Iron Oxide Or Aluminum Oxide Patents (Class 428/329)
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Patent number: 11613624Abstract: The present disclosure provides a coated iron particle, or reaction product of a coating and the iron particle, comprising an iron particle and a ceramic coating disposed on the iron particle. Aspects of the present disclosure provide a coated iron particle, or reaction product of a coating and the iron particle, including an iron particle having a diameter of from about 0.5 micron to about 100 microns; and a ceramic coating disposed on the iron particle. Aspects of the present disclosure further provide compositions comprising a coated iron particle and a polymer or adhesion promoter. Aspects of the present disclosure further provide components, such as components, such as vehicle components, having a surface and a composition of the present disclosure disposed on the surface.Type: GrantFiled: November 7, 2019Date of Patent: March 28, 2023Assignee: THE BOEING COMPANYInventors: Waynie M. Schuette, Patrick J. Kinlen
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Patent number: 11591238Abstract: There are provided a new type of crystal laminate of an alkaline earth metal titanate having improved catalytic activity, and a method for producing the same. The crystal laminate is provided having a crystal of the alkaline earth metal titanate as a constitutional unit, wherein the crystal being the constitutional unit is a cubic crystal, a tetragonal crystal or an orthorhombic crystal; the crystal being the constitutional unit has a primary particle diameter of 500 nm or less; and the crystal is layered with an orientation in a {100} plane direction thereof.Type: GrantFiled: September 14, 2018Date of Patent: February 28, 2023Assignee: JAPAN SCIENCE AND TECHNOLOGY AGENCYInventor: Takashi Tachikawa
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Patent number: 11488629Abstract: A method for forming a magnetic recording medium according to one embodiment includes forming a magnetic layer above an underlayer. The magnetic layer includes a first magnetic material and particulates. A protective layer is formed above the magnetic layer, the protective layer including a second material. A method for forming a magnetic recording medium according to another embodiment includes forming a first nonmagnetic layer above a base film. The first nonmagnetic layer has first nonmagnetic particles. A second nonmagnetic layer is formed above the first nonmagnetic layer, the second nonmagnetic layer having second nonmagnetic particles. A magnetic layer is formed above the second nonmagnetic layer, the magnetic layer including a magnetic material.Type: GrantFiled: June 20, 2019Date of Patent: November 1, 2022Assignee: International Business Machines CorporationInventors: Robert G. Biskeborn, Calvin S. Lo
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Patent number: 11426973Abstract: An example hose comprises: a core tube; a reinforcement layer surrounding the core tube and comprising basalt fiber; and a thermal insulation layer surrounding the reinforcement layer and comprising basalt fiber and/or carbon fiber.Type: GrantFiled: October 19, 2020Date of Patent: August 30, 2022Assignee: Parker-Hannifin CorporationInventor: Nagarajan Ramaswamy
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Patent number: 11360242Abstract: An optical device includes a substrate and a coating applied to the substrate, wherein the optical device has a first side exposed to an environment and a second side that is unexposed.Type: GrantFiled: January 29, 2019Date of Patent: June 14, 2022Assignee: VIAVI SOLUTIONS INC.Inventors: Jaroslaw Zieba, Markus Bilger
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Patent number: 11247441Abstract: Multi-layer films and labels are disclosed herein. In an embodiment, a multi-layer film includes a core layer, a first intermediate layer disposed on a first side of the core layer, a second intermediate layer disposed on a second side of the core layer, a first skin layer disposed on the first intermediate layer and arranged such that the first intermediate layer is disposed between the core layer and the first skin layer, and a second skin layer disposed on the second intermediate layer and arranged such that the second intermediate layer is disposed between the core layer and the second skin layer, wherein the core layer includes first particles in an amount ranging from about 8 to about 20 wt %, based on the total weight of the core layer, the opacity is about 90 or greater, and the gloss ranges from about 60 to less than about 80.Type: GrantFiled: May 31, 2019Date of Patent: February 15, 2022Assignee: Inteplast Group CorporationInventors: Rafael E. Bayona P., Kiran Jayantilal Soneji, Ronald R. Silen, Todd A. O'Reilly
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Patent number: 11205455Abstract: A tape-shaped magnetic recording medium includes a substrate; and a magnetic layer that is provided on the substrate and contains a magnetic powder. An average thickness of the magnetic layer is not more than 90 nm, an average aspect ratio of the magnetic powder is not less than 1.0 and not more than 3.0, the coercive force Hc1 in a vertical direction is not more than 3000 Oe, and the coercive force Hc1 in the vertical direction and a coercive force Hc2 in a longitudinal direction satisfy a relationship of Hc2/Hc1?0.8.Type: GrantFiled: November 19, 2018Date of Patent: December 21, 2021Assignee: Sony CorporationInventors: Masaru Terakawa, Minoru Yamaga, Katsunori Maeshima
