Aluminum Dnrm Patents (Class 524/441)
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Patent number: 8608989Abstract: Fire retardant materials arc provided that contain carbon nanotubes and particles capable of endothermically reacting when exposed to elevated temperatures. The carbon nanotubes may be a buckypaper. Methods also are provided for making a fire retardant material and for improving the fire retardation capabilities of a material.Type: GrantFiled: March 2, 2012Date of Patent: December 17, 2013Assignee: Florida State University Research Foundation, Inc.Inventors: Changchun Zeng, Chuck Zhang, Ben Wang, Richard Liang, Chase Knight
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Patent number: 8608990Abstract: Fire retardant materials are provided that contain carbon nanotubes and particles capable of endothermically reacting when exposed to elevated temperatures. The carbon nanotubes may be a buckypaper. Methods also are provided for making a fire retardant material and for improving the fire retardation capabilities of a material.Type: GrantFiled: December 14, 2012Date of Patent: December 17, 2013Assignee: Florida State University Research Foundation, Inc.Inventors: Changchun Zeng, Chuck Zhang, Ben Wang, Richard Liang, Chase Knight
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Patent number: 8513344Abstract: A masterbatch for coloring a synthetic resin of the present invention includes an aluminum pigment, a polyethylene wax, and a linear low-density polyethylene resin, and the masterbatch in a form of cylindrical pellets, each 2.5 mm in diameter and not less than 2 mm and not more than 5 mm in height, has a Rattler value of not more than 2.5%.Type: GrantFiled: October 20, 2009Date of Patent: August 20, 2013Assignee: Toyo Aluminium Kabushiki KaishaInventors: Yuichi Asano, Mitsuru Saito
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Patent number: 8512863Abstract: The present invention is directed to a process for the preparation of an aqueous dispersion of coacervates having a core-shell structure, the core (a) being an inorganic particle being anionic or cationic and the shell (b) being a copolymer wherein said copolymer comprises at least two parts, A and B, part A being cationic if particle (a) is anionic, and anionic if particle (a) is cationic, and part B being neutral in pH conditions of said dispersion. More particularly, the invention is directed to treating compositions comprising that aqueous dispersion of coacervates delivering antifouling, water sheeting, antisoiling, anti-adhesion, adhesion, anti-deposition, and/or anti-UV properties onto all kinds of surfaces.Type: GrantFiled: July 11, 2007Date of Patent: August 20, 2013Assignees: Rhodia Inc., Centre Nationale de la Recherche ScientifiqueInventors: Jean-Paul Chapel, Mikel Morvan, Ling Qi
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Publication number: 20130202827Abstract: The invention provides a glittering resin composition which includes: a polycarbonate resin that contains structural units derived from a dihydroxy compound having the portion represented by the following general formula (1) as a part of the structure thereof; and glittering particles in an amount of 0.1 parts by weight or more and 10 parts by weight or less per 100 parts by weight of the polycarbonate resin, wherein the glittering particles are inorganic particles (excluding metal particles) coated with a metal or a metal oxide or are metal particles: provided that a case where the portion represented by general formula (1) is a part of —CH2—O—H is excluded.Type: ApplicationFiled: March 15, 2013Publication date: August 8, 2013Applicants: MITSUBISHI PLASTICS, INC., MITSUBISHI CHEMICAL CORPORATIONInventors: MITSUBISHI CHEMICAL CORPORATION, MITSUBISHI PLASTICS, INC.
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Patent number: 8487029Abstract: A lead-free, non-toxic composite material including a thermosetting polymer and at least one of a heavy particulate filler, a light particulate filler or a combination thereof. The composite material may be utilized in manufacturing articles used in radiation shielding applications.Type: GrantFiled: January 22, 2009Date of Patent: July 16, 2013Assignee: Globe Composite Solutions, Ltd.Inventor: Xiujun Wang
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Publication number: 20130171345Abstract: Metallic ink compositions for use in capillary-action markers are provided. More particularly, a metallic ink composition including an aliphatic solvent, a metallic pigment, and a resin combination including at least a fixing resin and a priming resin is provided.Type: ApplicationFiled: December 29, 2011Publication date: July 4, 2013Applicant: SANFORD, L.P.Inventor: Martin N. Sexton
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Publication number: 20130165575Abstract: An artificial marble includes an artificial marble matrix made of a thermosetting resin and metal chips having a cellular structure. The metal chips can be evenly dispersed throughout the artificial marble and can form foam or open-cell patterns.Type: ApplicationFiled: December 12, 2012Publication date: June 27, 2013Applicant: CHEIL INDUSTRIES INC.Inventor: Cheil Industries Inc.
