Patents Issued in August 22, 2017
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Patent number: 9738726Abstract: The identification of Her2-specific monoclonal antibody m860 is described. The m860 antibody was identified from a human naïve phage display Fab library by panning against the extracellular domain of human Her2. M860 binds to cell surface-associated Her2 with an affinity comparable to that of trastuzumab (Herceptin®), but binds to a different epitope. Using site-specific glycan engineering, m860 was conjugated to the small molecule drug auristatin F. The antibody-drug conjugate was stable, bound cell-surface expressed Her2 and exhibited potent cell killing of Her2-positive cancer cells, including trastuzumab-resistant breast cancer cells.Type: GrantFiled: June 9, 2014Date of Patent: August 22, 2017Assignee: The United States of America, as represented by the Secretary, Department of Health and Human ServicesInventors: Dimiter S. Dimitrov, Zhongyu Zhu, Pradman K. Qasba, Boopathy Ramakrishnan
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Patent number: 9738727Abstract: The invention provides anti-HtrA1 antibodies and methods of using the same.Type: GrantFiled: October 12, 2012Date of Patent: August 22, 2017Assignee: Genentech, Inc.Inventors: Yan Wu, Menno van Lookeren-Campagne, Daniel Kirchhofer, Michael Terry Lipari, Kenneth J. Katschke, Jr., Paul M. Moran, Scott Stawicki, Wei-Ching Liang
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Patent number: 9738728Abstract: The present invention relates to novel humanized anti-IL-4 and IL-13 antibodies and fragments thereof and novel bispecific antibodies and fragments thereof that specifically bind to IL-4 and IL-13. The invention also includes uses of the antibodies to treat or prevent IL-4 and/or IL-13 mediated diseases or disorders, including allergic asthma and dermatitis.Type: GrantFiled: March 11, 2013Date of Patent: August 22, 2017Assignee: SanofiInventors: Ercole Rao, Vincent Mikol, Danxi Li, Jochen Kruip, Matthew Davison
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Patent number: 9738729Abstract: The disclosure provides a process for separating fermentation inhibitors from a biomass-derived hydrolysate, comprising: introducing a biomass-derived liquid hydrolysate stream to a stripping column; introducing a steam-rich vapor stream to the stripping column to strip fermentation inhibitors (such as acetic acid) from the liquid hydrolysate stream; recovering a stripped liquid stream and a stripper vapor output stream; compressing the stripper vapor output stream; introducing the compressed vapor stream, and a water-rich liquid stream, to an evaporator; recovering, from the evaporator, an evaporated liquid stream and an evaporator output vapor stream; and recycling the evaporator output vapor stream to the stripping column as the steam-rich vapor stream. Other variations utilize a rectification column to recover a rectified liquid stream and a rectification column vapor stream, and recycle the rectification column vapor stream to the stripping column as the steam-rich vapor stream.Type: GrantFiled: February 17, 2015Date of Patent: August 22, 2017Assignee: API Intellectual Property Holdings, LLCInventors: Theodora Retsina, Jean-Pierre Monclin, Ryan Zebroski, Anastasios Trypakis, Vesa Pylkkanen
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Patent number: 9738730Abstract: The present invention provides a means for improving water-solubility of polysaccharide. A polysaccharide powder according to the present invention has a particle size distribution in which 30 vol % or more of the total volume of the powder has particle sizes of 200 to 750 ?m.Type: GrantFiled: February 13, 2014Date of Patent: August 22, 2017Assignee: TERUMO KABUSHIKI KAISHAInventors: Risa Yuki, Taishi Niimi
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Patent number: 9738731Abstract: A growth enhancer for Lactobacillus murinus, Lactobacillus salivarius, or a bacterium that belongs to the genus Lactobacillus and that has a homology of 16S rDNA of 90% or higher with Lactobacillus murinus or Lactobacillus salivarius includes a ?-glucan having a molecular weight of from 0.2 K to 50 K. A regulatory T-cell number increasing agent, a method of enhancing growth of a lactic acid bacterium, a method of increasing the number of regulatory T-cells, a method of evaluating a regulatory T-cell number increasing effect, and a method of evaluating a growth enhancing effect on a lactic acid bacterium are also provided.Type: GrantFiled: March 10, 2014Date of Patent: August 22, 2017Assignee: TOKYO UNIVERSITY OF SCIENCE FOUNDATIONInventors: Yoichiro Iwakura, Ce Tang, Naohito Ohno
