Patents Issued in March 31, 2015
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Patent number: 8993026Abstract: The present invention relates to an infrared-style broiler sized to be portable, safe, and occupy minimal space, while still providing surface area for use in warming foods. The warming surface may be heated from below by way of radiant heat and/or may be heated by way of venting hot air from the inside of the broiler to the warming surface by way of vents.Type: GrantFiled: May 6, 2013Date of Patent: March 31, 2015Assignee: SCI Direct, LLCInventors: Jon P. Molnar, Neil R. Tyburk
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Patent number: 8993027Abstract: The present invention relates generally to tabletop sweetener compositions comprising non-caloric or low-caloric natural high-potency sweeteners and methods for making and using them. In particular, the present invention relates to different forms of tabletop sweetener compositions comprising at least one non-caloric or low-caloric natural high-potency sweeteners in combination with at least one bulking agent, or at least one sweet taste improving composition, or at least one anti-caking agent, or combinations thereof. The present invention also relates to tabletop compositions and methods that can improve the tastes of non-caloric or low-caloric natural high-potency sweeteners by imparting a more sugar-like taste or characteristic. In particular, the tabletop compositions and methods provide a more sugar-like temporal profile, including sweetness onset and sweetness linger, and/or a more sugar-like flavor profile.Type: GrantFiled: November 2, 2006Date of Patent: March 31, 2015Assignee: The Coca-Cola CompanyInventors: Indra Prakash, Grant E. DuBois, George A. King
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Patent number: 8993028Abstract: The invention provides a process of purifying Rubusoside from the Rubus suavissimus S. Lee plant extract. The process is useful for producing high purity Rubusoside with purity greater than 95% (dry basis). High purity rubusoside is useful as in combination with other caloric and non-caloric sweeteners as well as non-caloric sweetener in various food and beverage compositions. The high purity rubusoside is useful as non-caloric sweetener in edible and chewable compositions such as any beverages, confectioneries, bakeries, cookies, chewing gums, and alike.Type: GrantFiled: July 20, 2012Date of Patent: March 31, 2015Assignee: PureCircle Sdn BhdInventor: Avetik Markosyan
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Patent number: 8993029Abstract: The present invention obtains instant noodles which do not cause sticking and are easily loosened. Especially, the present invention provides an instant noodles producing method capable of preventing the sticking of the noodle strings even when the noodle strings are straight-type noodles. In a production process of the instant noodles, powdered oil is applied to the surface of a dough sheet or the surfaces of the noodle strings before steaming. Especially, after the powdered oil is applied to the dough sheet, the dough sheet is rolled out once or more. With this, the powdered oil is firmly fixed to the surfaces of the noodle strings. Thus, an extremely high sticking preventing effect can be obtained by an extremely small amount of the powdered oil.Type: GrantFiled: March 22, 2011Date of Patent: March 31, 2015Assignee: Nissin Foods Holdings Co., Ltd.Inventors: Tatsuo Yamaya, Takuo Nakazeko, Rippei Shikota, Koshi Minamitani, Susumu Sakaguchi, Mitsuru Tanaka
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Patent number: 8993030Abstract: An aerated composition having a pH of less than 5.5 is provided, which composition comprises hydrophobin.Type: GrantFiled: September 21, 2006Date of Patent: March 31, 2015Assignee: ConopcoInventors: Deborah Lynne Aldred, Andrew Richard Cox
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Patent number: 8993031Abstract: A method of making a gel-type livestock feed includes initially forming a feed mixture by mixing feed nutrient components, water, alginate, and a calcium component insoluble in water or a sequestrate to inhibit the calcium component from reacting with the alginate. Once the feed mixture is formed, the calcium component is solubilized or the sequestrates affecting the reactivity between the alginate and the calcium component is removed such that a gel feed is formed that includes a gel matrix containing the feed nutrient components. The gel feed may then be fed to the livestock. In another aspect of the present invention, piglets are weaned by feeding the gel feed for at least seven days directly after weaning. The gel feed may also include protein derived from blood with or without egg protein.Type: GrantFiled: February 6, 2014Date of Patent: March 31, 2015Assignee: Purina Mills, LLCInventors: Kent J. Lanter, Brenda de Rodas, Bill L. Miller, Gary E. Fitzner
