Slurried, Dispersed, Or Suspended Ingredient Admixed With Previously Formed Latex, Aqueous Dispersion Or Aqueous Suspension Of A Solid Polymer Patents (Class 523/334)
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Patent number: 11839247Abstract: A glove of a form typically, although not necessarily exclusively, provided for single or limited use purposes and discarded thereafter. The glove is to prevent contact between a product and a person's hand and to avoid contamination. The glove material includes components capable of detection by at least one form of noncontact detection apparatus which renders the glove or portion detectable if discarded and inadvertently becomes part of a manufacturing process or product. The components render the glove detectable by using metal detection apparatus and/or X-ray detection apparatus which may allow removal of the glove. The glove may also include an antimicrobial agent as part to prevent or reduced contamination on the surface of the glove. The glove can also be rendered biodegradable.Type: GrantFiled: November 14, 2019Date of Patent: December 12, 2023Assignee: Detectamet LimitedInventor: Sean Ronald Smith
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Patent number: 11529439Abstract: Self-crosslinking hydrophilic coatings and methods of forming the same are disclosed. The lubricious hydrophilic coatings may be formed on the surfaces of medical devices. The self-crosslinking hydrophilic coating formulations form a hydrophilic coating when the solvent of the hydrophilic coating formulation is dried off, or otherwise removed, from the formulation.Type: GrantFiled: May 4, 2018Date of Patent: December 20, 2022Assignee: Hollister IncorporatedInventors: John P. O'Mahony, David J. Farrell
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Patent number: 10604635Abstract: A carbon black pellet comprising a plurality of agglomerates, aggregates, or primary carbon black particles and a binder including a functional polymer.Type: GrantFiled: September 22, 2015Date of Patent: March 31, 2020Assignee: Bridgestone Bandag, LLCInventor: David L. Bender
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Patent number: 10450397Abstract: The present invention relates to a process for preparing a polymer with a mass Mw of less than 300 000 g/mol (especially between 1000 and 300 000 g/mol), comprising a step (E) of controlled radical polymerization in which the following are placed in contact in an aqueous medium in which are dispersed surfactant micelles: ethylenically unsaturated hydrophilic monomers predominantly present in the aqueous medium; partially water-soluble ethylenically unsaturated hydrophobic monomers different from the preceding monomers, at least partly present in the surfactant micelles, and having a solubility in the aqueous medium at least equal to that of hexyl acrylate; at least one radical polymerization initiator; and at least one radical polymerization control agent.Type: GrantFiled: March 16, 2015Date of Patent: October 22, 2019Assignee: RHODIA OPERATIONSInventors: Simon Harrisson, James Wilson
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Patent number: 10377933Abstract: The present technology relates to an antifog coating composition comprising a matrix, a hydrophilic compound, and a surfactant. The antifog coating composition may further comprise a thermal or a photo-initiator. The antifog coating composition may be applied to a polycarbonate substrate.Type: GrantFiled: January 14, 2016Date of Patent: August 13, 2019Assignee: MOMENTIVE PERFORMANCE MATERIALS INC.Inventors: Raghuraman Govindan Karunakaran, Indumathi Ramakrishnan, Andreas Haeuseler, Keith J. Weller
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Patent number: 10092663Abstract: Polymers are described herein comprising: a reaction product of a prepolymer solution including at least one macromer, at least one flexomer, and at least one visualization agent. Methods of making and using these polymers are also described.Type: GrantFiled: April 3, 2015Date of Patent: October 9, 2018Assignee: Terumo CorporationInventors: Michael Constant, Gregory M. Cruise, Samuel Chen
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Patent number: 9834658Abstract: The present invention provides: a rubber composition obtained by mixing 30 to 80 parts by mass of carbon black, whose DBP absorption value and CTAB adsorption specific surface area satisfy the following relational formulas (I) and (II), into 100 parts by mass of a rubber component, wherein macrodispersion D(%) of the carbon black in the rubber composition is 1% or more and less than 10%, and the rubber composition has high performance and excellent processability such as roll workability and the like; and a rubber product such as a tire having reduced rolling resistance and excellent fatigue resistance and abrasion resistance. DBP absorption value(cm3/100 g)<3.0×(CTAB adsorption specific surface area(m2/g))?270??(I) DBP absorption value(cm3/100 g)<115??(II) CTAB adsorption specific surface area(m2/g)<230??(III).Type: GrantFiled: April 30, 2015Date of Patent: December 5, 2017Assignee: BRIDGESTONE CORPORATIONInventor: Hideshi Yanagi
