Patents Issued in September 1, 2020
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Patent number: 10759875Abstract: The present invention relates to physically modified sago starch which exhibits an increased onset of gelatinization temperature and controlled viscosity development, yet retains significant hot and cold viscosity, the process of making such starch, and the use thereof. Such starches are useful in a variety of products, particularly as viscosifiers.Type: GrantFiled: October 30, 2017Date of Patent: September 1, 2020Assignee: Com Products Development, Inc.Inventor: Tarak Shah
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Patent number: 10759876Abstract: Systems for producing superabsorbent polymer particles for use in agricultural applications are disclosed. A monomer is graft polymerized onto a starch to form a starch graft copolymer. The moisture content of the starch graft copolymer is reduced through use of an extruder.Type: GrantFiled: December 22, 2011Date of Patent: September 1, 2020Assignee: UPL LIMITEDInventors: Milan H. Savich, Rodney L. Forni, William Chambers
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Patent number: 10759877Abstract: The presently disclosed subject matter provides nitric oxide-releasing polysaccharides and oligosaccharides, in particular, polyglucosamines, and their use in biomedical and pharmaceutical applications. More particularly, in some embodiments, the presently disclosed subject matter provides nitric oxide-releasing polysaccharides and oligosaccharides that release nitric oxide in a controlled and targeted manner, thereby prolonging the therapeutic effects of nitric oxide and improving the specificity of nitric oxide delivery to targeted cells and/or tissues.Type: GrantFiled: December 8, 2017Date of Patent: September 1, 2020Assignee: The University of North Carolina at Chapel HillInventors: Mark H. Schoenfisch, Yuan Lu
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Patent number: 10759878Abstract: The invention discloses a method of preparation of crosslinked materials based on polysaccharides using electromagnetic radiation in an aqueous solution containing a polysaccharide with a bound carbamate photoremovable protecting group (PPG with group —NH—CO—O—) and a polysaccharide containing an aldehyde group —CHO. The crosslinking process itself is carried out by means of a condensation reaction of the photochemically released amino group (—NH2) with the aldehyde group (—CHO) forming a bond of imine type (—N?CH—). Both processes proceed simultaneously and they can be performed under physiological conditions. The advantage of the suggested solution is the temporal and spatial control of crosslinking that allows the preparation of advanced materials for tissue engineering where the crosslink density and thus the mechanical properties in the material structure can be tailored.Type: GrantFiled: June 14, 2016Date of Patent: September 1, 2020Assignee: Contipro a.s.Inventors: Tomas Bobula, Radovan Buffa, Pavlina Prochazkova, Vladimir Velebny
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Patent number: 10759879Abstract: An alkyl metalloxane compound and a method of producing the same are provided. The alkyl metalloxane compound includes one or more alkyl aluminoxane structural units, and one or more alkyl galloxane structural units per molecule. The method comprises reacting trialkyl gallium, trialkyl aluminum, and water.Type: GrantFiled: September 24, 2018Date of Patent: September 1, 2020Assignee: NICHIA CORPORATIONInventor: Masakazu Sakaguchi
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Patent number: 10759880Abstract: A process for producing a polymer composition comprising the steps (A) to (M) as recited herein, involving the polymerization, in a polymerization reactor of a first polymer, a first stream thereof being passed into a first separator wherein a first liquid phase comprising the polymer and a first vapor phase coexist; withdrawing a first vapor stream and a first concentrated solution stream comprising the polymer from the first separator, passing at least a part of the first vapor stream to a first fractionator; withdrawing a first overhead stream and a first bottom stream from the first fractionator; recovering at least a part of the first overhead stream as a first recycle stream and passing it to the polymerization reactor; passing the first concentrated solution stream from the first separator to a second separator, wherein a second liquid phase comprising the polymer and a second vapor phase coexist; passing at least a part of the second vapor stream to a second fractionator; withdrawing a second overheadType: GrantFiled: December 21, 2016Date of Patent: September 1, 2020Assignee: Borealis AGInventors: Mohammad Al-Haj Ali, Erik Eriksson, Guhan Mathivanan, Henry Sleijster, Sameer Vijay, Christof Wurnitsch, Samuli Zitting
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Patent number: 10759881Abstract: According to one or more embodiments, a mesoporous zeolite may included a microporous framework that includes a plurality of micropores having diameters of less than or equal to 2 nm, and a plurality of mesopores having diameters of greater than 2 nm and less than or equal to 50 nm. The mesoporous zeolite may included an aluminosilicate material, a titanosilicate material, or a pure silicate material. The mesoporous zeolite may included a surface area of greater than 350 m2/g and a pore volume of greater than 0.3 cm3/g.Type: GrantFiled: October 5, 2018Date of Patent: September 1, 2020Assignees: Saudi Arabian Oil Company, King Abdullah University of Science and TechnologyInventors: Yu Han, Qiwei Tian, Xinglong Dong, Zhaohui Liu, Jean-Marie Basset, Youssef Saih, Miao Sun, Sohel Shaikh, Wei Xu
