Nitrogen Containing (e.g., Polyamide, Polyurethane, Etc.) Patents (Class 264/331.19)
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Patent number: 12057327Abstract: There is provided a substrate processing apparatus comprising a liquid amount detecting part configured to detect a liquid amount of a liquid film formed on a substrate; and a coating state detecting part configured to detect a coating state of the substrate with the liquid film formed thereon.Type: GrantFiled: February 9, 2023Date of Patent: August 6, 2024Assignee: TOKYO ELECTRON LIMITEDInventors: Masataka Gosho, Yuichi Douki, Satoshi Biwa, Satoshi Okamura, Katsuhiro Ookawa, Yuichiro Kunugimoto
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Patent number: 12043920Abstract: Multi-row coaxial melt-blown system including support including first duct to convey polymeric fluid parallel to a delivery direction and second duct to convey air or gas, a box removably constrained to the support and including acceleration ducts parallel delivery direction including tubing in fluid connection with first duct to distribute the fluid, first holes parallel the delivery direction, centred and spaced relative to acceleration ducts along the delivery direction to house each part of a respective tube, second holes parallel the delivery direction for air or gas passage, and a slit extending transversely to the delivery direction between the acceleration ducts and the first holes in fluid connection with the second holes. The support includes a housing to contain the box and the slit extends in the box from side to side in fluid connection with the second duct to convey air or gas from second duct to second holes.Type: GrantFiled: June 15, 2022Date of Patent: July 23, 2024Assignee: FRATELLI CECCATO MILANO S.R.L.Inventor: Giuseppe Angelico
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Patent number: 11845845Abstract: Foam particles that have a bulk density below 300 kg/m3 and are based on polyamides, including 85% to 100% by weight of at least one copolyamide obtainable by polymerizing the following components: (A) 15% to 84% by weight of at least one lactam, (B) 16% to 85% by weight of a monomer mixture (M) including the following components: (B1) at least one C32-C40 dimer acid and (B2) at least one C4-C12 diamine, wherein the monomer mixture (M) includes in the range from 45 to 55 mol % of component (B1) and in the range from 45 to 55 mol % of component (B2), based on the total molar amount of the monomer mixture (M), and the sum total of the components of (A) and (B) is 100% by weight, and processes for production thereof.Type: GrantFiled: July 11, 2019Date of Patent: December 19, 2023Assignee: BASF SEInventors: Juergen Ahlers, Dennis Jopp, Frank Reil, Peter Gutmann
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Patent number: 10850435Abstract: A foam molded article mold includes a lower mold with a cavity space; an upper mold formed with an upper mold face portion facing a lower mold face portion of the cavity space when the upper mold has been brought together with the lower mold; a partitioning wall that projects out from the upper mold face portion, and that configures a first parting line between the partitioning wall and the lower mold face portion in a state in which the upper mold has been brought together with the lower mold; and a partition that projects out from the lower mold face portion, and that, in a state in which the upper mold has been brought together with the lower mold, partitions the cavity space together with the partitioning wall to form plural cavities, and that configures a second parting line between the partition and the partitioning wall.Type: GrantFiled: June 25, 2015Date of Patent: December 1, 2020Assignee: Toyota Boshoku Kabushiki KaishaInventors: Yoichi Nabeshima, Shin Tada, Masatoshi Satou, Hirokazu Hirano
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Patent number: 10723092Abstract: A molding apparatus for molding an optical article has a reactor vessel having an interior cavity configured to receive a quantity of a flowable forming material, a mold assembly defining a mold cavity therein, a diaphragm valve disposed between the reactor vessel and the mold assembly, and a tubing connecting the diaphragm valve to the reactor vessel and the mold assembly. The diaphragm valve is operable between an open configuration to permit a flow of the flowable forming material through the tubing from the reactor vessel to the mold cavity and a closed configuration to block the flow of the flowable forming material from the reactor vessel to the mold cavity. A filter is disposed between the reactor vessel and the diaphragm valve. The tubing has an upstream tubing section between the reactor vessel and the filter and a downstream tubing section between the filter and the diaphragm valve.Type: GrantFiled: July 17, 2017Date of Patent: July 28, 2020Assignee: PPG Industries Ohio, Inc.Inventor: David Lewis Lusher, II
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Patent number: 9987599Abstract: Asymmetric membranes in hollow fiber and flat sheet forms are disclosed herewith. The process of preparation of the membranes is further disclosed. The membranes are characterized and find application in the separation of gases and solutes.Type: GrantFiled: October 31, 2014Date of Patent: June 5, 2018Assignee: COUNCIL OF SCIENTIFIC & INDUSTRIAL RESEARCHInventors: Ulhas Kanhaiyalal Kharul, Deepti Gangaram Bhagat, Harshal Dilip Chaudhari