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Patent number: 9808039Abstract: The present invention reduces the minimum detectable volume of a piece of a glove in the detection using a metal detector. A glove made of a rubber or resin film which contains magnetic particles, wherein the quantity of the magnetic particles is 0.2 to less than 40 mass % relative to the whole of the film; and the magnetic particles comprise secondary particles formed by the agglomeration of primary particles.Type: GrantFiled: June 12, 2014Date of Patent: November 7, 2017Assignees: Midori Anzen Co. Ltd., Hartalega SDN BHDInventors: Norihide Enomoto, Taichi Ogawa, Daisuke Hirama, Kam Hon Kuan, Mun Leong Kuan, Eu Jin Kuan, Mei Ling Cheah, Bin Mat Satar Mohd Zaidi
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Patent number: 9758667Abstract: The present invention provides shelf stable redispersible multilayer polymer particles (RDPs) comprising a major proportion of epoxy resins, a methacrylic acid or anhydride containing alkali soluble polymer outer layer and a hydrophobic chain transfer agent or a high glass transition temperature colloidal stabilizer, such as poly(vinyl pyrrolidinone) or its copolymer, as well as to methods of making the same.Type: GrantFiled: October 1, 2013Date of Patent: September 12, 2017Assignees: Rohm and Haas Company, Dow Global Technologies LLCInventors: Liang Chen, Mark D. Westmeyer
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Patent number: 9745422Abstract: Process for the preparation of a mercapto-terminated liquid polymer comprising the steps of: a) reacting (para)formaldehyde with a halo-alcohol to form a reaction mixture comprising bis(2-dihaloalkyl)formal and b) reacting the reaction mixture of step a) with either (i) sodium polysulfide or (ii) a combination of sodium hydrosulfide and sulfur, wherein the process is performed in the presence of a branching agent selected from the group consisting of di-aldehydes and their corresponding actetals and hemi-acetals.Type: GrantFiled: February 23, 2015Date of Patent: August 29, 2017Assignee: AKZO NOBEL CHEMICALS INTERNATIONAL B.V.Inventors: Manfred Menzel, Olaf Klobes, Volker Burkhardt
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Patent number: 9616712Abstract: Provided are a process for efficiently producing a rubber wet master batch in which a dispersibility of carbon black in the rubber is improved, in which a reinforcing property and an abrasion resistance of the rubber can be enhanced by using carbon black having a high surface activity, in which a yield of the carbon black in the wet master batch obtained is not reduced and in which a handling property of the carbon black is good as compared with master batches prepared by using a granulated and dried substance of carbon black prepared by a conventional wet method and non-granulated carbon black, a carbon black-containing rubber wet master batch obtained by the above process and a rubber composition and a tire prepared by using the master batch.Type: GrantFiled: March 16, 2010Date of Patent: April 11, 2017Assignee: BRIDGESTONE CORPORATIONInventors: Atsushi Nakayama, Masaaki Izuchi, Fumiteru Nishiura, Takeshi Kasai, Kenji Hara, Takashi Yagi
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Patent number: 9603547Abstract: Disclosed herein is an integrated therapeutic and imaging catheter. The catheter comprises an inner member defining a guidewire lumen, a balloon assembly, a treatment device mounted about the balloon assembly, and an imaging device. The balloon assembly comprises an inner sleeve surrounding the inner member and a connection medium, wherein the connection medium is disposed between the balloon inner sleeve and the inner member, and an outer sleeve surrounding the inner sleeve. The imaging device is disposed distal to the balloon assembly and is coupled to the connection medium.Type: GrantFiled: December 4, 2013Date of Patent: March 28, 2017Assignee: Volcano CorporationInventor: Jeremy Stigall
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Patent number: 9290626Abstract: Preparation of a masterbatch of diene elastomer and silica including preparing at least one silica dispersion in water; bringing into contact and mixing an elastomer latex and the aqueous silica dispersion in the presence of a calcium salt in order to obtain a coagulum; and recovering the coagulum and drying the recovered coagulum in order to obtain the masterbatch. The molar content of calcium cations, defined as the number of moles of calcium cations of the calcium salt per BET unit area of the silica, is between 1.19*10?6 and 2.81*10?6 mol/m2.Type: GrantFiled: October 10, 2012Date of Patent: March 22, 2016Assignees: COMPAGNIE GENERALE DES ETABLISSEMENTS, MICHELIN RECHERCHE ET TECHNIQUE S.A.Inventors: Benoit De Gaudemaris, Geraldine Laffargue, Julien Berriot
