Coated Or Structually Defined Flake, Particle, Cell, Strand, Strand Portion, Rod, Filament, Macroscopic Fiber Or Mass Thereof Patents (Class 428/357)
  • Patent number: 8530027
    Abstract: A composite article may comprise a plurality of fibers. Each one of the fibers may have upper, lower and side surfaces. The fibers may be embedded within a matrix. At least one of the upper and lower surfaces of at least one of the fibers may include a notch region and a pair of side regions on opposite sides of the notch region. The plurality of fibers may be arranged in layers. At least one of the fibers of one of the layers may be received within the notch region of at least one of the fibers of another one of the layers.
    Type: Grant
    Filed: December 15, 2010
    Date of Patent: September 10, 2013
    Assignee: The Boeing Company
    Inventors: Michael P. Kozar, Mark S. Wilenski
  • Publication number: 20130224486
    Abstract: 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: Application
    Filed: February 27, 2013
    Publication date: August 29, 2013
    Applicant: COMMUNITY ENERGY SYSTEMS
    Inventor: Community Energy Systems
  • Patent number: 8518536
    Abstract: The object is to provide a high-purity magnesium oxide particle aggregate that is redispersible and can be supplied with keeping high purity, and a method for producing the same. A magnesium oxide particle aggregate that is an aggregate of magnesium oxide particles, wherein the magnesium oxide particles have an average particle size of 1 ?m or less, and comprises Si, Al, Ca, Fe, V, Cr, Mn, Ni, Zr, B and Zn as impurities in their respective amounts of 10 ppm by mass or less, wherein the total amount of the impurities is 100 ppm by mass or less.
    Type: Grant
    Filed: June 26, 2008
    Date of Patent: August 27, 2013
    Assignee: Tateho Chemical Industries Co., Ltd.
    Inventors: Ryuichi Ishibashi, Atsuya Kawase, Kaori Yamamoto
  • Patent number: 8512861
    Abstract: Embodiments of multi-layer three-dimensional structures and formation methods provide structures with effective feature (e.g. opening) sizes (e.g. virtual gaps) that are smaller than a minimum feature size (MFS) that exists on each layer as a result of the formation method used in forming the structures. In some embodiments, multi-layer structures include a first element (e.g. first patterned layer with a gap) and a second element (e.g. second patterned layer with a gap) positioned adjacent the first element to define a third element (e.g. a net gap or opening resulting from the combined gaps of the first and second elements) where the first and second elements have features that are sized at least as large as the minimum feature size and the third element, at least in part, has dimensions or defines dimensions smaller than the minimum feature size.
    Type: Grant
    Filed: December 13, 2011
    Date of Patent: August 20, 2013
    Assignee: Microfabrica Inc.
    Inventors: Michael S. Lockard, Adam L. Cohen, Vacit Arat, Dennis R. Smalley
  • Patent number: 8507592
    Abstract: An adhesive composition includes a phenoxy resin having a bisphenol S skeleton in a structure and 10 to 100 parts by weight of a maleimide compound based on 100 parts by weight of the phenoxy resin. The maleimide compound has a plurality of maleimide groups in a structure and is at least one of a first maleimide compound having a melting temperature of 160° C. or lower and a gelling time at 200° C. of 180 to 350 seconds and a second maleimide compound having a melting temperature of 160° C. or lower and a gelling time at 250° C. of 110 to 150 seconds. A heat resistant adhesive film may be formed by coating the adhesive composition on a substrate film, and a wiring film may have a conductor wiring layer put between such heat resistant adhesive films.
    Type: Grant
    Filed: December 1, 2011
    Date of Patent: August 13, 2013
    Assignee: Hitachi Cable, Ltd.
    Inventors: Satoru Amou, Kosuke Kuwabara, Tomiya Abe, Hiroaki Komatsu, Kenichi Murakami
  • Patent number: 8500901
    Abstract: The present invention relates to interference pigments based on coated flake-form substrates which are distinguished by the fact in that they comprise (A) a layer of SiO2 having a layer thickness of 5-350 nm, (B) a high-refractive-index coating having a refractive index n of >1.8 and/or (C) an interference system consisting of alternating high- and low-refractive-index layers and optionally (D) an outer protective layer, and to the use thereof in paints, coatings, automotive paints, powder coatings, printing inks, security printing inks, plastics, ceramic materials, glasses, paper, in toners for electrophotographic printing processes, in seed, in greenhouse sheeting and tent awnings, as absorbers in the laser marking of paper and plastics, in cosmetic formulations, for the preparation of pigment pastes with water, organic and/or aqueous solvents, and for the preparation of pigment preparations and dry preparations.