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Publication number: 20130150480Abstract: A thermoplastic resin composition includes a thermoplastic resin and a first metal particle, wherein the first metal particle has a ratio of a short diameter relative to a long diameter of about 1/50 to about 1/6. Also a thermoplastic resin composition includes a thermoplastic resin, a plate-shaped second metal particle, and plate-shaped mica, wherein the plate-shaped mica is included in an amount of about 0.01 parts by weight to about 4.9 parts by weight based on about 100 parts by weight of the thermoplastic resin. In addition a thermoplastic resin composition includes a thermoplastic resin, a plate-shaped third metal particle or a spherical fourth metal particle, and thermally expandable particulate, wherein the thermally expandable particulate includes a polymer particle including a hydrocarbon foamable compound therein.Type: ApplicationFiled: December 11, 2012Publication date: June 13, 2013Applicant: CHEIL INDUSTRIES INC.Inventor: CHEIL INDUSTRIES INC.
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Publication number: 20130143047Abstract: Disclosed are curable aqueous coating compositions comprising at least one polyurethane (A) as binder, at least one laminar metallic effect pigment (B), and at least one inorganic thickener C1) selected from the group of the phyllosilicates, and at least one organic thickener C2) selected from the group of the (meth)acrylic acid-(meth)acrylate copolymer thickeners and polyurethane thickeners, where the amount of B), based on the total binder content of the coating material composition is <9% by weight, the total solids based on the coating material composition is between 12.5% and 17% by weight, the total amount of the thickeners C1 and C2), based on the total binder content of the coating composition is <12.5% by weight, the weight ratio of C2) to C1) is >0.4, and the amount of B), based on the coating material composition, is between 1.2 and 2.3% by weight.Type: ApplicationFiled: February 18, 2011Publication date: June 6, 2013Applicant: BASF COATINGS GMBHInventors: Stephen Schwarte, Ulrich Uekötter, Peter Sonntag, Norbert Löw, Elke Roehr
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Patent number: 8445587Abstract: Improved mechanical properties of either clay or carbon nanotube (CNT)-reinforced polymer matrix nanocomposites are obtained by pre-treating nanoparticles and polymer pellets prior to a melt compounding process. The clay or CNTs are coated onto the surfaces of the polymer pellets by a milling process. The introduction of moisture into the mixture of the nanoparticles and the polymer pellets results in the nanoparticles more easily, firmly, and thoroughly coating onto the surfaces of the polymer pellets.Type: GrantFiled: July 18, 2010Date of Patent: May 21, 2013Assignee: Applied Nanotech Holdings, Inc.Inventors: Dongsheng Mao, Zvi Yaniv
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Patent number: 8431630Abstract: A method for manufacturing a water resistant aluminum pigment dispersion includes the steps of: (a) forming a composite pigment base by sequentially laminating a peeling resin layer and an aluminum layer on a sheet-shaped substrate; (b) forming a composite pigment by peeling the sheet-shaped substrate from the composite pigment base; and (c) forming an aluminum pigment dispersion by pulverizing the composite pigment, and in the method described above, at least one of the steps (b) and (c) is performed in an organic solvent to which a phosphorous surfactant is added.Type: GrantFiled: March 1, 2010Date of Patent: April 30, 2013Assignee: Seiko Epson CorporationInventors: Tsuyoshi Sano, Takayoshi Kagata
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Publication number: 20130079449Abstract: Disclosed herein are compositions comprising a polymer and a carbamate. Also disclosed are methods of preparing these compositions, as well as methods of using these compositions to prepare additional polymer compositions. These compositions are useful as polymer compositions for molded articles or for preparing polymer compositions of molded articles.Type: ApplicationFiled: September 22, 2011Publication date: March 28, 2013Inventor: R. Shawn Childress
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Patent number: 8394880Abstract: A flame retardant polymer composite is disclosed. The composite includes a polymer base material and a flame retardant filler provided in the polymer base material, the flame retardant filler containing seeded boehmite particulate material having an aspect ratio of not less than 3:1.Type: GrantFiled: March 6, 2009Date of Patent: March 12, 2013Assignee: Saint-Gobain Ceramics & Plastics, Inc.Inventors: Ralph Bauer, Doruk O. Yener