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Patent number: 9669265Abstract: A golf ball includes a core and a three-layer cover disposed adjacent the core. The three-layer cover includes an inner cover, an intermediate cover, and an outer cover. The inner cover includes a non-ionomeric E/Y copolymer where E is an olefin and Y is a carboxylic acid. The inner cover has a hardness of about 45 to 68 Shore D. The outer cover includes a castable thermoset polyurethane and has a hardness of about 40 to 62 Shore D. The intermediate cover layer, disposed between the inner and outer cover layers, is formed from a polyamide composition, where the polyamide composition includes a transparent polyamide having a light transmission of about 50% or greater.Type: GrantFiled: September 16, 2014Date of Patent: June 6, 2017Assignee: Acushnet CompanyInventors: Michael J. Sullivan, David A. Bulpett, Robert Blink, Mark L. Binette, Brian Comeau
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Publication number: 20150126646Abstract: A method of producing a composite material, comprising an assembly of natural fibres, impregnated with an amorphous or semi-crystalline thermoplastic polymer, said method including: i) a step of impregnating said assembly with a precursor composition in the molten state and including: a) at least one prepolymer P(X)n of said thermoplastic polymer, having a molecular chain P having, at the ends of same, n reactive functions X, with n ranging from 1 to 3, in particular n being 1 or 2, and preferably 2 b) at least one chain extender Y-A-Y including reactive functions Y with at least one of said functions X ii) a step of polymerisation by mass (poly)addition, in the molten state, of said prepolymer with said chain extender with: said thermoplastic polymer being the result of said polymerisation by mass polyaddition and said impregnation i) and polymerisation ii) taking place at a temperature lower than 250° C.Type: ApplicationFiled: May 30, 2013Publication date: May 7, 2015Inventors: Gilles Hochstetter, Marc Audenaert, Thierry Briffaud
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Publication number: 20150118472Abstract: A process includes the steps of: casting or coating a polyamic acid organic solvent solution on a support and drying the polyamic acid organic solvent solution thereon, so as to form a partially cured and/or partially dried polyamic acid film; dipping the polyamic acid film in tertiary amine or a solution of tertiary amine, or coating tertiary amine or a solution of tertiary amine on the polyamic acid film; and drying the film while imidizing the polyamic acid. In another process, a chemical converting agent and a catalyst are mixed in an organic solvent solution of polyamic acid. After casting and heating the mixture on a support, a partially cured and/or partially dried polyamic acid film is detached from the support. The film contains, with respect to the remaining volatile component, not less than 50 parts of catalyst, not more than 30 parts of solvent, and not more than 20 parts of chemical converting agent and/or a chemical converting agent derived component.Type: ApplicationFiled: December 24, 2014Publication date: April 30, 2015Applicant: KANEKA CORPORATIONInventors: Hisayasu Kaneshiro, Toshihisa Itoh, Katsunori Yabuta, Kiyokazu Akahori
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Patent number: 8986593Abstract: Described are in-mold coated products such as vehicular components, in-mold coating methods, and in-mold coating compositions, involving the use of aqueous acrylic copolymer dispersions, desirably self-crosslinking.Type: GrantFiled: June 12, 2008Date of Patent: March 24, 2015Assignee: Red Spot Paint & Varnish Co.Inventor: Kyle Shane
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Publication number: 20150051326Abstract: Plasticizers comprising monoesters and/or diesters of poly(trimethylene ether)glycol are provided. The plasticizers can be used in plasticizing a variety of base polymers.Type: ApplicationFiled: August 13, 2013Publication date: February 19, 2015Applicant: E I DU PONT DE NEMOURS AND COMPANYInventors: HARI BABU SUNKARA, Raja Hari Poladi, Herbert Vernon Bendler
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Publication number: 20150048539Abstract: A xylylenediamine-based polyamide resin/fiber composite material and molding are provided that do not exhibit a decline in properties under high temperatures and high humidities, and that exhibit a high elastic modulus and present little warping, and exhibit better recycle characteristics, a better moldability, and a better productivity than for thermosetting resins. The polyamide resin-type composite material comprises a fibrous material (B) impregnated with a polyamide resin (A) wherein at least 50 mole % of diamine structural units derived from xylylenediamine, and having a number-average molecular weight (Mn) of 6,000 to 30,000, and containing a component of a molecular weight of not more than 1,000 at 0.5 to 5 mass %.Type: ApplicationFiled: October 30, 2014Publication date: February 19, 2015Applicant: Mitsubishi Gas Chemical Company, Inc.Inventor: Jun MITADERA