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Patent number: 9738732Abstract: The specification provides methods for extracting xyloglucans from fruit, especially from firm fruit such as cranberries, through a sequential extraction procedure.Type: GrantFiled: July 9, 2015Date of Patent: August 22, 2017Assignee: Ocean Spray Cranberries, Inc.Inventors: Harold L. Mantius, Martin Foster Berry
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Patent number: 9738733Abstract: Vulcanizates with desirable properties can be obtained from compounds incorporating polymers that include hydroxyl group-containing ?-methylstyrene functionalities. The functionalities can be incorporated by using any or all of appropriate initiators, monomers and optional terminating compounds. Such polymers exhibit excellent interactivity with both conventional and non-conventional fillers.Type: GrantFiled: September 14, 2016Date of Patent: August 22, 2017Assignee: Bridgestone CorporationInventors: Zengquan Qin, Yuan-Yong Yan, Xiao-Dong Pan
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Patent number: 9738734Abstract: Provided is a method of purifying polyolefin, the method including the step of contacting linear low-density polyethylene synthesized by a gas phase polymerization reaction with a purge gas containing an ethylene gas and an inert gas in a purge bin. According to this purification method, residual alkene monomers with high carbon numbers may be removed in a simpler and more efficient manner.Type: GrantFiled: October 23, 2014Date of Patent: August 22, 2017Assignee: LOTTE CHEMICAL CORPORATIONInventors: Sinyoung Kim, Seong Soo Lim, Suran Lee, Jaeho Kim, Sang Hong Shin
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Patent number: 9738735Abstract: The present disclosure relates to a process for the preparation of polyethylene by polymerizing in a slurry ethylene and optionally one or more C3 to C10 alpha-olefins. In some embodiments, the polymerization is carried out in a cylindrical polymerization reactor equipped with an agitator for mixing the contents of the reactor and inducing a flow of the slurry, the ethylene is fed into the reactor by an ethylene injection system comprising one or more injection nozzles which project through the bottom reactor head or through the reactor wall and extend from 0.02-0.5 times the inner diameter D into the reactor, and the ethylene exits the injection nozzle with an exit velocity from 10-200 m/s.Type: GrantFiled: August 6, 2015Date of Patent: August 22, 2017Assignee: Basell Polyolefine GmbHInventors: Reinhard Kuehl, Harald Prang, Rodrigo Carvajal, Elke Damm, Phil Pyman
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Patent number: 9738736Abstract: Solid catalyst components are disclosed including titanium, magnesium, halogen and an internal electron donor compound having a combination of internal electron donor compounds including at least one 1,8-naphthyl diester and at least one secondary internal donor compound selected from alkyl 2-alkoxy-1-naphthoates, alkyl 2-alkoxybenzoates, alkyl 2,6-dialkoxybenzoates, (2-alkoxyphenyl)(pyrrolidin-1-yl)alkanones, dialkyl phthalates, alkyl alkionates, and dialkyl cyclohexane-1,2-dicarboxylates, and catalyst systems containing the catalyst solid components, organoaluminum compounds, and organosilicon compounds. Further, methods of making the catalyst components and the catalyst systems are disclosed as well as methods of polymerizing or copolymerizing alpha-olefins using the catalyst systems.Type: GrantFiled: August 12, 2014Date of Patent: August 22, 2017Assignee: W. R. GRACE & CO.-CONNInventors: Vladimir P. Marin, Ahmed Hintolay, Main Chang, Neil O'Reilly, Binh Thanh Nguyen
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Patent number: 9738738Abstract: A method for preparing a functionalized polymer, the method comprising the steps of (i) preparing a halocarbon-activated nitrogen heterocycle containing a functional group, (ii) preparing a reactive polymer, and (iii) reacting the reactive polymer with the halocarbon-activated nitrogen heterocycle containing a functional group.Type: GrantFiled: April 1, 2016Date of Patent: August 22, 2017Assignee: Bridgestone CorporationInventors: Joshua Phillip Abell, Steven Luo
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Patent number: 9738739Abstract: The present invention relates to a method and covalent bonding process for fixing tritiated water into a polystyrene based product for the permanent elimination of tritiated water from the environment.Type: GrantFiled: August 20, 2015Date of Patent: August 22, 2017Inventors: George A. Digenis, Alexander G. Digenis
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Patent number: 9738740Abstract: Acrylic copolymers that include the controlled placement of particular functional groups within the polymer structure are provided. The copolymers contain at least two reactive segments and are manufactured via a controlled radical polymerization process. The copolymers are useful in the manufacture of adhesives and elastomers.Type: GrantFiled: October 12, 2012Date of Patent: August 22, 2017Assignee: Avery Dennison CorporationInventors: Christopher L. Lester, William L. Bottorf, Kyle R. Heimbach