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Patent number: 10759882Abstract: A process for the preparation of a solid catalyst component for the homo or copolymerization of olefins, wherein the solid catalyst component is made from or contains Mg, Ti, halogen and an electron donor selected from cycloalkyl ethers, wherein the process includes the steps of (a) dissolving a Mg based compound and a TiCl3 based compound in a liquid medium further made from or containing a cycloalkyl ether and a compound of formula R2OH where R2 is a C1-C20 hydrocarbon group, in which the Ti/Mg molar ratio ranges from 0.1 to 0.5, the cycloalkyl ether/Mg ratio ranges from 1 to 4 and the ROH/Mg molar ratio ranges from 1 to 4; and (b) adding, to the solution coming from step (a), SiCl4 in an amount such that the R2OH/SiCl4 molar ratio ranges from 0.5 to 1.5 and maintaining the temperature in the range 50-150° C. thereby precipitating the solid catalyst component particles.Type: GrantFiled: September 25, 2017Date of Patent: September 1, 2020Assignee: Basell Poliolefine Italia S.r.l.Inventors: Simona Guidotti, Tiziano Dall'Occo, Dario Liguori, Giampiero Morini
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Patent number: 10759883Abstract: The present invention relates to a process for the continuous preparation of a polyolefin in a reactor from one or more ?-olefin monomers of which at least one is ethylene or propylene, wherein the reactor comprises a fluidized bed, an expanded section located at or near the top of the reactor, a distribution plate located at the lower part of the reactor and an inlet for a recycle stream located under the distribution plate wherein the process comprises—feeding a polymerization catalyst to the fluidized bed in the area above the distribution plate—feeding the one or more ?-olefin monomers to the reactor—withdrawing the polyolefin from the reactor—circulating fluids from the top of the reactor to the bottom of the reactor, wherein the circulating fluids are compressed using a compressor and subsequently cooled using a heat exchanger to form a cooled recycle stream comprising liquid, and wherein the cooled recycle stream is introduced into the reactor using the inlet for the recycle stream wherein a part of thType: GrantFiled: July 27, 2016Date of Patent: September 1, 2020Assignee: SABIN GLOBAL TECHNOLOGIES B.V.Inventors: Yahya Banat, Ahmad Abdullah Alshaiban, Osamah Al-Humaidan
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Patent number: 10759884Abstract: Film-forming compositions are provided comprising: (a) a zwitterionic-functional polymer; and (b) an organometallic compound. Also provided are methods of reducing adhesion of an organic substance to a substrate and methods of treating a siliceous or metal (M) oxide-containing subterranean formation penetrated by a well using the film-forming compositions described above.Type: GrantFiled: March 6, 2018Date of Patent: September 1, 2020Assignee: ACULON INC.Inventors: Eric L. Hanson, Eric L. Bruner, Edward W. Hughes
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Patent number: 10759885Abstract: A pneumatic tire produced by processing a rubber composition including a hydrogenated branched conjugated diene copolymer produced by copolymerizing a branched conjugated diene compound and a vinyl compound to form a branched conjugated diene copolymer and hydrogenating the branched conjugated diene copolymer. The branched conjugated diene compound is represented by formula (1), where R1 is an aliphatic hydrocarbon having 6 to 11 carbon atoms, the vinyl compound is represented by formula (3), where R4 is a hydrogen atom, an aliphatic hydrocarbon group having 1 to 3 carbon atoms, an alicyclic hydrocarbon group having 3 to 8 carbon atoms, or an aromatic hydrocarbon group having 6 to 10 carbon atoms.Type: GrantFiled: May 18, 2018Date of Patent: September 1, 2020Assignee: SUMITOMO RUBBER INDUSTRIES, LTD.Inventor: Kensuke Washizu
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Patent number: 10759886Abstract: Disclosed are methods for the production of polymers, including random copolymers (RCPs), in single reactor gas or slurry phase polymerization processes, and polymer compositions produced therefrom. The methods enable polymers having low melting temperatures to be made in gas and slurry phase polymerization processes, where they conventionally could not be made in these processes due to stickiness and fouling problems in the reactor.Type: GrantFiled: May 27, 2016Date of Patent: September 1, 2020Assignee: ExxonMobil Chemical Patents Inc.Inventors: Lubin Luo, Jeanette M. Diop, Jian Yang, Sudhin Datta, Patrick Brant
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Patent number: 10759887Abstract: An electric wire and coil covered with a cured product of a heat- or photo-curable fluorinated polymer and having high insulating properties and high productivity. An electric wire having a conductor wire and a covering layer covering the outer periphery of the conductor wire. The covering layer is made of a cured product of a curable composition which has a fluorinated polymer containing at least three functional groups represented by the following formula (F): —Rf1COZ1 (F). In formula (F), Rf1 is a single bond, a fluoroalkylene group, or a fluoroalkylene group with at least two carbon atoms having an etheric oxygen atom between carbon-carbon atoms, Z1 is NR1NR2H, NR3OR4 or OR5, and R1, R2, R3, R4 and R5 are each independently a hydrogen atom or an alkyl group.Type: GrantFiled: June 26, 2019Date of Patent: September 1, 2020Assignee: AGC Inc.Inventors: Masahiro Ohkura, Norihide Sugiyama
