O-containing Patents (Class 428/702)
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Patent number: 8691378Abstract: 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: GrantFiled: March 18, 2010Date of Patent: April 8, 2014Assignee: Walter AGInventors: Veit Schier, Oliver Eibl, Wolfgang Engelhart
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Patent number: 8685530Abstract: Provided is a surface-coated cutting tool combining superior heat resistance, superior wear resistance, and superior lubricity. A surface-coated cutting tool of the present invention includes a substrate and a coating formed on the substrate, and the coating is characterized in that the coating is formed by physical vapor deposition and includes one or more layers, that at least one of the one or more layers is a first coating layer, and that the first coating layer contains aluminum and nitrogen, has a thermal effusivity of 2,000 to 5,000 J·sec?1/2·m?2·K?1, has a thickness of 0.2 to 5 ?m, and has a crystal structure including a hexagonal structure.Type: GrantFiled: December 3, 2010Date of Patent: April 1, 2014Assignee: Sumitomo Electric Hardmetal Corp.Inventors: Sachiko Koike, Shinya Imamura, Kazuo Yamagata
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Patent number: 8685544Abstract: A coating and associated method for coating is disclosed. The coating provides a hard, transparent, UV blocking coating for a substrate. A UV blocking layer is first deposited upon the substrate, and a hard coating is deposited above the UV blocking layer. A soft coating layer may be deposited between the UV blocking layer and the hard coating. The soft and hard coating layers may both have the general composition SiOxCy. the soft and hard coating layers may be deposited by a plasma vapor deposition process.Type: GrantFiled: March 23, 2009Date of Patent: April 1, 2014Assignee: The Boeing CompanyInventors: Kjersta L. Larson-Smith, Vasan S. Sundaram, David A. Bowen
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Patent number: 8685545Abstract: A system of layers in a protective coating (20) for a substrate (22), including at least an outer thermal barrier layer (32) and a tungsten bronze structure ceramic underlayer (30) that reduces spalling of the outer layer. The range of materials for the underlayer includes ceramics of the form Ba6?3mRe8+2mTi18O54, where 0<m<1.5, and Re is any rare earth element or mixture thereof. These underlayer materials reduce spalling of the thermal barrier layer, and thus extend the life of the coating system. In some embodiments, materials for the outer thermal barrier layer may include Yttria-stabilized Zirconia (YSZ) or ceramics with lower thermal conductivity than YSZ. A segmented YSZ layer (26) is provided in some embodiments for additional thermal expansion compliance.Type: GrantFiled: February 13, 2012Date of Patent: April 1, 2014Assignee: Siemens AktiengesellschaftInventors: David B. Allen, Anand A. Kulkarni
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Patent number: 8685531Abstract: Provided is a surface-coated cutting tool combining superior heat resistance, superior wear resistance, and superior lubricity with high adhesion between a substrate and a coating. A surface-coated cutting tool of the present invention includes a substrate and a coating formed on the substrate, and the coating is characterized in that the coating is formed by physical vapor deposition and includes one or more layers, that at least one of the one or more layers is a first coating layer, that the first coating layer contains aluminum and nitrogen, has a thermal effusivity of 2,000 to 5,000J·sec?1/2·m?2·K?1, and has a thickness of 0.2 to 5?m, that the first coating layer includes an amorphous region and a crystalline region in order from the substrate side, that the amorphous region is amorphous and has a thickness of 0.01 to 2?m, and that the crystalline region has a crystal structure including a hexagonal structure.Type: GrantFiled: December 3, 2010Date of Patent: April 1, 2014Assignee: Sumitomo Electric Hardmetal Corp.Inventors: Sachiko Koike, Shinya Imamura, Kazuo Yamagata
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Patent number: 8685161Abstract: Various single crystals are disclosed including sapphire. The single crystals have desirable geometric properties, including a width not less than about 15 cm and the thickness is not less than about 0.5 cm. The single crystal may also have other features, such as a maximum thickness variation, and as-formed crystals may have a generally symmetrical neck portion, particularly related to the transition from the neck to the main body of the crystal. Methods and for forming such crystals and an apparatus for carrying out the methods are disclosed as well.Type: GrantFiled: February 14, 2012Date of Patent: April 1, 2014Assignee: Saint-Gobain Ceramics & Plastics, Inc.Inventors: John W. Locher, Steven A. Zanella, Ralph L. MacLean, Jr., Herbert Ellsworth Bates
