard layer is amorphous in a region of interface with the hard layer.Type: GrantFiled: July 18, 2007Date of Patent: December 6, 2011Assignees: Sumitomo Electric Industries, Ltd., Sumitomo Electric Hardmetal Corp.Inventors: Sachiko Koike, Makoto Setoyama, Hideki Moriguchi
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Publication number: 20110294151Abstract: Described herein are substrates composed of a base coated with a fluorophore-labeled calcium phosphate coating. The substrates are useful in culturing and studying the activity of a variety of cells. The substrates described herein can be used for both solution- and image-based analysis of cultured cells. New methods for producing and using such coated substrates are also disclosed.Type: ApplicationFiled: July 29, 2010Publication date: December 1, 2011Inventors: Hongwei Hanna Rao, Jian Tan
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Patent number: 8067101Abstract: This invention relates to a capacitor electrode which includes porous layers made of a fiber and/or a whisker containing crystal tungsten oxides. The tungsten oxide fiber and/or whisker contain W18O49 as a main ingredient. The tungsten oxide fiber and/or whisker are made on a substrate. When manufacturing the capacitor electrode the substrate or its precursor is heated in vacuo or in an inactive containing a minute amount of oxygen, thereby completing the fiber and/or whisker.Type: GrantFiled: September 14, 2007Date of Patent: November 29, 2011Assignee: Nissan Motor Co., Ltd.Inventors: Yoshiko Hishitani, Hidetoshi Nojiri, Didier Hamm, Masaharu Hatano, Makoto Uchiyama
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Patent number: 8067102Abstract: In an absorption type multi-layer film ND filter having a thin substrate and provided thereon first and second absorption type multi-layer films which attenuate transmitted light, the first and second absorption type multi-layer films are constituted of multi-layer films each consisting essentially of dielectric layers formed of SiO2, Al2O3 or a mixture of these and metal film layers formed of Ni alone or an Ni alloy; the layers being alternately layered on the substrate; and the first and second absorption type multi-layer films are so formed on one side and the other side, respectively, of the substrate as to have a film structure in which they are symmetrical to each other interposing the substrate between them, and the warpage of the substrate has been controlled at a curvature of radius of 500 mm or more.Type: GrantFiled: September 23, 2009Date of Patent: November 29, 2011Assignee: Sumitomo Metal Mining Co., Ltd.Inventors: Hideharu Okami, Yoshiyuki Abe, Tokuyuki Nakayama
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Patent number: 8062775Abstract: Ceramic materials with relatively high resistance to wetting by various liquids, such as water, are presented, along with articles made with these materials. The oxide materials described herein as a class typically contain one or more of ytterbia (Yb2O3) and europia (Eu2O3). The oxides may further contain other additives, such as oxides of gadolinium (Gd), samarium (Sm), dysprosium (Dy), or terbium (Tb). In certain embodiments the oxide, in addition to the ytterbia and/or europia, further comprises lanthanum (La), praseodymium (Pr), or neodymium (Nd).Type: GrantFiled: December 22, 2008Date of Patent: November 22, 2011Assignee: General Electric CompanyInventors: Molly Maureen Gentleman, James Anthony Ruud, Margaret Louise Blohm, Mohan Manoharan
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Patent number: 8062777Abstract: This invention provides a transparent oxide semiconductor, which comprises an oxide comprising indium oxide as a main component and cerium oxide as an additive and has such properties that light-derived malfunction does not occur, there is no variation in specific resistance of a thin film caused by heating and the like, and the mobility is high, and a process for producing the same. A semiconductor thin film characterized by comprising indium oxide and cerium oxide and being crystalline and having a specific resistance of 10+1 to 10+8 ?cm is used. This semiconductor thin film has no significant change in specific resistance and has high mobility. Accordingly, an element having improved switching properties can be provided by constructing a switching element using this semiconductor thin film.Type: GrantFiled: August 7, 2006Date of Patent: November 22, 2011Assignee: Idemitsu Kosan, Co., Ltd.Inventors: Kazuyoshi Inoue, Koki Yano, Nobuo Tanaka, Tokie Tanaka, legal representative