    Type: Grant
    Filed: March 22, 2010
    Date of Patent: August 6, 2013
    Assignee: Merck Patent GmbH
    Inventors: Reinhold Rueger, Klaus Ambrosius, Marcus Mathias, Helge Bettina Kniess
  • Publication number: 20130196154
    Abstract: A method produces pellets from fiber composite materials suitable for further processing in a plastics finishing method. The pellets contain individual carbon fibers, carbon fiber bundles, or a mixture thereof and at least one thermoplastic matrix material. The carbon fibers, carbon fiber bundles, or a mixture thereof are isolated from waste or used parts that contain carbon fiber, laid flat together with the thermoplastic matrix material, compressed into a sheet material under the effect of heat, and subsequently cooled and comminuted into pellets, platelets, or chips. This enables the use of carbon fibers, from production waste components, as reinforcing fibers, whereby an inexpensive raw material is provided and the carbon fibers that are contained in the waste materials are recycled. The final carbon fibers are brought into a pourable and readily meterable form and can be used as raw materials for extrusion or injection molding for example.
    Type: Application
    Filed: August 17, 2012
    Publication date: August 1, 2013
    Applicant: SGL AUTOMOTIVE CARBON FIBERS GMBH & CO. KG
    Inventors: GERALD ORTLEPP, RENATE LÜTZKENDORF, THOMAS REUSSMANN
  • Publication number: 20130188255
    Abstract: The present invention provides a method of producing hollow magnesium fluoride particles by performing polymerization at the interface of micelle constituted of a hydrophobic solvent, a hydrophilic solvent, and a surfactant. The invention further provides an antireflection coating having a low refractive index due to the coating by the hollow magnesium fluoride particles and also provides an optical device coated with the antireflection coating and an imaging optical system having the optical device. In the method, micelle is formed from a hydrophobic solvent, a hydrophilic solvent, and a surfactant, and then a fluorine compound and a magnesium compound are dissolved in the micelle solution to polymerize magnesium fluoride at the interface of the micelle.
    Type: Application
    Filed: September 15, 2011
    Publication date: July 25, 2013
    Applicant: CANON KABUSHIKI KAISHA
    Inventors: Yu Kameno, Masanobu Ogane, Yoji Teramoto
  • Patent number: 8486528
    Abstract: The present invention relates to a process of preparing a biocompatible temperature-sensitive nano-carrier, which comprises the steps of (a) preparing a polymer dispersion comprising a water-soluble biocompatible polymer with photo-crosslinkable functional group(s), (b) preparing a polymer-initiator solution by adding an initiator to the polymer dispersion, and (c) preparing the nano-carrier by irradiating light onto the polymer-initiator solution, wherein the average diameter of the nano-carrier changes depending on temperature, and also relates to a temperature-sensitive nano-carrier. Nano-carriers of the present invention are temperature-sensitive, and their average diameter and pore size reversibly change in response to temperature change. In an embodiment of the present invention, nano-carriers can be prepared via a one-pot single-phase synthesis.
    Type: Grant
    Filed: January 16, 2009
    Date of Patent: July 16, 2013
    Assignee: Gwangju Institute of Science and Technology
    Inventors: Gi-yoong Tae, Won-il Choi, Ja-young Kim
  • Patent number: 8481157
    Abstract: Polymeric fibers along with methods and systems for extruding polymeric fibers are disclosed. The extrusion process preferably involves the delivery of a lubricant separately from a polymer melt stream to each orifice of an extrusion die such that the lubricant preferably encases the polymer melt stream as it passes through the die orifice.
    Type: Grant
    Filed: January 30, 2007
    Date of Patent: July 9, 2013
    Assignee: 3M Innovative Properties Company
    Inventors: Bruce B. Wilson, Roger J. Stumo, Stanley C. Erickson, William J. Kopecky, James C. Breister
  • Patent number: 8475919
    Abstract: A fiber blend for yarns and fabrics for use in military, fire-fighting, industrial work wear, and first responder protective clothing to provide multifunctional protection to the wearer, the fiber blend including an aramid fiber blend, wool fibers, and electrostatic dissipative fibers, wherein the aramid fiber blend includes meta-aramid fibers, para-aramid fibers and electrostatic dissipative fibers.