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Patent number: 8946375Abstract: A method for making over-indexed thermoplastic polyurethane elastomer precursor. The precursor may be cross-linked.Type: GrantFiled: December 28, 2012Date of Patent: February 3, 2015Assignee: NIKE, Inc.Inventors: Yasushi Ichikawa, Thomas J. Kennedy, III, Chien-Hsin Chou, Hui-Kai Liao
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Publication number: 20150017425Abstract: The present invention relates to lignocellulose materials which comprise A) 30 to 98 wt % of one or more lignocellulosic substances, B) 1 to 25 wt % of expanded plastics particles having a bulk density in the range from 10 to 150 kg/m3, C) 1 to 50 wt % of a binder selected from the group consisting of amino resin, phenol-formaldehyde resin, organic isocyanate having at least two isocyanate groups, or mixtures thereof, optionally with a curing agent, and D) 0 to 68 wt % of additives, wherein component B) or the original expandable plastics particles are coated with at least one coating material before, during, or after expansion.Type: ApplicationFiled: July 1, 2014Publication date: January 15, 2015Inventors: Matthias Schade, Stephan Weinkötz, Günter Scherr, Jens Aßmann, Dietrich Scherzer
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Publication number: 20140296428Abstract: The present invention relates to isocyanate functional prepolymers, aqueous polyurethane dispersions produced from the prepolymers and various uses of such dispersions. The prepolymers are prepared by reacting a diisocyanate, a dihydroxy compound having a number average molecular weight of from about 700 to about 16,000, and a trihydroxy component of the formula: R—(OH)3 where R is a saturated straight chain or branched chain aliphatic group of from 2 to 8 carbon atoms. The invention also relates to polyurethane dispersions prepared from the prepolymers and to various uses of the resultant dispersions.Type: ApplicationFiled: February 21, 2014Publication date: October 2, 2014Applicant: Bayer MaterialScience LLCInventors: Lyubov K. Gindin, Richard R. Roesler, Poli C. Yu, Joseph Kleer, Thomas Muenzmay, Yuliya Berezkin, Mary A. Crisci
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Publication number: 20140287218Abstract: A single-layered thermally adhesive polyimide film; a method for producing the thermally adhesive polyimide film; and a method for producing a polyimide metal laminate produced using the thermally adhesive polyimide film. The single-layer thermally adhesive polyimide film is produced by polymerizing a tetracarboxylic acid dianhydride component and a diamine component, wherein the tetracarboxylic acid dianhydride component includes 2,3,3?,4?-biphenyltetracarboxylic acid dianhydride and 3,3?,4,4?-biphenyltetracarboxylic acid dianhydride and the diamine component includes an aromatic diamine compound represented by the following formula (I) as a main component wherein X is O, CO, C(CH3)2, CH2, SO2, S, or a direct bond, and in cases of two or more modes of bonding, each is the same or different; and n is an integer of 0 to 4.Type: ApplicationFiled: August 17, 2012Publication date: September 25, 2014Applicant: UBE INDUSTRIES, LTD.Inventors: Takuro Kochiyama, Keigo Nagao, Takeshi Uekido, Hideo Arihara
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Patent number: 8829147Abstract: Polymerizable liquid compositions of the polyurethane type, consisting of two components (A) and (B), wherein component (A) contains at least one cyclo-aliphatic diisocyanate monomer or a mixture of one cyclo-aliphatic diisocyanate monomer and a pre-polymer obtained by reaction, in the presence of an acid phosphate ester catalyst, between said cyclo-aliphatic diisocyanate monomer and one or more polyols having two or more hydroxy 1 groups per molecule and a molecular weight ranging from 50 to 2,000 g/mole; the second component (B) contains one or more polyols having a molecular weight ranging from 50 to 2,000 g/mole and a functionality between 2 and 5; in the absence of polyalkoxylated tertiary diamines and organometallic catalysts, said components (A) and (B) being present in a weight ratio which varies from 1:1 to 2:1 and the process for the production of organic glass starting from polymerizable liquid compositions of the polyurethane type.Type: GrantFiled: October 14, 2009Date of Patent: September 9, 2014Assignee: Acomon AGInventors: Willem Bos, Fiorenzo Renzi, Roberto Forestieri, Andrea Vecchione
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Publication number: 20140228462Abstract: The disclosure relates to compositions exhibiting a UV resistance of ?E ranging from more than 0 to less than or equal to 10 units after exposure to ultraviolet light for 300 hours, per ASTM D-4459 protocol. The compositions can include at least 15 wt % of a polyetherimide; at least 35 wt % of a polycarbonate; a polyetherimide siloxane; and optionally, at least one UV stabilizer. The disclosure also relates to methods of shaping such compositions and articles produced from such compositions.Type: ApplicationFiled: March 17, 2014Publication date: August 14, 2014Applicant: SABIC INNOVATIVE PLASTICS IP B.V.Inventors: Aditya Narayanan, Feng Cao