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Patent number: 10759888Abstract: (Meth)acrylate polymers are provided which have a narrow molecular weight distribution on a higher molecular weight side and can impart high shear viscosity stability to lubricating oils. A (meth)acrylate polymer (A) includes specific structural units and is such that in a differential molecular weight distribution curve obtained by gel permeation chromatography (GPC) measurement which shows the polystyrene-equivalent molecular weight of the (meth)acrylate polymer (A) normalized so that the intensity of the peak-top polystyrene-equivalent molecular weight M (t) is 1, the value a represented by a=Log Mh (t1/2)?Log M (t) is not more than 0.12 wherein Mh (t1/2) is the polystyrene-equivalent molecular weight at a point on a higher molecular weight side where the intensity is 0.5.Type: GrantFiled: January 12, 2017Date of Patent: September 1, 2020Assignee: KURARAY CO., LTD.Inventors: Fumihiko Okabe, Toru Takahashi, Atsuhiro Nakahara
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Patent number: 10759889Abstract: The present invention relates to an ABS graft copolymer, a method of preparing the same, and a thermoplastic resin composition including the same. More specifically, when an ABS graft copolymer is prepared using emulsion polymerization, a phosphate ester-based reactive emulsifier capable of acting as a metal deactivator is added, thereby reducing the amount of undesired residues remaining in the ABS graft copolymer latex. As a result, thermal stability may be improved without adding a heat stabilizer. In addition, compatibility between the ABS graft copolymer and the aromatic vinyl compound-vinyl cyanide compound copolymer may be improved by the phosphate ester-based reactive emulsifier. Therefore, a final molded part having improved impact resistance, e.g., increased impact strength, and having improved appearance quality, e.g., excellent whiteness, while having excellent thermal stability may be prepared.Type: GrantFiled: December 15, 2017Date of Patent: September 1, 2020Assignee: LG CHEM, LTD.Inventors: Yu Sung Jung, Joo Byung Chai, Jong Beom Kim, Chang Sull Kim, Eun Seon Park, Tae Young Jeon, Young Min Kim
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Patent number: 10759890Abstract: Provided are: a curable composition that has excellent flexibility and shows excellent adhesion to both a plastic substrate and a conductor layer; a coating film of the curable composition; and a printed circuit board comprising a pattern-cured coating film obtained from the coating film. The present invention relates to: a curable composition for a printed circuit board, which is characterized by comprising (A) a block copolymer, (B) a hydroxyl group-containing (meth)acrylate compound and (C) a photopolymerization initiator; a coating film obtained by photo-curing the curable composition; and a printed circuit board comprising a resist pattern formed from the coating film.Type: GrantFiled: September 30, 2014Date of Patent: September 1, 2020Assignee: TAIYO INK MFG. CO., LTD.Inventors: Masayuki Shimura, Yoshiyuki Furuta, Masao Yumoto
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Patent number: 10759891Abstract: A method for making a copolymer polyol includes (a) forming a pre-compounded thermoplastic polymeric composition by compounding from 10 wt % to 90 wt % of a solid functional additive component with from 10 wt % to 90 wt % of a polystyrene component, (b) melting the pre-compounded thermoplastic polymeric composition to form a melted thermoplastic polymeric composition, (c) combining the melted thermoplastic polymeric composition with a carrier polyol component in the presence of a stabilizer component to form a pre-mixture that includes the pre-compounded thermoplastic polymeric composition dispersed within a continuous phase of the carrier polyol component, and (d) cooling the pre-mixture to form the copolymer polyol.Type: GrantFiled: September 7, 2016Date of Patent: September 1, 2020Assignee: Dow Global Technologies LLCInventors: Hanno R. Van der Wal, Paul Cookson, Francois M. Casati, Antoon De Smet, Sven Claessens, Prashant Tatake, Bart Noordover, Brian Anthony, Jozef Van Dun
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Patent number: 10759892Abstract: The present invention provides trimerization catalyst compositions having a sterically hindered carboxylate salt used in combination with a tertiary amine catalysts having isocyanate reactive groups and methods to produce a polyisocyanurate/polyurethane foam using such trimerization catalyst compositions.Type: GrantFiled: June 18, 2015Date of Patent: September 1, 2020Assignee: Evonik Operations GmbHInventors: Boxun Leng, Juan Jesus Burdeniuc, James Douglas Tobias, Robert Hoffman, Xiubing Hu
