Patents Issued in December 13, 2016
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Patent number: 9518178Abstract: The invention pertains to a process for cryogenic milling mixtures of (per)fluoroelastomers and semicrystalline thermoplastic VDF polymers, and to free-flowing micronized pellets obtainable therefrom, said micronized pellets advantageously yielding, after extrusion and compounding, excellent mechanical properties, even improved over those of base fluoroelastomer matrix.Type: GrantFiled: August 9, 2012Date of Patent: December 13, 2016Assignee: SOLVAY SPECIALTY POLYMERS ITALY S.P.A.Inventors: Liubov Chernysheva, Giovanni Comino, Giulio Brinati
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Patent number: 9518179Abstract: The disclosure relates to a modifier composition for polyolefin, a polyolefin for packaging and a flexible packaging film. The disclosure relates to a modifier composition for polyolefin, including: (A) nano-silicon dioxide; (B) polyvinyl alcohol; (C) acrylic copolymer; and (D) Ethylene-Vinyl Acetate (EVA) copolymer. The disclosure also relates to a polyolefin for packaging, including: a polyolefin resin and a modifier composition of the polyolefin provided by the disclosure. The disclosure also relates to a flexible packaging film, of which at least a part is made of the polyolefin for packaging of the disclosure. The modifier composition of the disclosure can obviously improve the performance in the aspect of reducing residue of solvent in the polyolefin flexible packaging film.Type: GrantFiled: April 14, 2011Date of Patent: December 13, 2016Assignee: Beijing Institute of Graphic CommunicationInventors: Wencai Xu, Dongli Li, Yabo Fu
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Patent number: 9518180Abstract: The present invention relates to an absorbent suitable for use in a thin sanitary material/absorbent article having a high absorbent content and not prone to gel blocking, the absorbent having excellent liquid diffusibility (e.g. SFC) and minimal decrease in absorption ratio under pressure (e.g., AAP or PUP) even when a liquid permeation enhancer is added, and to a method for manufacturing the high-performance absorbent stably during actual production. The method is a method for manufacturing a polyacrylic acid (salt)-based absorbent, having a surface-crosslinking agent addition step for adding a solution of a surface-crosslinking agent, and a liquid permeation enhancer addition step for adding a liquid permeation enhancer, the liquid permeation enhancer addition step being performed after and/or at the same time as the surface-crosslinking agent addition step, the method characterized in that a surface crosslinking step for performing heat treatment in an atmosphere having a dew point of 45° C. to 100° C.Type: GrantFiled: August 20, 2013Date of Patent: December 13, 2016Assignee: NIPPON SHOKUBAI CO., LTD.Inventors: Kazuki Kimura, Yusuke Watanabe, Sayaka Machida, Taku Fujimoto, Kenji Kadonaga
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Patent number: 9518181Abstract: A thermoplastic composition that contains a rigid renewable polyester and has a voided structure and low density is provided. To achieve such a structure, the renewable polyester is blended with a polymeric toughening additive to form a precursor material in which the toughening additive can be dispersed as discrete physical domains within a continuous matrix of the renewable polyester. The precursor material is thereafter stretched or drawn at a temperature below the glass transition temperature of the polyester (i.e., “cold drawn”). This creates a network of voids located adjacent to the discrete domains, which as a result of their proximal location, can form a bridge between the boundaries of the voids and act as internal structural “hinges” that help stabilize the network and increase its ability to dissipate energy. The present inventors have also discovered that the voids can be distributed in a substantially homogeneous fashion throughout the composition.Type: GrantFiled: April 24, 2015Date of Patent: December 13, 2016Assignee: Kimberly-Clark Worldwide, Inc.Inventors: Neil T. Scholl, Ryan J. McEneany, Thomas A. Eby, Vasily A. Topolkaraev
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Patent number: 9518182Abstract: There is described a polysiloxane having the structure: wherein R1, R2, and R3 are independently a hydrocarbon radical, an unsaturated radical, an alkoxy radical, an aryl radical or an alkenyloxy radical, R4 is independently a direct bond or hydrocarbon radical optionally substituted with oxygen and nitrogen, R5 is independently a hydrogen, a halogen, an aliphatic group having from 1 to 6 carbon atoms, an aromatic group having 6 to 8 carbon atoms, an alkoxy group having from 1 to 6 carbon atoms, or an aryloxy group, R6 is independently a hydroxyl group, an amine group, an acid chloride group, or a sulfonyl halide group, x is from 1 to 300; y is from 0 to 50; and z is from 0 to 50. The polysiloxane is used to make various copolymers and polymer blends. A variety of articles can be made using the polysiloxane described as a polymer blend or copolymer.Type: GrantFiled: July 2, 2015Date of Patent: December 13, 2016Assignee: Momentive Performance Materials, Inc.Inventors: Narayana Padmanabha Iyer, Indumathi Ramakrishnan, Anuj Mittal, Roy Rojas-Wahl, Samim Alam