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Patent number: 9738741Abstract: Amphiphilic macromolecules having repeating structural units: structural units to adjust molecular weight and molecular weight distribution and charging property effects, high stereo-hindrance structural units, and amphiphilic structural units, which are suitable for fields such as oil field well drilling, well cementation, fracturing, oil gathering and transfer, sewage treatment, sludge treatment and papermaking, etc., and can be used as an oil-displacing agent for enhanced oil production, a heavy oil viscosity reducer, a fracturing fluid, a clay stabilizing agent, a sewage treatment agent, a papermaking retention and drainage aid or a reinforcing agent, etc.Type: GrantFiled: September 16, 2011Date of Patent: August 22, 2017Assignee: BEIJING JUNLUN RUNZHONG SCIENCE & TECHNOLOGY CO., LIMITEDInventors: Jinben Wang, Xiaohui Xu, Xuefeng Shi, Yuchun Han, Yilin Wang, Haike Yan
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Patent number: 9738742Abstract: A method for producing a polymer has: a polymerization step of polymerizing at least a conjugated diene monomer in a hydrocarbon solvent using an organolithium compound as a polymerization initiator, and obtaining a polymer; and, following steps (1) to (4), successively performing after the polymerization step: (1) a step of mixing an acid and water of 20 to 300 parts by mass into the solution containing the polymer of 100 parts by mass, (2) a step of adjusting an amount of the water to 10 parts by mass or less based on 100 parts by mass of the solution containing the polymer, (3) a step of adding a carbon oxide gas and/or a compound to be decarboxylated to the solution containing the polymer, and (4) a step of removing a solvent from the solution containing the polymer until a concentration of the polymer reaches 95 mass % or more.Type: GrantFiled: January 8, 2014Date of Patent: August 22, 2017Assignee: Asahi Kasei Chemicals CorporationInventors: Yoshifumi Araki, Eiji Sasaya, Takuya Suzuki
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Patent number: 9738743Abstract: Disclosed is a method for producing a plastisol acrylic polymer which can have a satisfactory adhesion property even when the heating time is short and the heating temperature is low, and which has excellent storage stability. The method comprises (1) a step of polymerizing an acrylic monomer mixture (a) to produce a polymer (A) and (2) a step of polymerizing an acrylic monomer mixture (b) in a dispersion containing the polymer (A), wherein a monomer having a hydroxy group is contained in the acrylic monomer mixture (a), a monomer having an acetoacetyl group or a block isocyanate group is contained in the acrylic monomer mixture (b), and the dissolution parameter (SA) for the polymer (A) and the dissolution parameter (SB) for a polymer (B) produced by the polymerization of the acrylic monomer mixture (b) are different from each other.Type: GrantFiled: June 6, 2016Date of Patent: August 22, 2017Assignee: Mitsubishi Chemical CorporationInventor: Toru Kondo
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Patent number: 9738744Abstract: The present invention provides methods of modifying the surfaces of a plurality of three-dimensional objects at the same time to provide good sliding properties, good durability after repeated sliding, good sealing properties, and the like, and also provides gaskets for syringes obtained by such methods. The present invention relates to a method for modifying the surfaces of a plurality of three-dimensional objects including: a step 1 of immersing a plurality of three-dimensional objects in a photopolymerizable monomer-containing liquid; and a step 2 of polymerizing the photopolymerizable monomer by photoirradiation while rotating a vessel containing the plurality of three-dimensional objects and the photopolymerizable monomer-containing liquid, to grow polymer chains on the surfaces of the plurality of three-dimensional objects.Type: GrantFiled: December 3, 2013Date of Patent: August 22, 2017Assignee: SUMITOMO RUBBER INDUSTRIES, LTD.Inventor: Yasuhisa Minagawa
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Patent number: 9738745Abstract: Polymer particles having a multi-block vinylic polymer attached to their surface are disclosed. The particles can be used in a variety of purification and detection methods.Type: GrantFiled: June 29, 2007Date of Patent: August 22, 2017Assignee: Life Technologies ASInventors: Geir Fonnum, Lise Liljeroth