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Patent number: 10759893Abstract: The present invention is directed to a process for preparing a porous material, at least compris-ing the steps of providing a mixture (I) comprising a composition (A) at least comprising at least one polyfunctional isocyanate as component (ai) and at least one mineral acid (aa), and a sol-vent (B), reacting the components in the composition (A) obtaining an organic gel, and drying of the gel obtained. The invention further relates to the porous materials which can be obtained in this way and the use of the porous materials as thermal insulation material and as catalysts.Type: GrantFiled: October 11, 2016Date of Patent: September 1, 2020Assignees: BASF SE, THE CURATORS OF THE UNIVERSITY OF MISSOURIInventors: Wibke Loelsberg, Marc Fricke, Dirk Weinrich, Nicholas Leventis, Chariklia Sotiriou-Leventis, Adnan M. Saeed
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Patent number: 10759894Abstract: A vegetable oil-based cartilage bionic cushioning and shock-absorbing material, and a preparation method and use thereof, is provided. The vegetable oil-based cartilage bionic cushioning and shock-absorbing material is prepared from a premix A and an isocyanate mixture B; the premix A including a vegetable oil-based modified polyol, a type 1 polyether polyol, a type 2 polyether polyol, a polymer polyol, a surfactant, a foaming agent, a chain extender, a catalyst and a cell regulator; the type 1 polyether polyol is a polyether polyol with a molecular weight of 400-1000 and a hydroxyl value of 110-280 mgKOH/g; and the type 2 polyether polyol is a polyether polyol with a molecular weight of 1000-10000 and a hydroxyl value of 25-56 mg KOH/g. The material provided by the present invention is environment-friendly and breathable with open cells, and has a high cushioning effect and a low permanent compression set value.Type: GrantFiled: December 26, 2017Date of Patent: September 1, 2020Assignee: Foshan Linzhi Polymer Materials Science and Technology Co., Ltd.Inventors: Bowei Wang, Xiaogang Wang, Keer Chen
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Patent number: 10759895Abstract: An embodiment relates to a polymerizable composition for an optical material and a polythiourethane-based compound prepared therefrom. The polythiourethane-based compound is excellent in appearance with low generation rates of stirae and bubbles.Type: GrantFiled: December 26, 2018Date of Patent: September 1, 2020Assignee: SKC CO., LTD.Inventors: Jongmin Shim, Junghwan Shin, Seung Mo Hong, Hyuk Hee Han, Jung Hwan Myung
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Patent number: 10759896Abstract: Provided is a method for producing a light rigid urethane foam superior in moldability (cell interconnection, spraying thickness, adhesiveness, etc.), heat-insulating efficiency, and others by a spraying method, using water as foaming agent. A method for producing an open-cell polyurethane foam, comprising obtaining the open-cell polyurethane foam by mixing and reacting a polyol composition containing a polyol compound, water as a foaming agent, a foam stabilizer, a catalyst, and a flame retardant with a polyisocyanate compound by a spraying method, the polyol compound containing polyols (A), (B), and (C) at a polyol (A) content of 10 to 40 wt parts, a polyol (B) content of 10 to 70 wt parts, and a polyol (C) content of 10 to 70 wt parts.Type: GrantFiled: November 18, 2016Date of Patent: September 1, 2020Assignee: Covestro Deutschland AGInventors: Hideki Wada, Takayasu Tanabe, Kenichi Sakata
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Patent number: 10759897Abstract: Provided is an active energy ray curable resin which has excellent compatibility with organic solvents, general purpose acrylic monomers, and oligomers, and a high curing property with an active energy ray, and also has a high adhesion property for each substrate. A cured film obtained by ultraviolet curing of the active energy ray curable resin has an excellent surface curing property, scratch resistance and bending resistance, while also having high transparency. Provided is a urethane modified (meth)acrylamide compound having a urethane bond and one or more (meth)acrylamide groups in the molecule. The urethane modified (meth)acrylamide compound has excellent compatibility with organic solvents, general purpose acrylic monomers, and oligomers, and exhibits a high curing property with an active energy ray.Type: GrantFiled: September 13, 2016Date of Patent: September 1, 2020Assignee: KJ CHEMICALS CORPORATIONInventors: Miki Takenouchi, Kouji Teramoto, Yusuke Adachi
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Patent number: 10759898Abstract: Described herein are compositions including heterocyclic organic compounds. More specifically, described herein are bicyclic thiadiazole-based compounds that are combined with fused thiophenes structures, along with methods for making such compounds, and uses thereof.Type: GrantFiled: September 15, 2017Date of Patent: September 1, 2020Assignee: Corning IncorporatedInventors: Mingqian He, James Robert Matthews, Weijun Niu, Arthur Lawrence Wallace
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Patent number: 10759899Abstract: The invention discloses a class of new polymers, trans-ring-fused poly(4-hydroxybutyrate)s (RF-P4HB) that exhibit a unique set of properties, including robust thermal stability and mechanical strength, quantitative recyclability to the building block monomers via thermolysis and/or chemical catalysis, and convenient production from the chemical ring-opening polymerization under ambient temperature and pressure. Another unique property is the formation of crystalline stereocomplexed polymers with high melting temperature upon mixing the two enantiomeric RF-P4HB chains via stereocomplexing co-crystallization. This invention also provides the corresponding ring-fused lactone monomer structures that enable the synthesis of the RF-P4HB polymers, through trans-fusing of rings to the parent ?-butyrolactone ring. Furthermore, a polymerization or copolymerization process for the synthesis of RF-P4HB polymers and copolymers is disclosed.Type: GrantFiled: August 2, 2018Date of Patent: September 1, 2020Assignee: Colorado State University Research FoundationInventors: Eugene Y. Chen, Jian-Bo Zhu