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Patent number: 9518183Abstract: A system and method for filling pot holes. The system includes transferring aggregate from an aggregate tank. Activator is likewise transferred from an activator tank. The activator is mixed with the aggregate to form a homogenized mixture. A liquid is introduced into a homogenized mixture to form a slurry and then a pot hole filler. The pot hole filler is directed through an exit end of a mixing tube.Type: GrantFiled: July 29, 2015Date of Patent: December 13, 2016Inventor: Gregory Cole
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Patent number: 9518184Abstract: Bitumen may be prepared by obtaining an inflection point value for a mixed bitumen product stream sample, and modifying the mixed bitumen product stream when the inflection point value occurs at a ratio of less than about 2 mL of added non-solvent per 1 gram of the mixed bitumen product stream sample. The inflection point value may correlate to the stability of the mixed bitumen product stream based on the amount of added non-solvent. The mixed bitumen product stream may have or include at least two bitumen feed streams.Type: GrantFiled: January 14, 2015Date of Patent: December 13, 2016Assignee: Baker Hughes IncorporatedInventors: Joseph L. Stark, Ben Morgan, Jennifer D. Draper
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Patent number: 9518185Abstract: Disclosed herein are adhesives, wood-based composites incorporating the adhesives, and methods of forming wood-based composites using the adhesives. In some embodiments, an adhesive emulsion includes a continuous phase having an aqueous, alkaline solution that includes a melamine/urea/formaldehyde (“MUF”) resin, and a dispersed phase that includes a multifunctional aromatic isocyanate component. The solution including the MUF resin has a percent solids content of about 1.0% to about 90.0%, and the MUF resin and the multifunctional aromatic isocyanate component are present in a ratio of about 92:8 to about 40:60 on a solids mass basis. Wood-based composites formed using the adhesives demonstrate an optimal combination of characteristics desirable to the wood products industry.Type: GrantFiled: July 23, 2014Date of Patent: December 13, 2016Assignee: Weyerhaeuser NR CompanyInventors: Jack G. Winterowd, Erik M. Parker
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Patent number: 9518186Abstract: The present application discloses a luminescent lanthanide chelate comprising one or more chromophoric moieties of the formula (I) or of the formula (III) wherein R1, R2 and R2* each independently are selected from carbon-containing substituents forming a C—O bond with the neighbouring oxygen atom, R3 and R4 each represent a bond between the chromophoric moiety and other moieties of the chelate, and Ln3+ is a lanthanide ion, as well as the corresponding luminescence lanthanide chelating ligand. The application also discloses a detectable molecule comprising a biospecific binding reactant (such as an antibody) conjugated to the luminescent lanthanide chelate as well as a method of carrying out a biospecific binding assay, the use of such a detectable molecule in a specific bioaffinity based binding assay utilizing time-resolved fluorometric determination of a specific luminescence, and a solid support material conjugated with the luminescent lanthanide chelate.Type: GrantFiled: December 21, 2012Date of Patent: December 13, 2016Assignee: Radiometer Turku OYInventors: Niko Meltola, Harri Takalo, Henri Sund
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Patent number: 9518187Abstract: The present invention relates to a process for producing high-gloss surfaces on at least one portion of a substrate area, where the steps comprise (a) applying a layer made of a melt to at least one portion of the substrate area; (b) polishing of the applied layer of melt; (c) applying at least one lacquer layer to the polished layer of melt by means of a curtain-coating process; and (d) hardening the layer structure applied. The invention further relates to articles obtainable by this type of process.Type: GrantFiled: December 19, 2011Date of Patent: December 13, 2016Assignee: KLEBCHEMIE M. G. BECKER GMBH & CO. KGInventors: Klaus Becker-Weimann, Jens Fandrey
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Patent number: 9518188Abstract: A method of printing articles having variable conductivities, including those having conductivity gradients.Type: GrantFiled: November 15, 2011Date of Patent: December 13, 2016Inventors: John S. Lettow, Christy Martin, Dan Scheffer
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Patent number: 9518189Abstract: The present invention is directed to alternate solvent systems for polyethersulfone, polyamideimide, polyether imide, polyimide, and/or polyamic acid binder solutions. The present invention provides stable binder solutions equivalent or superior to current binder solvent solutions.Type: GrantFiled: January 9, 2013Date of Patent: December 13, 2016Assignee: THE CHEMOURS COMPANY FC, LLCInventor: Richard Alan Reynolds
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Patent number: 9518190Abstract: To provide an inkjet ink, which contains: water; a wetting agent; a surfactant; and a colorant, wherein the wetting agent contains at least an amide compound represented by the following structural formula (I):Type: GrantFiled: June 15, 2015Date of Patent: December 13, 2016Assignee: Ricoh Company, Ltd.Inventors: Hiroshi Gotou, Kiyofumi Nagai, Michihiko Namba, Hidetoshi Fujii, Yuuki Yokohama
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Patent number: 9518191Abstract: A water-dispersed coating composition comprising an amino resin, and a dispersion of latex polymer particles comprising from 0.1 to 2 weight percent of a multi-ethylenically unsaturated monomer and from 0.1 to 2 weight percent of (meth)acrylamide.Type: GrantFiled: December 12, 2008Date of Patent: December 13, 2016Assignee: Rohm and Haas CompanyInventors: Maureen Joanne Finley, Michael DeWayne Kelly