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Patent number: 9738746Abstract: A pattern-forming method includes forming on one face side of a substrate, a directed self-assembling film, and removing a part of the directed self-assembling film. The directed self-assembling film is formed from a composition including a block copolymer and a solvent. The block copolymer includes a first block composed of a first repeating unit that includes a silicon atom, a second block composed of a second repeating unit that does not include a silicon atom, and a first group that bonds to at least one end of a main chain and links to the first block. The first group is a monovalent group that forms a compound having ClogP of no less than 2.4 provided that a methyl group is bonded to an atom on a side of the main chain. The first group does not comprise a hetero atom.Type: GrantFiled: March 18, 2016Date of Patent: August 22, 2017Assignee: JSR CorporationInventors: Hiroyuki Komatsu, Takehiko Naruoka, Tomoki Nagai
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Patent number: 9738747Abstract: A one component isocyanate prepolymer mixture for formulating a polyurethane product in a single step process, with monomeric methylene diphenyl diisocyanate (MDI) content in the mixture not exceeding 3%, preferably less than 2%, more preferably less than 1% of the total weight. The mixture contains monofunctional alcohol, an isocyanate component or isocyanate mixture component, propellant, catalyst, stabiliser, and one or more polyols. The monofunctional alcohol constitutes ethylene glycol ethers or propylene glycol ethers. A method for formulating a one component polyurethane foam on the basis of the mixture is disclosed.Type: GrantFiled: October 22, 2014Date of Patent: August 22, 2017Assignee: Selena Labs Sp. z o.o.Inventors: Przemyslaw Dwornicki, Marek Barth, Tomasz Pawlus
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Patent number: 9738748Abstract: [Problem] An problem of the present invention is to provide to a (meth)acrylamide-based urethane oligomer which has excellent compatibility with organic solvents, general purpose acrylic monomers and oligomers, and a high curing speed to active energy rays, and to provide an active energy ray curable resin composition which contains the urethane oligomer, has excellent adhesion, moisture resistance and surface curability, and has low curing shrinkage, and a formed product thereof [Means for Solution] By using a (meth)acrylamide-based urethane oligomer of the present invention which has a carbonate skeleton, a diene-based skeleton or a hydrogenated diene-based skeleton in the molecule, one or more (meth)acrylamide groups and a component having a molecular weight of less than 1,000 (excluding a (meth)acrylamide compound (A) having a hydroxyl group) at a content of 5% by weight or less, it is possible to obtain a urethane oligomer which has excellent compatibility with organic solvents, general purpose acrylic mType: GrantFiled: March 11, 2015Date of Patent: August 22, 2017Assignee: KJ Chemicals CorporationInventors: Miki Takenouchi, Yusuke Adachi, Meiri Hirata
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Patent number: 9738749Abstract: The present invention relates to multi-component compositions including an isocyanate component and an amine component, wherein the isocyanate component includes a prepolymer, obtainable from toluene isocyanate and a polytetramethylene polyol, and the amine component includes a dialkylthio aryl diamine and possibly a polytetramethylene oxide polyamine. Corresponding compositions can be advantageously used as flowable or spreadable resin systems for producing surface protection coatings in casting house applications and are characterized by a significantly improved resistance to abrasion in comparison with conventional casting resin systems based on hexamethylene diisocyanate and dimethyl thiotoluene diamine.Type: GrantFiled: October 1, 2013Date of Patent: August 22, 2017Assignee: SIKA TECHNOLOGY AGInventors: Wolfgang Dürnay, Florian Gneiting
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Patent number: 9738750Abstract: Liquid epoxy curing agents that have improved latency over conventional liquid curing agents while retaining the physical properties of the cured material are disclosed. These liquid curing agents can be used for curing epoxy resins, or in combination with dicyandiamide (DICY) based curing agents in order to accelerate DICY curing.Type: GrantFiled: April 5, 2013Date of Patent: August 22, 2017Assignee: Veonik Degussa GmbHInventors: Gauri Sankar Lal, Gamini Ananda Vedage, Stephen Michael Boyce, Dilipkumar Nandlal Shah, Atteye Houssein Abdourazak