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Patent number: 10759900Abstract: Liquid crystalline hydroquinone-3,4?-biphenyl dicarboxylate polyesters, and methods of making them. The polyesters may be melt processed at a temperature below the thermal decomposition temperature and the isotropic temperature, and may form a liquid crystalline glass phase. The polyesters may be formed by polycondensation of hydroquinone or a hydroquinone derivative with 3,4?-biphenyl dicarboxylic acid.Type: GrantFiled: May 6, 2020Date of Patent: September 1, 2020Assignees: ExxonMobil Chemical Patents Inc., Virginia Tech Intellectual Property, Inc.Inventors: Katherine V. Heifferon, Timothy E. Long, S. Richard Turner, Yong Yang, Syamal Tallury, Ting Chen, Javier Guzman
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Patent number: 10759901Abstract: A thermally decomposable binder containing an aliphatic polycarbonate resin containing a constituting unit represented by the formula (1): wherein each of R1, R2 and R3, which may be identical or different, is a hydrogen atom, an alkyl group having from 1 to 10 carbon atoms, or an aryl group having from 6 to 20 carbon atoms; and n is 1 or 2. The thermally decomposable binder and the fine inorganic particle-dispersed paste composition, each containing an aliphatic polycarbonate resin of the present invention can be used in general molded articles, optical materials such as films, fibers, optical fibers, and optical disks, thermally decomposable materials such as ceramic binders, and lost foam casting, medicinal materials such as drug capsules, additives for biodegradable resins, main components for biodegradable resins, and the like.Type: GrantFiled: September 2, 2015Date of Patent: September 1, 2020Assignees: NATIONAL UNIVERSITY CORPORATION TOKYO UNIVERSITY OF AGRICULTURE AND TECHNOLOGY, SUMITOMO SEIKA CHEMICALS CO., LTD.Inventors: Koji Nakano, Kiyoshi Nishioka, Masahiro Suzuki, Nobutaka Fujimoto
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Patent number: 10759902Abstract: The invention relates to a process for producing polyoxymethylene block copolymers, comprising the step of activating the DMC catalyst in the presence of an OH-terminated polymeric formaldehyde starter compound by means of a defined amount of alkylene oxide, optionally followed by polymerization with alkylene oxides, if necessary in the presence of other comonomers. The invention further relates to polyoxymethylene block copolymers that can be obtained by means of such a process and to the use of these for producing polyurethane polymers.Type: GrantFiled: September 4, 2018Date of Patent: September 1, 2020Assignee: Covestro Deutschland AGInventors: Ilja Peckermann, Aurel Wolf, Jens Langanke, Christoph Gürtler, Jörg Hofmann
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Patent number: 10759904Abstract: The present invention relates to a method for preparing poly(carbonate-etherimide) compound comprising polycarbonate segment as shown in the structure (A) and polyetherimide segment as shown in the structure (B). Said method does not contain a highly toxic phosgene in its operation, can be performed easily, and can be operated at not high temperature. wherein R1 represents aromatic with 6 to 30 carbon atoms or, optionally said aromatic is bonded with heteroatom; R2 represents aromatic with 6 to 30 carbon atoms or, optionally said aromatic is bonded with heteroatom; m is an integer from 1 to 15; and n is an integer from 1 to 10.Type: GrantFiled: November 14, 2016Date of Patent: September 1, 2020Assignee: PTT GLOBAL CHEMICAL PUBLIC COMPANY LIMITEDInventors: Supakanok Thongyai, Papapida Pornsuriyasak, Suchada Tang-Amornsuksan, Sarawut Lunvongsa, Montira Uprijit, Siriwanna Ounkaew
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Patent number: 10759905Abstract: Disclosed in the present disclosure is a biodegradable amphiphilic polymer containing disulfide in the side chain, a self-crosslinked polymeric vesicle thereof and an application in the targeted therapy of lung cancer. The polymer is obtained by an activity-controllable ring-opening polymerization based on a cyclic carbonate monomer containing a functional group of dithiolane ring, which has a controllable molecular weight and a narrow molecular weight distribution, and does not require processes of protection and deprotection; the polymer obtained by the ring-opening polymerization of the cyclic carbonate monomer of the present disclosure has biodegradability and can be used to control the drug release system, the prepared lung cancer-targeted reduction-sensitive reversibly-crosslinked polymeric vesicle as a nanomedicine carrier supports stable long circulation in vivo.Type: GrantFiled: December 21, 2016Date of Patent: September 1, 2020Assignee: BrightGene Bio-Medical Technology Co., Ltd.Inventors: Jiandong Yuan, Fenghua Meng, Yan Zou, Yuan Fang, Zhiyuan Zhong