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Patent number: 9518192Abstract: The present invention relates to a process comprising the steps of a) contacting an aqueous dispersion of a TiO2 slurry containing adsorbing dispersant with an adsorbing latex to form a mixture, wherein the pH of the mixture of the TiO2 slurry and adsorbing latex are sufficiently high to inhibit interaction between the TiO2 and the adsorbing latex; then b) lowering the pH of the mixture of step a) sufficiently to promote interaction between the TiO2 and the adsorbing latex, thereby forming a composite. The process of the present invention provides for improved hiding and reduced grit for coatings compositions.Type: GrantFiled: July 5, 2011Date of Patent: December 13, 2016Assignee: Rohm and Haas CompanyInventors: James C. Bohling, Deborah G. Fradkin, Wei Gao, John W. Hook, III, Tao Wang, Tao Wang
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Patent number: 9518193Abstract: A method is provided for forming a composite coating on a substrate comprising: (A) applying a first coating composition to a surface of the substrate; and (B) applying a second coating composition to the first coating prior to substantially heating or curing the first coating. The first and/or second coating composition is a waterborne curable film-forming composition comprising: (a) an aqueous dispersion of internally crosslinked polymeric microparticles having a core-shell morphology and having reactive functional groups; and (b) a crosslinking agent. The core of the polymeric microparticles is prepared from a monomer mixture comprising at least 20 percent by weight of a monomer having the structure: wherein X is N or O; R is a linear or branched alkyl group having 1 to 18 carbon atoms, or R is bonded to X to form a 5- to 7-member ring.Type: GrantFiled: January 27, 2014Date of Patent: December 13, 2016Assignee: PPG Industries Ohio, Inc.Inventors: Shanti Swarup, Kurt G Olson, John E Schwendeman, Leigh Ann Humbert, Kelly E Lutz, Carol Lynn Boggs
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Patent number: 9518194Abstract: Arylcyclobutene polymers having improved toughness are provided. Compositions and methods for coating arylcyclobutene polymers having improved toughness are also provided.Type: GrantFiled: February 29, 2016Date of Patent: December 13, 2016Assignees: Dow Global Technologies LLC, Rohm and Haas Electronic Materials LLCInventors: Zhifeng Bai, Michael K. Gallagher, Zidong Wang, Christopher J. Tucker, Matthew T. Bishop, Elissei Iagodkine, Mark S. Oliver
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Patent number: 9518195Abstract: A biaxially stretched polyester film, being a biaxially stretched film including a modified polybutylene terephthalate (modified PBT) and polyethylene terephthalate (PET), wherein a mass ratio (modified PBT/PET) between the modified PBT and PET is 20/80 to 5/95, the modified PBT is a PBT containing 5 to 20% by mass of a polytetramethylene glycol unit having a molecular weight of 600 to 4,000, the amount of tetrahydrofuran (THF) generated by heat treating the biaxially stretched film in a helium gas atmosphere at 180° C. for 30 minutes is 50 ?g/g or less, and the biaxially stretched film has tear linearity in a lengthwise direction thereof.Type: GrantFiled: September 3, 2012Date of Patent: December 13, 2016Assignee: UNITIKA LTD.Inventors: Takayoshi Okuzu, Tomoharu Suzuki
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Patent number: 9518196Abstract: Provided herein are coating compositions comprising the reaction product of a tetra alkyoxyorthosilicate or a partially condensed oligomer thereof and a polyester resin containing hydroxyl groups. The coating compositions advantageously have a high solid content and/or low volatile organic content (VOC) in combination with a low viscosity. The coating compositions are capable of drying quickly, curing in ambient conditions and may be formulated in one-pack.Type: GrantFiled: December 30, 2013Date of Patent: December 13, 2016Assignee: Akzo Nobel Coatings International B.V.Inventors: Steven Alister Nixon, Susan Pritchard, Sarah Donnely
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Patent number: 9518197Abstract: Cure-on-demand, moisture-curable, urethane-containing prepolymers having urethanes incorporated into a sulfur-containing prepolymer backbone and compositions thereof for use in sealant applications are disclosed. The cure-on-demand moisture-curable urethane-containing prepolymers are terminated with polyalkoxysilyl groups. The compositions contain a controlled-release moisture cure catalyst. Compositions containing the prepolymers provide cured sealants exhibiting improved tensile strength.Type: GrantFiled: December 10, 2015Date of Patent: December 13, 2016Assignee: PRC-DeSoto International, Inc.Inventors: Raquel Keledjian, Renhe Lin
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Patent number: 9518198Abstract: A binder composition comprising a partially pre-oxidized drying oil and at least one co-vulcanizing agent. A method provides rapid curing of the compositions. The materials find utility in flooring, coating, and decorating applications. One preferred utility is in the manufacture of linoleum type flooring. Another preferred utility is in the manufacture of a transparent/translucent coating for improving the wear properties of surfaces.Type: GrantFiled: July 11, 2016Date of Patent: December 13, 2016Inventors: William J. Kauffman, Walter J. Lewicki, Jr.