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Patent number: 8378017Abstract: The invention is based on the discovery that adhesive compositions containing certain low-viscosity, mono-ethylenically unsaturated monomers have surprisingly good cure parameters, resulting in very little weight loss upon cure. Many of these monofunctional monomers used alone or in combination with other monofunctional monomers described herein have high glass transition temperatures when cured. Moreover, since these monomers are monofunctional the crosslink density of the adhesive composition does not increase (relative to multi-functional monomers), which in turns results in lower stress, lower modulus adhesive compositions. As such, these monomers are useful in a variety of thermoset adhesive compositions, such as for example, die attach adhesive compositions.Type: GrantFiled: December 14, 2006Date of Patent: February 19, 2013Assignee: Designer Molecules, Inc.Inventors: Stephen M. Dershem, Gina Hoang, Melin Lu
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Patent number: 8372912Abstract: A polyvinyl chloride composition having polyvinyl chloride resin and a plasticizer ester selected from di-butyl terephthalate, di-isobutyl terephthalate, or mixtures thereof.Type: GrantFiled: August 12, 2005Date of Patent: February 12, 2013Assignee: Eastman Chemical CompanyInventors: David Justin Olsen, Martin James Stimpson
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Publication number: 20130035416Abstract: A polyacetal resin composition and molded article having a high metallic gloss, small change in a color tone according to the viewing angle, high weld performance, and high mechanical properties can be provided in which the amount of formaldehyde to be produced in molding and recycle is suppressed, the mold deposit is improved, and the repeated impact resistance after aging is high. A polyacetal resin composition comprising: (A) 100 parts by mass of a polyacetal copolymer resin, and (B) 0.1 to 10 parts by mass of an aluminum pigment, the aluminum pigment having a coin-like or flake-like flat shape, a volume average particle size D50 of 15 to 50 ?m, an average surface roughness Ra of 20 to 50 nm, and an average height Rc of depressions and projections in a surface roughness curve of 80 to 200 nm.Type: ApplicationFiled: April 15, 2011Publication date: February 7, 2013Applicant: ASAHI KASEI CHEMICALS CORPORATIONInventors: Mitsuhiro Horio, Syuichi Kudou, Seizaburoh Asai
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Publication number: 20130018115Abstract: Provided is a method for recovering a polycarbonate resin from a discarded optical disk and/or a recovered optical disk, which has a polycarbonate resin substrate. The following process steps (I) and (II) are applied to a chemically treated product, which is obtained by crushing a discarded optical disk and/or a recovered optical disk, and chemically treating the resulting crushed product. Process step (I): a step containing (a) removing a magnetic metal foreign matter with a magnet, and (b) identifying a colored foreign matter with an optical camera, and removing the colored foreign matter. Process step (II): a step containing detecting the presence of a metal foreign matter with a metal foreign matter detector, and removing a resin containing the metal foreign matter.Type: ApplicationFiled: December 24, 2010Publication date: January 17, 2013Applicants: PANAC INDUSTRIES, INC., IDEMITSU KOSAN CO., LTD.Inventors: Toshio Isozaki, Kenichi Mitsuhashi, Nobuyuki Ito
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Publication number: 20130014661Abstract: One or more aspects of the present invention relate to a material comprising particles dispersed in a polymer matrix, wherein the particles include at least one metal and are packed in the polymer matrix with a density of at least 0.6 of the density of the at least one metal. The invention further relates to a shaped charge, an element for forming a liner of a shaped charge, and a kit for assembling a shaped charge.Type: ApplicationFiled: July 18, 2012Publication date: January 17, 2013Applicant: JET PHYSICS LIMITEDInventor: Andrew LUMLEY
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Patent number: 8333832Abstract: The present disclosure is directed to a pigment preparation comprising aluminum effect pigments, a solvent and at least one additive, wherein the aluminum effect pigments have a d98 value of the volume averaged particle size distribution curve of less than 15 ?m, the at least one additive is a phosphorous containing additive, and the solvent has a viscosity equal to or more than 1.8 mPa's at 25° C. The disclosure is further directed to an ink jet printing ink as well the use thereof.Type: GrantFiled: December 19, 2008Date of Patent: December 18, 2012Assignee: Eckart GmbHInventors: Joerg Maennig, Stefan Trummer, Andreas Kroell, Dieter Proelss, Stefan Engel, Werner Pieper