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Patent number: 10759906Abstract: Provided herein are polymeric ?-hydroxy aldehyde or ?-hydroxy ketone reagents which can be conjugated to amine-containing compounds to form stable conjugates in a single-step reaction. In selected embodiments, the polymeric reagent itself incorporates an internal proton-abstracting (basic) functional group, to promote more efficient reaction. The substituent is appropriately situated, via a linker if necessary, to position the group for proton abstraction, preferably providing a 4- or 5-bond spacing between the abstracting atom and the hydrogen atom on the ?-carbon. Also provided are methods of using the reagents and stable, solubilized conjugates of the reagents with biologically active compounds. In preferred embodiments, the polymeric component of the reagent or conjugate is a polyethylene glycol.Type: GrantFiled: January 10, 2018Date of Patent: September 1, 2020Assignee: Nektar TherapeuticsInventors: Sean M. Culbertson, Xiaoming Shen, Antoni Kozlowski, Samuel P. McManus
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Patent number: 10759907Abstract: Processes of preparing defined monomer sequence polymers are disclosed, in which a backbone portion of the polymer is first prepared by performing one or more sequential monomeric coupling reactions with intervening membrane diafiltration purification/isolation steps, followed by a step of decorating the backbone portion with one or more side chains at predetermined positions along its length. The process represents an improvement on prior art techniques, which impose limitations on the size of the side chains that may be present. Defined monomer sequence polymers that are obtainable by the processes are also disclosed.Type: GrantFiled: September 9, 2016Date of Patent: September 1, 2020Assignee: IP2IPO INNOVATIONS LIMITEDInventors: Piers Gaffney, Andrew Livingston, Rongjun Chen, Ruijiao Dong, Ruiyi Liu, Patrizia Marchetti
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Patent number: 10759908Abstract: Membrane comprising a block copolymer comprising polyarylene ether blocks and polyalkylene oxide blocks, wherein said polyalkylene oxide blocks comprise at least one polyethylene oxide segment and at least one segment of at least one polyalkylene oxide that is different from polyethylene oxide.Type: GrantFiled: July 19, 2018Date of Patent: September 1, 2020Assignee: BASF SEInventors: Martin Weber, Thomas Weiss, Christian Maletzko, Nicole Janssen
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Patent number: 10759909Abstract: The invention relates to a curable composition, containing (A) at least one polyorganosiloxane, which has at least one hydroxy group bound to a silicon atom, (B) at least one silane of the formula (1): Si(R1)m(R2)n(R3)4-(m+n)??(1), as defined herein, (C) at least one aminosilane, and (D) at least one tin compound, whereby the molar ratio of the aminosilane to the tin compound is 1:1 to 50:1, as well as to the preparation and use thereof.Type: GrantFiled: September 12, 2017Date of Patent: September 1, 2020Assignee: Henkel AG & Co. KGaAInventors: Andrea Gutacker, Johann Klein, Helene Boudet, Adrian Duracu, Sebastian Kapusta
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Patent number: 10759910Abstract: A method for manufacturing an organism adhesion reduction paint includes a first process of gelling a raw material composition that includes polyvinyl alcohol and at least one of a hydroxyl group-containing inorganic compound or an inorganic oxide; a second process of drying and subsequently pulverizing a resulting product in the first process to thereby obtain a composite gel fine powder; and a third process of adding the composite gel fine powder to a main component of a two-component urethane paint and stirring, to thereby prepare a main component of the organism adhesion reduction paint, and also adding a curing agent immediately before use.Type: GrantFiled: July 11, 2016Date of Patent: September 1, 2020Assignees: FUJI SILYSIA CHEMICAL LTD., DAISYO GREEN INDUSTRY CO., LTD., KURARAY CO., LTD.Inventors: Mitsuteru Ogawa, Shinji Yamamoto, Kiyoshi Kuroda, Mutsuhiro Ito, Yoshio Nakano, Akio Kameyama, Tadahito Fukuhara, Keisuke Morikawa
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Patent number: 10759911Abstract: A thermoplastic starch composition acquired from compounding a mixture comprises starch-containing agricultural waste in 45 to 70% by weight of total composition that the agricultural waste contains starch content less than 50% in dry weight; thermoplastic synthetic polymer in 25 to 50% by weight of total composition; plasticizer in 1 to 10% by weight of total composition; and coupling agent in 1 to 5% by weight of total composition; wherein the compounding is performed at a first temperature which is higher than room temperature.Type: GrantFiled: January 3, 2019Date of Patent: September 1, 2020Assignee: TEXCHEM POLYMERS SDN BHDInventor: Meng Yan Pun
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Patent number: 10759912Abstract: Provided are a superabsorbent polymer and a preparation method thereof. The superabsorbent polymer may effectively avoid a rewetting phenomenon after absorbing liquid, because a saline solution hardly remains in the empty spaces between swollen gel particles. Accordingly, the superabsorbent polymer may be used to provide hygienic materials, such as diapers, sanitary napkins, etc., which have a fluffy texture even after body fluid is discharged thereto.Type: GrantFiled: April 12, 2017Date of Patent: September 1, 2020Assignee: LG Chem, Ltd.Inventors: Soo Jin Lee, Sang Gi Lee, Hye Mi Nam, Min Ho Hwang, Chang Sun Han