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Patent number: 11170813Abstract: A method of producing a magnetic powder includes performing heat treatment on first particles that contain ferrous oxide to prepare 5 second particles that contain ?-iron oxide.Type: GrantFiled: September 27, 2017Date of Patent: November 9, 2021Assignee: Sony CorporationInventors: Atsushi Muramatsu, Masafumi Nakaya, Masaru Terakawa, Katsunori Maeshima, Minoru Yamaga
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Patent number: 11104801Abstract: In a first aspect, a low haze polyimide film includes, a dianhydride, a diamine, and a color-tuning compound. The low haze polyimide film has a thickness in a range of from 1 to 150 um, an a* closer to zero with a |?a*| greater than 0.2 and a b* that is at most 0.2 further away from zero, or a b* closer to zero with a |?b*| greater than 0.2 and an a* that is at most 0.2 further away from zero, when compared to a low haze polyimide film of the same dianhydride and diamine composition, but without the color-tuning compound, and a haze of less than 4%. In a second aspect, an electronic device includes the low haze polyimide film of the first aspect.Type: GrantFiled: February 15, 2019Date of Patent: August 31, 2021Inventors: Kostantinos Kourtakis, Gene M Rossi, Peggy Scott
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Patent number: 10937575Abstract: A varistor is provided having a rectangular configuration defining first and second opposing end surfaces offset in a lengthwise direction. The varistor may include a first terminal adjacent the first opposing end surface and a second terminal adjacent the second opposing end surface. The varistor may include an active electrode layer including a first electrode electrically connected with the first terminal and a second electrode electrically connected with the second terminal. The first electrode may be spaced apart from the second electrode in the lengthwise direction to form an active electrode end gap. The varistor may include a floating electrode layer including a floating electrode. The floating electrode layer may be spaced apart from the active electrode layer in a height-wise direction to form a floating electrode gap. A ratio of the active electrode end gap to the floating electrode gap may be greater than about 2.Type: GrantFiled: March 4, 2019Date of Patent: March 2, 2021Assignee: AVX CorporationInventors: Michael Kirk, Marianne Berolini, Palaniappan Ravindranathan
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Patent number: 10609815Abstract: The invention discloses a high-haze colored ultra-thin high-frequency cover film and a preparation method thereof, including a colored ink layer and a high-frequency adhesive layer. The colored ink layer is located above the high-frequency adhesive layer, and the colored ink layer is provided with at least one layer. A hardness of the colored ink layer is HB-5H. A glossiness of the colored ink layer ranges from 0 to 60% (60°). A roughness of the colored ink layer is 50-1000 nm. A thickness of the colored ink layer is 1-10 microns, and a thickness of the high-frequency adhesive layer is 3-25 microns. The high-haze colored ultra-thin high-frequency cover film provided by the present invention includes a colored ink layer and a high-frequency adhesive layer, and the upper portion and the lower portion are respectively attached to the release film or the release layer of the release paper.Type: GrantFiled: October 27, 2017Date of Patent: March 31, 2020Assignee: KUNSHAN APLUS TEC.CORPORATIONInventors: Lichih Yang, Weichih Lee, Chienhui Lee, Chihming Lin
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Patent number: 10532956Abstract: This invention relates to polymeric compositions for application onto natural stone in order to provide for long-term chemical, stain, and water resistance, along with antimicrobial properties. Many natural, unsealed stones do not have stain, etch, or water resistance. The described compositions were developed using a technology of chemical grafting that involves the use of prepolymers, monomers, catalysts, graft initiators, wetting agents, antimicrobial agents, and other ingredients. The composition, when thus applied to the stone surface allows it to obtain a graft polymerization, thereby forming a polymer film that is chemically attached to the natural stone, rather than typical physical bonding of other sealer compositions. The natural stones react with a graft initiator in the composition, which creates the reaction sites on the natural stone surface via free radical mechanisms.Type: GrantFiled: August 11, 2017Date of Patent: January 14, 2020Assignee: Questech CorporationInventors: Barry Culkin, Roger Questel, Robert Harrington, Douglas Croteau, Paul Thottathil, Purushoth Kesavan, John Ryan, Satyabrata Mukherjee
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Patent number: 10487215Abstract: The present invention provides a polyacrylic acid copolymer emulsion, an organic-inorganic composite waterproof coating, preparation method thereof, and a waterproof coiled material. It can solve the problem that the granules dropping out from the prior waterproof membrane easily. The organic-inorganic composite waterproof coating according to the invention is prepared by compositing organic granules and inorganic granules, wherein the organic coating locks the inorganic granules, and prevents the inorganic granules from dropping out. Some exposed inorganic granules take part in the cement hydration reaction, and increase the bonding strength with the post-poured concrete. Furthermore, the organic-inorganic composite waterproof coating according to the invention does not need a buttering. It can reduce waste without an adhesive-resist insulation film/paper.Type: GrantFiled: December 1, 2015Date of Patent: November 26, 2019Assignee: Beijing Oriental Yuhong Waterproof Technology Co., Ltd.Inventors: Yuqin Xiong, Enshun Xu, Weiguo Li, Wenfeng Duan