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Patent number: 8062759Abstract: Thermal barrier coating systems for use with hot section components of a gas turbine engine include an inner layer overlying a bond coated substrate and a top layer overlying at least a portion of the inner layer. The inner layer includes a thermal barrier material such as yttria-stabilized zirconia. The top layer includes a rare earth aluminate. The thicknesses and microstructures of the layers may be varied depending on the type of component to be coated. Articles incorporating the thermal barrier coating system exhibit improved resistance to CMAS infiltration.Type: GrantFiled: December 27, 2007Date of Patent: November 22, 2011Assignee: General Electric CompanyInventors: Ming Fu, Ramgopal Darolia, Mark Gorman, Bangalore Aswatha Nagaraj
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Patent number: 8057923Abstract: Ceramic materials with relatively high resistance to wetting by various liquids, such as water, are presented, along with articles made with these materials, methods for making these articles and materials, and methods for protecting articles using coatings made from these materials. One embodiment is an article comprising a material that is transparent to electromagnetic radiation of at least one type selected from the group consisting of ultraviolet radiation, visible light, and infrared radiation. The material comprises a primary oxide and a secondary oxide. The primary oxide comprises cerium or hafnium. The secondary oxide comprises (i) praseodymium or ytterbium, and (ii) another cation selected from the group consisting of the rare earth elements, yttrium, and scandium.Type: GrantFiled: December 16, 2010Date of Patent: November 15, 2011Assignee: General Electric CompanyInventors: Molly Maureen Gentleman, James Anthony Ruud, Mohan Manoharan
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Patent number: 8057905Abstract: A transparent fire-resistant glazing which includes at least one intumescent layer of a hydrated alkaline metal silicate between two glass sheets. The intumescent alkaline metal silicate layer has an SiO2/M2O molar ratio between 3.5 and 7 and a water content from 33 to 43% by weight. Their preparation incorporates a drying step.Type: GrantFiled: November 23, 2006Date of Patent: November 15, 2011Assignee: AGC Glass EuropeInventor: Pierre Goelff
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Patent number: 8057924Abstract: Heat-insulating layer systems have to be provided with along service life of the heat-insulating layer in addition to having good heat-insulating properties. The inventive layer system comprises a ceramic layer which contains a mixture of two pyrochlore phases.Type: GrantFiled: December 15, 2006Date of Patent: November 15, 2011Assignee: Siemens AktiengesellschaftInventors: Axel Kaiser, Eckart Schumann, Ramesh Subramanian
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Patent number: 8057922Abstract: Ceramic materials with relatively high resistance to wetting by various liquids, such as water, are presented, along with articles made with these materials, methods for making these articles and materials, and methods for protecting articles using coatings made from these materials. One embodiment is a material comprising a primary oxide and a secondary oxide. The primary oxide comprises cerium or hafnium. The secondary oxide comprises (i) praseodymium or ytterbium, and (ii) another cation selected from the group consisting of the rare earth elements, yttrium, and scandium.Type: GrantFiled: December 16, 2010Date of Patent: November 15, 2011Assignee: General Electric CompanyInventors: Molly Maureen Gentleman, James Anthony Ruud, Mohan Manoharan
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Patent number: 8053063Abstract: Coated cemented carbide inserts (cutting tool), particularly useful for wet or dry milling of steels, are disclosed. The cutting tool insert is characterized by a cemented carbide body comprising WC, NbC and TaC, a W-alloyed Co binder phase, and a coating comprising an innermost layer of TiCxNyOz with equiaxed grains, a layer of TiCxNyOz with columnar grains and a layer of ?-Al2O3.Type: GrantFiled: September 11, 2008Date of Patent: November 8, 2011Assignee: Seco Tools ABInventors: Anna Sandberg, Andreas Larsson, Tommy Larsson
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Patent number: 8053070Abstract: Disclosed are an optical film having a graded refractive index and a method of manufacturing the same. The optical film includes one or more antireflection films composed of a mesoporous material having a plurality of pores of a uniform size, and the pores of the mesoporous material are filled with air or a filler having a refractive index different from that of the mesoporous material, and thus the volume ratio of mesoporous material to filler in the pores thereof is controlled, thereby obtaining a desired magnitude of effective refractive index and ensuring a refractive index distribution in which the refractive indexes sequentially change, resulting in high antireflection performance. The method of manufacturing the optical film may be conducted using a nanowire growing technique, thus making it easy to realize mass production.Type: GrantFiled: March 5, 2008Date of Patent: November 8, 2011Assignee: Samsung Electronics Co., Ltd.Inventors: Eun Kyung Lee, Jae Ho You, Byoung Lyong Choi, Seung Ho Nam