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Patent number: 8334054Abstract: A heat conductive cured product which can be handled even in a single layer or thin film form, can be readily attached to a heat-generating component or heat-dissipating member, and exhibits an appropriate tack and heat conductivity in a thin film form is provided as well as a method for preparing the same. A heat conductive cured product is prepared by applying a heat conductive composition as a thin film to a substrate which has been treated to have a silicone pressure-sensitive adhesive releasable surface, and curing the composition, the composition comprising as essential components, (a) an organopolysiloxane having alkenyl radicals, (b) a heat conductive filler, the filler containing at least 30 vol % of aluminum powder based on its total volume, (c) an organohydrogenpolysiloxane, (d) a platinum group metal catalyst, (e) a reaction regulator, and (f) a silicone resin.Type: GrantFiled: February 20, 2009Date of Patent: December 18, 2012Assignee: Shin-Etsu Chemical Co., Ltd.Inventors: Akihiro Endo, Masaya Asaine, Takahiro Maruyama
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Patent number: 8318262Abstract: The invention relates to the use of spherical metal particles, which are free of antimony and/or antimony-containing compounds, as a laser marking agent or laser weldability agent in a plastic, wherein the particle size distribution of the spherical metal particles, as determined by means of laser granulometry, in the form of the volume-averaged cumulative undersize particle size distribution, has a D99 value of <110 ?m, a D90 value of <75 ?m, and a D50<45 ?m. The invention further relates to a laser-markable and/or laser-weldable plastic which a laser marking agent consisting of spherical metal particles, which are free of antimony and/or antimony-containing compounds, wherein the particle size distribution of the spherical metal particles, as determined by means of laser granulometry, in the form of the volume-averaged cumulative undersize particle size distribution, has a D99 value of <110 ?m, a D90 value of <75 ?m, and a D50<45 ?m.Type: GrantFiled: August 18, 2007Date of Patent: November 27, 2012Assignee: Eckart GmbHInventors: Marco Greb, Martin Schaal, Thomas Schuster, Walter Ziegler
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Patent number: 8298660Abstract: The present invention provides a flame-retardant polyolefin resin composition having superior molding processability, a resistance to thermal deformation and suitable stretchability and intensity, which is rich in elastic deformation. The present invention provides a flame-retardant polyolefin resin composition comprising component A (a thermoplastic resin having a carbonyl oxygen atom in the molecular skeleton), component B (a polymer alloy containing an ethylene component and a propylene component), component C: a modified polyolefin polymer containing an acidic functional group and having a weight average molecular weight of 10,000-80,000 and component D (an inorganic metal compound), and substantially free of a halogen atom.Type: GrantFiled: April 8, 2008Date of Patent: October 30, 2012Assignee: Nitto Denko CorporationInventors: Shigeki Ishiguro, Takahiro Yatagai, Tomohito Harada
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Publication number: 20120270988Abstract: Provided are a thermoplastic resin composition including a thermoplastic resin and an amorphous sheet-shaped metal particle having a ratio of thickness relative to long diameter of about 1:20 to about 1:1, and a molded product using the same.Type: ApplicationFiled: June 28, 2012Publication date: October 25, 2012Applicant: Cheil Industries Inc.Inventors: Hyung-Tak Lee, Doo-Han Ha, Jin-Kyung Cho, Young-Chul Kwon
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Patent number: 8292994Abstract: A method for producing water-repellent treated aluminum pigment dispersion includes (a) adding a polysilazane solution in which a polysilazane is dissolved in a second organic solvent to an aluminum pigment dispersion in which an aluminum pigment is dispersed in a first organic solvent for reacting a hydroxyl group present on the surface of the aluminum pigment with the polysilazane to form a covering film on the surface of the aluminum pigment. The amount of the polysilazane in the reaction system for forming the covering film is 0.4 parts by mass or less based on 1 part by mass of the aluminum pigment, and the total addition amount of the polysilazane is from 0.2 to 0.6 parts by mass based on 1 part by mass of the aluminum pigment.Type: GrantFiled: November 29, 2011Date of Patent: October 23, 2012Assignee: Seiko Epson CorporationInventors: Takayoshi Kagata, Tsuyoshi Sano, Toshimi Fukui, Hideki Kawasaki
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Publication number: 20120264869Abstract: Provided are a thermoplastic resin composition including a thermoplastic resin and a metal particle obtained by punching that has a ratio of thickness relative to long diameter of about 1:7 to about 1:1, and a molded product using the same.Type: ApplicationFiled: June 28, 2012Publication date: October 18, 2012Applicant: Cheil Industries Inc.Inventors: Hyung-Tak LEE, Doo-Han HA, Jin-Kyung CHO, Young-Chul KWON