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Patent number: 9518199Abstract: Described is a pressure-sensitive adhesive (PSA) polymer formed from (i) 50%-95% by weight of n-butyl acrylate, (ii) 1%-20% by weight of ethyl acrylate, (iii) 1%-20% by weight of vinyl acetate, (iv) 0.1%-5% by weight of at least one ethylenically unsaturated acid or ethylenically unsaturated acid anhydride, and (v) 0% to 30% by weight of other ethylenically unsaturated compounds different from the monomers (i) to (iv). The PSA polymer can be used for producing self-adhesive articles, more particularly paper labels or film labels.Type: GrantFiled: October 28, 2010Date of Patent: December 13, 2016Assignee: BASF SEInventors: Matthias Gerst, Gerhard Auchter, Cornelis Petrus Beyers
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Patent number: 9518200Abstract: A curable resin composition that is adhesive and transparent. The curable resin composition comprises (1) a polymerizable vinyl monomer, (2) a curing agent, (3) a reducing agent, and (4) an acrylic block copolymer having a structure represented by formula (1): [a1]-[b]-[a2]??(1) wherein [a1] and [a2] each independently represents a polymer block which consists mainly of structural units derived from an alkyl acrylate and/or an alkyl methacrylate and has a glass transition temperature of 90° C. or higher, and [b] represents a polymer block which consists mainly of structural units derived from an alkyl acrylate and/or an alkyl methacrylate and has a glass transition temperature of ?10° C. or lower, the copolymer satisfying the relationship (total mass of [a1] and [a2]/(mass of [b])=5/95 to 80/20.Type: GrantFiled: April 30, 2010Date of Patent: December 13, 2016Assignee: Denka Company LimitedInventors: Hayato Miyazaki, Jun Watanabe, Hiroshi Suto
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Patent number: 9518201Abstract: The present invention involves an adhesive composition and a method for its-use, especially by consumers, for fastening various articles, for example for the purposes of fitting out or decorating dwellings.Type: GrantFiled: December 18, 2009Date of Patent: December 13, 2016Assignee: Bostik S.A.Inventors: Virginie Cagan, Karen Blachere, Patrick Michel Mas, Fabrice Herblot
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Patent number: 9518202Abstract: Heat-curable adhesive composition: 47-60% of polyether/polyurethane bearing alkoxysilane end groups and polyurethanes bearing alkoxysilane end groups of formula (II): in which: R6 is a divalent C5-C15 hydrocarbon-based radical; R7 is a divalent C1-C3 alkylene radical; R8 and R9 are a C1-C4 alkyl; q is 0, 1 or 2; r is such that the number-average molar mass of the polymers of formula (II) is between 900 Da and 11 kDa; R10 is a divalent polyester block with a hydroxyl number IOH of between 40 and 60 mg KOH/g; 37-50% of a compatible tackifying resin; and 0.01-3% of a crosslinking catalyst.Type: GrantFiled: October 24, 2014Date of Patent: December 13, 2016Assignee: BOSTIK S.A.Inventors: Olivier Laferte, Stéphane Fouquay
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Patent number: 9518203Abstract: The invention provides novel compounds that are non-adhesive and used to coat rubber surfaces for improved traction. An embodiment of the invention provides non-adhesive coating compositions that improve the traction of rubber surfaces. Another embodiment of the invention provides rubber surfaces with improved traction. Still another embodiment of the invention provides methods of improving the traction of rubber surfaces. The non-adhesive coating compositions comprise a terpene and/or an essential oil, a staying agent, and a cleaning carrier.Type: GrantFiled: June 4, 2014Date of Patent: December 13, 2016Assignee: PI Extreme, Inc.Inventors: Wesley E. Weinreich, Michael R. Applebee
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Patent number: 9518204Abstract: The present invention provides a highly stable HFO refrigerant composition for use in a vapor compression-type refrigeration system, having improved slidability for the sliding portions of the vapor compression-type refrigeration system. More specifically, the present invention provides an HFO refrigerant composition comprising at least one type of HFO refrigerant and a polymer of halogenated propene represented by C3HaFbClc (provided that a+b+c=6, a=an integer of 1 to 3, b=an integer of 3 to 5, and c=an integer of 0 to 1) that is an oligomer having a molecular weight of 200 to 900.Type: GrantFiled: February 2, 2015Date of Patent: December 13, 2016Assignee: DAIKIN INDUSTRIES, LTD.Inventors: Tatsumi Tsuchiya, Takashi Shibanuma