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Publication number: 20140086962Abstract: In alternative embodiments, the invention provides products (articles) of manufacture comprising nanostructures such as nanotubes having a surface comprising tantalum. In alternative embodiments, products of manufacture of the invention include nanostructures, e.g., nanotubes, nanowire, nanopore, and the like comprising a surface layer of tantalum. In alternative embodiments, products or articles of manufacture of the invention are bioimplants, and the tantalum-surface-coated nanostructures of the invention provide increased bioactivity and bone forming ability. In alternative embodiments, products or articles of manufacture of the invention, e.g., bioimplants, comprising the tantalum-surface-coated nanostructures of the invention are used for in vitro, ex vivo and in vivo testing, implants, biomedical devices and therapeutics.Type: ApplicationFiled: February 7, 2013Publication date: March 27, 2014Applicant: THE REGENTS OF THE UNIVERSITY OF CALIFORNIAInventors: Sungho Jin, Christine Frandsen
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Publication number: 20140084251Abstract: A transparent conductive electrode stack containing a work function adjusted zinc oxide is provided. Specifically, the transparent conductive electrode stack includes a layer of zinc oxide and a layer of a work function modifying material. The presence of the work function modifying material in the transparent conductive electrode stack shifts the work function of the layer of zinc oxide to a higher value for better hole injection into the OLED device as compared to a transparent conductive electrode that includes only a layer of zinc oxide and no work function modifying material.Type: ApplicationFiled: September 24, 2012Publication date: March 27, 2014Applicant: INTERNATIONAL BUSINESS MACHINES CORPORATIONInventors: Keith E. Fogel, Ning Li, Devendra K. Sadana
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Patent number: 8679652Abstract: A modification of PbTiO3 perovskite wherein at least part of Pb is replaced by a smaller atom with a similar ionic charge.Type: GrantFiled: September 13, 2011Date of Patent: March 25, 2014Assignee: Carnegie Institution of WashingtonInventors: Ronald Cohen, Panchapakesan Ganesh
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Patent number: 8679650Abstract: A laminated structure comprises a first layer comprising a crystal with six-fold symmetry, and a second layer comprising a metal oxynitride crystal formed on the first layer The second layer comprises at least one element selected from the group consisting of In, Ga, Si, Ge and Al, N, O and Zn, as main elements, and has in-plane orientation.Type: GrantFiled: October 1, 2009Date of Patent: March 25, 2014Assignee: Canon Kabushiki KaishaInventors: Naho Itagaki, Tatsuya Iwasaki, Katsuyuki Hoshino
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Patent number: 8679633Abstract: Certain example embodiments relate to Ni-inclusive ternary alloy being provided as a barrier layer for protecting an IR reflecting layer comprising silver or the like. The provision of a barrier layer comprising nickel, chromium, and/or molybdenum and/or oxides thereof may improve corrosion resistance, as well as chemical and mechanical durability. In certain examples, more than one barrier layer may be used on at least one side of the layer comprising silver. In still further examples, a NixCryMoz-based layer may be used as the functional layer, rather than or in addition to as a barrier layer, in a coating.Type: GrantFiled: March 3, 2011Date of Patent: March 25, 2014Assignee: Guardian Industries Corp.Inventors: Muhammad Imran, Bernd Disteldorf, Marcus Frank, Richard Blacker
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Patent number: 8679634Abstract: Certain example embodiments relate to Ni-inclusive ternary alloy being provided as a barrier layer for protecting an IR reflecting layer comprising silver or the like. The provision of a barrier layer comprising nickel, chromium, and/or molybdenum and/or oxides thereof may improve corrosion resistance, as well as chemical and mechanical durability. In certain examples, more than one barrier layer may be used on at least one side of the layer comprising silver. In still further examples, a NixCryMoz-based layer may be used as the functional layer, rather than or in addition to as a barrier layer, in a coating.Type: GrantFiled: March 3, 2011Date of Patent: March 25, 2014Assignee: Guardian Industries Corp.Inventors: Muhammad Imran, Bernd Disteldorf, Marcus Frank, Richard Blacker
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Patent number: 8679631Abstract: A tempered glass substrate of the present invention is a tempered glass substrate, which has a compression stress layer on a surface thereof, and has a glass composition comprising, in terms of mass %, 40 to 71% of SiO2, 3 to 21% of Al2O3, 0 to 3.5% of Li2O, 7 to 20% of Na2O, and 0 to 15% of K2O.Type: GrantFiled: September 2, 2011Date of Patent: March 25, 2014Assignee: Nippon Electric Glass Co., Ltd.Inventor: Takashi Murata