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Patent number: 10759913Abstract: This invention relates generally to vulcanization compounds and relates more specifically to vulcanization compositions with reduced allergenic potential that include accelerator compositions for vulcanizing elastomeric articles. Vulcanization compositions are disclosed that include a single fugitive dihydrocarbyl xanthogen polysulfide accelerator and a single aldehyde-aniline condensate accelerator.Type: GrantFiled: December 11, 2018Date of Patent: September 1, 2020Assignee: Allegiance CorporationInventors: Seong Fong Chen, Wei Cheong Wong
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Patent number: 10759914Abstract: Rubber compositions and articles made such rubber compositions having at least 80 phr of a styrene-butadiene elastomer modified with a functional group that is capable of interacting with a silica reinforcing filler and having a glass transition temperature of between ?60° C. and less than ?40° C. The rubber compositions may also include an effective amount of a plasticizing system having a plasticizing resin and a plasticizing liquid, wherein the effective amount of the plasticizing system provides the rubber composition with a shear modulus G* measured at 60° C. of between 0.9 MPa and 1.5 MPa and a Tg of between ?35° C. and ?15°. The filler for the rubber compositions is silica and there is further a curing system.Type: GrantFiled: December 23, 2016Date of Patent: September 1, 2020Assignee: Compagnie Generale des Etablissements MichelinInventors: Raymond Stubblefield, Olivier Piffard
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Patent number: 10759915Abstract: Are disclosed a thermoplastic material for vehicle interior or exterior having not only excellent strength in winter but also excellent sound-absorption and heat-resistance, a method for preparing the same and an article for vehicle interior or exterior using the same. A method for producing a thermoplastic material for interior or exterior of vehicle, comprising the steps of: forming a fiber sheet or web by randomly arranging fibers having a length of 50 mm or more, the fibers being selected from the group consisting of glass fibers, carbon fibers, basalt fibers, aramid fibers and mixtures thereof; applying polyethylene powders to one side or both sides of the fiber sheet or web; forming a fiber reinforced mat by heating and pressing the fiber sheet or web to which the polyethylene powders are applied; and laminating the fiber reinforced mat on one side or both sides of a polypropylene base.Type: GrantFiled: January 8, 2018Date of Patent: September 1, 2020Assignee: HADO FNC CO., LTD.Inventors: Young Su Kim, Jong Eun Ha
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Patent number: 10759916Abstract: The present invention provides a lamp cover comprising (1) a thermoplastic resin having a visible light transmissivity of 50% or higher measured in a form of a plate-like molded body having a thickness of 2 mm according to JIS R 3106, (2) a composite tungsten oxide, (3) at least one material selected from the group consisting of a metal soap, an antioxidant, and a first selective wavelength absorbing material having a maximum absorption wavelength within a range of 200 to 350 nm, whose content is 0.03% by mass or more based on a total content (100% by mass) of the components (1) to (4), and (4) a second selective wavelength absorbing material having a maximum absorption wavelength within a range of 450 to 550 nm.Type: GrantFiled: February 21, 2018Date of Patent: September 1, 2020Assignee: SUMITOMO CHEMICAL COMPANY, LIMITEDInventors: Hidenori Kadoya, Kazuhiro Yamazaki
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Patent number: 10759917Abstract: An electroconductive film including a substrate film, and an organic electroconductive layer disposed on the substrate film, wherein the substrate film is formed of a resin containing an alicyclic structure-containing polymer having crystallizability, a thickness of the substrate film is 5 ?m or more and 50 ?m or less, and a crystallization degree of the alicyclic structure-containing polymer having crystallizability is 30% or more. The alicyclic structure-containing polymer having crystallizability is preferably a hydrogenated product of a ring-opening polymer of dicyclopentadiene.Type: GrantFiled: July 14, 2017Date of Patent: September 1, 2020Assignee: ZEON CORPORATIONInventor: Toshihide Murakami
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Patent number: 10759918Abstract: Methods are provided for surface-modifying a rubber vulcanizate or a thermoplastic elastomer. The methods allow these rubber vulcanizate or thermoplastic elastomer objects to have a lubricating surface layer chemically fixed thereon, instead of having a resin coating which has drawbacks such as a reduction in lubricity due to e.g. separation or peeling of the coating during movement within a vessel or tract. The present invention relates to a method for surface-modifying an object made of a rubber vulcanizate or a thermoplastic elastomer, the method including: step 1 of forming polymerization initiation points on a surface of the object; and step 2 of radically polymerizing a monomer starting from the polymerization initiation points by irradiation with ultraviolet light having a wavelength of 300 to 400 nm in the presence of an alkali metal salt to grow polymer chains on the surface of the object.Type: GrantFiled: July 5, 2016Date of Patent: September 1, 2020Assignee: SUMITOMO RUBBER INDUSTRIES, LTD.Inventors: Shunsuke Kosaka, Yasuhisa Minagawa