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Patent number: 8053064Abstract: The present invention relates to a coated cemented carbide insert (cutting tool), particularly useful for wet or dry milling of steels at high cutting speeds, milling of hardened steels, and high feed copy milling of tool steels. The cutting tool insert is characterised by a cemented carbide body comprising WC, NbC, and TaC, a W-alloyed Co binder phase, and a coating comprising an innermost layer of TiCxNyOz with equiaxed grains, a layer of TiCxNyOz with columnar grains and a layer of ?-Al2O3.Type: GrantFiled: October 9, 2008Date of Patent: November 8, 2011Assignee: Seco Tools ABInventors: Andreas Larsson, Anna Sandberg
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Patent number: 8053058Abstract: A spray coated member having an excellent resistance to plasma erosion is produced by irradiating an electron beam to an outermost surface layer portion of a ceramic spray coated portion covering a surface of a substrate to form an electron beam irradiated layer.Type: GrantFiled: April 13, 2010Date of Patent: November 8, 2011Assignee: Tocalo Co., Ltd.Inventors: Yoshio Harada, Kenichiro Togoe, Fujio Kushiki
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Publication number: 20110262742Abstract: A transparent laminated film is provided with which it is possible to inhibit peeling of thin film layers, even with long-term exposure to sunlight during use and exposure to UV rays during quality evaluation. The film has a thin film layer obtained by lamination of multiple thin films on at least one side of a transparent polymer film. This thin film layer has metal oxide thin films formed by a sol-gel process using light energy during sol-gel hardening and post-oxidation thin films formed by post-oxidation of at least one thin film selected from metal thin film, alloy thin film, and partially oxidized metal oxide thin film.Type: ApplicationFiled: December 22, 2009Publication date: October 27, 2011Applicant: TOKAI RUBBER INDUSTRIES, LTD.Inventors: Tetsuya Takeuchi, Yoshihiro Tokunaga, Tetsuji Narasaki, Hiroki Inagaki, Masataka Inuzuka
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Patent number: 8043687Abstract: A method for forming a graphene layer is disclosed herein. The method includes establishing an insulating layer on a substrate such that at least one seed region, which exposes a surface of the substrate, is formed. A seed material in the seed region is exposed to a carbon-containing precursor gas, thereby initiating nucleation of the graphene layer on the seed material and enabling lateral growth of the graphene layer along at least a portion of a surface of the insulating layer.Type: GrantFiled: October 16, 2008Date of Patent: October 25, 2011Assignee: Hewlett-Packard Development Company, L.P.Inventors: Theodore I. Kamins, R. Stanley Williams, Nathaniel Quitoriano
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Patent number: 8043716Abstract: Disclosed herein is a gradient thin film, formed on a substrate by simultaneously depositing different materials on the substrate using a plurality of thin film deposition apparatuses provided in a vacuum chamber, wherein the gradient thin film is formed such that the composition thereof is continuously changed depending on the thickness thereof by deposition control plates provided in the path through which the different materials move to the substrate. The gradient thin film is advantageous in that the thin film is formed by simultaneously depositing different materials using various deposition apparatuses, so that the composition thereof is continuously changed depending on the thickness thereof, with the result that the physical properties of a thin film are easily controlled and the number of deposition processes is decreased, and thus processing time and manufacturing costs are decreased, thereby improving economic efficiency.Type: GrantFiled: July 22, 2008Date of Patent: October 25, 2011Assignee: Korea Electrotechnology Research InstituteInventors: Ho Sup Kim, Sang Soo Oh, Tae Hyung Kim, Dong Woo Ha, Kyu Jung Song, Hong Soo Ha, Rock Kil Ko, Nam Jin Lee