    Type: Grant
    Filed: January 11, 2008
    Date of Patent: July 2, 2013
    Assignee: The United States of America as Represented by the Secretary of the Army
    Inventor: Carole A. Winterhalter
  • Patent number: 8476378
    Abstract: Biodegradable aliphatic/aromatic copolyester comprising 50 to 60 mol % of an aromatic dicarboxylic acid and 40 to 50 mol % of an aliphatic acid, at least 90% of which is a long-chain dicarboxylic acid (LCDA) of natural origin selected from azelaic acid, sebacic acid, brassylic acid or mixtures thereof; and a diol component.
    Type: Grant
    Filed: May 8, 2012
    Date of Patent: July 2, 2013
    Assignee: Novamont S.p.A.
    Inventors: Catia Bastioli, Tiziana Milizia, Giovanni Floridi, Andrea Scaffidi Lallaro, Giandomenico Cella, Maurizio Tosin
  • Patent number: 8470453
    Abstract: A new substrate makes it possible to modify surface properties relating to biocompatibility. Said substrate has an electron donating surface, characterized in having metal particles on said surface, said metal particles comprising palladium and at least one metal chosen from gold, ruthenium, rhodium, osmium, iridium, and platinum, wherein the amount of said metal particles is from about 0.001 to about 8 ?g/cm2. The substrate is suggested for different uses, such as for modifying the hydrophobicity, protein adsorption; tissue ingrowth, complement activation, inflammatory response, thrombogenicity, friction coefficient, and surface hardness.
    Type: Grant
    Filed: April 5, 2007
    Date of Patent: June 25, 2013
    Assignee: Bactiguard AB
    Inventors: Mattias Ohrlander, Billy Sodervall
  • Patent number: 8455571
    Abstract: A flame-retardant particle includes: a particle containing a compound having a structure represented by formula (1); and a coating particle that covers at least a part of a surface of the particle: -A(—O—CO—O—Ar)m??(1) wherein A represents a substituted or unsubstituted aromatic group; Ar represents a substituted or unsubstituted phenyl group; and m represents an integer of 1 to 3.
    Type: Grant
    Filed: July 9, 2008
    Date of Patent: June 4, 2013
    Assignee: Fuji Xerox Co., Ltd.
    Inventors: Masato Mikami, Masayuki Okoshi, Kazuya Yamanoi
  • Patent number: 8419971
    Abstract: A process for producing water-absorbing polymer particles by polymerizing droplets of a monomer solution in a gas phase surrounding the droplets, wherein the particle surface is coated at least partly with at least one polymer and/or wax.
    Type: Grant
    Filed: December 12, 2007
    Date of Patent: April 16, 2013
    Assignee: BASF SE
    Inventors: Uwe Stueven, Rüdiger Funk, Matthias Weismantel, Wilfried Heide, Marco Krüger
  • Patent number: 8414601
    Abstract: A flat implant, particularly a hernia mesh, has the form of a textile net having an opening and made from non-resorbable monofilament yarns. The net includes yarns of different thicknesses which run parallel to each other.
    Type: Grant
    Filed: March 3, 2007
    Date of Patent: April 9, 2013
    Assignee: Aesculap AG
    Inventors: Wolfgang Abele, Franz-Josef Kupferschmid, Erich Odermatt, Erhard Müller, Hans-Gerd Schmees
  • Patent number: 8409705
    Abstract: Fibers having a plurality of colored regions printed on front and rear sides of said fiber are disclosed, wherein the colors are visible only under ultra-violet light. The regions may be in the form of stripes or may be arranged in a pseudo-random pattern. The regions may be differently colored. Such fibers can be incorporated into paper products as a form of counterfeit protection.
    Type: Grant
    Filed: January 17, 2012
    Date of Patent: April 2, 2013
    Assignee: D.W. Spinks (Embossing) Ltd.
    Inventor: Gary D Spinks
  • Patent number: 8399044
    Abstract: A method for coating medication for a medical product is disclosed. A technique for coating gel in a viscous semisolid state is provided to facilitate coating of medication. Coating of medication on an article can be facilitated using gel, and coating of medication on an article such as an article made of silk and an article made of polypropylene can be further facilitated.