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Patent number: 10487241Abstract: A method of encapsulating an electrical winding in an encapsulant composition. The method includes: (i) providing an electrically insulated wire; (ii) applying the encapsulation composition to the electrically insulated wire to encapsulate the wire; and (iii) winding a further layer of wire around the encapsulated wire. The electrical encapsulant composition includes a silica containing inorganic-organic nano-hybrid matrix, and particles of refractory ceramic suspended in the inorganic-organic nano-hybrid matrix.Type: GrantFiled: October 13, 2017Date of Patent: November 26, 2019Assignee: ROLLS-ROYCE plcInventors: Graham Philip Bruce, John James Anthony Cullen, Stephen Mark Husband, Yongxin Pang, Simon Hodgson
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Patent number: 10280869Abstract: A rubber-metal laminated gasket material comprising a metal plate, a surface treating agent layer, an adhesive layer, and a rubber layer, the layers being sequentially laminated on the metal plate; wherein the surface treating agent layer is formed by applying a surface treating agent so that the coating amount on one surface is 30 to 1,000 mg/m2, and the surface treating agent is free from chromium, has a mixing ratio of 20 to 90 wt. % of a fluorine-free titanium compound and 10 to 80 wt. % of alumina, and has a metal titanium content of 1 to 20 wt. %. The rubber-metal laminated gasket material has excellent LLC resistance under high temperature conditions.Type: GrantFiled: January 24, 2014Date of Patent: May 7, 2019Assignee: NOK CorporationInventors: Nobuaki Tanaka, Takeshi Sato, Katsumi Abe
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Patent number: 10233328Abstract: The present invention relates to a method for the production of a sol-gel based matrix. The method comprises the steps of: a) providing a first alkoxysilane of the general formula: R1—Si(OR2)3 and a second alkoxysilane of the general formula (I): b) preparing a first sol-gel component by polymerization of the first alkoxysilane in the presence of an acid catalyst, c) preparing a second sol-gel component by polymerization of the second alkoxysilane in the presence of an Lewis acid catalyst, d) Mixing the first sol-gel component and the second sol-gel component for the preparation of a sol-gel based matrix. The above method results in a sol-gel based matrix with high stability and high porosity. The sol-gel based material may be used for the production of a composite or sensor suitable for monitoring analytes. Methods for preparing these composites or sensors are provided as well.Type: GrantFiled: October 24, 2014Date of Patent: March 19, 2019Assignee: Kobenhavns UniversitetInventors: Thomas Just Sorensen, Martin Rosenberg, Bo W. Laursen
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Patent number: 10160927Abstract: Lubricating composition comprising (i) base oil and (ii) a Verkade base compound having the formula (1): wherein R1, R2 and R3 are each independently selected from hydrogen and saturated or unsaturated, straight chain or branched, C1-C22 alkyl groups. The lubricating composition of the present invention exhibits improved base number retention and oxidative stability, particularly in the presence of a biofuel such as fatty acid alkyl ester.Type: GrantFiled: December 14, 2015Date of Patent: December 25, 2018Assignee: SHELL OIL COMPANYInventors: Alexander Mark Robert James Hellawell, Robert Wilkinson, Alexander Peter Dirk Massely, Robert Moir, Stuart Browning, Richard Thomas Bown, Sravani Gullapalli
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Patent number: 10066109Abstract: The present disclosure provides articles that include polymer coatings on substrates primed with a primer coating containing silica nanoparticles, and methods of coating. The polymer coating is preferably a silicone-based polymeric material.Type: GrantFiled: April 20, 2011Date of Patent: September 4, 2018Assignee: 3M Innovative Properties CompanyInventors: Todd G. Pett, Timothy J. Hebrink, Naiyong Jing, Justin A. Riddle, David Scott Thompson, Andrew K. Hartzell
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Patent number: 10017422Abstract: A microwave dielectric ceramic, including a main crystal phase having a chemical formula of BaSixO2x+1, where 1.56?x?1.85. A regulator for regulating frequency-temperature characteristics of microwave dielectric ceramics is also provided. The dielectric constant of the microwave dielectric ceramic is smaller than 8, the temperature coefficient of resonate frequency of the microwave dielectric ceramic is positive, and the microwave dielectric ceramic is anti-reductive. A low temperature co-fired ceramic material includes a main crystal phase, the regulator, and a sintering additive. The main crystal phase of the low temperature co-fired ceramic material includes barium, aluminum, silicon, and oxygen.Type: GrantFiled: May 18, 2017Date of Patent: July 10, 2018Assignee: HUAZHONG UNIVERSITY OF SCIENCE AND TECHNOLOGYInventors: Wen Lei, Zhengyu Zou, Wenzhong Lv, Xiaoqiang Song, Zehao Chen, Xiaohong Wang, Guifen Fan