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Patent number: 8993032Abstract: A protein rehydration/recovery beverage composition is provided, including an aqueous component such as water, hydrolyzed protein, and sodium acid sulfate and at least one other edible acid. The hydrolyzed protein may be hydrolyzed whey and optionally hydrolyzed collagen. In addition, the beverage composition may include at least one carbohydrate, such as sucrose, and one or more non-nutritive sweeteners. A protein rehydration/recovery beverage composition is provided, including an aqueous component, hydrolyzed proteins and an acid blend. The acid blend contains a first acid component including at least one of phosphoric acid and citric acid, and a second acid component including at least one of tartaric acid, fumaric acid, malic acid, gluconic acid, ascorbic acid, and lactic acid. Also, a method for making a protein recovery beverage composition that has a pH of less than about 4.2. The rehydration/recovery beverage is stable and clean tasting, and has a low viscosity.Type: GrantFiled: December 15, 2010Date of Patent: March 31, 2015Assignee: Stokely-Van Camp, Inc.Inventors: Liangji Xu, Vincent Rinaldi, Zeinab Ali, Kelly Van Dyke, Andrew Damin
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Patent number: 8993033Abstract: An energy composition includes a methylated xanthine, a choline derivative, and at least one flavorant in a sufficient amount to render the energy composition palatable. The energy composition may also include vitamins, amino acids, enzymes, preservatives, and the like.Type: GrantFiled: November 17, 2008Date of Patent: March 31, 2015Assignee: International IP Holdings, LLCInventor: Manoj Bhargava
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Patent number: 8993034Abstract: The present disclosure relates to the isolation, purification, and characterization of a diacylglycerol acyltransferase 2 (DGAT2), and genes encoding DGAT2, from algae. DGAT2 can incorporate very long-chain polyunsaturated fatty acids into triacylglycerol more efficiently than DGAT1. The disclosure concerns methods of regulating seed oil content, fatty acid synthesis and fatty acid composition using the DGAT2 gene and to tissues and plants transformed with the gene. The disclosure also relates to transgenic plants, plant tissues and plant seeds having a genome containing an introduced DNA sequence of the disclosure, and a method of producing such plants and plant seeds.Type: GrantFiled: February 24, 2014Date of Patent: March 31, 2015Assignees: Dow AgroSciences LLC, National Research Council CanadaInventors: Jitao Zou, Jingyu Xu, Zhifu Zheng
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Patent number: 8993035Abstract: The invention relates to an edible water in oil emulsion wrapper product wherein the amount of oil exudation is less than 1% at the temperature at which the amount of solid fat content on total product is 3%, wherein the fat is essentially free of hydrogenated fat and wherein said fat comprises less than 35 wt % saturated fatty acid (calculated on total fat) and less than 1 wt % trans unsaturated fatty acid (calculated on total product). The invention also relates to a process for the preparation of an edible water in oil emulsion wrapper product according to the invention.Type: GrantFiled: November 24, 2011Date of Patent: March 31, 2015Assignee: Conopco, Inc.Inventor: Teunis de Man
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Patent number: 8993036Abstract: This invention relates to a processed soybean having a reduced urease content, the soybean being produced by decompressing and steaming, wherein the soybean is not ground soybean.Type: GrantFiled: March 11, 2011Date of Patent: March 31, 2015Assignee: Otsuka Pharmaceutical Co., Ltd.Inventors: Kiyoko Abe, Katsushi Kawashima
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Patent number: 8993037Abstract: The present invention relates to an improved process for the preparation of an extract enriched in dihydrochalcones, and more specifically enriched in phlorizin, starting from a dry polyphenolic fraction originating from industrial apple processing. The invention also relates to a dihydrochal-cone extract obtainable by this process, and to a food or a nutraceutical product comprising a dihydrochalcone extract of the present invention.Type: GrantFiled: January 19, 2012Date of Patent: March 31, 2015Assignee: DSM IP Assets B.V.Inventors: Bettina Boehlendorf, Hubert Hug, Judith Kammerer, Claus Kilpert, Reinhold Carle
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Patent number: 8993038Abstract: A mineral supplement is described herein that has a high mineral and/or nitrogen content and is capable of being formed into a pellet. The mineral supplement may comprise a heat sink that absorbs heat during processing, thus facilitating the formation of the mineral supplement as a pellet.Type: GrantFiled: December 14, 2009Date of Patent: March 31, 2015Inventors: Patrick A. Jobe, Clinton B. Calk, David A. Cook, Steven J. Engelmeyer, Timothy C. Gouldie, Bradley G. Krusa, Leonardo A. Vivas Luna, Mark D. Newcomb, Brian T. Parham, Jennifer L. G. van de Ligt