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Publication number: 20140075874Abstract: Recycling of laminate flooring based on a separation of the panels into particles which are connected with a binder and formed to a new sheet shaped material. A building panel includes a surface layer and a wood fiber based core, and the wood fiber based core includes aluminium oxide particles.Type: ApplicationFiled: November 26, 2013Publication date: March 20, 2014Applicant: VALINGE INNOVATION ABInventors: DARKO PERVAN, Kent Lindgren, Eddy Bouke, Jan Jacobsson, Niclas Hakansson, Goran Ziegler
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Publication number: 20140079925Abstract: A process of forming a building product can include providing a first layer having a first material, and providing a second layer having a second material that different from the first material, wherein the second layer has pores. The process can further include infiltrating a fluid into the pores of the second layer while the first layer is present and adjacent to the second layer, wherein the fluid includes a carbonate. The process can still further include reacting the carbonate with a metal compound within the second layer to form a metal carbonate within the second layer. In another aspect, a building product can include a first layer having a first material, and a second layer having a second material and a third material that includes a metal carbonate. The first material can be different from the second material, and the second and third materials can include the same metal element.Type: ApplicationFiled: September 10, 2013Publication date: March 20, 2014Inventors: Husnu M. Kalkanoglu, Gregory F. Jacobs
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Patent number: 8673461Abstract: A process for reinforcing a glass-ceramic article, into which a maximum tension is introduced beneath the surface of the glass-ceramic, advantageously in proximity to said surface. The invention also relates to an enamel that can be used for this reinforcement, this enamel being formed from a glass frit having the following composition, the proportions being expressed as weight percentages: SiO2 50-66%? MgO 3-8% Na2O 7-15%? K2O 0-3% Li2O 0-12%? CaO 0-10%? BaO 0-15%? Al2O3 0-3% ZrO2 0-3% ZnO 0-5% B2O3 0-8% the sum of the alkaline-earth metal oxides CaO+BaO moreover being between 8 and 15%, and the sum of the alkali metal oxides Na2O+K2O+Li2O moreover being between 7 and 20%. The reinforced glass-ceramics obtained by the process.Type: GrantFiled: January 16, 2009Date of Patent: March 18, 2014Assignee: Eurokera S.N.C.Inventors: Stephanie Pelletier, Marie-Helene Chopinet, Caroline Faillat, Marie-Helene Rouillon, Pablo Vilato
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Patent number: 8673434Abstract: The invention concerns a cutting tool comprising a main body and a multi-layer coating applied thereto. To provide improved cutting tools which have increased resistance to comb cracking, tribochemical wear and cratering caused thereby the main body comprises a hard metal which includes 5 to 8% by weight of Co, 0 to 2% by weight of TaC, 0 to 1% by weight of NbC and 89 to 95% by weight of WC with a mean grain size of 1 to 5 ?m, and the coating has a first layer of TiAlN having a layer thickness of 1 to 5 ?m, and a second layer of aluminum oxide having a layer thickness of 1 to 4 ?m, wherein the coating further additionally includes on the second layer of aluminum oxide n alternately mutually superposedly applied layers of TiAlN and layers of aluminum oxide respectively having a layer thickness of 0.1 to 0.5 ?m, wherein n relates to each individual layer and is an even number of 0 to 10, and wherein the total layer thickness of the coating is 2 to 16 ?m and the coating is produced in the PVD process.Type: GrantFiled: March 22, 2010Date of Patent: March 18, 2014Assignee: Walter AGInventors: Veit Schier, Jörg Drobniewski
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Patent number: 8673428Abstract: An engraved plate which includes a substrate and an insulating layer on a surface of the substrate wherein a concave portion which increases in width toward an opening and to which the substrate is exposed is formed at the insulating layer, and an engraved plate, a substrate with conductor layer pattern manufactured by a transferring method using the engraved plate, and a conductor layer pattern are provided.Type: GrantFiled: December 27, 2007Date of Patent: March 18, 2014Assignee: Hitachi Chemical Company, Ltd.Inventors: Susumu Naoyuki, Hisashige Kanbara, Minoru Tosaka, Kyosuke Suzuki, Toshirou Okamura, Yoshihito Kikuhara, Masami Negishi, Tadayasu Fujieda, Kouichi Tsuyama