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Publication number: 20120261861Abstract: A metal fiber reinforced composition and its method of fabrication. Metal fibers are created by broaching or shaving metal wool from stock material. The wool is straightened and cut into short lengths. Each of the metal fibers has an average maximum diameter of between 0.005 millimeters and 0.2 millimeters, and a cut length no greater than two-hundred times the average maximum diameter. A volume of a curable composition is provided. The metal fibers are mixed into the curable composition to create a fiber reinforced composition. The fiber reinforced composition is then formed into a selected shape, such as a construction element. The selected shape is then cured. Since the metal fibers are dispersed uniformly throughout the selected shape, curing or re-heating of the selected shape can be facilitated using an induction coil that heats the various metal fibers within the selected shape.Type: ApplicationFiled: June 28, 2011Publication date: October 18, 2012Inventor: Paul E. Bracegirdle
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Patent number: 8273170Abstract: An ink jet ink composition containing an aralkyl-modified silicone surfactant, an organic solvent, and a metallic pigment.Type: GrantFiled: January 7, 2011Date of Patent: September 25, 2012Assignee: Seiko Epson CorporationInventors: Kazuaki Tsukiana, Takashi Oyanagi
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Publication number: 20120220708Abstract: Provided are a polycarbonate resin composition including, with respect to 100 parts by mass of (A) an aromatic polycarbonate resin, 0.05 to 0.3 part by mass of (B) titanium oxide having an average particle diameter of 0.05 to 6 ?m, and (C) 0.005 to 1 part by mass of (C-1) glossy particles having an average particle diameter of 10 ?m or more and less than 60 ?m, and 0.005 to 2.5 parts by mass of (C-2) glossy particles having an average particle diameter of 60 to 300 ?m, a polycarbonate resin molded article obtained by molding the resin composition, and a method of producing a polycarbonate resin molded article characterized by including subjecting the resin composition to injection molding at a mold temperature of 120° C. or more.Type: ApplicationFiled: October 29, 2010Publication date: August 30, 2012Applicant: IDEMITSU KOSAN CO., LTD.Inventor: Takayoshi Tanaka
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Publication number: 20120220709Abstract: Provided are: a polycarbonate resin composition, including, with respect to 100 parts by mass of a glass fiber-containing resin component formed of 60 to 90 mass % of (A) an aromatic polycarbonate resin, 5 to 20 mass % of (B) such glass fibers that a difference in refractive index between the aromatic polycarbonate resin and each of the fibers is 0.02 or less, and 5 to 25 mass % of (C) a polymethyl methacrylate resin, (D) 0.005 to 1.5 parts by mass of (D-1) glossy particles having an average particle diameter of 10 ?m or more and less than 60 ?m, and 0.005 to 5 parts by mass of (D-2) glossy particles having an average particle diameter of 60 to 300 ?m, and 0.05 to 0.4 part by mass of (E) titanium oxide having an average particle diameter of 0.05 to 3 ?m; a resin molded article obtained by molding the resin composition; and a method of producing the resin molded article.Type: ApplicationFiled: October 29, 2010Publication date: August 30, 2012Applicant: IDEMITSU KOSAN CO., LTD.Inventor: Takayoshi Tanaka
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Publication number: 20120211413Abstract: A shape memory structure includes, an elastic material, and a viscoelastic material commingled with the elastic material. The shape memory structure is reformable from a first shape to a second shape upon exposure to a change in environment that softens the viscoelastic material thereby allowing the shape memory structure to creep under stress stored in the elastic material.Type: ApplicationFiled: February 17, 2011Publication date: August 23, 2012Applicant: BAKER HUGHES INCORPORATEDInventors: Randall V. Guest, Michael H. Johnson, Kirk J. Huber
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Patent number: 8227539Abstract: A photocurable ink composition includes: a polymerizable compound; a radical photopolymerization initiator; a hindered amine compound; and a metallic pigment, the polymerizable compound including an active hydrogen-containing functional group.Type: GrantFiled: August 11, 2008Date of Patent: July 24, 2012Assignee: Seiko Epson CorporationInventors: Takashi Oyanagi, Keitaro Nakano, Masaaki Itano, Chiyoshige Nakazawa