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Patent number: 8043729Abstract: The present invention discloses a coated cutting tool insert particularly useful for dry and wet machining, preferably milling, in low and medium alloyed steels, stainless steels, with or without raw surface zones under severe conditions such as vibrations, long overhang and recutting of chips. The insert is characterized by WC—Co cemented carbide with a W and Cr alloyed Co-binder phase and a coating including at least three TiCxNyOz layers and a top layer at least on the rake face of a smooth ?-Al2O3.Type: GrantFiled: December 8, 2006Date of Patent: October 25, 2011Assignee: Sandvik Intellectual Property ABInventors: Rickard Sundström, Susanne Norgren, Marie Pettersson, Leif Åkesson, Björn Ljungberg
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Patent number: 8043707Abstract: A low-emissivity multilayer system highly resistant to heat treatment for transparent substrates, in particular for window panes comprises, starting from the substrate, at least a lower antireflection coating consisting of several partial layers and including a layer essentially consisting of ZnO which is adjacent with a silver-based functional layer, an essentially metallic blocking layer located on top of the silver-based layer, an upper antireflection coating consisting of several partial layers and a cover coating optionally consisting of several partial layers. The upper antireflection coating has: a partial layer of ZnO or a mixed oxide ZnMeOx that contains ZnO or a succession of layers of mixed oxides of the ZnO:Al/ZnMeOx type; a partial layer of Si3N4 or SixOyNz; and between these two partial layers, a separating layer with a thickness of 0.5 to 5 nm, consisting of a metal oxide or a mixed oxide with a cubic crystal lattice, which prevents direct contact between these two partial layers.Type: GrantFiled: March 28, 2007Date of Patent: October 25, 2011Assignee: Saint-Gobain Glass FranceInventors: Heinz Schicht, Uwe Schmidt, Pierre-Alain Gillet
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Patent number: 8043710Abstract: The present invention discloses a ultra-hydrophilic and antibacterial thin film coated metal product, and its manufacturing method. In order to easily produce an air conditioning metal material having excellent hydrophilic performance, aging property, corrosion resistance and antibacterial property on an industrial production scale without a special preprocess or postprocess, an anticorrosive thin film is selectively formed on both surfaces of a metal substrate sheet, and an ultra-hydrophilic and antibacterial Ti—(Ag, Cu and/or Co)—O—C group compound thin film is coated on both surfaces of the metal substrate sheet on which the anticorrosive thin film has been or not been formed. The metal substrate sheet is mechanically processed into a target shape.Type: GrantFiled: November 6, 2004Date of Patent: October 25, 2011Assignee: LG Electronics Inc.Inventors: Young-Man Jeong, Jung-Geun Oh, Hyun-Woo Jun, Su-Won Lee, Deok-Hyun Youn
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Publication number: 20110256361Abstract: An electronic device housing is provided. The electronic device housing includes a substrate, a first metallic coating formed on the substrate, and a second metallic coating formed on a portion of the first metallic coating. The first and second metallic coatings are formed by vacuum sputtering or vacuum vapor deposition. The first and second metallic coatings are all non-conductive. A method for making the electronic device housing is also described there.Type: ApplicationFiled: November 19, 2010Publication date: October 20, 2011Applicants: FIH (HONG KONG) LIMITED, SHENZHEN FUTAIHONG PRECISION INDUSTRY CO., LTD.Inventors: QI-JIAN DU, CHWAN-HWA CHIANG
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Patent number: 8039131Abstract: A modification of PbTiO3 perovskite wherein at least part of Pb is replaced by a smaller atom with a similar ionic charge.Type: GrantFiled: March 11, 2009Date of Patent: October 18, 2011Assignee: Carnegie Institution of WashingtonInventors: Ronald Cohen, Panchapakesan Ganesh
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Environmental barrier coatings providing CMAS mitigation capability for ceramic substrate components
Patent number: 8039113Abstract: Environmental barrier coating having CMAS mitigation capability for oxide components. In one embodiment, the barrier coating includes an outer layer selected from AeAl2O19, AeHfO3, AeZrO3, ZnAl2O4, MgAl2O4, Ln4Al2O9, Lna4Ga2O9, Ln3Al5O12, Ln3Ga5O12, and Ga2O3.Type: GrantFiled: December 19, 2008Date of Patent: October 18, 2011Assignee: General Electric CompanyInventors: Glen Harold Kirby, Brett Allen Boutwell, John Frederick Ackerman -