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Patent number: 9880098Abstract: A system and method of quantifying a difference between gonioapparent colored surfaces includes determining a lightness (L*), a sparkle area (Sa), and a sparkle intensity (Si) of the first and second surfaces at a first aspecular angle and at a second aspecular angle. A sparkle metric (SpkM) to quantify the difference between the first and second surfaces is calculated utilizing the lightness (L*), the sparkle area (Sa), and the sparkle intensity (Si) of the first and second surfaces at the first and second aspecular angles.Type: GrantFiled: October 16, 2015Date of Patent: January 30, 2018Assignee: AXALTA COATINGS SYSTEMS IP CO., LLCInventors: Arun Prakash, Mahnaz Mohammadi
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Patent number: 9718726Abstract: A glass ceramic substrate includes: an inner layer part having a first thermal expansion coefficient; and a surface layer part having a second thermal expansion coefficient smaller than the first thermal expansion coefficient. The inner layer part contains a first glass matrix and flat alumina particles. The flat alumina particles are dispersed in the glass matrix in a direction in which individual thickness directions are substantially perpendicular to a surface direction of one of main surfaces of the inner layer part. Further, a mean aspect ratio of the flat alumina particles is 3 or more in one of cross sections along the thickness directions of the flat alumina particles out of cross sections of the inner layer part.Type: GrantFiled: May 7, 2015Date of Patent: August 1, 2017Assignee: ASAHI GLASS COMPANY, LIMITEDInventors: Seigo Ohta, Masamichi Tanida, Hideki Numakura, Qing Li
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Patent number: 9653773Abstract: The instant disclosure describes a radiofrequency propagation line including a conducting strip connected to a conducting plane parallel to the plane of the conducting strip, wherein the conducting plane includes a network of nanowires made of an electrically conductive, non-magnetic material extending orthogonally to the plane of the conducting strip, in the direction of said conducting strip.Type: GrantFiled: April 24, 2013Date of Patent: May 16, 2017Assignees: UNIVERSITE GRENOBLE ALPES, INSTITUTE POLYTECHNIQUE DE GRENOBLE, UNIVERSIDADE DE SAO PAULO USPInventors: Philippe Ferrari, Gustavo Pamplona Rehder, Ariana Serrano, Florence Podevin, Anne-Laure Franc
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Patent number: 9627111Abstract: A magnetic member includes a plurality of superparamagnetic particles held by the magnetic member. Each of the plurality of superparamagnetic particles is formed with a particle size which is set at least such that a Neel relaxation time ?n in the each of the superparamagnetic particles becomes shorter than a cycle P of an alternating current magnetic field applied to the magnetic member (?n<P) when the magnetic member is used as an electronic component.Type: GrantFiled: November 9, 2010Date of Patent: April 18, 2017Assignee: Ferrotec CorporationInventors: Yasutake Hirota, Kenichi Katsuma, Masatake Hirooka, Takayuki Hachida
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Patent number: 9583916Abstract: An alumina sintered body has a main phase made of alumina crystals, a first dispersed phase made of MgAl2O4 dispersed in the main phase, and a second dispersed phase made of SiO2 and/or CaO dispersed in the main phase. A content ratio of the main phase is within a range from not less than 98% to less than 98%. The alumina sintered body satisfies a relationship of 100×I2/I1?5.5%, where I1 indicates a maximum peak height intensity derived from alumina, and I2 indicates a maximum peak height intensity derived from MgAl2O4 in a X-ray diffraction of the alumina sintered body. An area ratio of the second dispersed phase on a surface of the alumina sintered body is not more than 15.2%. A spark plug has a central electrode, a ground electrode and an insulator made of the alumina sintered body having the specific features previously described.Type: GrantFiled: February 25, 2016Date of Patent: February 28, 2017Assignee: DENSO CORPORATIONInventors: Shota Imada, Hirofumi Suzuki, Hiroshi Araki
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Patent number: 9419333Abstract: Provided are stacks including CMC structures and capping layers deposited on surfaces of these CMC structures. Also provided are methods for hermetically sealing the surfaces of the CMC structures with the capping layers. These stacks may be used to construct walls of radomes that enclose antennas and other equipment of aerospace vehicles. The capping layers may form smooth external surfaces of the radomes and may hermetically seal the underlying CMC structures. The dielectric properties of these stacks may be configured to minimize interference with operations of the antennas and other equipment deposited within the radome.Type: GrantFiled: April 10, 2014Date of Patent: August 16, 2016Assignee: The Boeing CompanyInventors: MaryAnn S. Muench, Robert A. DiChiara, William Harrigan, Kevin R. Lenihan