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Patent number: 8993039Abstract: A food product comprising digestion resistant or slowly digestible oligosaccharide composition. The oligosaccharide composition can be produced by a process comprising producing an aqueous composition comprising at least one oligosaccharide and at least one monosaccharide by saccharification of starch, membrane filtering the aqueous composition to form a monosaccharide-rich stream and an oligosaccharide-rich stream, and recovering the oligosaccharide-rich stream. Alternatively, the oligosaccharide composition can be produced by a process comprising heating an aqueous feed composition with a solids concentration of at least about 70% by weight, comprising at least one monosaccharide or linear saccharide oligomer, to a temperature of at least about 40° C.Type: GrantFiled: October 16, 2007Date of Patent: March 31, 2015Assignee: Tate & Lyle Ingredients Americas LLCInventors: Michael D. Harrison, Andrew J. Hoffman
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Patent number: 8993040Abstract: There is described a method for depositing at least one biological fluid onto a surface of a substrate, the method comprising the steps of (i) providing at least one thermal bubble jet printhead loaded with at least one biological fluid, (ii) positioning the printhead next to the substrate, and (iii) supplying the printhead with energy thereby depositing the biological fluid onto the surface. The printhead is supplied with an energy E such that E>1.6*Eth where Eth is the threshold energy of the printhead. There are also described an apparatus for depositing at least one biological fluid onto a surface of a substrate and a microarray obtained by carrying out the depositing method.Type: GrantFiled: April 29, 2009Date of Patent: March 31, 2015Assignee: Sicpa Holding SAInventors: Giacomo Mabritto, Cristina Panciatichi, Oriana Rossotto, Tazio Sandri
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Patent number: 8993041Abstract: A taste masked particulate pharmaceutical formulation include a core that comprises an active pharmaceutical ingredient; at least a partial nanoparticle material layer on the core that comprises a nanoparticle material with a median particle size not greater than 100 nm; a first polymer layer that is at least partially water soluble and a second polymer layer that is water insoluble. The active pharmaceutical ingredient is completely released in 30 minutes in the USP Dissolution Test. A process of making the particulate pharmaceutical formulation using sequential fluidized bed coating steps under controlled conditions is also described.Type: GrantFiled: October 15, 2012Date of Patent: March 31, 2015Assignee: New Jersey Institute of TechnologyInventors: Daniel To, Rajesh N. Dave
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Patent number: 8993042Abstract: A method to evaluate, determine and optimize production parameters for a coating application of a UV cationic polymerizable coating system to a substrate is provided. The method is based on a simulation model which includes both shadow and dark cure processes. Both of an active center generation process and the active center diffusion process are mathematically described. In the model, the two processes are considered separately since they are driven by different fundamental phenomena and occur on different timescales. Evaluation or prediction of the effect of process variables on the curing of a cationic coating of a complex substrate according to the described method allows characterization and understanding of process variables which may save set-up costs and improve production efficiency.Type: GrantFiled: January 6, 2010Date of Patent: March 31, 2015Assignees: Toyota Motor Engineering & Manufacturing North America, Inc., University of Iowa Research FoundationInventors: Cynthia Gazepis Templeman, Alec B. Scranton, Beth Ann Ficek, Cynthia Hoppe
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Patent number: 8993043Abstract: A method for fabricating color filter layer of an LCD comprises forming a plurality of black matrixes separated at certain intervals on a color filter substrate, and forming R, G and B color filter layers by using a plurality of needles between the plurality of black matrixes on the color filter substrate.Type: GrantFiled: June 29, 2006Date of Patent: March 31, 2015Assignee: LG Display Co., Ltd.Inventors: Soon-Sung Yoo, Duk-Chul Yun, Oh-Nam Kwon, Youn-Gyoung Chang, Heung-Lyul Cho, Seung-Hee Nam