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Patent number: 9290627Abstract: Preparation of a masterbatch of diene elastomer and silica including preparing at least one silica dispersion in water; bringing into contact and mixing an elastomer latex and the aqueous silica dispersion in the presence of a metal salt having an at least divalent metal element, in order to obtain a coagulum; and recovering the coagulum and drying same in order to obtain the masterbatch. The metal cation molar ration, defined as the number of moles of metal cations of the metal salt per BET unit area of the silica, is between 9.375*10?7 and 1.875*10?5 mol/m2.Type: GrantFiled: October 10, 2012Date of Patent: March 22, 2016Assignees: Compagnie Generale des Establissements Michelin, Michelin Recherche et Technique S.A.Inventors: Benoit De Gaudemaris, Geraldine Laffargue, Julien Berriot
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Patent number: 9254349Abstract: The present invention relates to a medical device comprising both pyrolytic carbon and an NO generator, methods of making same, and methods of using same.Type: GrantFiled: February 9, 2010Date of Patent: February 9, 2016Assignee: St. Jude Medical, Inc.Inventors: Zhengrong Zhou, Stephanie M. Board, Anna Norlin-Weissenrieder, Biyun Wu
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Patent number: 9193877Abstract: A waterborne base coat having a special-effect color and which contains aqueous microgel as binder, 0.5 to 2 wt.-% of poly(meth)acrylic acid thickener and 2 to 7 wt.-% of non-ionically emulsified EVA copolymer wax with a drop point of the wax portion of 80 to 110° C., the wt.-% in each case calculated as solids and relative to the solids content of the waterborne base coat.Type: GrantFiled: July 25, 2011Date of Patent: November 24, 2015Assignee: AXALTA COATING SYSTEMS IP CO., LLCInventors: Frank Tessari, Ralf Wilhelms
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Patent number: 9150749Abstract: A method of preparing a coating composition. The method comprises preparing a mixture that includes a releasing agent, thickening agents, and vinyl acetate-acrylic copolymer. Another embodiment is a method of forming a film, comprising, providing the coating composition and applying the coating composition to a surface. Another embodiment is a protective coating comprising a film, that includes the coating composition, applied to a surface of a manufactured product.Type: GrantFiled: March 13, 2013Date of Patent: October 6, 2015Assignee: Groco Specialty Coatings CompanyInventors: George W Grogan, Robert H Boyd
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Patent number: 9096690Abstract: An object of the present invention is to provide a hydrophilic cellulose derivative fine particle having a small particle size, a dispersion liquid thereof and a dispersion body thereof; and provide a diagnostic reagent composed of the hydrophilic particle, which is excellent in storage stability and does not require excess components, such as an emulsifier or surfactant. The cellulose derivative fine particle of the present invention is a cellulose derivative fine particle comprising a cellulose derivative with a part of hydroxyl groups of cellulose being substituted with a substituent, wherein the average particle diameter is from 9 to 1,000 nm; and the diagnostic reagent of the present invention is a diagnostic reagent obtained by loading a substance differentially interacting with a test object substance on the above-described cellulose derivative fine particle.Type: GrantFiled: March 30, 2009Date of Patent: August 4, 2015Assignee: ASAHI KASEI FIBERS CORPORATIONInventors: Yoshiyuki Shiomi, Toshihiko Matsui, Masanori Doi
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Publication number: 20150141547Abstract: The present invention is directed to a process for the preparation of an aqueous suspension of self-binding pigmentary particles comprising the following stages: (a) forming one or more aqueous suspensions of at least one inorganic matter comprising calcium carbonate; (b) forming or obtaining one or more aqueous solutions or suspensions or emulsions of at least one binder; and (c) co-grinding the aqueous suspension or suspensions obtained in stage a) with the aqueous solutions or suspensions or emulsions obtained in stage b) in a mill so as to obtain an aqueous suspension of self-binding pigmentary particles.Type: ApplicationFiled: November 18, 2014Publication date: May 21, 2015Applicant: Omya International AGInventors: Patrick Gane, Joachim Schoelkopf