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Patent number: 8784712Abstract: A process for making a polyurethane, comprising reacting a multifunctional isocyanate, a polyol and, optionally, a chain extender, wherein at least two reagents selected from the isocyanate, the polyol, the chain extender, any mixture thereof and any pre-polymer formed therefrom, are intensively mixed prior to being reactively extruded, to form a polyurethane having a predetermined stoichiometry and thermal history. The polyurethanes obtained by such a process are of highly consistent composition and are, thus, especially suitable for use in the medical device industry.Type: GrantFiled: July 30, 2001Date of Patent: July 22, 2014Assignee: Ranier LimitedInventors: Geoffrey Thomas Andrews, Anthony Francis Johnson
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Patent number: 8784719Abstract: Reinforced polyimide compositions that include a reinforcing filler and a polyamide flow promoter improve flow promotion while maintaining other mechanical, thermal, flame and/or electrical properties of the compositions. The compositions may include an inorganic or organic reinforcing filler, a polyimide resin such as polyetherimide or polyamideimide and a small amount of an aromatic or aliphatic polyamide as the flow promoter. The resulting compositions may be used in thinner-wall applications while still retaining the advantageous physical properties of reinforced polyimide compositions not having the flow promoter. This abstract is intended as a scanning tool for purposes of searching in the particular art and is not intended to be limiting of the present invention.Type: GrantFiled: June 30, 2011Date of Patent: July 22, 2014Assignee: Sabic Global Technologies B.V.Inventors: Chandrashekhar Lingannaiah, Anton Kumanan, Reema Sinha, Anirban Ganguly, Susanta Mitra, Anne Bolvari, Zheng Yun
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Patent number: 8778247Abstract: The invention relates to a polymer film made of a polyamide composition comprising at least 80 weight percentage (wt. %) of a semi-crystalline semi-aromatic polyamide with a melting temperature (Tm) of at least 270° C., wherein the wt. % is relative to the total weight of the polymer composition, wherein the polymer film has an average coefficient of thermal expansion in plane in the temperature range of 20° C.-Tg, measured in plane with the method according to ASTM D969-08, of at most 40 ppm/K. The said film can be made from a polyamide moulding composition comprising said polyamide by film casting followed by biaxial stretching. The film has properties suitable for carrier films in flexible printed circuit boards.Type: GrantFiled: January 15, 2010Date of Patent: July 15, 2014Assignee: DSM IP Assets B.V.Inventors: Alexander Antonius Marie Stroeks, Guido Richard Struijk
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Publication number: 20140186413Abstract: The present invention relates to a preparation method for core-shell structured fibrous scaffolds, and more specifically to preparing a core part composition and a shell part composition that each have different constitutions by adding calcium phosphate cement and a protein, drug of combination thereof to alginate solution, and then inserting the above core part composition and shell part composition to internal and external nozzle of concentric nozzle respectively to inject into calcium ion aqueous solution and thereby hardening them, thus preparing core-shell structured rapidly setting Alg/?-TCP scaffolds capable of controllably releasing a protein or drug.Type: ApplicationFiled: September 25, 2013Publication date: July 3, 2014Inventors: Hae-Won KIM, Roman PEREZ
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Patent number: 8734609Abstract: A process for continuous manufacturing of moisture-curable polyurethane formulations used as sealants and adhesives. The process is characterized by the fact that the reactive components are introduced independently, and without the need for a prepolymer, to a mixer. Solid or liquid raw materials can be either pre-blended or fed directly to the mixer, a twin-screw extruder, which provides the requisite energy to homogenously mix the raw materials and drive the chemical reaction. The process is designed so that the extruder barrel and screw allow variable feed addition and heat exchange down the length of the machine. This allows various operations to be performed at different points in the extruder, including reaction, dispersive mixing, distributive mixing and devolitization.Type: GrantFiled: December 24, 2008Date of Patent: May 27, 2014Assignee: Bostik, Inc.Inventor: Sean G. Duffy