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Patent number: 9738751Abstract: The present invention relates to a method for preparing a copolymer from at least one cyclic monomer selected from: a lactone, a lactam, a carbonate, a lactide and a glycolide, an oxazoline, an epoxide, a cyclosiloxane, comprising the step consisting of reacting said cyclic monomer in the presence of a substituted phosphorus-containing compound. It also relates to the polymer composition obtained according to this method, as well as the uses thereof, notably as antistatic additives, biocompatible materials, as membranes for treatment of effluents or in electrochemical systems for energy storage.Type: GrantFiled: December 7, 2010Date of Patent: August 22, 2017Assignees: Arkema France, Centre National De La Recherche ScientifiqueInventors: Christophe Navarro, Damien Delcroix, Blanca Martin-Vaca, Didier Bourissou
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Patent number: 9738752Abstract: A copolymer for use in 3D printing includes about 1 to about 30 mole percent of a diacid monomer unit, a diol monomer unit, and a terephthalate monomer unit, the copolymer having a glass transition temperature (Tg) in a range from about 50° C. to about 95° C.Type: GrantFiled: April 24, 2015Date of Patent: August 22, 2017Assignee: XEROX CORPORATIONInventors: Guerino G. Sacripante, Ke Zhou, Tasnim Abukar
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Patent number: 9738753Abstract: Photodegradable polymers derived from biomass are provided, together with methods of making and methods of using the polymers. The photodegradable polymers can be derived from at least a first monomeric unit and a second monomeric unit and an optional third monomeric unit. The first monomeric unit is a dicarboxylic acid and includes a furan group and the second monomeric unit includes a nitrobenzyl group. Methods of recycling the polymers including irradiating the polymers to yield recycled monomers and oligomers are also disclosed.Type: GrantFiled: October 15, 2015Date of Patent: August 22, 2017Assignee: NDSU RESEARCH FOUNDATIONInventors: Jayaraman Sivaguru, Mukund P. Sibi, Dean C. Webster, Saravana Kumar Rajendran, Ramya Raghunathan
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Patent number: 9738754Abstract: The present invention relates to water-soluble alkoxylated polyalkyleneimines having an inner block of polyethylene oxide comprising 5 to 18 polyethylene oxide units, a middle block of polyalkylene oxide comprising 1 to 5 polyalkylene oxide units and an outer block of polyethylene oxide comprising 2 to 14 polyethylene oxide units. The middle block is formed from polypropylene oxide units, polybutylene oxide units and/or polypentene oxide units. In addition, the present invention relates to water-soluble alkoxylated polyamines.Type: GrantFiled: July 11, 2014Date of Patent: August 22, 2017Assignee: BASF SEInventors: Sophia Ebert, Björn Ludolph, Frank Huelskoetter, Kevin Christmas, Stefano Scialla, Brian J. Loughnane, Amy Eichstadt Waun, Darren Rees
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Patent number: 9738755Abstract: The present invention relates to novel cast polyamides, to processes for production thereof and to the use thereof.Type: GrantFiled: March 22, 2013Date of Patent: August 22, 2017Assignee: LANXESS Deutschland GmbHInventors: Wilhelm Laufer, Armin Eckert, Andre Palzer
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Patent number: 9738756Abstract: The invention relates to a method for synthesizing a polyamide, in which method an aqueous solution is sprayed onto the polyamide before and/or during a solid-state post-condensation process. The aqueous solution comprises at least a first compound, selected from the group comprising phosphoric acid, fully neutralized salts of phosphoric acid, partially neutralized salts of phosphoric acid, and mixtures thereof, and a second compound, selected from the group comprising an acid, an anhydride, a lactone, ammonia, an amine, and mixtures thereof, with the stipulation that the second compound is not phosphoric acid and is not phosphoric acid anhydride. The spraying occurs at a temperature that lies below the boiling point of water. A polyamide that can be produced by means of the method according to the invention can be used in particular to produce films, monofilaments, fibers, threads, or textile sheet materials.Type: GrantFiled: April 30, 2014Date of Patent: August 22, 2017Assignee: BASF SEInventors: Rüdiger Häffner, Rolf-Egbert Grützner, Achim Stammer, Angela Ulzhöfer
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Patent number: 9738757Abstract: Disclosed is a composition comprising (A) at least one compound selected from the group consisting of an ether compound having two or more ether groups, a trivalent phosphorus compound, and a ketone compound, (B) a boron trihalide, and (C) an episulfide compound.Type: GrantFiled: March 25, 2016Date of Patent: August 22, 2017Assignee: Asahi Kasei Chemicals CorporationInventors: Akitake Nakamura, Takeshi Endo