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Publication number: 20140072799Abstract: An article, such as a bicycle wheel (10), includes a substrate, at least a surface of the substrate being made of or containing a composite material comprising fibres dispersed in an organic matrix, for example a carbon fibre composite. A thermal sprayed first layer of coating material is provided on the surface, such as the braking area of the rim of the bicycle, the coating material of the first layer wholly comprising inorganic material and including at least one of the group comprising TiO2, titanate, Al2O3 and aluminate.Type: ApplicationFiled: March 14, 2012Publication date: March 13, 2014Applicant: ZIRCOTEC LIMITEDInventor: Thomas Campbell Prentice
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Publication number: 20140072797Abstract: Multilayer coating systems for mitigating ice build-up on a substrate, methods of applying and related substrates are disclosed. The coating system may comprise a first coating, and a second coating deposited on at least a portion of the first coating, wherein the first coating and/or second coating comprises a near-IR absorber. Methods of applying a multilayer coating composition to a substrate may comprise applying a first coating, and applying a second coating over at least a portion of the first coating, wherein the first coating and/or second coating comprises a near-IR absorber.Type: ApplicationFiled: September 13, 2012Publication date: March 13, 2014Applicant: PPG Industries Ohio, Inc.Inventors: Scott Moravek, Mark P. Bowman, Davina Schwartzmiller, Jane N. Valenta, Edward Rakiewicz, Gordon L. Post
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Publication number: 20140069050Abstract: Panels usable for construction of a surface, to provide the surface with a desired appearance, durability, water, air, and fire resistance, dimensions, and weight include a layer of substrate material having first and second sides. Finish elements are positioned on the first side, while a backing material is positioned on the second side, such that the substrate bonds the finish elements to the backing material. Particulate material can also be included, such as within spaces between finish elements. Manufacture of such panels can include use of a vacuum system that acquires finish elements in a selected orientation, acquires particulate material into spaces unoccupied by finish elements, then deposits the arranged finish elements and particulate material into a mold for subsequent manufacturing steps. Use of lightweight, durable materials, such as magnesium oxide, can enable panels having a reduced thickness and weight to be manufactured, without sacrificing durability or longevity.Type: ApplicationFiled: January 14, 2013Publication date: March 13, 2014Inventor: Joel W. Bolin
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Publication number: 20140072442Abstract: Multilayer coating systems, methods of applying and related substrates are disclosed. The coating system may comprise a first coating comprising a near-IR absorber, and a second coating deposited on a least a portion of the first coating. Methods of applying a multilayer coating composition to a substrate may comprise applying a first coating comprising a near-IR absorber, applying a second coating over at least a portion of the first coating and curing the coating with near infrared radiation.Type: ApplicationFiled: September 13, 2012Publication date: March 13, 2014Applicant: PPG Industries Ohio, Inc.Inventors: Mark P. Bowman, Shelley D. Verdun, Gordon L. Post
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Patent number: 8668982Abstract: A coated cutting insert for removing material from a workpiece that includes a substrate is disclosed. A wear-resistant coating on the substrate that includes an alumina layer and a Zr- or Hf-carbonitride outer layer deposited on the alumina layer. The Zr- or Hf-carbonitride outer layer is subjected to a post-coat wet blasting treatment. The wet blasting changes the stress condition of the exposed alumina coating layer from an initial tensile stress condition to a compressive stress condition.Type: GrantFiled: November 18, 2011Date of Patent: March 11, 2014Assignee: Kennametal Inc.Inventors: Peter Leicht, Mark Greenfield, Volkmar Sottke, Zhigang Ban, Hartmut Westphal, Yixiong Liu, Michael Frank Beblo
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Patent number: 8665175Abstract: A thermal control film for use in spacecraft having a multi-layer interference filter adapted to exhibit high reflectivity to solar radiation, low absorptivity across the microwave spectrum and high emissivity in the far infra-red. The film is free from metal and extends over the active face of an antenna carried by the spacecraft. Such a film exhibits the desired thermo-optical properties for a thermal control radiator surface and can be used over the active face of a communications or radar antenna without disrupting the RF signal.Type: GrantFiled: May 17, 2006Date of Patent: March 4, 2014Assignee: Astrium LimitedInventor: Paul Joseph Brooks