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Patent number: 8957135Abstract: The present invention relates to a composite powder, preparation and use thereof. The composite powder according to the present invention is prepared by intimately mixing an irradiated or non-irradiated rubber latex with a slurry of inorganic particles in a ratio corresponding to that of rubber particles to inorganic particles in the composite powder according to the present invention, and then drying the resultant mixture. The composite powder according to the present invention comprises agglomerates composed of powdery rubber particles and inorganic particles, with inorganic particles being uniformly distributed either inside the agglomerats or both inside the agglomerates and on the surfaces thereof. The composite powder according to the present invention can be easily dispersed in plastic matrixes and thus can be compounded with plastics to produce toughened plastics and thermoplastic elastomers.Type: GrantFiled: December 31, 2012Date of Patent: February 17, 2015Assignees: China Petroleum & Chemical Corporation, Sinopec Beijing Research Institute of Chemical IndustryInventors: Yiqun Liu, Jinliang Qiao, Xiaohong Zhang, Fan Huang, Jianming Gao, Banghui Tan, Genshuan Wei, Zhihai Song, Zhida Chen
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Patent number: 8957122Abstract: A thermoplastic molding composition is provided, which comprises A) from 30 to 90% by weight of at least one thermoplastic polymer, B) from 10 to 70% by weight of microcapsules with a capsule core made of latent-heat-accumulator material and a polymer as capsule wall, where the latent-heat-accumulator material has its solid/liquid phase transition in the temperature range from ?20° C. to 120° C.Type: GrantFiled: November 21, 2011Date of Patent: February 17, 2015Assignee: BASF SEInventors: Stephan Altmann, Dirk Opfermann, Tina Schroeder-Grimonpont, Marco Schmidt
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Patent number: 8940357Abstract: A medical device, such as a medical wire, which includes a coating applied to the surface of the medical wire. The coating includes a base layer bonded to the surface of the medical wire and an at least partially transparent low-friction top coat applied to the base layer. The base layer includes heat activated pigments that change color when heated above a color shifting temperature. In one embodiment, the color of the pigment in one area contrasts with the color of the pigment in an adjacent area without otherwise affecting the low-friction surface of the coating. The areas of different color created in locations along the length of the low-friction coated medical wire form markings which, as an example, enable a surgeon to determine the length of the medical wire inserted into a body by observing the markings on the portion of the marked medical wire located exterior to the body.Type: GrantFiled: June 27, 2012Date of Patent: January 27, 2015Assignee: Innovatech LLCInventor: Bruce Nesbitt
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Publication number: 20140316028Abstract: A process for preparing a completely delaminated graphene oxide/rubber nanocomposite. The process combines emulsion compounding with flocculation or spray drying, retains the morphology of graphene oxide/rubber composite in a liquid state, and achieves highly dispersed and highly delaminated morphology dispersed on nano scale. Furthermore, a substance able to produce ionic bonding or chemical bonding with the surface functional groups of graphene oxide is added to graphene oxide/hydrosol, as a surfactant, thus the interfacial bonding between graphene oxide and the rubber is increased. The composite is subjected to subsequent compounding and vulcanization to prepare a vulcanizate with dynamic performance, such as a high tensile strength, stress at a definite elongation, tearing strength, etc.Type: ApplicationFiled: June 29, 2014Publication date: October 23, 2014Inventors: Li LIU, Yingyan MAO, Fazhong ZHANG, Shipeng WEN
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Publication number: 20140316029Abstract: The present invention relates to a process for the production of powders redispersible in water comprising an organic component and a water-soluble organic polymeric protective colloid. The organic component is dispersed and stabilized with the protective colloid in water to form a stable dispersion which is dried to form the powder redispersible in water. The organic component comprises abietic acid, sylvic acid, neoabietic acid, levopinaric acid, pimaric acid, isopimaric acid and/or palustric acid and/or their derivatives. The water-soluble organic polymeric protective colloid comprises synthetic protective colloids and naturally and/or synthetically produced biopolymer which can be synthetically modified. The obtained powder reduces efflorescence in hydraulically set systems.Type: ApplicationFiled: February 18, 2014Publication date: October 23, 2014Applicant: AKZO NOBEL N.V.Inventors: Thomas ABERLE, Adrian KELLER
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Publication number: 20140249249Abstract: Preparation of a masterbatch of diene elastomer and silica including preparing at least one silica dispersion in water; bringing into contact and mixing an elastomer latex and the aqueous silica dispersion in the presence of a calcium salt in order to obtain a coagulum; and recovering the coagulum and drying the recovered coagulum in order to obtain the masterbatch. The molar content of calcium cations, defined as the number of moles of calcium cations of the calcium salt per BET unit area of the silica, is between 1.19*10?6 and 2.81*10?6 mol/m2.Type: ApplicationFiled: October 10, 2012Publication date: September 4, 2014Inventors: Benoit De Gaudemaris, Geraldine Laffargue, Julien Berriot