Patent number: 8034745Abstract: Novel articles and methods to fabricate same with self-assembled nanodots and/or nanorods of a single or multicomponent material within another single or multicomponent material for use in electrical, electronic, magnetic, electromagnetic, superconducting and electrooptical devices is disclosed. Self-assembled nanodots and/or nanorods are ordered arrays wherein ordering occurs due to strain minimization during growth of the materials. A simple method to accomplish this when depositing in-situ films is also disclosed. Device applications of resulting materials are in areas of superconductivity, photovoltaics, ferroelectrics, magnetoresistance, high density storage, solid state lighting, non-volatile memory, photoluminescence, thermoelectrics and in quantum dot lasers.Type: GrantFiled: March 24, 2008Date of Patent: October 11, 2011Inventor: Amit Goyal
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Patent number: 8034458Abstract: A multilayer film structure for increasing transmittance includes a transparent substrate and a multifunctional film module. The multifunctional film module is formed on a front surface of the transparent substrate and composed of a plurality of dielectric layers and a plurality of metal layers. The dielectric layers and the metal layers are alternately stacked onto each other, and each metal layer is formed by mixing at least two metals. Each dielectric layer is a silicon carbide compound layer that is SiC, and each metal layer is formed by mixing Ag and Cu.Type: GrantFiled: March 16, 2009Date of Patent: October 11, 2011Assignee: Innovation & Infinity Global Corp.Inventors: Cheng-Chieh Chang, Hsiu-Feng Liu, Pi-Jui Kuo
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Patent number: 8034469Abstract: There is described a two-Level Layer System with Pyrochlore Phase and Oxides. Besides a good thermal insulation property, thermal insulation layer systems must also have a long lifetime of the thermal insulation layer. The layer system has a layer sequence of a metallic bonding layer, an inner ceramic layer and an outer ceramic layer, which are specially matched to one another.Type: GrantFiled: May 6, 2008Date of Patent: October 11, 2011Assignee: Siemens AktiengesellschaftInventor: Ramesh Subramanian
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Patent number: 8034435Abstract: The invention relates to a plastic film with an interference multilayer system applied thereon that comprises at least two layers. Said layers can be obtained by hardening and/or applying thermal treatment to a coating composition containing nanoscale inorganic solid particles having polymerizable and/or polycondensable organic surface groups, thereby forming a layer that is crosslinked by means of the polymerizable and/or polycondensable organic surface groups. The films can be used as an optical laminating film.Type: GrantFiled: March 14, 2003Date of Patent: October 11, 2011Assignee: Tomoegawa Co., Ltd.Inventors: Andreas Zimmermann, Fumio Kita, Anette Berni, Martin Mennig, Peter W. Oliveira, Helmut Schmidt, Takamasa Harada
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Patent number: 8034468Abstract: A translucent ceramic having a high linear transmittance and a high refractive index, substantially not causing double refraction, and exhibiting a high anomalous dispersion has a pyrochlore compound represented by the general formula AxByOw (wherein 1.00?x/y?1.10 and w represents a positive number maintaining electroneutrality) as a main component. The main component has a cubic crystal system. Preferably, the A site comprises a trivalent metallic element, and the B site comprises a tetravalent metallic element. More preferably, A is at least one of La, Y, Gd, Yb, and Lu, and B is of at least one of Ti, Sn, Zr, and Hf. The translucent ceramic is useful as a material of, for example, an objective lens used in an optical pickup.Type: GrantFiled: May 9, 2008Date of Patent: October 11, 2011Assignee: Murata Manufacturing Co., Ltd.Inventor: Takeshi Hayashi
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Patent number: 8029890Abstract: The prevent invention discloses a structure of thermal resistive layer and the method of forming the same. The thermal resistive structures, formed on a plastic substrate, comprises a porous layer, formed on said plastic substrate, including a plurality of oxides of hollow structure, and a buffer layer, formed on said porous layer, wherein said porous layer can protect said plastic substrate from damage caused by the heat generated during manufacturing process. With the structure and method disclosed above, making a thin film transistor and forming electronic devices on the plastic substrate in the technology of Low Temperature PolySilicon, i.e. LTPS, without changing any parameters is easy to carry out.Type: GrantFiled: December 3, 2009Date of Patent: October 4, 2011Assignee: Industrial Technology Research InstituteInventors: Jung-Fang Chang, Te-Chi Wong, Chien-Te Hsieh, Chin-Jen Huang, Yu-Hung Chen