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Patent number: 9738758Abstract: A method of producing a thiol group-containing polymer includes reacting bis(2-chloroethyl) formal with sodium hydrosulfide, wherein the thiol group-containing polymer is represented by general formula: HS—(R—Sr)n—R—SH where R is an organic group including a —C2H4—O—CH2—O—C2H4— structure, n is an integer of from 1 to 200, r is an integer of from 1 to 5, and the average value of r is 1.1 or more and lower than 1.8, and wherein the thiol group-containing polymer is a liquid polymer.Type: GrantFiled: September 20, 2016Date of Patent: August 22, 2017Assignee: Toray Fine Chemicals Co., Ltd.Inventors: Koki Echigoya, Yukiko Hamada, Kazunori Matsumoto
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Patent number: 9738759Abstract: A block copolymer includes a crystalline polyester block and an amorphous polyalkylsiloxane block, the block copolymer exhibiting baroplastic behavior. The block copolymer is used in a cold pressure fix toner. A method of making a block copolymer including a crystalline polyester block and an amorphous polyalkylsiloxane block includes heating a mixture of a diacid, a diol, and a carbinol-terminated poly(alkylsiloxane).Type: GrantFiled: March 14, 2016Date of Patent: August 22, 2017Assignee: XEROX CORPORATIONInventors: Guerino G. Sacripante, Kimberly D. Nosella
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Patent number: 9738760Abstract: In one aspect, the present invention pertains to novel block materials comprising an aliphatic polycarbonate (APC) chain bound to a hydrocarbon. The invention also provides methods of making the block materials and using them as compatibilizers for polymer blends. In another aspect, the present invention encompasses methods of making blends of APCs with polyolefins. In certain embodiments, the methods comprise the step of blending one or more APCs with one or more polyolefins in the presence of a compatibilizer as described herein. In another aspect, the present invention encompasses novel blends of APCs with polyolefins. In certain embodiments, the blends comprise one or more APCs; at least one polyolefin and a compatibilizer as described herein.Type: GrantFiled: March 31, 2014Date of Patent: August 22, 2017Assignee: Novomer, Inc.Inventor: Scott D. Allen
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Patent number: 9738761Abstract: Injection molded article made from a composition containing 81-88 wt % of a propylene homopolymer (A) having a melt flow rate of between 1 and 2 g/10 min, 12-19 wt % of a propylene-ethylene copolymer (B) containing 45-65 wt % of ethylene, and 50-10000 ppm by weight of a nucleating agent. The total ethylene content of the composition is 6-10 wt %, and the melt flow rate (MFR) of the composition is 0.7-2 g/10 min.Type: GrantFiled: January 28, 2014Date of Patent: August 22, 2017Assignee: INEOS EUROPE AGInventor: Gaetane Hallot
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Patent number: 9738762Abstract: A solution based polymer nanofiller composite processing method to improve mechanical, electrical, thermal and/or chemical properties. The solution based synthesis method may include the steps of surface functionalizing carbon nanomaterials and dissolving a polymer in a solvent. The functionalized carbon nanomaterials and dissolved polymer may be mixed until the mixture is homogenous. The mixture may be cured to form the polymer carbon nano-composite material, which provides significant improvements in modulus, hardness, strength, fracture toughness, wear, fatigue, creep, and damping performance.Type: GrantFiled: November 16, 2015Date of Patent: August 22, 2017Assignees: UNIVERSITY OF HOUSTON, VETCO GRAY INC.Inventors: Li Sun, Anil Pitta, Hung Duong
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Patent number: 9738763Abstract: Provided is a resin sheet, wherein in a stress measurement in which a dynamic shear strain is applied in a direction parallel to a surface, the difference between a loss tangent as measured when a strain amplitude is 10% of the sheet thickness and a loss tangent as measured when the amplitude is 0.1% is equal to or greater than 1 at a temperature of 80° C. and a frequency of 0.5 Hz. The resin sheet of the present invention can provide a semiconductor device with excellent connection reliability, wherein air bubbles and cracks are less likely to occur in the resin sheet. In the resin composition of the present invention, aggregates are less likely to occur during storage. The resin sheet obtained by forming the resin composition into a sheet has good flatness. The hardened material thereof can provide a circuit board or a semiconductor device with high connection reliability.Type: GrantFiled: May 30, 2014Date of Patent: August 22, 2017Assignee: TORAY INDUSTRIES, INC.Inventors: Yoichi Shimba, Kazuyuki Matsumura, Toshihisa Nonaka