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Patent number: 8709313Abstract: A method and apparatus for feeding a polyurethane mixture suitable to form a thermally insulating layer inside hollow bodies, such as hollow walls of a refrigerator cabinet, freezer, display counter or insulating panel. A polyurethane mixture resulting from chemically reactive components, supplied by a high-pressure mixing device, is injected into a cavity of a hollow body extending in a horizontal plain. The mixture is injected at a first flow-rate and a first injection speed, to be poured into a first deposition zone farthest from the injection point. Subsequently, the flow-rate and the injection speed of the polyurethane mixture are gradually reduced in a controlled manner, to be poured in successive deposition zones towards the injection point of the polyurethane mixture, along a distribution strip, allowing the injected mixture to spread out throughout the cavity of the hollow body along isometric expansion lines.Type: GrantFiled: March 14, 2011Date of Patent: April 29, 2014Assignee: Afros S.p.A.Inventors: Carlo Fiorentini, Maurizio Corti
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Patent number: 8697814Abstract: A polyamide molding composition is condensed up in the melt by means of a masterbatch containing a compound having at least two carbonate units and also a polyetheramide in which at least 50% of the end groups are present as amino end groups, whereupon the melt mixture is discharged and solidified to give a molding composition or a molding. The product obtained has an increased amino end group content and consequently an improved hydrolysis resistance.Type: GrantFiled: November 17, 2009Date of Patent: April 15, 2014Assignee: Evonik Degussa GmbHInventors: Andreas Dowe, Reinhard Beuth, Franz-Erich Baumann
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Publication number: 20140087187Abstract: Cultured stone materials, and products including the same, have a plastic component and particulate calcium sulfate filler, which may be a calcium sulfate filler in the form of calcium sulfate dihydrate filler that provides fire retardancy, and the filer provides other processing and product benefits. The cultured stone materials may be made by converting a mixture of a plastic component and particulate calcium sulfate filler to a rigid shaped form.Type: ApplicationFiled: May 27, 2012Publication date: March 27, 2014Applicant: AMERICAN SELENITE, LLCInventor: George C. Hawley
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Patent number: 8679279Abstract: Methods for creating a foam-like texture on an implantable material are provided. More particularly, methods for creating foam-like texture on implantable silicone materials are provided.Type: GrantFiled: November 15, 2011Date of Patent: March 25, 2014Assignee: Allergan, Inc.Inventors: Jordan M. Thompson, Alexei Goraltchouk, Kevin A. Ma
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Patent number: 8647551Abstract: A process for producing moldings with condensing-up of a polyamide molding composition whose polyamide component contains, as a result of the method of preparation, at least 5 ppm of phosphorus in the form of an acidic compound by means of a compound having at least two carbonate units, wherein a) from 0.001 to 10% by weight, based on the polyamide, of a salt of a weak acid is added to the polyamide molding composition prior to compounding or during compounding, b) a mixture of the finished composition and the compound having at least two carbonate units is prepared, c) the mixture is, if appropriate, stored and/or transported and d) the mixture is subsequently processed to produce the molding, with the condensing-up occurring only in this step, effects a significant increase in the melt stiffness combined with moderate processing pressures, which considerably simplifies, in particular, the production of hollow bodies and hollow profiles having large diameters.Type: GrantFiled: February 15, 2006Date of Patent: February 11, 2014Assignee: Evonik Degussa GmbHInventors: Andreas Dowe, Rainer Goering, Martin Himmelmann, Sonja Bollmann, Franz-Erich Baumann, Roland Wursche
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Patent number: 8574482Abstract: Method of cold casting a composite product which includes the steps of making a composite mixture comprising a curable resin and metal particles, pouring the composite mixture into a mold made of a machinable and recyclable substrate; and curing the composite mixture in a pressurized chamber for a time sufficient to eliminate the appearance of bubbles in the cured composite mixture. The curable resin is selected to have a cure time and a viscosity that allows the metal particles to fall to the bottom of the mold to appear on the face of the composite product. The finished product can resemble traditional foundry cast metal products while employing a much lower amount of metal to achieve cost savings.Type: GrantFiled: January 21, 2010Date of Patent: November 5, 2013Assignee: Fusioncast Inc.Inventors: David A. Bartholomew, Brett Coates
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Publication number: 20130255899Abstract: A transformer paper comprising polyetherimide fibers is disclosed, along with a method of making the transformer paper and articles.Type: ApplicationFiled: March 14, 2013Publication date: October 3, 2013Applicant: SABIC Innovative Plastics IP B.V.Inventors: John R. Krahn, Erich Otto Teutsch
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Patent number: 8529812Abstract: Pearls based on expanded polymers are produced by extruding an expandable composition containing a thermoplastic polymer and an expanding agent, and thereafter cooling and chopping the expanded material thus obtained.Type: GrantFiled: June 30, 2004Date of Patent: September 10, 2013Assignee: Rhodia Polyamide IntermediatesInventors: Jean-Francois Estur, Eric Roche, Jean-Francois Briois