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Patent number: 8664310Abstract: The present disclosure may provide a mixture for use in forming a transparent coating including a silicon alkoxide precursor and an organic polymer. The silicon alkoxide precursor may have a pH level between 1 and 4. The organic polymer may have an average molecular weight between 5,000 and 50,000 Da. The mixture may include 35% to 65% organic polymer by volume. The organic polymer may be removed from the mixture after application leaving a resultant transparent coating, wherein: the resultant coating has a porosity of ?35% to ?65%; a thickness in the range from ?95 nm to ?135 nm; pores having an average diameter from ?5 nm to ?50 nm; and a diameter distribution according to a log-norm distribution with a half-width of ?10 nm.Type: GrantFiled: September 26, 2007Date of Patent: March 4, 2014Assignee: Siemens AktiengesellschaftInventors: Anett Berndt, Florian Eder, Hans-Dieter Feucht
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Publication number: 20140057112Abstract: Pigment compositions are described that advantageously increase total solar reflectance. Also described are methods of making pigment compositions. The pigment compositions can contain copper oxide; copper antimony oxides, copper bismuth oxides, or combinations thereof; and alkaline earth metal oxides, early-transition metal oxides, post-transition metal oxides, metalloid (semi-metal) oxides, rare-earth metal oxides, or combinations thereof.Type: ApplicationFiled: May 9, 2012Publication date: February 27, 2014Applicant: FERRO CORPORATIONInventor: Wei Lang
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Patent number: 8658291Abstract: Calcium magnesium aluminosilicate (CMAS) mitigation compositions selected from rare earth elements, rare earth oxides, zirconia, hafnia partially or fully stabilized with alkaline earth or rare earth elements, zirconia partially or fully stabilized with alkaline earth or rare earth elements, magnesium oxide, cordierite, aluminum phosphate, magnesium silicate, and combinations thereof when the CMAS mitigation composition is included as a separate CMAS mitigation layer in an environmental barrier coating for a high temperature substrate component.Type: GrantFiled: December 19, 2008Date of Patent: February 25, 2014Assignee: General Electric CompanyInventors: Glen Harold Kirby, Brett Allen Boutwell, Ming Fu, Bangalore Aswatha Nagaraj, Brian Thomas Hazel
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Patent number: 8657950Abstract: An inorganic material board, which is a cured mat formed by dehydrating a slurry including 30 to 53 wt % of blast furnace slag, 2 to 5 wt % of gypsum having an average particle size of 200 to 2000 ?m, 5 to 11 wt % of alkaline material, 5 to 15 wt % of reinforcing fibers, and 31 to 50 wt % of inorganic admixture with respect to a total solid content, and in which a weight ratio of the blast furnace slag to the gypsum to the alkaline material is 1:0.05 to 0.15:0.15 to 0.35. It is desirable that the blast furnace slag has a specific surface area of 3000 to 5000.Type: GrantFiled: March 11, 2013Date of Patent: February 25, 2014Assignee: Nichiha CorporationInventors: Kenta Terai, Hiromi Fujiwara
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Patent number: 8658262Abstract: The invention provides emission control coatings. The coating includes a transparent conductive film over which there is an oxygen barrier film. In some embodiments, the transparent conductive film comprises indium tin oxide and the oxygen barrier film comprises silicon nitride.Type: GrantFiled: January 14, 2011Date of Patent: February 25, 2014Assignee: Cardinal CG CompanyInventors: Kari B. Myli, Gary L. Pfaff, Greg Vance, Klaus H. W. Hartig
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Publication number: 20140050933Abstract: A flexible display comprises a flexible substrate made of plastic material, a display element on a first surface of the flexible substrate, and a surface residual film containing at least one of a metal material or a metal oxide material. The surface residual film is bonded to at least a part of a second surface of the flexible substrate. The second surface is opposed to the first surface. A method for manufacturing a flexible display comprises preparing a glass substrate, forming adhesive material film on the glass substrate, the adhesive material film being made of at least one of a metal material or a metal oxide material, and forming a flexible substrate from plastic material on the adhesive material film.Type: ApplicationFiled: October 28, 2013Publication date: February 20, 2014Applicant: SAMSUNG DISPLAY CO., LTD.Inventors: Tae-Woong KIM, Sung-Guk AN, Dong-un JIN, Hyung-Sik KIM, Young-Gu KIM, Sang-Joon SEO
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Patent number: 8652639Abstract: A method for strengthening glass and a glass using the same are provided. The method for strengthening glass includes the following steps. Firstly, a glass substrate, which has a first surface and a second surface opposite to the first surface, is provided. Next, a barrier film is formed on at least one of the first surface and the second surface. Then, the glass substrate with the barrier film is immersed in a strengthening solution. The strengthening solution includes first ions, and the barrier film can limit the first ions in the quantity entering the glass substrate.Type: GrantFiled: May 20, 2011Date of Patent: February 18, 2014Assignees: Dongguan Masstop Liquid Crystal Display Co., Ltd., Wintek CorporationInventors: Guan-Yeu Chu, Chin-Hsun Ho, Ming-Wu Chen, Yu-Ching Wang, Cheng-Ying Lin, Chin-Chu Hung