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Patent number: 9311947Abstract: A metal magnetic powder having a metal magnetic phase mainly composed of ferromagnetic elements, and composed of particles containing one or more kinds of elements selected from rare earth elements including Y, and Al, Si. And the method for producing the metal magnetic powder, including the steps of: eluting the non-magnetic components in the particles under an action of a reducing agent acting on the metal magnetic powder, in a solution containing a complexing agent capable of forming the complex with the non-magnetic components; and forming an oxide layer on the particles in the solution after eluting the non-magnetic components into the solution, without drying the particles.Type: GrantFiled: March 31, 2011Date of Patent: April 12, 2016Assignee: DOWA ELECTRONICS MATERIALS CO., LTD.Inventors: Hirohisa Omoto, Takayuki Kikuchi, Toshihiko Ueyama
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Patent number: 9246085Abstract: Filament size and shape in a ReRAM stack can be controlled by doping layers of a variable-resistance stack to change the crystallization temperature. This changes the density of the grain boundaries that form during annealing and provide minimal-resistance paths for the migration of charged defects. Hf, Zr, or Ti decreases the crystallization temperature and narrows the filament, while Si or N increases the crystallization temperature and widens the filament. Tapered filaments are of interest: The narrow tip requires little energy to break and re-form, enabling the cell to operate at low power, yet the wider body and base are insensitive to entropic behavior of small numbers of defects, enabling the cell to retain data for long periods.Type: GrantFiled: July 23, 2014Date of Patent: January 26, 2016Assignees: Intermolecular, Inc., Kabushiki Kaisha Toshiba, SanDisk 3D LLCInventor: Yun Wang
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Patent number: 9074126Abstract: A ceramic composite for light conversion, and method of producing same and a light emitting device including the same. The ceramic composite for light conversion of the present invention is a solidified body having a structure in which at least two oxide phases including a first phase and a second phase are continuously and three-dimensionally intertwined with one another, and characterized in that the first phase is a Y3Al5O12 phase including Ba or Sr and activated with fluorescent Ce, the second phase is an Al2O3 phase, and the Sr or Ba in the solidified body are contained in an amount of 0.01 to 1.00 part by mass based on 100 parts by mass of the solidified body, in terms of the oxide.Type: GrantFiled: December 13, 2011Date of Patent: July 7, 2015Assignee: Ube Industries, Ltd.Inventors: Hisayoshi Iba, Shinichi Ishitobi, Yasuyuki Ichizono
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Publication number: 20150147566Abstract: A coating of an outer plate contains a perylene-based pigment, and satisfies (ROH(P)/ROH(OA))?74, where ROH(P) is the highlight reflectance of the coating of the outer plate at a peak wavelength at which reflectance reaches the maximum value in a spectral reflectance curve, and ROH(OA) is the average highlight reflectance of the coating of the outer plate in a complementary wavelength range. A coating of an inner plate part contains a perylene-based pigment and an iron oxide-based pigment, the content of the perylene-based pigment in the coating of the inner plate part is in units of PWC, and the mass ratio of the content of the iron oxide-based pigment to the content of the perylene-based pigment in the coating of the inner plate part is 3-20%.Type: ApplicationFiled: February 6, 2014Publication date: May 28, 2015Applicant: MAZDA MOTOR CORPORATIONInventors: Sakura Nakano, Masaaki Akamine, Kenta Okada, Hiroshi Kubota
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Patent number: 9005750Abstract: Provided is a transparent conductive film including a hard coat layer having sufficient hardness, a superior abrasion resistance, and a superior soil resistance; also, provided are an electronic device and a touch panel using the transparent conductive film. A transparent conductive film 10 includes a transparent film base 11, a transparent conductive layer 12, and a hard coat layer 13, wherein the hard coat layer 13 is formed of a composition for forming hard coat containing the component (A): a curable compound including at least one of an acrylate group and a methacrylate group; the component (B): a reactive fluorine-containing compound; and the component (C): a reactive silicon-containing compound.Type: GrantFiled: July 7, 2010Date of Patent: April 14, 2015Assignee: Nitto Denko CorporationInventors: Hiroki Ozawa, Naoki Hashimoto, Atsushi Kishi, Teppei Niinou, Hiroki Kuramoto
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Patent number: 8999495Abstract: A recording material for electrophotographic printing methods from a base paper coated on both sides with synthetic resin and having a toner-receiving layer arranged on at least one side, containing a water-soluble or water-dispersible binder in the toner-receiving layer, preferably an ethylene-acrylate polymer or an ethylene-acrylate copolymer, a finely particulate inorganic pigment and an antistatic component, such that images using both liquid toners and dry toners can be produced with this recording material, identical in both appearance and haptics to silver halide photographs.Type: GrantFiled: September 15, 2011Date of Patent: April 7, 2015Assignee: Schoeller Technocell GmbH & Co. KGInventors: Christoph Kozlowski, Andreas Overberg, Rainer Steinbeck