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Publication number: 20130224486Abstract: The invention provides systems and methods for preparing a plastic containing feedstream for conversion to valuable carbon-containing products such as synthetic crude oil. In some systems and methods, the plastic material is prepared from carpet scrap.Type: ApplicationFiled: February 27, 2013Publication date: August 29, 2013Applicant: COMMUNITY ENERGY SYSTEMSInventor: Community Energy Systems
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Patent number: 8512281Abstract: The present invention relates to a medical device for angioplasty or parts thereof, which is made of elastomeric material, wherein the elastomeric material comprises a polyamide-based polymer obtained from the polymerization of a compound forming polyamide blocks that is selected from the group consisting of an aminocarboxylic acid of Formula (1) and a lactam of Formula (2): with a polyether diamine triblock compound of Formula (3): and a dicarboxylic acid of Formula (4): HOOC—(R3)m-COOH??(4) wherein the groups R1, R2 and R3 are each binding groups comprising a hydrocarbon chain therein that may be interrupted by one or more amide groups; x is an integer from 1 to 20; y is an integer from 4 to 50, z is an integer from 1 to 20; m is 0 or 1.Type: GrantFiled: May 12, 2006Date of Patent: August 20, 2013Assignee: Medtronic, Inc.Inventors: Cesare Botticini, Paolo Pellegrini
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Publication number: 20130119585Abstract: Described is a method of preparing a cured, non-elastomeric polymeric sheet derived from a polyisocyanate. The method comprises the following steps: combining a first component and second, separate component to form a reaction mixture; introducing the reaction mixture into a preheated sheet mold at a certain minimum fill rate, allowing the reaction mixture to gel; heating the reaction mixture to a temperature and for a time sufficient to yield a cured sheet having a thickness of at least 6.35 mm (0.25 in); and removing the cured sheet from the mold to yield a non-elastomeric polymeric sheet. When the active hydrogen functional groups in the second component include hydroxyl groups, the first and second components are initially heated to a temperature of at least 50° C., Polyurethane sheets formed by such processes demonstrate minimal optical defects and the process allows for the production of superior sheets of higher thicknesses than previously possible.Type: ApplicationFiled: October 26, 2012Publication date: May 16, 2013Inventors: Marvin J. Graham, George A. Galo, JR., Matteo Lagasi, William H. Retsch, JR.
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Publication number: 20130066034Abstract: Polymerization catalysts for organic polythiourethane glass which do not contain organometallic compounds contain a mixture of a tertiary aliphatic amine and a disubstituted phosphoric acid in a molar ratio ranging from 1/1.3 to 1/20. Polymerizable liquid compositions containing three components (A), (B) and (C) are also provided, wherein component (A) contains at least one cycloaliphatic diisocyanate monomer wherein the weight percentage of free isocyanate groups in component (A) ranges from about 20% to about 50% by weight with respect to the total weight of component (A); component (B) contains at least one polythiol having a molecular weight ranging from 50 to 1,200 g/moles and a functionality ranging from 2 to 5, said components (A) and (B) being present in a weight ratio varying from 0.5:1 to 2:1; and component (C) being said polymerization catalyst. A process for the production of organic glass using the polymerizable liquid composition is further provided.Type: ApplicationFiled: May 20, 2011Publication date: March 14, 2013Applicant: MITSUI CHEMICALS, INC.Inventors: Fiorenzo Renzi, Roberto Forestieri, Andrea Vecchione, Willem Bos
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Publication number: 20130043620Abstract: A cylindrical core member for manufacturing a tubular member by curing a resin solution coated on an outer circumferential surface thereof, includes a substrate, a releasing layer that is formed on the outer circumferential surface including a central portion of the substrate in the axial direction, and plural low releasing portions having lower releasing properties than the releasing layer at both end portions of the substrate in the axial direction, the plural low releasing portions being intermittently disposed on the outer circumferential surface in the circumferential direction, and present in some places in the axial direction of the core member main body at the circumferential of the core member main body at both end portions of the substrate in the axial direction.Type: ApplicationFiled: January 20, 2012Publication date: February 21, 2013Applicant: FUJI XEROX CO., LTD.Inventor: Futoshi TAKEI
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Publication number: 20130017764Abstract: Polishing pads with apertures are described. Methods of fabricating polishing pads with apertures are also described.Type: ApplicationFiled: July 15, 2011Publication date: January 17, 2013Inventors: William C. Allison, Diane Scott, Rajeev Bajaj