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Patent number: 8993044Abstract: Capacitors and methods of forming capacitors are disclosed, and which include an inner conductive metal capacitor electrode and an outer conductive metal capacitor electrode. A capacitor dielectric region is received between the inner and the outer conductive metal capacitor electrodes and has a thickness no greater than 150 Angstroms. Various combinations of materials of thicknesses and relationships relative one another are disclosed which enables and results in the dielectric region having a dielectric constant k of at least 35 yet leakage current no greater than 1×10?7 amps/cm2 at from ?1.1V to +1.1V.Type: GrantFiled: July 16, 2012Date of Patent: March 31, 2015Assignee: Micron Technology, Inc.Inventors: Rishikesh Krishnan, John Smythe, Vishwanath Bhat, Noel Rocklein, Bhaskar Srinivasan, Jeff Hull, Chris Carlson
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Patent number: 8993045Abstract: The invention relates to a method for manufacturing boards that comprises depositing a liquid resin (22) on and/or under a plurality of electronic units for forming a plate defining a plurality of boards or board bodies. In order to do so, and in order to reduce as much as possible the residual air bubbles in the manufactured plate, the method comprises depositing the resin in the form of resin beads (26) initially having between them grooves (28) defining air discharge channels. The resin in uniformly spread using a pressing roller for one end of the plate to a second opposite end of the plate.Type: GrantFiled: June 11, 2008Date of Patent: March 31, 2015Assignee: NagraID S.A.Inventor: François Droz
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Patent number: 8993046Abstract: An image sensor is provided. The image sensor includes a pixel sensor, a color filter array comprising a plurality of color filters formed on the pixel sensor, wherein two adjacent color filters have a gap therebetween, and a gapless microlens array comprising a plurality of microlenses formed on the color filter array. The invention also provides a method for fabricating the image sensor.Type: GrantFiled: October 30, 2012Date of Patent: March 31, 2015Assignee: VisEra Technologies Company LimitedInventor: Po-Shuo Chen
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Patent number: 8993047Abstract: A method of manufacturing a granule coated asphaltic article comprising the steps of applying liquid asphalt to a reinforcing sheet to create an asphaltic sheet, the asphaltic sheet having a top surface and a bottom surface; bending the asphaltic sheet to form an arcuate top surface of the sheet; and applying a coating of granules over the arcuate top surface of the asphaltic sheet.Type: GrantFiled: April 11, 2013Date of Patent: March 31, 2015Assignee: Firestone Building Products Company, LLCInventors: Joseph Standeford, Wensheng Zhou, Lance Black
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Patent number: 8993048Abstract: A method generates an abrasive wear-resistant layer on a substrate. The layer is formed of particles of a ductile material, in particular Zn, wherein the parameters of the cold spraying process are set such that a comparatively loose laminate having pores is formed by the spray particles. The laminate advantageously and surprisingly exhibits high resistance to abrasive wear (for example by a particle) because the layer can avoid the attack by the particle by plastic deformation and closure of the pores, whereby abrasive removal of the layer is advantageously low. The cold gas-sprayed layer is used as a protective layer against abrasive wear.Type: GrantFiled: May 31, 2011Date of Patent: March 31, 2015Assignee: Siemens AktiengesellschaftInventors: Axel Arndt, Christian Doye, Oliver Stier, Raymond Ullrich
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Patent number: 8993049Abstract: A method of forming a surface layer, the surface layer including a first, second and third layer, the method including: forming a first layer including at least 50% by weight of fibers, forming a second layer including at least 50% by weight of wear resistant particles, forming a third layer including at least 50% by weight of particles of a thermosetting binder, and pressing, under heat and pressure, the first, second, and third layers together to combine and mix the fibers of the first layer, the wear resistant particles of the second layer, and the thermosetting binder of the third layer to form the surface layer.Type: GrantFiled: August 8, 2013Date of Patent: March 31, 2015Assignee: Valinge Flooring Technology ABInventor: Darko Pervan
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Patent number: 8993050Abstract: Method of manufacturing granulates or continuous strips intended for feeding an extrusion machine, formed of a gel comprising at least, as majority elastomer, a styrene thermoplastic elastomer and more than 200 phr of an extender oil, each element of the granulate having a given surface area. The granulate element is sized so that the compactness, of a granulate element, is less than a value decreasing from 1500 m?1 to 375 m?1 and deposited on the surface of said granulates is an anti-tack agent having a value increasing from 2 cm3 to 8 cm3 per m2 of granulate surface area, when the mean size of the particles of said anti-tack agent increases from a value of 1 ?m to 100 ?m.Type: GrantFiled: March 8, 2010Date of Patent: March 31, 2015Assignees: Michelin Recherche et Technique S.A., Compagnie Generale des Etablissements MichelinInventors: Vincent Abad, Jean-Marie Mus