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Patent number: 9738764Abstract: Methods and systems and components made according to the methods and systems, are disclosed relating to improved curing methods for epoxy resin-containing composite prepreg materials, wherein the composite prepreg materials are exposed to a flow of ammonia-containing compounds to fully cure the composite prepreg materials at substantially ambient temperatures and pressures.Type: GrantFiled: January 5, 2016Date of Patent: August 22, 2017Assignee: THE BOEING COMPANYInventors: Gwen M Gross, Michael P Thompson
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Patent number: 9738765Abstract: Hybrid pre-patterns were prepared for directed self-assembly of a given block copolymer capable of forming a lamellar domain pattern. The hybrid pre-patterns have top surfaces comprising independent elevated surfaces interspersed with adjacent recessed surfaces. The elevated surfaces are neutral wetting to the domains formed by self-assembly. Material below the elevated surfaces has greater etch-resistance than material below the recessed surfaces in a given etch process. Following other dimensional constraints of the hybrid pre-pattern described herein, a layer of the given block copolymer was formed on the hybrid pre-pattern. Self-assembly of the layer produced a lamellar domain pattern comprising self-aligned, unidirectional, perpendicularly oriented lamellae over the elevated surfaces, and parallel and/or perpendicularly oriented lamellae over recessed surfaces. The domain patterns displayed long range order along the major axis of the pre-pattern.Type: GrantFiled: February 19, 2015Date of Patent: August 22, 2017Assignee: International Business Machines CorporationInventors: Markus Brink, Joy Cheng, Gregory S. Doerk, Alexander M. Friz, Michael A. Guillorn, Chi-Chun Liu, Daniel P. Sanders, Gurpreet Singh, Melia Tjio, HsinYu Tsai
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Patent number: 9738766Abstract: An organophosphorus compound useful in a phosphorus containing flame retardant and a flame retardant polyurethane foam, where the organophosphorus compound is shown in Formula (I) where Y is selected from the group consisting of an —OH group, an —NH2 group, an —NHR3 group, and an —SH group, where R3 is a monovalent hydrocarbyl group having 1 to 10 carbon atoms; R is a divalent hydrocarbyl group; X is a heteroatom group; and R1 and R2 are each independently a substituted or unsubstituted hydrocarbyl group, wherein R1 and R2 can be optionally joined to form a ring.Type: GrantFiled: October 8, 2012Date of Patent: August 22, 2017Assignee: Dow Global Technologies LLCInventors: Ravi B. Shankar, Matthew Martin Yonkey, YuDong Qi, Nahrain E. Kamber
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Patent number: 9738767Abstract: A process of making a polyurethane or polyisocyanurate foam comprises the step of mixing under low pressure: (A) An isocyanate; (B) A compound reactive with the isocyanate, e.g., a polyol; (C) A liquid blowing agent; and (D) Carbon dioxide.Type: GrantFiled: February 25, 2014Date of Patent: August 22, 2017Assignee: Dow Global Technologies LLCInventors: Francesca Pignagnoli, Eric M. Rexrode, Kelly R. Flaherty, Giuseppe Vairo
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Patent number: 9738768Abstract: A blowing agent for thermosetting foams is disclosed. The blowing agent is predominately the trans isomer of the hydrochlorofluoroolefin (HCFO) HFCO-1233zd alone or in combination with a hydrofluoroolefin (HFO), hydrofluorocarbon (HFC), hydrochlorofluoroolefin (HCFO), a hydrocarbon. The blowing agent is effective as a blowing agent in the manufacture of thermosetting foams.Type: GrantFiled: January 11, 2016Date of Patent: August 22, 2017Assignee: Arkema Inc.Inventors: Benjamin Bin Chen, Philippe Bonnet, Brett L. Van Horn, Joseph S. Costa
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Patent number: 9738769Abstract: A process for producing water-absorbing polymer particles with high free swell rate and high permeability by polymerization of an aqueous monomer solution or suspension to give an aqueous polymer gel, wherein a thermal blowing agent essentially free of inorganic acid anions is mixed into the polymer gel, and subsequent thermal drying of the polymer gel.Type: GrantFiled: February 8, 2013Date of Patent: August 22, 2017Assignee: BASF SEInventors: Matthias Weismantel, Ulrich Riegel, Thomas Gieger, Markus Braun, Michael A. Mitchell
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Patent number: 9738770Abstract: The present invention relates to a process for devolatilising polymer-containing media such as, in particular, polymer melts, polymer solutions and dispersions and also devolatilisation apparatuses for carrying out the abovementioned process.Type: GrantFiled: October 7, 2016Date of Patent: August 22, 2017Assignee: ARLANXEO Deutschland GmbHInventors: Joerg Kirchhoff, Thomas Koenig, Michael Bierdel