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Patent number: 8716366Abstract: The present invention relates to a process for preparing tri-filler incorporated natural rubber master batch. The fillers used in the present invention are carbon black, silica and nano-clay (modified montmorillonite clay, Cloisite 93 A). The process of preparing fillers incorporated master batch involves preparation of the individual filler dispersions by mixing each filler with surfactants. Further fresh rubber latex is soap sensitized by mixing it with surfactant. The filler dispersions are added to the soap sensitized rubber latex slowly under stirring to form the master mix. Then the master mix is coagulated by the addition of acid to form coagulum. The coagulum is dewatered and dried to obtain filler incorporated natural rubber master batch.Type: GrantFiled: July 25, 2012Date of Patent: May 6, 2014Inventors: Rosamma Alex, Kavumnadayil Krishnan Sasidharan, James Jacob
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Patent number: 8536249Abstract: An elastomer composite includes the coagulated product of a mixture of a particulate slurry and a latex blend comprising skim latex and at least one of field latex and latex concentrate.Type: GrantFiled: August 28, 2008Date of Patent: September 17, 2013Assignee: Cabot CorporationInventors: Xuan Zhang, Michael D. Morris
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Patent number: 8362128Abstract: The present invention relates to a composite powder, preparation and use thereof. The composite powder according to the present invention is prepared by intimately mixing an irradiated or non-irradiated rubber latex with a slurry of inorganic particles in a ratio corresponding to that of rubber particles to inorganic particles in the composite powder according to the present invention, and then drying the resultant mixture. The composite powder according to the present invention comprises agglomerates composed of powdery rubber particles and inorganic particles, with inorganic particles being uniformly distributed either inside the agglomerats or both inside the agglomerates and on the surfaces thereof. The composite powder according to the present invention can be easily dispersed in plastic matrixes and thus can be compounded with plastics to produce toughened plastics and thermoplastic elastomers.Type: GrantFiled: April 5, 2004Date of Patent: January 29, 2013Assignees: China Petroleum & Chemical Corporation, Sinopec Beijing Research Institute of Chemical IndustryInventors: Yiqun Liu, Jinliang Qiao, Xiaohong Zhang, Fan Huang, Jianming Gao, Banghui Tan, Genshuan Wei, Zhihai Song, Zhida Chen
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Patent number: 8349918Abstract: An organic siloxane composite material containing polyaniline/carbon black and a preparation method thereof are disclosed. The organic siloxane composite material containing polyaniline/carbon black consists of a plurality of polyaniline/carbon black composites distributed in organic siloxane precursor while the organic siloxane composite material containing polyaniline/carbon black includes from 10 to 30 weight percent of polyaniline/carbon black composites. The preparation method of organic siloxane composite material containing polyaniline/carbon black includes the steps of: distributing a plurality of polyaniline/carbon black composites in organic siloxane precursor to produce a first solution; and adding a cross-linking agent into the first solution, after reaction with each other, an organic siloxane composite material containing polyaniline/carbon black is produced.Type: GrantFiled: January 21, 2009Date of Patent: January 8, 2013Assignee: Chung Shan Institute of Science and Technology, Armaments Bureau, M.N.D.Inventors: Cheng-Chien Yang, Kuo-Hui Wu, Wang Tsae Gu, Yuen-Hsin Peng
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Patent number: 8269409Abstract: The present invention comprises a process of mixing a luminous substance in powder form to a transferable grade molding compound in a pelletized or powder form, such as a clear epoxy, to derive a homogeneous mixture that can be pressed and sintered into solid pellets. The solid pellets are further processed so as to permit their deposition on and around a light emitting semiconductor driver so as to obtain a white light emitting semiconductor device. This white light emitting device can be used in a variety of lighting applications.Type: GrantFiled: March 14, 2005Date of Patent: September 18, 2012Assignee: Microsemi CorporationInventor: Stephen G. Kelly