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Patent number: 9518205Abstract: The present invention is an unsaturated polyester resin composition comprising an unsaturated polyester (a), a monomer (b) having one polymerizable carbon-carbon double bond, a monomer (c) having two or more of (meth)acrylate groups, a filler (d) having high thermal conductivity, a glass fiber (e), a low profile additive (f), a curing agent (g), and a polymerization inhibitor (h), wherein the ratio by weight of the ingredient (b) to the ingredient (c) is from 50:50 to 75:25 and the unsaturated polyester resin composition comprises 400 to 1400 parts by weight of the ingredient (d) based on the total 100 parts by weight of the ingredients (a), (b), and (c). This unsaturated polyester resin composition has excellent curing properties without losing storage stability which can be used to provide a cured product having a low mold shrinkage ratio and high thermal conductivity.Type: GrantFiled: December 13, 2012Date of Patent: December 13, 2016Assignees: SHOWA DENKO K.K., TOYOTA JIDOSHA KABUSHIKI KAISHAInventors: Shotaro Itami, Masashige Tanaka, Hiroyuki Majima, Ryujin Ishiuchi, Hiroaki Sugita
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Patent number: 9518206Abstract: An invert emulsion treatment fluid comprises: (A) an external phase, wherein the external phase comprises a hydrocarbon liquid; (B) an internal phase, wherein the internal phase comprises a hygroscopic liquid; (C) a suspending agent, wherein the suspending agent is a polymer, and wherein the polymer comprises urea linkages; and (D) a particulate, wherein the particulate has a density less than 3.5 g/cm3, wherein a test fluid consisting essentially of the external phase, the internal phase, the suspending agent, and the particulate, and in the same proportions as the treatment fluid, and after static aging for 2 months at a temperature of 200° F. (93.3° C.), has a 10 minute gel strength of at least 30 lb/100 ft2 (1,436 Pa) at a temperature of 120° F. (48.9° C.). A method of using the invert emulsion treatment fluid comprises: introducing the treatment fluid into a portion of a subterranean formation.Type: GrantFiled: August 2, 2014Date of Patent: December 13, 2016Assignee: Halliburton Energy Services, Inc.Inventors: Shadaab S. Maghrabi, Vikrant B. Wagle, Dhanashree G. Kulkarni
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Patent number: 9518207Abstract: A method of servicing a wellbore comprising placing a wellbore servicing fluid comprising a modified friction reducer into the wellbore. A modified friction reducer comprising a degradable polymer having functional degradable moieties, a polymer having a molecular weight of from about 5M to about 30M, a polymer having a PDI of from about 1.0 to about 2.5, a weakly crosslinked polymer, or combinations thereof.Type: GrantFiled: June 29, 2012Date of Patent: December 13, 2016Assignee: Halliburton Energy Services, Inc.Inventors: James William Ogle, Xiangnan Ye, Pinmanee Boontheung, Rajesh Kumar Saini, Narongsak Tonmukayakul
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Patent number: 9518208Abstract: The gelling agent for water shut-off in oil and gas wells is a composition that forms a gel to reduce or eliminate the flow of water in a gas or oil well. The composition is formed by mixing polyvinyl alcohol, a polyvinyl alcohol copolymer, or mixtures thereof with an amino-aldehyde oligomer, such as urea formaldehyde or melamine formaldehyde, with or without a cross-linker. The polymer composition can be used to minimize or completely shut off excess water production with insignificant reduction in hydrocarbon productivity.Type: GrantFiled: March 16, 2015Date of Patent: December 13, 2016Inventor: Shawqui M. Lahalih
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Patent number: 9518209Abstract: Gellable treatment fluids containing an amps-acrylamide bipolymer and a suitable surfactant can be used in various subterranean operations where it is necessary for the treatment fluid to remain in a gelled state for extended periods of time at high formation temperatures. The gellable treatment fluids are thermally-stable, solids-free self-degrading treatment fluid compositions useful in fluid loss pill, kill pill, perforation pill and other gel treatment applications.Type: GrantFiled: September 3, 2013Date of Patent: December 13, 2016Assignee: Halliburton Energy Services, Inc.Inventor: Pubudu H Gamage
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Patent number: 9518210Abstract: A method of servicing a wellbore in a subterranean formation comprising placing a first stream comprising a dilute solution of a metal acrylate into a lost circulation zone in the subterranean formation; placing a second stream comprising an activator into the lost circulation zone; and forming a lost circulation material upon contacting of the metal acrylate and the activator, wherein the lost circulation material forms in from about 0 to about 60 minutes. A method of servicing a wellbore in a subterranean formation comprising placing a composition comprising a dilute solution of a cross-linkable material and an encapsulated activator into a lost circulation zone in the subterranean formation; and allowing the composition to set.Type: GrantFiled: April 30, 2012Date of Patent: December 13, 2016Assignee: Halliburton Energy Services, Inc.Inventors: Ryan G. Ezell, B. Raghava Reddy