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Patent number: 8652984Abstract: A dielectric ceramic composition comprising a main component and at least one or more subcomponent elements has a dielectric particle and a grain boundary. The dielectric particle has a main component phase substantially composed of the main component, and a diffusive phase around the main component phase where at least one selected from the subcomponent elements is diffused, a local minimal value of Cs is located at an outside edge side with respect to a position of the local maximum value of Cs, and Cs is increased from a position of the local minimal value of Cs toward the outside edge, when the dielectric particle is cut on an arbitrary cutting plane including the main component phase, and Cs is defined as a concentration of one or more elements selected from the subcomponent elements in an arbitrary position in the dielectric particle.Type: GrantFiled: March 9, 2012Date of Patent: February 18, 2014Assignee: TDK CorporationInventors: Makoto Endo, Osamu Kido, Hirobumi Tanaka, Taisuke Masuko, Yusuke Sato
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Patent number: 8652625Abstract: A transparent gas barrier film comprising a substrate having thereon a gas barrier layer comprising at least a low density layer and a high density layer, wherein one or more intermediate density layers are sandwiched between the low density layer and the high density layer.Type: GrantFiled: September 7, 2005Date of Patent: February 18, 2014Assignee: Konica Minolta Holdings, Inc.Inventors: Kazuhiro Fukuda, Toshio Tsuji, Chikao Mamiya, Hiroaki Arita
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Patent number: 8652638Abstract: The present disclosure relates to cutting tool edges that include on a rake face a superabrasive layer and a HPHT sintered or HPHT bonded cap layer. The cap layer improves adhesion between the superabrasive layer and an optional coating system for the cutting insert and acts as a thick anti-friction layer and/or a thermal barrier coating.Type: GrantFiled: March 3, 2010Date of Patent: February 18, 2014Assignee: Diamond Innovations, Inc.Inventors: Steven W. Webb, Törbjorn Selinder
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Patent number: 8652658Abstract: A method and apparatus for the production of C-plane single crystal sapphire is disclosed. The method and apparatus may use edge defined film-fed growth techniques for the production of single crystal material exhibiting low polycrystallinity and/or low dislocation density.Type: GrantFiled: September 21, 2007Date of Patent: February 18, 2014Assignee: Saint-Gobain Ceramics & Plastics, Inc.Inventors: Vitali Tatartchenko, Christopher D. Jones, Steven Anthony Zanella, John W. Locher, Fery Pranadi
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Patent number: 8652614Abstract: The present invention relates to an optical element comprising: a optical glass made of a phosphate glass or a fluorophosphate glass; and an optically functional film formed on a surface of the optical glass, wherein the optically functional film comprises two or more layers made of different materials, and the outermost surface layer thereof is made of a material(s) having low reactivity with phosphoric acid.Type: GrantFiled: June 21, 2010Date of Patent: February 18, 2014Assignee: Asahi Glass Company, LimitedInventors: Michito Takahashi, Sunao Miyazaki
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METHOD OF DEPOSITING NIOBIUM DOPED TITANIA FILM ON A SUBSTRATE AND THE COATED SUBSTRATE MADE THEREBY
Publication number: 20140037988Abstract: A coated article includes an applied transparent electrically conductive oxide film of niobium doped titanium oxide. The article can be made by using a coating mixture having a niobium precursor and a titanium precursor. The coating mixture is directed toward a heated substrate to decompose the coating mixture and to deposit a transparent electrically conductive niobium doped titanium oxide film on the surface of the heated substrate. In another coating process, the mixed precursors are moved toward the substrate positioned in a plasma area between spaced electrodes to coat the surface of the substrate. Optionally, the substrate can be heated or maintained at room temperature. The deposited niobium doped titanium oxide film has a sheet resistance greater than 1.2 ohms/square and an index of refraction of 1.00 or greater. The chemical formula for the niobium doped titanium oxide is Nb:TiOX where X is in the range of 1.8-2.1.Type: ApplicationFiled: October 7, 2013Publication date: February 6, 2014Applicant: PPG Industries OHIO, Inc.Inventors: Ashtosh Ganjoo, Songwei Lu, James W. McCamy, James J. Finley -