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Patent number: 8993051Abstract: A method for covering particles having a diameter of maximally 60 ?m by means of atomic layer deposition, whereby said method comprises the step of fluidizing said particles in a fluidized bed reactor using a first reactant gas comprising a first reactant for substantially completely covering said particles with a monolayer of said first reactant.Type: GrantFiled: December 12, 2007Date of Patent: March 31, 2015Assignee: Technische Universiteit DelftInventors: Erik Maria Kelder, Jan Rudolf Van Ommen, John Nijenhuis
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Patent number: 8993052Abstract: A continuous process for manufacturing a porous material is provided. The process includes the steps of mixing a non-ionic surfactant with a precursor of a carbonaceous material to form a mixture comprising a continuous phase and a liquid crystalline mesophase comprising the non-ionic surfactant, wherein the precursor is essentially located in the continuous phase, coating or depositing the mixture onto a non-woven substrate, drying or heating the mixture, and converting the precursor to form a polymer.Type: GrantFiled: June 30, 2011Date of Patent: March 31, 2015Assignee: Delta Electronics, Inc.Inventors: Chi-Chang Chen, Ying-Da Luo, Bo-Jiun Shen, Hui-Ling Wen, Rong-Chang Liang
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Patent number: 8993053Abstract: There are provided a method of manufacturing a reverse osmosis membrane and a reverse osmosis membrane manufactured thereby. The method includes forming a polysulfone layer by applying a solution including a mixed solvent containing two or more solvents having different solubility parameter values to a surface of a porous support; and forming an active layer on the polysulfone layer.Type: GrantFiled: September 13, 2013Date of Patent: March 31, 2015Assignee: LG Chem, Ltd.Inventors: Seung-Pyo Jeong, Seung-Yup Lee, Phill Lee, Hye-Jin Kwon, Chong-Kyu Shin
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Patent number: 8993054Abstract: Systems and methods of reducing outgassing of a substance within a reaction chamber of a reactor are disclosed. Exemplary methods include depositing a barrier layer within the reaction chamber and using a scavenging precursor to react with species on a surface of the reaction chamber. Exemplary systems include gas-phase deposition systems, such as atomic layer deposition systems, which include a barrier layer source and/or a scavenging precursor source fluidly coupled to a reaction chamber of the system.Type: GrantFiled: July 12, 2013Date of Patent: March 31, 2015Assignee: ASM IP Holding B.V.Inventors: Sung-Hoon Jung, Petri Raisanen, Eric Jen Cheng Liu, Mike Schmotzer
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Patent number: 8993055Abstract: Methods of producing metal-containing thin films with low impurity contents on a substrate by atomic layer deposition (ALD) are provided. The methods preferably comprise contacting a substrate with alternating and sequential pulses of a metal source chemical, a second source chemical and a deposition enhancing agent. The deposition enhancing agent is preferably selected from the group consisting of hydrocarbons, hydrogen, hydrogen plasma, hydrogen radicals, silanes, germanium compounds, nitrogen compounds, and boron compounds. In some embodiments, the deposition-enhancing agent reacts with halide contaminants in the growing thin film, improving film properties.Type: GrantFiled: October 27, 2006Date of Patent: March 31, 2015Assignee: ASM International N.V.Inventors: Antti Rahtu, Eva Tois, Kai-Erik Elers, Wei-Min Li
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Patent number: 8993056Abstract: An improved process and apparatus for uniform gas distribution in chemical vapor deposition (CVD) Siemens type processes is provided. The process comprises introduction of a silicon-bearing gas tangentially to and uniformly along the length of a growing silicon rod in a CVD reactor, resulting in uniform deposition of polysilicon along the rod. The apparatus comprises an improved gas nozzle design and arrangement along the length of the rod, promoting uniform deposition of polysilicon.Type: GrantFiled: December 16, 2010Date of Patent: March 31, 2015Assignee: Savi Research, Inc.Inventors: Vithal Revankar, Sanjeev Lahoti
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Patent number: 8993057Abstract: Silica-dysprosium oxide core-shell nanoparticles and a method for preparing the silica-dysprosium oxide core-shell nanoparticles are disclosed. Initially, ethyl silicate, n-butanol, ethylenediamine, and distilled water are mixed in the presence of ultrasonic radiation to prepare silica nanoparticles. Then, the silica nanoparticles are isolated. Next, the isolated silica nanoparticles, an acid, n-butanol, and dysprosium oxide are mixed in the presence of ultrasonic radiation to prepare silica-dysprosium oxide core-shell nanoparticles. Finally, the silica-dysprosium oxide core-shell nanoparticles are isolated.Type: GrantFiled: October 22, 2011Date of Patent: March 31, 2015Inventors: Masoud Salavati-Niasari, Fatemeh Davar, Morteza Enhessari, Mohammad Javad Esfahani