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Publication number: 20110233539Abstract: Oxide thin film, electronic devices including the oxide thin film and methods of manufacturing the oxide thin film, the methods including (A) applying an oxide precursor solution comprising at least one of zinc (Zn), indium (In) and tin (Sn) on a substrate, (B) heat-treating the oxide precursor solution to form an oxide layer, and (C) repeating the steps (A) and (B) to form a plurality of the oxide layers.Type: ApplicationFiled: March 28, 2011Publication date: September 29, 2011Applicant: Samsung Electronics Co., Ltd.Inventors: Jong-Baek Seon, Myung-Kwan Ryu, Kyung-Bae Park, Sang-Yoon Lee, Bon-Won Koo
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Patent number: 8025992Abstract: The invention relates to a block (10) made of ceramic compounds, in particular dental compounds, of at least one ceramic compound (15) with predetermined first optical properties and at least a second ceramic compound (17) with predetermined second optical properties, and of a transition area between the two ceramic compounds, which transition area is composed of changing mixtures of the at least two ceramic compounds, the variation gradient of the mixtures being substantially constant. The invention further relating to a process for making such a block.Type: GrantFiled: May 17, 2007Date of Patent: September 27, 2011Assignee: Ivoclar Vivadent AGInventors: Alexander Engels, Alfred Hämmerle
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Patent number: 8025989Abstract: Coated cemented carbide inserts (cutting tools), particularly useful for wet or dry machining of steels and stainless steels, are disclosed. The cutting tool insert is characterized by a cemented carbide substrate and a coating comprising an about 0.5 to 5 ?m thick innermost layer of (Ti,Al)N and an about 1 to 5 ?m thick layer of (Al,Cr)2O3.Type: GrantFiled: December 11, 2008Date of Patent: September 27, 2011Assignee: Seco Tools ABInventor: Tommy Larsson
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Patent number: 8025941Abstract: An insulating glass (IG) window unit, and/or a method of making the same is/are provided. The IG window unit includes two spaced apart substrates that are separated from one another by at least one seal and/or spacer. One of the substrates supports both a solar management coating for blocking significant amounts of infrared (IR) radiation and a coating for blocking amounts of ultraviolet (UV) radiation.Type: GrantFiled: December 1, 2005Date of Patent: September 27, 2011Assignee: Guardian Industries Corp.Inventors: Thomas J. Taylor, Yei-Ping (Mimi) H. Wang, Desaraju V. Varaprasad
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Patent number: 8025991Abstract: By using the PVD process, cutting tools are provided with a coating that is a mono-phase ternary or more complex oxide. By appropriately defining the involved major component and minor component in terms of atom percent, the distortions of the formed oxide can be controlled in a specific manner and in order to influence the properties of said oxide. Alternatively, the layer may contain an amorphous oxide phase with oxide crystallites embedded therein. The oxide crystallites may be binary, ternary or more complex. One or more different types of crystallites may be present adjacent to each other.Type: GrantFiled: September 7, 2005Date of Patent: September 27, 2011Assignee: Walter AGInventor: Veit Schier
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Patent number: 8025957Abstract: A transparency includes a first ply having a first visible light transmission and a second ply having a second visible light transmission, with the first visible light transmission being greater than the second visible light transmission. A solar control coating is located between the first ply and the second ply. The solar control coating has a first infrared reflective metallic layer, a second infrared reflective metallic layer and a third infrared reflective metallic layer. The first infrared reflective metallic layer is thicker than the second infrared reflective metallic layer and the second infrared reflective metallic layer is thicker than the third infrared reflective metallic layer.Type: GrantFiled: August 20, 2008Date of Patent: September 27, 2011Assignee: PPG Industries Ohio, Inc.Inventor: James P. Thiel
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Patent number: 8021757Abstract: A tool for machining is made from a hard-metal, cermet or ceramic base material and a single-layer or multi-layer hard material coating on the base material. An additional coating of one or more metals from the group of aluminum, copper, zinc, titanium, nickel, tin or base alloys of these metals is applied to the hard material coating.Type: GrantFiled: May 25, 2007Date of Patent: September 20, 2011Assignee: Ceratizit Austria Gesellschaft mbHInventors: Wolfgang Wallgram, Uwe Schleinkofer, Karl Gigl, Josef Thurner, Wilfried Schintlmeister