    Type: Grant
    Filed: January 21, 2010
    Date of Patent: March 19, 2013
    Assignee: SNU R and DB Foundation
    Inventors: Jong-Sang Park, Dae-Joong Kim, In-Su Baek, Chengzhe Bai
  • Patent number: 8398906
    Abstract: The invention pertains to a method for making a polymer-additive composite particle from a dope by jet spinning the dope to obtain a pulp, fibril or fibrid, wherein the solvent of the dope is selected from N-methyl-2-pyrrolidone, N,N?-dimethylformamide, N,N?-dimethylacetamide, tetramethylurea, and 4 to 75 wt % of a composition consisting of 2 to 95 wt % of a para-aramid polymer and 5-98 wt % of a solid additive material, to a total of 100 wt %, and wherein the aramid polymer is dissolved in the solvent; or coagulating the dope by means of a rotor-stator apparatus in which the polymer solution is applied through the stator on the rotor so that the precipitating polymer-additive composite particle is subjected to shear forces while they are in a plastic deformable stage.
    Type: Grant
    Filed: March 28, 2008
    Date of Patent: March 19, 2013
    Assignee: Teijin Aramid B.V.
    Inventors: Anton Johannes Josef Hendriks, Mirjam Ellen Oldenzeel, Johannus Maria Bergmans, Tetsuya Akamatsu
  • Patent number: 8377147
    Abstract: The present invention uses externally applied electromagnetic stimulus to control and heat porous magnetic particles and material associated with the particles. The particles contain magnetic material, such as superparamagnetic iron oxide and are infused with a material. Application of a DC magnetic field allows them to be moved with their infused material, and application of an AC RF electromagnetic field allows them to be heated with their infused material. The material can be infused into pores of the particles and the particles can also adhere to an aqueous droplet. The present invention also provides a multi-layer porous magnetic particle. The particle includes a host layer having pores sized to accept magnetic nanoparticles. Magnetic nanoparticles are infused within pores of the host layer. An encoding layer includes pores that define a spectral code. The pores in the encoding layer are sized to substantially exclude the magnetic nanoparticles.
    Type: Grant
    Filed: May 16, 2007
    Date of Patent: February 19, 2013
    Assignee: The Regents of the University of California
    Inventors: Michael J. Sailor, Ji-Ho Park, Austin Derfus, Ester Segal, Kenneth S. Vecchio, Sangeeta N. Bhatia
  • Patent number: 8366797
    Abstract: Disclosed are improved polymer materials. Also disclosed are fine fiber materials that can be made from the improved polymeric materials in the form of microfiber and nanofiber structures. The microfiber and nanofiber structures can be used in a variety of useful applications including the formation of filter materials.
    Type: Grant
    Filed: August 17, 2011
    Date of Patent: February 5, 2013
    Assignee: Donaldson Company, Inc.
    Inventors: Hoo Y. Chung, John R. B. Hall, Mark A. Gogins, Douglas G. Crofoot, Thomas M. Weik
  • Patent number: 8367194
    Abstract: It is an object of the present invention to provide round fiber-reinforced plastic strand, a manufacturing method thereof, and a fiber-reinforced sheet which eliminate limitation in forming speed and limit on number of products capable of being manufactured at a time, do not require use of a release agent, eliminate the necessity of operations such as roughing after forming, and thus permit a considerable reduction of the manufacturing cost and a remarkable increase in the product quality.
    Type: Grant
    Filed: March 10, 2008
    Date of Patent: February 5, 2013
    Assignee: Nippon Steel Composite Co., Ltd.
    Inventors: Toshikazu Takeda, Masaki Shimada, Hidehiko Hino, Masaki Arazoe
  • Publication number: 20130028952
    Abstract: Filler pigments based on platelet-shaped substrates, which are coated with barium sulfate and at least two metal oxides and/or metal hydroxides are highly suitable as filler pigments especially for cosmetic formulations.