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Patent number: 8993058Abstract: Described are apparatus and methods for forming tantalum silicate layers on germanium or III-V materials. Such tantalum silicate layers may have Si/(Ta+Si) atomic ratios from about 0.01 to about 0.15. The tantalum silicate layers may be formed by atomic layer deposition of silicon oxide and tantalum oxide, followed by interdiffusion of the silicon oxide and tantalum oxide layers.Type: GrantFiled: August 27, 2013Date of Patent: March 31, 2015Assignee: Applied Materials, Inc.Inventors: Jeffrey W. Anthis, Khaled Z. Ahmed
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Patent number: 8993059Abstract: Methods of forming patterned coatings are disclosed. The methods include the steps of disposing a composition onto a substrate to form a liquid coating on the substrate and providing or removing energy through a first pattern of areas on the coated film to form a morphologically patterned coating, the morphological pattern corresponding to the first pattern of areas.Type: GrantFiled: February 14, 2006Date of Patent: March 31, 2015Assignee: 3M Innovative Properties, CompanyInventors: Peter E. Price, William B. Kolb, Mikhail L. Pekurovsky, Steven D. Solomonson, Mitchell A. F. Johnson
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Patent number: 8993060Abstract: A method includes: providing a substrate having a plurality of chemically contrasted alignment features, and depositing a self-assembled material on at least a portion of the substrate, wherein the position and/or orientation of substantially spherical or cylindrical domains of the self-assembled material is directed by the alignment features, to form a nanostructure pattern, and wherein the period of the alignment features is between about 2 times and about 10 times the period of the spherical or cylindrical domains. An apparatus fabricated according to the method is also provided.Type: GrantFiled: November 19, 2008Date of Patent: March 31, 2015Assignee: Seagate Technology LLCInventors: Shuaigang Xiao, Xiaomin Yang
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Patent number: 8993061Abstract: Methods and systems are disclosed for three-dimensional printing directly onto an article of apparel. Disclosed is a method and system for direct three-dimensional printing onto an article of apparel, including designing a three-dimensional pattern for printing onto the article, positioning at least a portion of the article on a tray in a three-dimensional printing system, the portion being positioned substantially flat on the tray, printing a three-dimensional material directly onto the article using the designed pattern, curing the printed material, and removing the article from the three-dimensional printing system.Type: GrantFiled: July 19, 2012Date of Patent: March 31, 2015Assignee: NIKE, Inc.Inventors: David P. Jones, Ryan R. Larson
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Patent number: 8993062Abstract: Methods for making and using phenol/formaldehyde/furfural-based resins and furfural alcohol-based resins and are provided. The method for making a phenol/formaldehyde/furfural-based resin can include combining a phenol/formaldehyde-based resin with furfural to produce a phenol/formaldehyde/furfural-based resin. The phenol/formaldehyde/furfural-based resin can have a viscosity of about 1 cP to about 1,000 cP at a temperature of about 25° C.Type: GrantFiled: April 10, 2013Date of Patent: March 31, 2015Assignee: Georgia-Pacific Chemicals LLCInventors: Kim Tutin, Benjamin D. Gapud
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Patent number: 8993063Abstract: An ambient pressure Atomic Layer Deposition (ALD) technique to grow uniform silica layers onto organic substrates at low temperatures, including room temperature, is described. For example, tetramethoxysilane vapor is used alternately with ammonia vapor as a catalyst in an ambient environment.Type: GrantFiled: June 8, 2011Date of Patent: March 31, 2015Assignee: President and Fellows of Harvard CollegeInventors: Joanna Aizenberg, Benjamin Hatton