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Patent number: 8980424Abstract: Provided is a prepreg prepared by impregnating a base material with a resin composition, wherein the resin composition contains aluminum hydroxide having an average particle diameter of 2.5 to 4.5 ?m and a glass filler having an average particle diameter of 1.0 to 3.0 ?m, a specific gravity of 2.3 to 2.6 g/cm3 and a SiO2 content of 50 to 65% by mass; and a sum of blending amounts of aluminum hydroxide and the glass filler is 30 to 50% by mass based on a whole amount of solid matters in the resin composition. According to the above prepreg, capable of being obtained is a metal clad laminated plate in which in spite of using an inorganic filler such as silica and the like and aluminum hydroxide in combination, the inorganic filler is evenly dispersed and which is excellent in a processability and has a low thermal expansion coefficient.Type: GrantFiled: May 31, 2011Date of Patent: March 17, 2015Assignee: Hitachi Chemical Company, Ltd.Inventors: Shuuji Gouzu, Makoto Yanagida
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Publication number: 20150072135Abstract: A cutting tool hard film disposed as coating on a surface of a cutting tool, includes: a hard phase that is a nitride phase, an oxide phase, a carbide phase, a carbonitride phase, or a boride phase containing at least one element out of group IVa elements, group Va elements, group VIa elements, Al, and Si; and a binding phase that is a phase containing at least one element out of Au, Ag, and Cu, the cutting tool hard film having composite structure with the hard phase and the binding phase three-dimensionally arranged.Type: ApplicationFiled: April 2, 2012Publication date: March 12, 2015Applicant: OSG CORPORATIONInventors: Masatoshi Sakurai, Takaomi Toihara
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Publication number: 20150050488Abstract: A low-wear fluoropolymer composite body comprises at least one fluoropolymer and additive particles dispersed therein. Also provided is a process for the fabrication of such a fluoropolymer composite body. The composite body exhibits a low wear rate for sliding motion against a hard counterface, and may be formulated with either melt-processible or non-melt-processible fluoropolymers.Type: ApplicationFiled: December 20, 2013Publication date: February 19, 2015Inventors: Christopher P. Junk, Gregory Scott Blackman, Steven R. Lustig, Mark D. Wetzel, Wallace Gregory Sawyer, Brandon A. Krick
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Publication number: 20150037566Abstract: A laminate having excellent abrasion resistance to physical stimuli such as dust. The laminate comprises a base layer, a hard coat layer and a top coat layer containing flaky metal oxide fine particles all of which are formed in the mentioned order. The flaky metal oxide fine particles are hardened by at least one method selected from the group consisting of ionizing material exposure, ionizing radiation exposure, infrared exposure, microwave exposure and high-temperature vapor exposure.Type: ApplicationFiled: February 20, 2013Publication date: February 5, 2015Applicant: CENTRAL JAPAN RAILWAY COMPANYInventors: Tatsuya Ekinaka, Takehiro Suga, Toshio Kita, Ryo Nimi, Yuta Toyoshima, Tetsuya Shichi, Daisuke Yoshioka, Makoto Yamashita, Sohei Okazaki, Yuji Kaneko
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Publication number: 20150030845Abstract: The present disclosure is directed to a base film having a thickness from 8 to 152 microns, a 60 degree gloss value from 2 to 35, an optical density greater than or equal to 2 and a dielectric strength greater than 1400 V/mil. The base film comprises a chemically converted (partially or wholly aromatic) polyimide in an amount from 63 to 96 weight percent of the base film. The base film further comprises a pigment and a matting agent. The matting agent is present in an amount from 1.6 to 10 weight percent of the base film, has a median particle size from 1.3 to 10 microns, and has a density from 2 to 4.5 g/cc. The pigment is present in an amount from 2 to 35 weight percent of the base film. The present disclosure is also directed to coverlay films comprising the base film in combination with an adhesive layer.Type: ApplicationFiled: July 26, 2013Publication date: January 29, 2015Applicant: E I DU PONT DE NEMOURS AND COMPANYInventors: THOMAS EDWARD CARNEY, Jeffrey Michael Bartolin, Meredith L. Dunbar, Scott John Herrmann
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Publication number: 20150017392Abstract: A reflective film or article including a substrate, a smoothing layer adjoining and extending across at least a portion of the first major surface of the substrate, a tie layer having a first major surface adjoining and extending across at least a portion of the second major surface of the substrate, and a metallic layer adjoining and extending across at least a portion of the second major surface of the tie layer. The smoothing layer includes poly(methyl methacrylate) and a first block copolymer having at least two endblock polymeric units and at least one midblock polymeric unit derived from first and second monoethylenically unsaturated monomers selected from a methacrylate, acrylate, vinyl ester, or combination thereof, respectively, each endblock having a glass transition temperature (Tg) of at least 50° C., and each endblock having a Tg no greater than 20° C.Type: ApplicationFiled: January 15, 2013Publication date: January 15, 2015Applicant: 3INNOVATIVE PROPERTIES COMPANYInventors: Rajesh K. Katare, Timothy J. Hebrink, Mark B. O'Neill