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Patent number: 10759919Abstract: Combinations of open cell flexible foams with polyurethane gel particles, and methods of making the combinations are described using a variety of procedures. The open cell flexible foam may partially or wholly comprise polyurethane foam and latex foam.Type: GrantFiled: October 29, 2018Date of Patent: September 1, 2020Assignee: L&P Property Management CompanyInventors: Bruce W. Peterson, Mark L. Crawford
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Patent number: 10759920Abstract: The present disclosure relates to compositions comprising E-1,1,1,4,4,4-hexafluoro-2-butene and additional compounds that may be useful as refrigerants, heat transfer compositions, aerosol propellants, foaming agents, blowing agents, solvents, cleaning agents, carrier fluids, displacement drying agents, buffing abrasion agents, polymerization media, expansion agents for polyolefins and polyurethane, gaseous dielectrics, power cycle working fluids, extinguishing agents, and fire suppression agents in liquid or vapor form, and in methods for detecting leaks.Type: GrantFiled: February 3, 2016Date of Patent: September 1, 2020Assignee: THE CHEMOURS COMPANY FC, LLCInventors: Mario Joseph Nappa, Xuehui Sun, Ivan Sergeyevich Baldychev, Sheng Peng, Konstantinos Kontomaris, Barbara Haviland Minor, Joseph Anthony Creazzo
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Patent number: 10759921Abstract: A method for producing an aqueous foam comprising (a) preparing a solution comprising at least one surfactant and at least one protic polar solvent, (b) bringing the solution into contact with a pressurised gas to obtain a two-phase mixture, and (c) injecting the two-phase mixture to obtain the aqueous foam after expansion or dispersion of the gas. The solution further comprises at least one gelling compound chosen from a non-nitrogenous polysaccharide and gelatin. An aqueous foam obtained by such method and uses of the same, in particular in the fields of decontamination, the purification of effluents, or the defusing or containment of explosive devices or suspected explosive devices.Type: GrantFiled: November 17, 2015Date of Patent: September 1, 2020Assignee: COMMISSARIAT A'LENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVESInventors: Stephane Cadra, Jean-Felix Salas, Alexia Balland-Longeau, Francois Garonne, Sylvain Faure, Bruno Imbert
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Patent number: 10759922Abstract: A low smoke, zero halogen (LSZH) polymer composition is provided. The LSZH polymer composition includes a polymer resin, and a flame retardant package dispersed within the polymer resin. Less than 25% by weight of the polymer composition is the flame retardant package. The flame retardant package includes an acid source, a carbon source, and an LSZH additive. The LSZH additive includes a polyoxometalate ionic liquid and a synergist carrier. The LSZH polymer composition has a limiting oxygen index of greater than 31%. The LSZH polymer compound is suitable for use in electrical or tele-communication cables.Type: GrantFiled: November 16, 2018Date of Patent: September 1, 2020Assignee: CORNING OPTICAL COMMUNICATIONS LLCInventors: Dayue Jiang, Kevin Andrew Vasilakos
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Patent number: 10759923Abstract: Described herein are component compositions comprising a blend of a polymer resin together with silica glass beads. In certain embodiments, the components demonstrate improved abrasion resistance as do the industrial fabrics produced that comprise at least one component of the instant disclosure.Type: GrantFiled: May 18, 2016Date of Patent: September 1, 2020Assignee: Albany International Corp.Inventors: Dhruv Agarwal, Louis Jay Jandris
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Patent number: 10759924Abstract: The invention provides an acetylacetone metal salt having on the surface a coating formed of a hydrocarbon wax having substantially no acid value, wherein the acetylacetone metal salt is at least one selected from the group consisting of calcium salt, magnesium salt and zinc salt.Type: GrantFiled: February 23, 2017Date of Patent: September 1, 2020Assignee: SAKAI CHEMICAL INDUSTRY CO., LTD.Inventors: Koichi Tsuda, Yasuhiro Tai
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Patent number: 10759925Abstract: A preparation method of a rubber composition for a tire assures that good processability can be obtained even if a silane coupling agent having a mercapto group is blended. The preparation method of a rubber composition for a tire characterized by initiating kneading of a rubber component and a compound of the formula (1) before kneading the rubber component and a silane coupling agent having a mercapto group. (Wherein R1 represents a straight-chain or branched chain alkyl group having 1 to 18 carbon atoms or a cycloalkyl group having 3 to 12 carbon atoms, and R2 and R3 together with nitrogen bonded thereto form a succinimide group, a maleimide group or a phthalimide group.Type: GrantFiled: September 15, 2017Date of Patent: September 1, 2020Assignee: SUMITOMO RUBBER INDUSTRIES, LTD.Inventors: Tatsuhiro Tanaka, Takayuki Nagase, Keiji Ikeda