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Patent number: 8993064Abstract: Provided are a substrate for a superconducting compound and a method for manufacturing the substrate which can realize the excellent adhesive strength simultaneously with high orientation of copper. An absorbed material on a surface of a copper foil to which rolling is applied at a draft of 90% or more is removed by applying sputter etching to the surface of the copper foil, sputter etching is applied to a nonmagnetic metal sheet, the copper foil and the metal sheet are bonded to each other by applying a pressure to the copper foil and the metal sheet using reduction rolls, crystals of the copper in the copper foil are oriented by heating a laminated body formed by such bonding, copper is diffused into the metal sheet by heating with a copper diffusion distance of 10 nm or more, and a protective layer is laminated to a surface of the copper foil of the laminated body.Type: GrantFiled: November 12, 2010Date of Patent: March 31, 2015Assignees: Toyo Kohan Co., Ltd., Sumitomo Electric Industries, Ltd.Inventors: Hironao Okayama, Kouji Nanbu, Akira Kaneko, Hajime Ota, Kotaro Ohki, Takashi Yamaguchi, Kazuhiko Hayashi, Kazuya Ohmatsu
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Patent number: 8993065Abstract: The present invention relates to a method of making a coated substrate, and products therefrom, using a coating possessing a nanoparticle having a shell containing a hydrophilic nitrogen containing compound and a vinylic polymer having quaternary ammonium compounds, and a core made of at least a hydrophobic vinylic polymer, wherein such coated substrate exhibits antibacterial properties without the use of harmful organic preservatives.Type: GrantFiled: February 2, 2007Date of Patent: March 31, 2015Assignee: The Hong Kong Polytechnic UniversityInventors: Pei Li, Yong Jin
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Patent number: 8993066Abstract: The disclosure provides a polyurethane microcapsule consisting of a polymerization product of methylene diphenyl diisocyanate (MDI) prepolymer with a polyol, the polyurethane microcapsule comprising a liquid isocyanate compound encapsulated within the microcapsule. The disclosure also provides self-healing coating compositions comprising such polymeric microcapsules and methods of preventing or slowing corrosion using such coating compositions.Type: GrantFiled: January 31, 2013Date of Patent: March 31, 2015Assignee: Nanyang Technological UniversityInventors: Jinglei Yang, Mingxing Huang
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Patent number: 8993067Abstract: Described are 8 aqueous compositions useful for treating textile materials to impart oil- and/or water-repellent properties thereto. The compositions contain inter alia polymers containing perfluoroalkyl groups (RF groups), wherein 55 to 100% of the RF groups contain 6 carbon atoms.Type: GrantFiled: August 21, 2014Date of Patent: March 31, 2015Assignee: Huntsman Textile Effects (Germany) GmbHInventors: Andreas Fuchs, Isabella Rettenbacher, Rolf Moors, Walter Nassl, Jurgen Arnold
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Patent number: 8993068Abstract: In one aspect, the present invention is directed to methods for modification of functionalized substrates. In another aspect, the invention relates to systems and methods for fabricating multilayer polymer compositions. In certain embodiments, the multilayer polymer compositions described herein can comprise heterobifunctional polymers and heterotrifunctional molecules.Type: GrantFiled: November 4, 2009Date of Patent: March 31, 2015Assignee: The Trustees of Columbia University in the City of New YorkInventors: Jeffrey T. Koberstein, Hernan R. Rengifo, Cristian Grigoras, Jeffrey Lancaster
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Patent number: 8993069Abstract: The invention relates to a method for applying an adhesive (2) to a substrate (3) by means of an intaglio printing plate, wherein the adhesive (2) is applied to the substrate (3) only in predefined areas using two rotating rollers, of which one is designed as a plate cylinder (5) and one is designed as an impression cylinder (6), wherein the plate cylinder (5) and the impression cylinder (6) rotate together in the transport direction of the substrate (3), wherein the adhesive (2) is applied by means of at least one recess (8) formed on the surface of the plate cylinder (5), the at least one recess having a larger depth in a front section (16) than in a rear section (17) with respect to the direction of rotation of the plate cylinder (5).Type: GrantFiled: December 23, 2010Date of Patent: March 31, 2015Assignee: Tannpapier GmbHInventors: Dirk Hullmann, Dieter Jeske, Daniel Starke
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Patent number: 8993070Abstract: A method includes applying a first powder to an aluminum article and heating the first powder to form a first layer on the aluminum article providing mechanical strength, corrosion durability and bonding potential. The method also includes applying a second powder to the aluminum article and heating the second powder to form a second layer on the aluminum article protecting the aluminum article from ultraviolet radiation. A coated article includes an aluminum substrate, an epoxy layer and a topcoat layer. The epoxy layer promotes adhesion, enhances corrosion durability and provides mechanical strength, and is formed by applying a first powder containing an epoxy to the aluminum substrate and curing the first powder. The topcoat layer provides resistance to ultraviolet radiation and environmental contaminants, and is formed by applying a second powder to the aluminum substrate and curing the second powder.Type: GrantFiled: September 16, 2010Date of Patent: March 31, 2015Assignee: Carrier CorporationInventors: Mark R. Jaworowski, Michael F. Taras