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Publication number: 20150010748Abstract: Basic coating compositions including inorganic oxide nanoparticles and an organic base are described. Methods of coating a substrate with the coating compositions, coated substrates prepared using the methods, and articles that include the coated substrates are also disclosed.Type: ApplicationFiled: February 27, 2012Publication date: January 8, 2015Inventors: Xue-Hua Chen, Yu Yang, Dong-Wei Zhu, Ping Zhou, Bin Yu
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Publication number: 20150010749Abstract: A transparent electroconductive laminate in which condition [A] and/or [B] is satisfied; and the proportion of the surface resistance value after being subjected to a 1-hour wet heat treatment at 60° C. and a relative humidity of 90% and then being left standing for 3 minutes at 25° C. and a relative humidity of 50%, relative to the surface resistance value before the treatment, is 0.7 to 1.3. A method for manufacturing same, electronic paper using same, and a touch panel using same. [A] The white reflectance is from greater than 70% and to no greater than 85%, and the surface resistance value is 1.0×102?/? to 1.0×104?/?. [B] The total light transmittance is greater than 88% and no greater than 93%, and the surface resistance value is 1.0×102?/? to 1.0×104?/?.Type: ApplicationFiled: January 28, 2013Publication date: January 8, 2015Applicant: TORAY INDUSTRIES, INC.Inventors: Takashi Oi, Osamu Watanbe, Naoki Imazu
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GLASS CERAMIC BODY, LAYERED BODY, PORTABLE ELECTRONIC DEVICE HOUSING, AND PORTABLE ELECTRONIC DEVICE
Publication number: 20150010721Abstract: There are provided a glass ceramic body having a sufficiently high strength and having a high degree of flexibility in shape which can correspond to a three-dimensional shape, and a layered body having the glass ceramic body. In a glass ceramic body in which flat alumina particles are dispersed in a glass matrix constituted of a glass with a crystallinity of 25% or less, a total cross-sectional area of the flat alumina particles, having a cross section with a thickness of 0.2 ?m or more, a maximum diameter of 8 ?m or less, and an aspect ratio in a range of 3 to 18 in one of cross sections along the thickness directions of the flat alumina particles in the glass ceramic body, is 20% or more relative to a total area of the cross section, and an open porosity is 5% or less.Type: ApplicationFiled: September 9, 2014Publication date: January 8, 2015Applicant: ASAHI GLASS COMPANY, LIMITEDInventors: Masamichi TANIDA, Seigo OHTA, Hideki NUMAKURA -
Publication number: 20140377541Abstract: A method for coating a metal substrate with a white, off-white or gray colored autodeposited coating comprising water, polymeric resin, HF and pigment particles comprising a core of titanium dioxide, an intermediate zirconia and/or alumina layer, and an outer organic layer, optionally the particles are treated with an anionic surfactant.Type: ApplicationFiled: September 8, 2014Publication date: December 25, 2014Inventors: Omar Lufti ABU-SHANAB, Bashir AHMED, Manesh NADUPPARAMBIL SEKHARAN, William E. FRISTAD, Nicholas HERDZIK
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Patent number: 8916080Abstract: A biaxially oriented laminate film including a core layer including a blend of crystalline polylactic acid polymer and an inorganic antiblock particle which is biaxially oriented at low transverse direction orientation temperatures to impart a degree of cavitation around the particles such that a matte or opaque appearance is obtained. The laminate film may further have additional layers such as a heat sealable layer disposed on one side of the core layer including an amorphous polylactic acid resin and/or a polylactic acid resin-containing layer disposed on the side of the core layer opposite the heat sealable layer, a metal layer, or combinations thereof.Type: GrantFiled: January 31, 2012Date of Patent: December 23, 2014Assignee: Toray Plastics (America), Inc.Inventors: Mark S. Lee, Harold Egon Koehn, Takeshi Mizumura, Keunsuk P. Chang
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Patent number: 8911870Abstract: A biaxially oriented laminate film including a core layer including a blend of crystalline polylactic acid polymer and an inorganic antiblock particle which is biaxially oriented at low transverse direction orientation temperatures to impart a degree of cavitation around the particles such that a matte or opaque appearance is obtained. The laminate film may further have additional layers such as a heat sealable layer disposed on one side of the core layer including an amorphous polylactic acid resin and/or a polylactic acid resin-containing layer disposed on the side of the core layer opposite the heat sealable layer, a metal layer, or combinations thereof.Type: GrantFiled: June 11, 2009Date of Patent: December 16, 2014Assignee: Toray Plastics (America), Inc.Inventors: Mark S. Lee, Harold E. Koehn, Takeshi Mizumura, Keunsuk P. Chang