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Publication number: 20120165454Abstract: Disclosed is a resin-coated metal pigment comprising 100 parts by weight of a metal pigment and 0.1 to 50 parts by weight of a resin, wherein the resin is attached on the surface of the metal pigment. The resin-coated metal pigment is produced by circulating a portion of a slurry solution containing the metal pigment in an external-circulation type vessel during the resin coating treatment in a reaction vessel and applying a vibration to the external-circulation type vessel with an ultrasonic wave.Type: ApplicationFiled: September 18, 2009Publication date: June 28, 2012Applicant: ASAHI KASEI CHEMICALS CORPORATIONInventors: Fahmi Yunazar, Shigeki Katsuta
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Publication number: 20120136105Abstract: A water-borne stain blocking primer comprises a) from about 10 to about 30 wt % of a water-dispersible, hydrophobic alkyd resin having an acid number of less, than 40 KOH/g, b) from about 5 to about 30 wt % of a pigment, the pigment having an average aspect ratio of at least 3:3:1; c) from about 0.05 to about 3 wt % of a tannin chelation agent; d) from about 0 to about 20 wt % of a water-dispersible, hydrophobic free-radically polymerized copolymer; e) a hydrophobically modified associative rheology modifier in an amount effective to provide a water-borne primer having an ICI viscosity of from about 0.5 to about 3.0 poise; and a KU viscosity range of from about 80 to about 120 Krebs units; and f) water. The water-borne primer has a VOC content of less than 5%. Methods of preparing and using such water-borne stain blocking primers also are described.Type: ApplicationFiled: November 22, 2011Publication date: May 31, 2012Inventors: Matthew S. Gebhard, Cynthia Baricos
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Publication number: 20120119402Abstract: The present invention relates to a composite component comprising an unfoamed polymer phase and a foamed phase, and to a process for producing the same.Type: ApplicationFiled: November 9, 2011Publication date: May 17, 2012Applicant: BASF SEInventors: Philippe DESBOIS, Olaf Kriha, Bangaru Sampath, Holger Ruckdäschel, Dietrich Scherzer, Freddy Gruber, Klaus Hahn
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Publication number: 20120115708Abstract: A process for producing particle-reinforced composite materials through utilization of an in situ reaction to produce a uniform dispersion of a fine particulate reinforcement phase. The process includes forming a melt of a first material, and then introducing particles of a second material into the melt and subjecting the melt to high-intensity acoustic vibration. A chemical reaction initiates between the first and second materials to produce reaction products in the melt. The reaction products comprise a solid particulate phase, and the high-intensity acoustic vibration fragments and/or separates the reaction products into solid particles that are dispersed in the melt and are smaller than the particles of the second material. Also encompassed are particle-reinforced composite materials produced by such a process.Type: ApplicationFiled: November 10, 2011Publication date: May 10, 2012Applicant: PURDUE RESEARCH FOUNDATIONInventors: Qingyou Han, Zhiwei Liu
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Publication number: 20120101206Abstract: The disclosure provides methods and materials for imparting corrosion resistance to a substrate, as well as the corrosion-resistant substrates prepared accordingly. Compositions and methods include nonpyrolyzed, silicon-based polymer coatings prepared on substrates. The prepared coatings are highly stable and resistant to corrosion. The invention finds utility, for example, in the fields of surface and coating chemistry.Type: ApplicationFiled: December 20, 2011Publication date: April 26, 2012Inventors: Yigal Blum, David Hui, David Brent MacQueen
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Patent number: 8158704Abstract: A powder can be produced by immersing microparticles (2) in a first solution (4) which contains coupling molecules (5), and then in a second solution (10) which contains the nanoparticles (12), thereby producing microparticles (2) with nanoparticles (12) attached thereto. The particles form powder particles (14) which allow nanoparticles (12) that are smaller than approximately 5 [mu] to be applied to a component by cold gas spraying.Type: GrantFiled: September 27, 2007Date of Patent: April 17, 2012Assignee: Siemens AktiengesellschaftInventors: Rene Jabado, Jens Dahl Jensen, Ursus Krüger, Daniel Körtvelyessy, Volkmar Lüthen, Ralph Reiche, Michael Rindler, Raymond Ullrich
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Publication number: 20120088877Abstract: A radiant resistant coating, heat-shielding methods, and coated products are provided. The coating can include an acrylic emulsion as a special carrier to enhance adhesion onto substrates, a defoamer to limit frothing during blending, a coalescent, polymerized aluminum pigment as a special heat rejecting element, an associative thickener to establish the proper viscosity, a PH additive as a stability enhancer, and water. This combined matrix provides a water-based, single entity radiant resistant coating with negligible VOC levels.Type: ApplicationFiled: October 11, 2011Publication date: April 12, 2012Applicant: GLOBALSHIELD, INC.Inventors: Jerry Solov, Andrew Knapp