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Patent number: 8197641Abstract: Process for treating aqueous slurries of finely divided fillers, an aqueous dispersion of at least one latex and an aqueous slurry of at least one starch being metered separately from one another into an aqueous slurry of at least one finely divided filler.Type: GrantFiled: July 4, 2008Date of Patent: June 12, 2012Assignee: BASF SEInventors: Anton Esser, Hans-Joachim Haehnle, Marc Schroeder
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Patent number: 8192580Abstract: A process for treating aqueous slurries of finely divided fillers, wherein the treatment is carried out by heating an aqueous slurry of at least one finely divided filler and then by adding an aqueous dispersion of at least one latex.Type: GrantFiled: July 4, 2008Date of Patent: June 5, 2012Assignee: BASF SEInventors: Anton Esser, Hans-Joachim Haehnle, Marc Schroeder
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Patent number: 8183314Abstract: Provided are oil-in-water and water-in-oil emulsion compositions including from 0.01 to 5 wt % of a halogenated elastomer emulsifier, and optionally from to 0.5 wt % of a polyalkylene amine co-emulsifier. The emulsion compositions disclosed herein provide for increased interfacial elasticity and decreased interfacial tension at the oil-water interface to increase resistance to coalescence of dispersed water droplets of a water-in-oil emulsion or oil droplets of an oil-in-water emulsion. The emulsion compositions disclosed herein are suitable for lubricant applications due to their resistance to shear thinning.Type: GrantFiled: June 26, 2009Date of Patent: May 22, 2012Assignee: Exxonmobil Research and Engineering CompanyInventors: Ramesh Varadaraj, Cornelius Hendrick Brons, David John Lohse
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Patent number: 8080360Abstract: A method of making toner particles, includes: mixing a latex emulsion, a colorant emulsion, an optional was emulsion, and optional additives in a first reactor to form a slurry; discharging the slurry from the first reactor to a second reactor through a homogenizer; heating the slurry in the second reactor to form aggregated particles in said slurry; discharging the aggregated particles and slurry from the second reactor to a third reactor; heating the aggregated particles and slurry in the third reactor to coalesce the aggregated particles into toner particles; discharging the toner particles and slurry from the third reactor to a fourth reactor; cooling the toner particles; optionally classifying said toner particles to remove coarse particles; and optionally washing and drying said toner particles, wherein the first reactor, second reactor, third reactor, and fourth reactor are at least two different reactors.Type: GrantFiled: July 22, 2005Date of Patent: December 20, 2011Assignee: Xerox CorporationInventors: Vincenzo G Marcello, Steven M Malachowski, Tie Hwee Ng, Chieh-Min Cheng
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Patent number: 8071670Abstract: Aqueous polymeric dispersions comprising a mixture of: (a) a component selected from the group consisting of polyvinylacetates, polyvinylacetate copolymers, and combinations thereof; and (b) SiO2 particles having an average particle diameter of 1 to 400 nm; their use as adhesives and coatings; processes for preparing such dispersions; and substrates coated and/or adhered therewith.Type: GrantFiled: May 10, 2007Date of Patent: December 6, 2011Assignee: Akzo Nobel Chemicals International B.V.Inventors: Dietrich Pantke, Stephan Kirchmeyer, Rüdiger Musch, Knud Panskus
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Publication number: 20110269872Abstract: Provided is a method for preparing a polymer nano-composite, more particularly, an economical method for preparing a polymer nano-composite with improved properties via a single process of organic treatment of a layered clay mineral and dispersion in a rubber latex material at a pH where both the rubber latex material and the layered clay mineral are stabilized. The provided method for preparing a polymer nano-composite allows effective dispersion without using an organic modification process for improving dispersibility of the layered clay mineral in resin. Thus prepared polymer nano-composite exhibits superior mechanical property and may be usefully applied for automobile interior and exterior materials.Type: ApplicationFiled: October 28, 2010Publication date: November 3, 2011Applicant: HYUNDAI MOTOR COMPANYInventors: Jae-Do Nam, Chan-Woo Lee, Jong Min Park, Wan Sul Lee, Seong Hoon Lee