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Patent number: 8911642Abstract: A heat conduction composition is proposed, comprising at least one polymer and a heat-conducting auxiliary material that has an especially high heat conductivity and at the same time has a high mechanical strength. To this end, the heat-conducting auxiliary material comprises particles that in turn are made up of primary particles and that have a mass-specific surface area of 1.3 m2/g or less. Also described are a heat-conducting surface element manufactured from said heat conduction composition as well as application possibilities thereof.Type: GrantFiled: September 23, 2009Date of Patent: December 16, 2014Assignee: tesa SEInventors: Klaus Keite-Telgenbüscher, Anja Staiger, Florian Meyer
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Publication number: 20140349106Abstract: Improved coating formulations for cementitious composite building materials are disclosed herein. The coating formulations provide both sealer and primer functions, particularly for substrates in a high alkaline environment, such as fiber cement composite materials.Type: ApplicationFiled: May 21, 2013Publication date: November 27, 2014Applicant: James Hardie Technology LimitedInventors: Yongjun Chen, Caidian Luo
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Publication number: 20140322520Abstract: Provided is a circuit substrate, including a glass film (10) forming a rough layer (11) after surface roughness processing, a resin adhesion (20) located the rough layer (11) on either side of the glass film (10), and a metal foil (30) located on the outside of resin adhesion layer (20). The glass film (10), the resin adhesion layer (20) and the metal foil (30) are joined together through suppressing. The circuit substrate employs the glass film (10) which forms a rough layer (11) after surface roughness processing as a carrier material, so that the resin adhesion layer (20) and the surface of the glass film (10) have a good binding force, and the dielectric constant of the circuit substrate has slight difference in the directions of X, Y and Z. Also provided is manufacturing method for a circuit substrate.Type: ApplicationFiled: December 29, 2011Publication date: October 30, 2014Inventors: Minshe Su, Qianfa Liu
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Patent number: 8845773Abstract: Abrasive particles which are shaped abrasive particles each with an opening are described. The shaped abrasive particles are formed from alpha alumina and have a first face and a second face separated by a thickness t. The opening in each of the shaped abrasive particles can improve grinding performance by reducing the size of a resulting wear flat, can provide a reservoir for grinding aid, and can improve adhesion to a backing in a coated abrasive article.Type: GrantFiled: February 16, 2012Date of Patent: September 30, 2014Assignee: 3M Innovative Properties CompanyInventors: Dwight D. Erickson, Scott R. Culler, Negus B. Adefris, John T. Boden, John D. Haas
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Patent number: 8840992Abstract: The curable resin composition of the present invention contains inorganic particles and a curable resin. The inorganic particles includes an inorganic particle (a-1) having a Mohs hardness of 7 or more and an average particle diameter of 1 ?m or less, an inorganic particle (a-2) having a Mohs hardness of 4 or more to less than 7 and an average particle diameter of 1 ?m or less, and an inorganic particle (a-3) having a Mohs hardness of less than 4 and an average particle diameter of 1 ?m or less. The curable resin is at least one selected from a group consisting of a thermosetting resin and an active energy ray-curable resin.Type: GrantFiled: October 20, 2010Date of Patent: September 23, 2014Assignee: JNC CorporationInventors: Hiroyuki Iizuka, Kenya Ito, Koji Ohguma, Mikio Yamahiro
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Patent number: 8828553Abstract: A metal surface treated to have two anodized layers or regions may be used in electronic devices. The surface treatment may include performing a first anodization process to create a first anodized layer, removing the first anodized layer at select locations, and performing a second anodization process to create a second anodized layer at the select locations. The first and second anodized regions may have different decorative properties, such as color, and different structural properties, such as degree of abrasion resistance. One of the anodization processes may be hard anodization and the other may be standard anodization.Type: GrantFiled: February 13, 2013Date of Patent: September 9, 2014Assignee: Apple Inc.Inventor: Jivan K. Khosla
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Publication number: 20140246221Abstract: An electrical insulation system includes a first insulation layer having a first polymer and a first filler in the form of nanoparticles, and a second insulation layer including a second polymer and a second filler in the form of either chromium oxide, Cr2O3, iron oxide, Fe2O3, or a mixture of chromium oxide and iron oxide. At least one of the insulation layers is in the form of a solid and flat sheet. By an insulation system combining the first insulation layer with well dispersed nanoparticles and the second insulation layer filled with Cr2O3 particles and/or Fe2O3 particles, a synergetic effect of the two insulation layers provides an excellent shield and resistance of the insulation system against electrical discharges. The sheet material allows anybody to put together an insulation system without any special equipment.Type: ApplicationFiled: May 13, 2014Publication date: September 4, 2014Inventors: Anders Bjorklund, Fredrik Sahlen, Henrik Hillborg