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Patent number: 8153716Abstract: The invention provides a dispersant for an aqueous dispersion of positively charged or chargeable solid particulates which comprises a compound having an anchoring moiety linked to a polymeric hydrophilic moiety, the anchoring moiety containing at least one acid and/or hydroxy group and having an overall acidity or neutrality and the polymeric moiety having a lower affinity for the particulate surface than the anchoring moiety. The anchoring moiety preferably contains at least two acid groups, preferably carboxylic acid groups, attached either in a [1,1], [1,2] or [1,3] relationship and is linked to the polymeric moiety, which is preferably derived from acrylamide or methacrylamide monomer units, preferably by a sulfur atom. The dispersant can reduce the viscosity of an aqueous dispersion of positively charged or chargeable solid particulates and can reduce the tendency of the resulting dispersion to form a gel or a yield stress material.Type: GrantFiled: December 22, 2005Date of Patent: April 10, 2012Assignee: Eastman Kodak CompanyInventors: Alan R. Pitt, Trevor J. Wear, John H. Hone, Andrew M. Howe
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Patent number: 8143330Abstract: Provided is a polycarbonate resin composition which contains specific amounts of a glass filler and glossy particles, which can be molded into an article in which no difference in lightness is visually observed between the left side and the right side of the weld line, and which has excellent optical properties and flame retardancy. The polycarbonate resin composition contains: a composition formed of an aromatic polycarbonate resin (A) and a glass filler (B) having a difference in refractive index 0.002 or less from the aromatic polycarbonate resin of; glossy particles (C-1) having an average particle diameter of 10 ?m or more and less than 50 ?m; glossy particles (C-2) having an average particle diameter of 50 to 300 ?m; a silicone compound (D) having a reactive functional group; and an organic alkali metal salt compound and/or an organic alkali earth metal salt compound (E).Type: GrantFiled: December 4, 2008Date of Patent: March 27, 2012Assignee: Idemitsu Kosan Co., Ltd.Inventors: Toshio Isozaki, Kouji Satou, Takayoshi Tanaka
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Patent number: 8133939Abstract: Provided are: a polycarbonate resin composition which is excellent in mechanical properties, physical properties, optical properties, and flame retardancy, including: a composition formed of an aromatic polycarbonate resin (A) and a glass filler (B) having a difference in refractive index of 0.002 or less from the aromatic polycarbonate resin; glossy particles (C-1) having an average particle diameter of 10 ?m or more and less than 50 ?m; glossy particles (C-2) having an average particle diameter of 50 to 300 ?m; and a silicone compound (D) having a reactive functional group; a polycarbonate resin molded article obtained by molding the polycarbonate resin composition; and a method of producing a polycarbonate resin molded article, involving subjecting the polycarbonate resin composition to injection molding at a mold temperature of 120° C. or higher.Type: GrantFiled: December 5, 2008Date of Patent: March 13, 2012Assignee: Idemitsu Kosan Co., Ltd.Inventors: Toshio Isozaki, Kouji Satou, Takayoshi Tanaka
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Patent number: 8114928Abstract: Disclosed is a transparent/translucent molding composition and process for making prepared from an impact modifier and a resin blend of polycarbonate and a cycloaliphatic polyester having a matching index of refraction.Type: GrantFiled: June 21, 2010Date of Patent: February 14, 2012Assignee: SABIC Innovative Plastics IP BVInventors: Satish Kumar Gaggar, Johannes Jacobus de Moor, Paul Honigfort, Gabrie Hoogland, Mark van Heeringen, Eelco M. S. van Hamersveld
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Publication number: 20120022181Abstract: A coated pigment that includes polymer encapsulations which act as a pigment dispersant and film forming agent, coating systems that include the coated pigment and methods for producing the coated pigment and the coating system are described. The polymer encapsulations of the coated pigments allow the coated pigments that are included in the coating system to be dispersed without the addition of any other dispersants and/or resins. Thus, the disclosed coated pigments simplify the process of making coating systems. The disclosed coated pigments also extend the shelf-life of the coating systems, and provide a final coating with enhanced pigment orientation and aesthetics.Type: ApplicationFiled: July 20, 2010Publication date: January 26, 2012Applicant: SILBERLINE MANUFACTURING COMPANY, INC.Inventors: Chang XU, Hai Hui LIN, Parfait Jean Marie LIKIBI