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Publication number: 20130013062Abstract: Methods for creating a foam-like texture on an implantable material are provided. More particularly, methods for creating foam-like texture on implantable silicone materials are provided.Type: ApplicationFiled: November 15, 2011Publication date: January 10, 2013Applicant: ALLERGAN, INC.Inventors: Jordan M. Thompson, Alexei Goraltchouk, Kevin A. Ma
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Patent number: 8309223Abstract: A method is disclosed for the manufacture of a powdered polyimide extrudate for use as a purge media. The method includes feeding a polyimide film material into an extruder having a first zone that provides heating and a subsequent second zone that provides endothermic shearing. In one embodiment, the resulting purge media comprises a sheared polyimide powder having an average particle size in a range of about 5 to 100 microns (or any sub-range thereof). The purge media can comprises up to 35 weight percent other additives.Type: GrantFiled: December 21, 2010Date of Patent: November 13, 2012Inventor: David Herbert Roach
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Publication number: 20120230742Abstract: An image heating apparatus, for heating, in a nip, a recording material for carrying a toner image while conveying the recording material, includes a flexible cylindrical film; a nip-forming member contacting an inner surface of the film; and a pressing member for forming the nip between itself and the film. The inner surface of the film is provided with a roughened surface portion in a region in which the nip-forming member slides on the inner surface of the film. The roughened surface portion has a skewness Rsk satisfying: Rsk<0.Type: ApplicationFiled: March 1, 2012Publication date: September 13, 2012Applicant: CANON KABUSHIKI KAISHAInventors: Ken Nakagawa, Michio Uchida, Tomoo Akizuki, Kazuhiro Doda, Kensuke Umeda
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Patent number: 8206639Abstract: A nanoimprint resist that includes a hyperbranched polyurethane oligomer (HP), a perfluoropolyether (PFPE), a methylmethacrylate (MMA), a diluent solvent and a photo initiator. A method of a nanoimprint lithography is also provided.Type: GrantFiled: March 5, 2010Date of Patent: June 26, 2012Assignees: Tsinghua University, Hon Hai Precision Industry Co., Ltd.Inventors: Zhen-Dong Zhu, Qun-Qing Li, Li-Hui Zhang, Mo Chen
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Patent number: 8202468Abstract: A nanoimprint mold includes a flexible body and a molding layer formed on the flexible body. The molding layer includes a plurality of protrusions and recesses. The molding layer is a polymer material polymerized via a cross linking polymerization of a nanoimprint resist which includes a hyperbranched polyurethane oligomer (HP), a perfluoropolyether (PFPE), a methylmethacrylate (MMA), a diluent solvent and a photo initiator. A method for making the nanoimprint mold is also provided.Type: GrantFiled: February 24, 2010Date of Patent: June 19, 2012Assignees: Tsinghua University, Hon Hai Precision Industry Co., Ltd.Inventors: Zhen-Dong Zhu, Qun-Qing Li, Li-Hui Zhang, Mo Chen
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Publication number: 20120141308Abstract: Polymeric and polymeric composite parts for pumps and a method of manufacturing same are disclosed. More specifically, a valve insert comprising a polymeric seal sized to fit on an outside diameter of a valve closure member for a plunger pump; a pressure packing element ring for a plunger on a plunger pump; and a pressure packing element ring for a push rod on plunger of a plunger pump, each of said articles being formed from a naphthalene-1,5-diisocyanate (NDI) based polyurethane component and an extender.Type: ApplicationFiled: December 5, 2011Publication date: June 7, 2012Inventors: Rajesh K. Saini, Fen Liang, David M. Stribling
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Publication number: 20120083554Abstract: Cold-pressed mats of lignocellulosic material having a Push Off Test extension equal to at least 85% of that of a mat made with a urea-formaldehyde resin are produced from a lignocellulosic material and binder system. These mats are produced at ambient temperature by separately adding each component of the binder system to the lignocellulosic material, blending the lignocellulosic material and binder system to coat the lignocellulosic material with the binder system, forming the coated lignocellulosic material into the desired form and applying pressure to the formed lignocellulosic material to obtain the desired thickness. The binder system includes: (i) at least one polyfunctional isocyanate and (ii) at least one aqueous dispersion of an adhesive or tackifier.Type: ApplicationFiled: September 30, 2010Publication date: April 5, 2012Applicant: Bayer MaterialScience LLCInventors: George Combs, Nigel Barksby, Jeffrey F. Dormish