Patent number: 8642187Abstract: A structural member for a manufacturing apparatus has a metal base member mainly composed of aluminum, a high-purity aluminum film formed on the surface of the metal base member, and a nonporous amorphous aluminum oxide passivation film which is formed by anodizing the high-purity aluminum film. A method for producing a structural member for a manufacturing apparatus, includes forming a high-purity aluminum film on the surface of a metal base member mainly composed of aluminum, and anodizing the high-purity aluminum film in a chemical conversion liquid having a pH of 4-10 and containing a nonaqueous solvent, which has a dielectric constant lower than that of water and dissolves water, thereby converting at least a surface portion of the high-purity aluminum film into a nonporous amorphous aluminum oxide passivation film.Type: GrantFiled: December 21, 2007Date of Patent: February 4, 2014Assignees: National University Corporation Tohoku University, Mitsubishi Chemical CorporationInventors: Tadahiro Ohmi, Minoru Tahara, Yasuhiro Kawase
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Patent number: 8642166Abstract: A transparent conductive thin film comprises at least one stack layer of Ag—Ag3Sn—SnOx, or at least one stack layer of Ag—Ag4Sn—SnOx.Type: GrantFiled: December 28, 2012Date of Patent: February 4, 2014Assignee: MKE Technology Co., Ltd.Inventors: Chien-Tung Teng, Wei-Lun Hsu
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Publication number: 20140030945Abstract: A composite sheet and a substrate for a display device including the same, the composite sheet including a matrix, and a reinforcing material impregnated within the matrix, wherein a ratio of an elastic modulus at 25° C. of the matrix to an elastic modulus at 25° C. of the reinforcing material is 1×10?2 or less.Type: ApplicationFiled: September 30, 2013Publication date: January 30, 2014Inventors: Kyu Ha CHUNG, Sung Kook KIM, Young Kwon KIM
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Publication number: 20140030533Abstract: To manufacture a coating for an article for a semiconductor processing chamber, the coating is applied to the article by a method including applying a sol-gel coating of Y2O3 over the article, and curing the sol-gel coating on the article by heating the article with the sol-gel coating and exposing the article with the sol-gel coating to plasma in a semiconductor manufacturing chamber.Type: ApplicationFiled: February 5, 2013Publication date: January 30, 2014Applicant: Applied Materials, Inc.Inventors: Jennifer Y. Sun, Biraja P. Kanungo, Dmirty Lubomirsky, Vahid Fioruzdor
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Patent number: 8637162Abstract: A method and class of bond coat is provided that physically and chemically bonds solid layer lubricants and other functional coatings to a substrate by burnishing, for example, selected soft materials, including oxides such as antimony trioxide, against the substrate. The new method and bond coat is a major improvement over conventional bonding or coating methods. The process is non-vacuum at ambient temperatures, requiring no binders, adhesives, curing or baking. Lubricant performance can be enhanced by orders of magnitude compared to when the bond coat and burnishing process are not applied. The method is inexpensive, environmentally friendly, applicable to any substrate material, and scalable.Type: GrantFiled: March 31, 2009Date of Patent: January 28, 2014Assignee: The United States of America as represented by the Secretary of the Air ForceInventor: Jeffrey S. Zabinski
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Patent number: 8637147Abstract: Disclosed is a barrier laminate comprising at least one organic layer and at least one inorganic layer, wherein the organic layer has a thickness of 300 nm to 900 nm and is formed by curing a polymerizable composition comprising an aromatic (meth)acrylate and a multifunctional (meth)acrylate having an acryl equivalent weight of not more than 200.Type: GrantFiled: June 25, 2009Date of Patent: January 28, 2014Assignee: FUJIFILM CorporationInventors: Jiro Tsukahara, Shigehide Ito
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Patent number: 8637169Abstract: A low emissivity and EMI shielding transparent composite film typically for use in association with window glazing and comprising a transparent film substrate having on one side thereof an underlayer of abrasion resistant hardcoat material with at least one infrared reflective layer covering the underlayer, typically a metallic layer which may be encased in metal oxide layers, which is then covered with a thin external protective top coat of a cured fluorinated resin.Type: GrantFiled: February 28, 2011Date of Patent: January 28, 2014Assignee: CPFilms Inc.Inventors: Charles N. Van Nutt, James P. Enniss, Jaime A. Li, Anthony B. Port, Scott E. Pickett, Jeremy B. Stegall, Coby L. Hubbard, Rita M. Phillips, Steven A. Barth