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Publication number: 20120022198Abstract: A colored system including a coated substrate and a color pigment that adheres to the coated substrate, and a method for producing the colored system are described. The disclosed method adheres effectively the color pigments to the coated substrates. The resulting colored system avoids their separation during coating applications. The colored metallic paints/inks can be prepared by mixing a color pigment solution with a coated substrate solution. The resulting colored system displays vivid color and strong metallic luster.Type: ApplicationFiled: July 20, 2010Publication date: January 26, 2012Applicant: SILBERLINE MANUFACTURING COMPANY, INC.Inventors: Chang XU, Craig KEEMER, Hai Hui LIN, Parfait Jean Marie LIKIBI
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Patent number: 8088859Abstract: A method for producing water-repellent treated aluminum pigment dispersion includes (a) adding a polysilazane solution in which a polysilazane is dissolved in a second organic solvent to an aluminum pigment dispersion in which an aluminum pigment is dispersed in a first organic solvent for reacting a hydroxyl group present on the surface of the aluminum pigment with the polysilazane to form a covering film on the surface of the aluminum pigment. The amount of the polysilazane in the reaction system for forming the covering film is 0.4 parts by mass or less based on 1 part by mass of the aluminum pigment, and the total addition amount of the polysilazane is from 0.2 to 0.6 parts by mass based on 1 part by mass of the aluminum pigment.Type: GrantFiled: April 6, 2010Date of Patent: January 3, 2012Assignee: Seiko Epson CorporationInventors: Takayoshi Kagata, Tsuyoshi Sano, Fukui Toshimi, Kawasaki Hideki
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Publication number: 20110317955Abstract: A plastics polymer-based bearing material and a method manufacture thereof are described, the material comprising a matrix of a polyimide/amide plastics polymer material and having distributed throughout the matrix: from 5 to less than 15 vol % of a metal powder; from 1 to 15 vol % of a fluoropolymer, the balance being the polyimide/amide resin apart from incidental impurities.Type: ApplicationFiled: December 7, 2009Publication date: December 29, 2011Applicants: MAHLE ENGINE SYSTEMS UK LIMITED, MAHLE INTERNATIONAL GMBHInventors: Carolyn Mayston, Jonathan Forder
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Patent number: 8062726Abstract: The invention relates to flexible compounds that are made of a thermoplastic elastomer and a filler having increased thermal conductivity, and to flexible heat-conducting tubes produced on the basis thereof that are especially useful as heating or cooling tubes. The inventive mixtures have a thermal conductivity in the range of from 0.5 to 2 W/mK.Type: GrantFiled: December 12, 2002Date of Patent: November 22, 2011Assignee: Siemens AktiengesellschaftInventors: Robert Greiner, Manfred Ochsenkühn, Lothar Schön
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Patent number: 8063265Abstract: A hydrogel having a floatability where from 40% to 90% of a solution and/or suspension to be thickened are thickened starting from the surface of the liquid and the rest of the solution and/or suspension to be thickened is thickened starting from the bottom of the container, a process for preparing the hydrogel and also its use for absorbing blood and/or body fluids, especially in hygiene articles, or for thickening aqueous solutions and/or suspensions, especially for thickening medical wastes.Type: GrantFiled: October 28, 2004Date of Patent: November 22, 2011Assignee: BASF AktiengesellschaftInventors: Martin Beck, Volker Frenz, Anna Kowalski, Elisabeth Selzer, Ernst Jürgen Bauer, Harald Keller, Bernhard Steinmetz
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Publication number: 20110274796Abstract: A method reclaims metalized polymer film or mixtures containing metal and/or metal alloys into a metal-containing, polymeric film. The resulting film structure has better oxygen and moisture barrier properties when metalized than plain metalized polymer films. The polymer to be reclaimed, originates in sheet form, and is densified, as by shredding, pelletizing and/or re-extruding into fine particulate form such as chips or pellets. The reclaimed polymeric film can be used, in a range of concentrations, to produce biaxially oriented polyester film for metalizing.Type: ApplicationFiled: May 5, 2011Publication date: November 10, 2011Applicant: TORAY PLASTICS (AMERICA), INC.Inventors: Douglas James Bower, Larissa Marie Peguero