    Type: Application
    Filed: October 9, 2012
    Publication date: January 31, 2013
    Applicant: MERCK PATENT GESELLSCHAFT MIT BESCHRANKTER HAFTUNG
    Inventor: MERCK PATENT GESELLSCHAFT MIT BERSCHRANKTER HAFTUNG
  • Patent number: 8361617
    Abstract: The present application provides a composition comprising porous silk fibroin scaffold material. The porous silk fibroin scaffold can be used for tissue engineering. The porosity of the silk fibroin scaffold described herein can be adjusted to mimic the gradient of densities found in natural tissue.
    Type: Grant
    Filed: July 15, 2010
    Date of Patent: January 29, 2013
    Assignees: Trustees of Tufts College, Massachusetts Institue of Technology
    Inventors: David L. Kaplan, Rina Nazarov, Gordana Vunjak-Novakovic, Lorenz Meinel
  • Patent number: 8361406
    Abstract: Systems and methods for treating a fluid with a body are disclosed. Various aspects involve treating a fluid with a porous body. In select embodiments, a body comprises ash particles, and the ash particles used to form the body may be selected based on their providing one or more desired properties for a given treatment. Various bodies provide for the reaction and/or removal of a substance in a fluid, often using a porous body comprised of ash particles. Computer-operable methods for matching a source material to an application are disclosed. Certain aspects feature a porous body comprised of ash particles, the ash particles have a particle size distribution and interparticle connectivity that creates a plurality of pores having a pore size distribution and pore connectivity, and the pore size distribution and pore connectivity are such that a first fluid may substantially penetrate the pores.
    Type: Grant
    Filed: June 12, 2012
    Date of Patent: January 29, 2013
    Assignee: Errcive, Inc.
    Inventors: Charles E. Ramberg, Stephen A. Dynan, Jack A. Shindle
  • Patent number: 8364243
    Abstract: The invention relates to non-fouling hydrophobic reflective surfaces for a variety of applications which in one embodiment related to medical device applications comprises a method of performing a medical procedure using a surgical navigation system which includes the steps of placing one or more reflective spheres on a surgical instrument or apparatus, the reflective spheres comprising a hydrophobic coating on a sub-micron structured surface of the spheres, wherein the spheres substantially maintain their reflective properties after the spheres are contacted with a biological fluid; shining light on the reflective spheres; capturing reflected light from the spheres with a camera or other device; and registering and/or tracking a location and/or position of the spheres.
    Type: Grant
    Filed: April 29, 2009
    Date of Patent: January 29, 2013
    Assignee: Nanosys, Inc.
    Inventors: Robert Enzerink, R. Hugh Daniels
  • Patent number: 8354138
    Abstract: A preparing method for coating polymethylmethacrylate (PMMA) particles with silicon dioxide is disclosed and includes the following steps of: preparing a silicon dioxide solution by mixing a silicon dioxide powder and a solvent; adding a dispersant-and-interface-modifier agent into the silicon dioxide solution; performing a wet grinding to the silicon dioxide solution with the dispersant-and-interface-modifier agent so as to obtain a plurality of nano-sized silicon dioxide particles with negative charge; performing an interface modification to a plurality of PMMA particles to be charged with positive charge; adding the PMMA particles into the silicon dioxide solution; making the PMMA particles adsorb the nano-sized silicon dioxide particles; and performing a solid-liquid separation process to the silicon dioxide solution so as to obtain the chemical composite particles.
    Type: Grant
    Filed: December 14, 2009
    Date of Patent: January 15, 2013
    Assignee: Chung-Shan Institute of Science and Technology, Armaments Bureau, Ministry of National Defense
    Inventors: Yen-Chung Chen, Hsiou-Jeng Shy, Ming-Der Ger, Hung-Fang Huang, Shang-Wanq Yeh
  • Patent number: 8349423
    Abstract: The invention relates to a polyethylene composition for the production of peroxide crosslinked polyethylene and a method for the production thereof. The invention further relates to the use of such a polymer composition and to a peroxide crosslinked polyethylene pipe made from the polyethylene composition.
    Type: Grant
    Filed: March 13, 2012
    Date of Patent: January 8, 2013
    Assignee: Borealis Technology Oy
    Inventor: Magnus Palmlöf
  • Patent number: 8323791
    Abstract: A polyamide filament is disclosed. The filament includes a polyamide resin. The resin is obtained from mixing crystalline polyamide (A) with another polyamide (B). Crystalline polyamide (A) is obtained by a polycondensation reaction of metaxylenediamine and adipic acid. Crystalline polyamide (A) comprises from 5 to 50 wt. % of the resin. Polyamide (B) comprises from 50 to 95 wt. % of the resin. The filament is heated to 160 to 200° C. under a constant length condition at an initial load of 20 mg/d. After heating, a thermal contraction stress of the filament is not reduced in a cool-down region not greater than 80° C.