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Patent number: 9518211Abstract: The present invention relates to a process for recovering oil from a subterranean formation by injecting both solid particles and water into the formation. An oil-in-water emulsion that is stabilized by solid particles is formed in the pores of the formation. This emulsion is recovered from the subterranean formation.Type: GrantFiled: January 15, 2014Date of Patent: December 13, 2016Assignees: BASF SE, Wintershall Holding GmbHInventors: Riichiro Kimura, Stefan Maurer, Andrei-Nicolae Parvulescu, Lorenz Siggel, Ulrich Müller, Thomas Frechen, Bernd Hinrichsen
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Patent number: 9518212Abstract: Liquid hydrocarbons are gelled by the introduction of a phosphate ester and a crosslinking agent for use in oil recovery. Generally a proppant, delayed gel breaker and other modifiers are added to the gelled hydrocarbon to improve the oil recovery process. The phosphate ester used in this method and composition for oil recovery has low volatility and good stability during hydrocarbon distillation resulting in improved distillation efficiency in a refinery.Type: GrantFiled: February 18, 2013Date of Patent: December 13, 2016Assignee: Ethox Chemicals, LLCInventors: Emil Delgado, Bradley Keown
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Patent number: 9518213Abstract: A nano-dispersion well servicing fluid is disclosed. The well servicing fluid is formulated with components comprising: nanoparticles comprising at least one material chosen from aluminum oxides, aluminum hydroxides, aluminum hydroxyoxides, zirconium oxides, zirconium hydroxides, zirconium hydroxyoxides, wherein the concentration of nanoparticles is greater than 0.5% by weight based on the total weight of the nano-dispersion well servicing fluid. The well servicing fluid also comprises an aqueous base continuous phase. Methods of employing the nano-dispersion to service a wellbore are also disclosed.Type: GrantFiled: July 9, 2015Date of Patent: December 13, 2016Assignee: BAKER HUGHES INCORPORATEDInventors: D. V. Satyanarayana Gupta, Kay Elaine Cawiezel
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Patent number: 9518214Abstract: Proppants for hydraulic fracturing of oil and gas wells are coated with a polyurea-type coating. In a preferred embodiment, the polyurea-type coating is formed by contacting a polymeric isocyanate with an amount of water and a blowing catalyst at a rate and quantity sufficient to generate a reactive amine in situ on the outer surface of the proppant which thereby reacts with unconverted polymeric isocyanate to form a thin polyurea-type surface coating that is substantially solid and lacks foam or substantial porosity. Alternatively, the polyurea-type can be produced by selecting reactive amine compounds and isocyanates to develop the coated proppant. The coated proppants retain the discrete, free-flowing character of the original core solids but with the beneficial effects of the polyurea-type coating of the present invention.Type: GrantFiled: March 15, 2013Date of Patent: December 13, 2016Assignee: Preferred Technology, LLCInventors: Avis Lloyd McCrary, Robert Ray McDaniel, Ralph Edward Barthel, Spyridon Monastiriotis
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Patent number: 9518215Abstract: A light-emitting device includes a photoluminescent layer that emits light containing first light, a light-transmissive layer located on or near the photoluminescent layer, and one or more reflectors. A submicron structure is defined on at least one of the photoluminescent layer and the light-transmissive layer. The one or more reflector are located outside the submicron structure. The submicron structure includes at least projections or recesses and satisfies the following relationship: ?a/nwav-a<Dint<?a where Dint is a center-to-center distance between adjacent projections or recesses, ?a is the wavelength of the first light in air, and nwav-a is the refractive index of the photoluminescent layer for the first light.Type: GrantFiled: February 10, 2015Date of Patent: December 13, 2016Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Taku Hirasawa, Yasuhisa Inada, Yoshitaka Nakamura, Akira Hashiya, Mitsuru Nitta, Takeyuki Yamaki