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Patent number: 8993071Abstract: Embodiments of the present invention provide a manufacturing method that can form a track guide separation area of a magnetic disk substrate constituting a patterned medium represented by a discrete track medium or bit patterned medium suitable for high recording density, uniformly on the whole surface of the magnetic disk substrate, and accurately according to the mask. According to one embodiment, a soft magnetic film, an under coating film, and a magnetic film are formed on a substrate. A mask having an arbitrary pattern shape provided for forming the track guide separation area in the magnetic film is formed on the magnetic film, and the track guide separation area is formed by irradiating ions and electrons onto the surface of the magnetic film and applying an intermittent voltage to the substrate, thereby non-magnetizing the area irradiated.Type: GrantFiled: October 20, 2008Date of Patent: March 31, 2015Assignee: HGST Netherlands B.V.Inventors: Hiroshi Inaba, Hiroshi Kanai, Nobuto Yasui, Toshinori Ono
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Patent number: 8993072Abstract: Described herein are precursors and methods of forming films. In one aspect, there is provided a precursor having Formula I: XmR1nHpSi(NR2R3)4-m-n-p??I wherein X is selected from Cl, Br, I; R1 is selected from linear or branched C1-C10 alkyl group, a C2-C12 alkenyl group, a C2-C12 alkynyl group, a C4-C10 cyclic alkyl, and a C6-C10 aryl group; R2 is selected from a linear or branched C1-C10 alkyl, a C3-C12 alkenyl group, a C3-C12 alkynyl group, a C4-C10 cyclic alkyl group, and a C6-C10 aryl group; R3 is selected from a branched C3-C10 alkyl group, a C3-C12 alkenyl group, a C3-C12 alkynyl group, a C4-C10 cyclic alkyl group, and a C6-C10 aryl group; m is 1 or 2; n is 0, 1, or 2; p is 0, 1 or 2; and m+n+p is less than 4, wherein R2 and R3 are linked or not linked to form a ring.Type: GrantFiled: September 18, 2012Date of Patent: March 31, 2015Assignee: Air Products and Chemicals, Inc.Inventors: Manchao Xiao, Xinjian Lei, Mark Leonard O'Neill, Bing Han, Ronald Martin Pearlstein, Haripin Chandra, Heather Regina Bowen, Agnes Derecskei-Kovacs
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Patent number: 8993073Abstract: An embodiment of the invention relates to a perpendicular magnetic recording medium comprising (1) a substrate, (2) an interlayer comprising hexagonal columns and (3) a magnetic layer, wherein the magnetic layer is deposited applying a bias voltage to the substrate such that the magnetic layer comprises magnetic grains having substantially no sub-grains within the magnetic layer, and the magnetic layer has perpendicular magnetic anisotropy.Type: GrantFiled: July 14, 2008Date of Patent: March 31, 2015Assignee: Seagate Technology LLCInventors: Weilu Xu, Miaogen Lu, Mariana R. Munteanu, Michael Z. Wu, Shanghsien Alex Rou, Steve Kuo-Hsing Hwang, Ed Yen
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Patent number: 8993074Abstract: There is provided a liquid crystal display device including a liquid crystal display element including a first alignment film and a second alignment film provided on opposing surfaces of a pair of substrates, and a liquid crystal layer arranged between the first alignment film and the second alignment film and including crystal molecules having negative dielectric constant anisotropy. At least the first alignment film includes a compound in which a polymer compound having a first side chain and a second side chain is crosslinked or polymerized. The first side chain has a crosslinkable functional group or a polymerizable functional group. The second side chain has a structure inducing dielectric anisotropy. The liquid crystal molecules are pretilted by the first alignment film.Type: GrantFiled: March 26, 2013Date of Patent: March 31, 2015Assignee: Sony CorporationInventors: Masashi Miyakawa, Shunichi Suwa, Tadaaki Isozaki
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Patent number: 8993075Abstract: A stretched film comprised of a “B1” layer comprised of a thermoplastic resin 1, an “A” layer comprised of a styrene-based resin, and a “B2” layer comprised of a thermoplastic resin 2 stacked in that order and having a width of over 1000 mm, wherein a ratio of the “A” layer in the stretched film is 45 wt % or less, an average value of an orientation angle ? with respect to a width direction across at least 1000 mm of the width direction is 0°±1°, a variation in orientation angle ? is 0.5° or less, and a value of an Nz coefficient is ?3.5 to ?0.5 in range.Type: GrantFiled: November 12, 2008Date of Patent: March 31, 2015Assignee: Zeon CorporationInventor: Tadashi Takizawa