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Patent number: 8034853Abstract: The invention provides a powder coating composition prepared from a combination, the combination comprising: A) at least one binder resin and, optionally at least one curing agent, B) at least one calibrated pigmented liquid, based on at least one pigment, and, C) optionally, at least one pigment and/or extenders and/or additive. The powder coating composition of the invention provides a precise color of the coatings having a desired color with high color stability. Therefore there is no need for additional adjustment tests or re-working procedures, and, therefore, it makes it possible to offer efficient, small-batch manufacture of custom colors, for example, to match a swatch of fabric supplied by a customer.Type: GrantFiled: April 28, 2009Date of Patent: October 11, 2011Assignees: E.I. du Pont de Nemours and CompanyInventors: Guido R. Van Den Bosch, Carlos Rodriguez-Santamarta, Anne De Marre, Pip Niall Jones, Laurent Verite, Thomas Grawe
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Patent number: 8030376Abstract: Disclosed herein are processes for dispersing a plurality of unaggregated particles, such as nanoparticles and microparticles, in a viscous medium. The dispersions can be used for making a variety of useful materials, such as carbon nanotube composites.Type: GrantFiled: July 12, 2007Date of Patent: October 4, 2011Assignee: MinusNine Technologies, Inc.Inventor: David W. Kurz
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Publication number: 20110053076Abstract: The present disclosure provides methods for incorporating a dye into latex particles via a supercritical fluid microencapsulation technique, in order to achieve improved dispersion of a colorant in the latex and an increase in color gamut.Type: ApplicationFiled: August 25, 2009Publication date: March 3, 2011Applicant: XEROX CORPORATIONInventors: Maura A. Sweeney, Grazyna Kmiecik-Lawrynowicz, Robert D. Bayley
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Patent number: 7858735Abstract: In the production of elastomers the product obtained from the polymerization process is often in the form of a slurry. Described herein are an apparatus and a process for “finishing” the elastomer, i.e., dewatering and drying the elastomer. The process comprises the steps of obtaining a slurry comprising water and elastomer; passing the slurry through a first dewatering device to produce a wet elastomer crumb, wherein the first dewatering device comprises two dewatering extruders in parallel; passing the wet elastomer crumb through a second dewatering device; and then passing the wet elastomer crumb through a drying device to produce a dried elastomer crumb.Type: GrantFiled: May 29, 2009Date of Patent: December 28, 2010Assignee: ExxonMobil Chemical Patents Inc.Inventors: Richard C. Yeh, Yu Feng Wang, Jean-Paul Swoboda, Oscar K. Broussard, III
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Patent number: 7846249Abstract: A pigment aqueous-medium dispersion and coating material which have no particle feeling and exhibit a highly excellent silky feeling, the pigment aqueous-medium dispersion is a dispersion of a photoluminescent pigment in an aqueous medium, characterized in that the photoluminescent pigment is flaky titanic acid obtained by treating layered titanate with acid and then reacting an organic basic compound with the treated layered titanate to delaminate, and the flaky titanic acid has an average longer diameter of 5 to 30 ?m and an average thickness of 0.5 to 300 nm.Type: GrantFiled: March 14, 2006Date of Patent: December 7, 2010Assignees: Otsuka Chemical Co., Ltd., Toyota Jidosha Kabushiki KaishaInventors: Kenji Kawazu, Susumu Umemura, Hiroyoshi Mori, Daisuke Suzuki, Minoru Yamamoto
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Patent number: 7834068Abstract: An epoxy composite material containing polyaniline/carbon black composite and preparation method thereof are disclosed. The epoxy composite material containing polyaniline/carbon black composite includes a plurality of polyaniline/carbon black composite with core-shell structure distributed in epoxy resin while polyaniline covers on surface of nanoscale carbon black to form the polyaniline/carbon black composite with core-shell structure. The polyaniline/carbon black composite with core-shell structure contains 10 to 30 wt. % of nanoscale carbon black.Type: GrantFiled: October 30, 2007Date of Patent: November 16, 2010Assignee: Chung Shan Institute of Science and Technology, Armaments Bureau, M.N.D.Inventors: Cheng-Chien Yang, Kuo-Hui Wu, Wang Tsae Gu, Yuen-Hsin Peng
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Patent number: 7799850Abstract: An epoxy composite material containing polyaniline/carbon black and preparation method thereof are disclosed. The epoxy composite material containing polyaniline/carbon black includes a plurality of polyaniline/carbon black composite with core-shell structure distributed in epoxy resin while polyaniline covers on surface of nanoscale carbon black to form the polyaniline/carbon black composite with core-shell structure. The polyaniline/carbon black composite with core-shell structure contains 10˜30 wt. % of nanoscale carbon black. A method for preparing an epoxy composite material containing polyaniline/carbon black includes steps of: adding a plurality of polyaniline/carbon black composites with core-shell structure into epoxy resin; and dispersing the plurality of polyaniline/carbon black composites with core-shell structure in the epoxy resin to produce the epoxy composite material containing polyaniline/carbon black being applied to conductive coating or microwave absorbing elements.Type: GrantFiled: October 30, 2008Date of Patent: September 21, 2010Assignee: Chung Shan Institute of Science and Technology, Armaments Bureau, M.N.D.Inventors: Cheng-Chien Yang, Kuo-Hui Wu, Wang Tsae Gu, Yuen-Hsin Peng