    Type: Grant
    Filed: November 10, 2005
    Date of Patent: December 4, 2012
    Assignee: Nippon Filcon Co., Ltd.
    Inventor: Shinya Murakami
  • Publication number: 20120276310
    Abstract: A method of manufacturing a cementitious composite including: (1) mixing an extrudable cementitious composition by first forming a fibrous mixture comprising fibers, water and a rheology modifying agent and then adding hydraulic cement; (2) extruding the extrudable cementitious composition into a green extrudate, wherein the green extrudate is characterized by being form-stable and retaining substantially a predefined cross-sectional shape; (3) removing a portion of the water by evaporation to reduce density and increase porosity; and (4) heating the green extrudate at a temperature from greater than 65° C. to less than 99° C. is disclosed. Such a process yields a cementitious composite that is suitable for use as a wood substitute. Particularly, by using higher curing temperatures for preparing the cementitious building products, the building products have a lower bulk density and a higher flexural strength as compared to conventional products.
    Type: Application
    Filed: November 19, 2010
    Publication date: November 1, 2012
    Applicant: E. KHASHOGGI INDUSTRIES, LLC
    Inventors: Per Just Andersen, Simon K. Hodson
  • Patent number: 8298664
    Abstract: A dental material comprising a symmetrically rod-shaped fiber-reinforced composite comprising at least two layers of preimpregnated fibers, wherein the preimpregnated fibers comprise fibers coated with a resin, wherein the layers are unbraided, and wherein each layer is unidirectionally disposed on the preceding layer in a direction that is different from the direction of the preceding layer. The rod-shaped composite may be hollow and contain a channel throughout the axial length of the rod or may contain a shaft or other material that is inserted into the channel.
    Type: Grant
    Filed: April 12, 2007
    Date of Patent: October 30, 2012
    Assignee: Pentron Clinical Technologies, LLC
    Inventor: Weitao Jia
  • Patent number: 8293364
    Abstract: A highly shrinkable fiber composed of nylon-MXD6 polymer and nylon-6 polymer, characterized in that a weight ratio therebetween is in the range of 35:65 to 70:30, and that each thereof exhibits a breaking strength of 4.00 cN/dtex or greater. Preferably, the weight ratio between nylon-MXD6 polymer and nylon-6 polymer of the highly shrinkable fiber is in the range of 45.55 to 55:45. The highly shrinkable fiber exhibits a high shrinkage ratio in boiling water, so that when the highly shrinkable fiber is used in a woven fabric, there can be realized a high density.
    Type: Grant
    Filed: April 18, 2007
    Date of Patent: October 23, 2012
    Assignee: KB Seiren, Ltd.
    Inventors: Hayato Iwamoto, Yoshitomo Hara, Hideo Ueda, Masaharu Saito
  • Patent number: 8288116
    Abstract: The present invention relates to novel methods and compositions for detection and isolation of cancer cells with metastatic potential. The invention further relates to assays for measuring the metastatic potential of such cancer cells and drug screening assays for the identification of agents having anti-metastatic potential. The present invention further provides methods and compositions for inhibiting the metastatic potential of cancer cells by modulating the activity of serine integral membrane proteases [(SIMP) consisting of seprase and dipetidyl peptidase IV (DPPIV)] expressed on the surface of metastasizing cancer cells.
    Type: Grant
    Filed: March 16, 2010
    Date of Patent: October 16, 2012
    Assignee: The Research Foundation of State University of New York
    Inventor: Wen-Tien Chen
  • Patent number: 8278368
    Abstract: The present application provides dental fillers, and methods of making and using dental fillers that include a treated surface that includes a caseinate. Dental compositions including such dental fillers can be useful for delivering ions to the oral environment. Dental compositions, and methods of using dental compositions that include a caseinate and a hardenable resin or a water-dispersible, polymeric film former are also provided.