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Patent number: 8632631Abstract: High SRI cementitious systems comprising integral concrete coloring admixtures, toppings, dry-shake hardeners, and other cementitious systems are provided. The high-SRI cementitious systems comprise one or more IR reflective pigments and other components to make-up the cementitious system, depending on the application. The high-SRI cementitious systems of the invention may be in the form of mixtures which increase the total solar reflectivity (TSR or albedo) and the Solar Reflectance Index (SRI) of concrete. The high-SRI cementitious systems may be toppings mixed with water for application to existing concrete surfaces, dry-shake hardeners for application to freshly-placed plastic concrete, or the IR reflective pigments may be mixed into integrally colored concrete in various forms, such as conventional cast-in-place concrete, lightweight concrete, pervious concrete and concrete building panels, pavers or masonry units.Type: GrantFiled: August 7, 2012Date of Patent: January 21, 2014Assignee: L. M. Scofield CompanyInventors: Stanley G. Stratton, Phillip J. Arnold, James K. Crawford, Pritam S. Dhaliwal, Martin Ellis Wild
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Patent number: 8632895Abstract: Coated articles comprising a decorative metal substrate and a transparent cured coating thereon containing inorganic particles in which the concentration of particles in the exposed surface region of the cured coating is greater than the bulk region of the coating. Preferably, the transparent coating is applied by electrodeposition.Type: GrantFiled: November 2, 2012Date of Patent: January 21, 2014Assignee: PPG Industries Ohio, IncInventors: James E. Poole, Anthony D. Kulfan, Raphael O. Kollah
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Patent number: 8632886Abstract: A vehicle glazing comprises a pane of tinted glass, tinted by at least 1.0 to 1.8% wt. of total iron, having a low emissivity coating on its interior surface. The coating has an emissivity from 0.05 to 0.4 and may include a transparent conductive oxide (and optionally a dopant), or a metal layer and at least one dielectric layer. The glass is preferably toughened glass. According to another aspect, a laminated glazing includes two plies of glass, with a sheet of interlayer material laminated between the two glass plies, and wherein at least one ply of glass or the sheet of interlayer material is body tinted. The glazing has a low emissivity coating on its interior surface, the inner ply may be clear glass or tinted glass, and the interlayer material may be clear PVB or tinted PVB, and may further be infra-red reflecting. Either of the glazings may be used as a roof or other vehicle glazing.Type: GrantFiled: May 13, 2011Date of Patent: January 21, 2014Assignees: Pilkington PLC, Pilkington Automotive LimitedInventors: Neil Barton, Ashley Carl Torr
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Publication number: 20140017419Abstract: To provide a gas barrier laminate film containing a substrate film having on at least one surface thereof one layer or plural layers of an inorganic thin film layer, a first layer of the inorganic thin film layer on a side of the substrate film being formed by a facing target sputtering method, and a method for producing a gas barrier laminate film, containing forming one layer or plural layers of an inorganic thin film layer on at least one surface of a substrate film, a first layer of the inorganic thin film layer on a side of the substrate film being formed by a facing target sputtering method, and thus to provide a gas barrier laminate film with high gas barrier property having a dense inorganic thin film layer that inflicts less damage to a substrate film, particularly to a resin film, on which the inorganic thin film layer is formed, and a method for producing the same.Type: ApplicationFiled: March 29, 2012Publication date: January 16, 2014Applicant: MITSUBISHI PLASTICS, INC.Inventors: Hidetaka Amanai, Makoto Miyazaki
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Patent number: 8628857Abstract: A composite material plate comprising a plurality of hard ceramic stubs with silicon rich metal inclusions in a metal-ceramic, heterogeneous poly-phase matrix and a method of fabrication thereof comprising the steps of fabricating green ceramic stubs; densifying; optionally wrapping carbon fibers therearound and arranging the green ceramic stubs into a closely packed array with organic binder, pyrrolizing and Impregnating a silicon based metal matrix by reactive sintering.Type: GrantFiled: May 5, 2009Date of Patent: January 14, 2014Inventor: Gigi Simovich
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Patent number: RE44799Abstract: 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: February 28, 2013Date of Patent: March 11, 2014Assignees: Shenzhen Futaihong Precision Industry Co., Ltd., FIH (Hong Kong) LimitedInventors: Chwan-Hwa Chiang, Qi-Jian Du