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Patent number: 9738771Abstract: An organic-inorganic composite including: a plurality of anisotropic ceramic particles having different aspect ratios; a resin that is combined with the ceramic particles; and a plurality of projections projecting out from the surface of the ceramic particles, thereby increasing the shear resistance of the interface between the ceramic particles and the resin. At least some of the ceramic particles neighboring each other are closely arranged such that the projections partially contact each other, thereby increasing the shear resistance between the ceramic particles due to the contacting ceramic particles.Type: GrantFiled: January 28, 2013Date of Patent: August 22, 2017Assignee: KOREA INSTITUTE OF CERAMIC ENGINEERING AND TECHNOLOGYInventors: Younghee Kim, Sooryong Kim, Wootack Kwon, Hyungmi Lim, Yoonjoo Lee, Kyoungmok Nam, Boyeon Kim
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Patent number: 9738772Abstract: A mineral filler in a flame-retardant organic polymer composition comprising a calcium compound for a fire-resistant effect characterized in that said calcium compound comprises at least calcium hydroxide, use of same and the combustion residue obtained therefrom, and polymer sheaths for electrical cables containing the mineral filler in the flame-retardant polymer composition.Type: GrantFiled: July 12, 2013Date of Patent: August 22, 2017Assignee: S.A. Lhoist Recherche et DeveloppementInventors: Marion Lorgouilloux, Didier Lesueur, Philippe Dubois, Fouad Laoutid, Leila Bonnaud
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Patent number: 9738773Abstract: Among other things the invention provides novel flame-retardant compounds useful for increasing the flame retardance of polymers.Type: GrantFiled: August 7, 2015Date of Patent: August 22, 2017Assignee: Central Michigan UniversityInventors: Bob A. Howell, Yoseph G. Daniel
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Patent number: 9738774Abstract: There is provided herein a curing agent compound for curing thermosetting resins, e.g., epoxy resins, a composition comprising a thermoplastic and/or thermosetting resin, e.g., an epoxy resin and the curing agent, an article comprising the curing agent, and a method of making the curing agent.Type: GrantFiled: February 10, 2016Date of Patent: August 22, 2017Assignee: ICL-IP America Inc.Inventors: Andrew M. Piotrowski, Mayank P. Singh, Kali A. Suryadevara, Mariya Kozytska, Yossi Zilberman
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Patent number: 9738775Abstract: A method for enhancing an interaction between graphene nanoparticles and a poly(styrene-co-methylmethacrylate), including modifying graphene with nitric acid to form graphene nanoparticles surface modified with one or more oxygen functionalities, melt blending the poly(styrene-co-methylmethacrylate) and the modified graphene nanoparticles to obtain a nanocomposite, and exposing the nanocomposite to microwave irradiation to form defects in the graphene nanoparticles. A blend composition, including graphene nanoparticles and a poly(styrene-co-methylmethacrylate), where the graphene nanoparticles are dispersed in the poly(styrene-co-methylmethacrylate), and the graphene nanoparticles are surface modified with oxygen functionalities.Type: GrantFiled: April 19, 2017Date of Patent: August 22, 2017Assignee: King Fahd University of Petroleum and MineralsInventors: Mamdouh Ahmed Al-Harthi, Mukarram Zubair
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Patent number: 9738776Abstract: The present invention provides a process for making a silica masterbatch that contains hydrophobated silica, solution-made rubber and emulsion-made rubber. Hydrophobated silica is mixed into a latex emulsion. Solution-rubber crumb in an aqueous suspension is mixed into the latex emulsion, which is coagulated, and a crumb is recovered, further homogenized, dried and baled to yield the silica masterbatch. A well-dispersed mixture of hydrophobated silica and emulsion-made rubber is added into a steam distillation step of a solution-rubber process from which a silica masterbatch is recovered. The emulsion-made rubber can be omitted to make a silica masterbatch of solution rubber and silica without emulsion rubber. The silica masterbatch has physical properties similar to those found in a comparable dry-mixed composition, but the silica masterbatch can be incorporated more easily and less expensively into tires and other rubber products than the dry-mixed composition.Type: GrantFiled: February 19, 2015Date of Patent: August 22, 2017Assignee: Industrias Negromex, S.A. de C.V.Inventors: Christopher J. Hardiman, Xuan Fu, Robert J. Scribner, Julian Maldonado Valenzuela