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Patent number: 9518216Abstract: A manganese-doped magnesium stannate luminescent material, which has a molecular formula of: Mg2-xSnO4:Mnx@SnO2@My, where @ is a coating, where Mg2-xSnO4:Mnx is an outer shell layer, where SnO2 is an intermediate layer shell, where M is an inner core, where M is a metal nanoparticle, where M is at least one selected among Ag, Au, Pt, Pd, and Cu, where the value of x is 0<x?0.05, where y is the molar ratio between M and Sn, and where the value of y is 0<y?1×10?2. The manganese-doped magnesium stannate luminescent material is a core-shell structure luminescent material, has a high internal quantum efficiency, great luminescent intensity, and the advantages of great stability and great luminescent properties. A method for preparing the manganese-doped magnesium stannate luminescent material has simple processes, low equipment requirements, and no pollution, is easy to control and applicable for industrial production, and has a broad application prospect.Type: GrantFiled: May 8, 2012Date of Patent: December 13, 2016Assignee: OCEAN'S KING LIGHTING SCIENCE & TECHNOLOGY CO., LTDInventors: Mingjie Zhou, Rong Wang, Guitang Chen
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Patent number: 9518217Abstract: This invention provides transition metal carbene complexes and the electroluminescent application thereof. Through employing different N^N heteroleptic ligand, as the following, the transition metal carbene complex can display wide-range color tuning ability from deep blue to red. The mentioned transition metal carbene complex can be applied in luminescent device, and the luminescent device can display wide-range color tuning ability with high luminescent efficiency while employing different N^N heteroleptic ligand in the transition metal carbene complex.Type: GrantFiled: September 5, 2012Date of Patent: December 13, 2016Assignee: E INK HOLDINGS INC.Inventors: Chien-Hong Cheng, Kun-Yi Lu, Yu-Han Ou Yang, Cheng-Han Hsieh
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Patent number: 9518218Abstract: The invention relates to a method for producing a doped SiO2 slurry in which an SiO2 suspension is brought into interaction with at least one doping solution, wherein the SiO2 suspension and/or the doping solution act on one another in the form of an atomized spray, the average droplet diameter of which is in the range between 10 ?m and 100 ?m. The invention further relates to the use of an SiO2 slurry doped by the atomized spray method for the production of doped quartz glass, particularly for the production of laser-active quartz glass.Type: GrantFiled: June 25, 2013Date of Patent: December 13, 2016Assignee: Heraeus Quarzglas GmbH & Co. KGInventors: Mario Such, Gerhard Schoetz, Andreas Langner
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Patent number: 9518219Abstract: A method for the hydrothermal synthesis of bismuth germanium oxide comprises dissolving a bismuth precursor (e.g., bismuth nitrate pentahydrate) and a germanium precursor (e.g., germanium dioxide) in water and heating the aqueous solution to an elevated reaction temperature for a length of time sufficient to produce the eulytite phase of bismuth germanium oxide (E-BGO) with high yield. The E-BGO produced can be used as a scintillator material. For example, the air stability and radioluminescence response suggest that the E-BGO can be employed for medical applications.Type: GrantFiled: January 30, 2014Date of Patent: December 13, 2016Assignee: Sandia CorporationInventor: Timothy J. Boyle
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Patent number: 9518220Abstract: A red phosphor material comprising an essential component represented by a formula of ALn1-x-yEuxSmyM2O8 as a main component, where A represents at least one selected from Li, Na, and K; Ln represents at least one selected from La and Gd; M represents at least one selected from W and Mo; and x and y are numerical values that satisfy 0.1?x+y?0.7 and 0.005?y?0.08. A light-emitting device includes an excitation light source and the red phosphor material that absorbs excitation light emitted by the excitation light source and emits red light.Type: GrantFiled: April 17, 2015Date of Patent: December 13, 2016Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.Inventors: Osamu Inoue, Kojiro Okuyama, Mitsuru Nitta, Seigo Shiraishi
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Patent number: 9518221Abstract: The inventor of the present invention has investigated various liquid crystal compounds and various chemical substances and found that the object can be achieved by using a combination of particular liquid crystal compounds, thereby making the present invention. In other words, provided are a liquid crystal composition having positive dielectric anisotropy, comprising compounds represented by formula (26.2) and formula (2.5) and one or more compounds represented by general formula (IV), an active matrix driving-liquid crystal display device using the liquid crystal composition, and a liquid crystal display using the active matrix-driving liquid crystal display device: (In the formula, R41 and R42 each independently represent an alkyl group having 1 to 5 carbon atoms or an alkenyl group having 4 or 5 carbon atoms and X41 and X42 each independently represent a hydrogen atom or a fluorine atom.Type: GrantFiled: July 22, 2013Date of Patent: December 13, 2016Assignee: DIC CORPORATIONInventor: Joji Kawamura