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Publication number: 20120065303Abstract: Disclose is a polyamide resin composition having excellent heat resistance, heat aging resistance and mechanical physical properties, which is produced by incorporating a specified aromatic secondary amine compound and a specified organic sulfur based compound into a polyamide composed of a diamine unit containing a paraxylylenediamine unit as a major component and a dicarboxylic acid unit containing a linear aliphatic dicarboxylic acid unit having from 6 to 18 carbon atoms as a major component.Type: ApplicationFiled: May 28, 2010Publication date: March 15, 2012Applicant: MITSUBISHI GAS CHEMICAL COMPANY INCInventors: Shun Ogawa, Takahiko Sumino
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Patent number: 8119719Abstract: Disclosed are an intermediate transfer belt for use in a laser printer, a fax machine and a copier, and a production method thereof. Specifically, an intermediate transfer belt including silicone modified polyimide resin and a production method thereof are provided, thereby realizing a monolayer intermediate transfer belt having excellent electrical properties, water repellency and heat dissipation properties and good mechanical strength. Further, even without the additional use of an adhesive layer for adhesion to a fluorine resin layer and fluorine resin, the intermediate transfer belt can exhibit satisfactory properties, and process efficiency can be maximized.Type: GrantFiled: January 3, 2007Date of Patent: February 21, 2012Assignee: Kolon Industries, Inc.Inventors: Hyo Jun Park, Chae Hyun Lim, Chung Seock Kang, Sang Min Song
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Publication number: 20120001367Abstract: A method for producing a polyimide film comprises the steps of: preparing a polar organic solvent solution of a polyimide precursor obtained by mixing a tetracarboxylic acid dianhydride compound and a diamine compound; adding a dehydrating agent and an imidization catalyst to the polar organic solvent solution so as to prepare a resin solution composition; and drying the resin solution composition by heating so as to imidize the resin solution composition after flowing the resin solution composition onto a support in a casting manner, wherein diethyl pyridine is used as the imidization catalyst. According to the production method, it is possible to obtain a polyimide film which is highly productive and is excellent in the film quality such as the mechanical property, the adhesive strength, and the like.Type: ApplicationFiled: August 17, 2011Publication date: January 5, 2012Applicant: Kaneka CorporationInventor: Katsunori Yabuta
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Patent number: 8075824Abstract: A polyimide film made of a multicomponent polyimide comprising two or more different polyimide components including (A) a polyimide component A being raw materials of a polyimide A and/or a polyimidation product of the raw materials and (B) a polyimide component B being raw materials of a polyimide B and/or a polyimidation product of the raw materials. The polyimide components A and B are different, for example, such that the absolute difference between solubility parameter SPA of the polyimide A and solubility parameter SPB of the polyimide B, |SPB-SPA|, is 0.5 MPa1/2 or more. The polyimide film has markedly modified surface properties as compared with a polyimide film in which all the same raw materials as used in the film of the invention are randomly bonded to one another.Type: GrantFiled: July 23, 2007Date of Patent: December 13, 2011Assignee: UBE Industries, Ltd.Inventors: Toshimune Yoshinaga, Kenji Fukunaga, Harutoshi Hoshino
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Patent number: 8026309Abstract: A process is provided for producing a compatibilized polymeric blend. A first thermoplastic polymer and a reactive moiety are provided to a progressive melt kneading apparatus. The reactive moiety comprises a first reactive group capable of reacting with the first thermoplastic polymer but not a second polymer and a second reactive group capable of reacting with the second polymer but not the first polymer. The first thermoplastic polymer and the reactive moiety are then melt kneaded so that the first reactive group reacts with the first thermoplastic polymer and the second reactive group is grafted to the first thermoplastic polymer, forming a molten self-compatibilizer. A molten second polymer is then provided. The molten self-compatibilizer is melt kneaded with the molten second polymer so that the second reactive group reacts with the second polymer to form a compatibilized polymeric blend. Also provided are articles formed from the compatibilized polymer blend.Type: GrantFiled: February 29, 2008Date of Patent: September 27, 2011Assignee: PRS Mediterranean Ltd.Inventors: Izhar Halahmi, Oded Erez, Adi Erez
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Patent number: 7993735Abstract: The present teachings provide an intermediate transfer member. The intermediate transfer member includes a polyimide polymer having the formula: wherein R is alkyl or aryl and the like and mixtures thereof; and n and m are the mole percent of the repeating unit.Type: GrantFiled: April 13, 2010Date of Patent: August 9, 2011Assignee: Xerox CorporationInventors: Dante M. Pietrantoni, Jin Wu, Jonathan H. Herko, Lanhui Zhang, Lin Ma, Francisco J. Lopez, Kyle B. Tallman