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Patent number: 8021755Abstract: A low thermal expansion glass includes a base glass material having a front surface, a back surface, and a thickness and a glass coating material applied on at least the front surface of the base glass material. The base glass material consists essentially 10 wt % to 20 wt % titania and 80 wt % to 90 wt % silica. The glass coating material also consists essentially of titania and silica, but the total amount of titania in the glass coating material is lower than the total amount of titania in the base glass material. A silica-titania glass element suitable for extreme ultraviolet lithography applications consists of 12 wt % to 20 wt % titania and 80 wt % to 88 wt % silica and has a coefficient of thermal expansion of essentially 0 ?L/L in a temperature range of ?20° C. to +100° C.Type: GrantFiled: August 25, 2010Date of Patent: September 20, 2011Assignee: Corning IncorporatedInventors: Kenneth Edward Hrdina, Michael A Mueller, Barbara L Stainbrook
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Publication number: 20110223431Abstract: A ceramic electronic component includes a first dielectric layer, a second dielectric layer, and a boundary reaction layer. The first dielectric layer is a layer containing BaO, Nd2O3, and TiO2, the second dielectric layer is a layer containing a material different from the material of the first dielectric layer, and the boundary reaction layer is a layer formed between the first dielectric layer and the second dielectric layer and containing at least one of Zn, Ti, Cu, and Mg.Type: ApplicationFiled: February 4, 2011Publication date: September 15, 2011Applicant: TDK CORPORATIONInventors: Toshio SAKURAI, Hisashi KOBUKE, Tomohiro ARASHI, Kiyoshi HATANAKA, Yasuharu MIYAUCHI
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Patent number: 8017062Abstract: A semiconductor processing component includes a substrate and a layer overlying the substrate. The layer has a composition ReAyO1.5+2y, wherein Re is Y, La, a Lanthanoid series element, or a combination thereof, A is (Si1?aGea), 0.25?y?1.2, and 0?a?1.Type: GrantFiled: August 23, 2005Date of Patent: September 13, 2011Inventors: Yeshwanth Narendar, Matthew A. Simpson, Richard R. Hengst
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Patent number: 8017243Abstract: An absorbing layer of a low-E coating is designed to cause the coating to have a more neutral and/or green color at normal and/or certain off-axis viewing angles. In certain example embodiments, the metallic or substantially metallic absorbing layer (e.g., NiCr) is from about 20-30 angstroms (?) thick; this thickness has been found to unexpectedly provide less red and more neutral coloration for the coated article at certain off-axis viewing angles (e.g., at a 45 degree off-axis viewing angle). In certain example embodiments, the absorbing layer is provided between first and second nitride layers in order to reduce or prevent oxidation thereof during heat treatment thereby permitting predictable coloration to be achieved following the heat treatment. Coated articles according to certain example embodiments of this invention may be used in the context of insulating glass (IG) window units, vehicle windows, other types of windows, or in any other suitable application.Type: GrantFiled: August 25, 2009Date of Patent: September 13, 2011Assignees: Guardian Industries Corp., Centre Luxembourgeois de Recherches pour le Verre et la Ceramique S.A. (C.R.V.C.)Inventors: Richard Blacker, Philip J. Lingle, Jochen Butz, Anton Dietrich, Donald V. Jacobson
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Patent number: RE43025Abstract: An interface forming method includes forming a first layer containing a first chemical element and chemisorbing on the first layer an interface layer containing at least one monolayer of the first chemical element intermixed with a second chemical element different from the first chemical element. A second layer comprising the second chemical element can be formed on the interface layer. The first layer might not substantially contain the second chemical element, the second layer might not substantially contain the first chemical element, or both. An apparatus can include a first layer containing a first chemical element, an interface layer chemisorbed on the first layer, and a second layer containing a second element on the interface layer. The interface layer can contain at least one monolayer of the first chemical element intermixed with a second chemical element different from the first chemical element.Type: GrantFiled: September 24, 2009Date of Patent: December 13, 2011Assignee: MOSAID Technologies IncorporatedInventors: Cem Basceri, Gurtej S. Sandhu