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Patent number: 9518222Abstract: To provide a liquid crystal compound satisfying at least one physical property such as high stability to light, a high clearing point, low minimum temperature of a liquid crystal phase, small viscosity, suitable optical anisotropy, large dielectric anisotropy, large dielectric constant in a minor-axis direction, suitable elastic constant, excellent compatibility, a liquid crystal composition containing the compound and a liquid crystal display device including the composition. The compound is represented by formula (1): wherein, for example, R1 is alkyl having 1 to 15 carbons, rings A1 to A4 are 1,4-cyclohexylene or 1,4-phenylene, at least one of Z1 to Z5 is —CF2O—, and X1 is fluorine or —OCF3; W1 is a group represented by formula (1a) or (1b); wherein, Y1 to Y5 are fluorine; W2 is a group represented by formula (1c) or (1d); wherein, L1 to L5 are fluorine; and a, b, c and d are independently 0 or 1.Type: GrantFiled: August 6, 2015Date of Patent: December 13, 2016Assignees: JNC CORPORATION, JNC PETROCHEMICAL CORPORATIONInventors: Mayumi Goto, Hiroyuki Tanaka
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Patent number: 9518223Abstract: A liquid crystal composition includes a photoinitiator; an alignment aid; a neutral liquid crystal compound; and a polar liquid crystal compound, wherein the neutral liquid crystal compound includes at least one of compounds represented by Chemical Formulas N-1 to N-10 below:Type: GrantFiled: September 28, 2015Date of Patent: December 13, 2016Assignee: Samsung Display Co., Ltd.Inventors: Ji Hong Bae, Keun Chan Oh
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Patent number: 9518224Abstract: Provided are a fine-particulate organic semiconductor material, a thin organic semiconductor film and an organic transistor. The fine-particulate organic semiconductor material is in a form of fine particles and is usable as an organic semiconductor material. The fine particles are fine thermotropic liquid crystal particles that undergo a phase transition into a liquid crystal state when heated to a temperature of from 50° C. to 350° C. The fine-particulate organic semiconductor material can easily and uniformly form the thin organic semiconductor film over a large area by a film printing process or a dispersion coating process. The thin organic semiconductor film has high electron mobility and high ON/OFF value.Type: GrantFiled: August 17, 2011Date of Patent: December 13, 2016Assignees: Shinshu University, Dainichiseika Color & Chemicals Mfg. Co., Ltd.Inventors: Musubu Ichikawa, Hyeon-Gu Jeon, Naomi Oguma, Naoki Hirata, Hisao Kono
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Patent number: 9518225Abstract: Disclosed are the use of fluorine substituted olefins, including tetra- and penta-fluoropropenes, in a variety of applications, including in methods of depositing catalyst on a solid support, methods of sterilizing articles, cleaning methods and compositions, methods of applying medicaments, fire extinguishing/suppression compositions and methods, flavor formulations, fragrance formulations and inflating agents.Type: GrantFiled: August 29, 2007Date of Patent: December 13, 2016Assignee: HONEYWELL INTERNATIONAL INC.Inventors: Rajiv R. Singh, Hang T. Pham, David P. Wilson, Raymond H. Thomas, Gary Knopeck
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Patent number: 9518226Abstract: A green process and system are disclosed for utilizing a biomass filter aid in the filtration of a bio-oil. The process comprises filtering a bio-oil containing residual solids from a conversion reaction in the presence of the biomass filter aid to produce a filtered bio-oil. The biomass filter aid facilitates efficient removal of residual solids from the bio-oil. The spent biomass filter aid containing the residual solids may be recycled as a conversion feedstock or used as a combustion heat source in the biomass conversion system.Type: GrantFiled: December 23, 2014Date of Patent: December 13, 2016Assignee: Inaeris Technologies, LLCInventor: Ronny W. Lin
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Patent number: 9518227Abstract: The present invention relates to a method for producing biofuel from biomass material, comprising the steps of (a) pyrolyzing a first fraction of the biomass material having a pyrolysis temperature that is lower relative to the pyrolysis temperature of a second fraction of the biomass material to thereby produce a primary volatile fraction, and (b) separating the primary volatile fraction from the biomass material before pyrolyzing the second fraction, to thereby produce biofuel.Type: GrantFiled: February 25, 2011Date of Patent: December 13, 2016Assignee: Petroliam Nasional Berhad (Petronas)Inventors: Hisam Mohamed Wahab Mohamad, Freddy Wee Teck Teo, Mohammad Ghaddaffi Bin Mohd Noh