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Patent number: 7795331Abstract: A polyaniline/carbon black composite and a preparation method thereof are disclosed The polyaniline/carbon black composite is formed by polyaniline covering carbon black and is with core-shell structure while the polyaniline/carbon black composite contains 10˜30 wt. % of carbon black. The preparation method of polyaniline/carbon black composite includes the steps of: disperse carbon black into solution to form carbon black solution, add aniline into the carbon black solution to form a first solution; dissolve ammonium persulfate into acid aqueous solution to form a second solution; add the second solution to the first solution, after reaction, through filtering and grinding to produce polyaniline/carbon black composite.Type: GrantFiled: July 7, 2009Date of Patent: September 14, 2010Assignee: Chung Shan Institute of Science and Technology, Armaments Bureau, M.N.D.Inventors: Cheng-Chien Yang, Kuo-Hui Wu, Wang Tsae Gu, Yuen-Hsin Peng, Zhi-Han Liu
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Patent number: 7767737Abstract: Aqueous polymer dispersions based on polychloroprene, and a process for their preparation and use. The aqueous polymer dispersions are produced from a polychloroprene dispersion having an average particle size of from 60 to 220 nm, and an aqueous silicon dioxide dispersion having an SiO2 particle diameter of from 1 to 400 nm.Type: GrantFiled: May 29, 2003Date of Patent: August 3, 2010Assignee: Bayer MaterialScience AGInventors: Rüdiger Musch, Knut Panskus, Dietrich Pantke
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Publication number: 20100186915Abstract: A process for treating aqueous slurries of finely divided fillers, wherein the treatment is carried out by heating an aqueous slurry of at least one finely divided filler and then by adding an aqueous dispersion of at least one latex.Type: ApplicationFiled: July 4, 2008Publication date: July 29, 2010Applicant: BASF SEInventors: Anton Esser, Hans-Joachim Haehnle, Marc Schroeder
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Publication number: 20100181038Abstract: Process for treating aqueous slurries of finely divided fillers, an aqueous dispersion of at least one latex and an aqueous slurry of at least one starch being metered separately from one another into an aqueous slurry of at least one finely divided filler.Type: ApplicationFiled: July 4, 2008Publication date: July 22, 2010Applicant: BASF SEInventors: Anton Esser, Hans-Joachim Haehnle, Marc Schroeder
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Patent number: 7759413Abstract: Disclosed are methods of dispersing discrete fillers in a polymer matrix to form a composite. Also disclosed are composites having discrete fillers dispersed in a polymer matrix.Type: GrantFiled: October 29, 2004Date of Patent: July 20, 2010Assignee: The Trustees Of The University Of PennsylvaniaInventors: Karen I. Winey, Fangming Du, Reto Haggenmueller
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Patent number: 7745513Abstract: A polymeric composition comprising: a) from 90 to 99.9% by weight of a continuous fluoropolymer matrix; and homogeneously dispersed b) from 0.1 to 10% by weight of lamellar inorganic particles having at least one dimension lower than 100 nm having improved elastic modulus and “storage modulus” G? at high temperatures.Type: GrantFiled: June 4, 2003Date of Patent: June 29, 2010Assignee: Solvay Solexis S.p.A.Inventors: Julio A. Abusleme, Aldo Sanguineti, Claudia Manzoni
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Patent number: RE42099Abstract: Elastomer masterbatch is processed in a continuous compounder having multiple parallel elongate rotors axially oriented in an elongate processing chamber. Optionally, additional materials are compounded into the masterbatch, e.g., additives, other elastomeric compositions, etc. Preferably, the masterbatch then is further processed in an open mill. Excellent control of Mooney Viscosity is achieved. In certain preferred embodiments, elastomer composites are produced by novel continuous flow methods and apparatus in which fluid streams of particulate filler and elastomer latex are fed to the mixing zone of a coagulum reactor to form a coagulated mixture in semi-confined flow continuously from the mixing zone through a coagulum zone to a discharge end of the reactor.Type: GrantFiled: November 24, 2009Date of Patent: February 1, 2011Assignee: Cabot CorporationInventors: Bin Chung, Susan W. Green, Ivan Z. Podobnik, Joseph Cianciolo