    Type: Grant
    Filed: November 7, 2005
    Date of Patent: October 2, 2012
    Assignee: 3M Innnovatve Properties Company
    Inventors: Richard P. Rusin, Sumita B. Mitra, Kevin M. Cummings, Paul A. Burgio, Afshin Falsafi
  • Patent number: 8263221
    Abstract: Disclosed are processes for preparing polyareneazole polymers characterized as providing polymer solutions having an inherent viscosity of at least about 22 dl/g at 30° C. at a polymer concentration of 0.05 g/dl in methane sulfonic acid. Polyareneazoles, filaments and yarns are also disclosed.
    Type: Grant
    Filed: March 27, 2006
    Date of Patent: September 11, 2012
    Assignees: Magellan Systems International, LLC, E.I. du Pont de Nemours and Company
    Inventors: Doetze Jakob Sikkema, David J. Rodini, Qinghong Fu Adkins, Steven R. Allen, Christopher William Newton
  • Patent number: 8252385
    Abstract: Processes for printing conductors, insulators, dielectrics, phosphors, emitters, and other elements containing elongated functional particles aligned along the axis of a spun fiber or film that can be for electronics and display applications are provided. Also provided are viscoelastic compositions used in the processes, and devices made therefrom.
    Type: Grant
    Filed: March 23, 2006
    Date of Patent: August 28, 2012
    Assignee: E I du Pont de Nemours and Company
    Inventors: Steven Dale Ittel, Jennifer Leigh White
  • Patent number: 8246730
    Abstract: The assemblies of the invention can comprise a fine fiber layer having dispersed within the fine fiber layer an active particulate material. Fluid that flows through the assemblies of the invention can have any material dispersed or dissolved in the fluid react with, be absorbed by, or adsorbed onto, the active particulate within the nanofiber layer. The structures of the invention can act simply as reactive, absorptive, or adsorptive layers with no filtration properties, or the structures of the invention can be assembled into filters that can filter particulate from a mobile fluid while simultaneously reacting, absorbing, or adsorbing materials from the mobile fluid.
    Type: Grant
    Filed: June 30, 2011
    Date of Patent: August 21, 2012
    Assignee: Donaldson Company, Inc.
    Inventors: Andrew J. Dallas, William Lefei Ding, Jon D. Joriman, Dustin Zastera, James R. Giertz, Veli Kalayci, Hoo Y. Chung
  • Patent number: 8236269
    Abstract: Disclosed are rigid random coils, having a contour length larger than a diameter thereof, an average bending ratio Db of 0.1˜0.8, and a weight average molecular weight of 1×108˜9×108 g/mole, and a resin composition or organic solvent composition including the same. The rigid random coils have the properties intermediate between those of polymers and rigid rod particles, and thus may be used as filler of various resins, aqueous solutions or organic solvents.
    Type: Grant
    Filed: February 13, 2007
    Date of Patent: August 7, 2012
    Assignee: LG Chem, Ltd.
    Inventors: Heon-Sang Lee, Chang-Hun Yun, Heon-Mo Kim
  • Patent number: 8221881
    Abstract: A production method, comprising a step of synthesizing silicon particle-containing silicon oxide particles by performing a gas phase reaction of monosilane gas and oxidizing gas for oxidizing the monosilane gas and a step of removing the silicon oxide with hydrofluoric acid after holding the silicon oxide particle powder in an inert atmosphere at 800-1400° C., provides high-purity silicon nanoparticles which are highly practical as material powder for high-performance light-emitting elements and electronic parts in an industrial scale.
    Type: Grant
    Filed: June 25, 2010
    Date of Patent: July 17, 2012
    Assignee: Denki Kagaku Kogyo Kabushiki Kaisha
    Inventors: Seiichi Sato, Keisaku Kimura, Takashi Kawasaki, Takuya Okada
  • Patent number: 8222166
    Abstract: Membranes suitable for microfiltration, ultrafiltration (UF) and nanofiltration (NF) filters are provided. Such membranes may include a nanofibrous scaffold, optionally in combination with a non-woven substrate and/or a coating of a polymer and a functionalized nanofiller. Suitable membranes may also include a coating of a polymer and a functionalized nanofiller on a substrate, which can include a non-woven membrane, a nanofibrous scaffold, or both.
    Type: Grant
    Filed: October 5, 2005
    Date of Patent: July 17, 2012
    Assignee: The Research Foundation of State University of New York
    Inventors: Benjamin Chu, Benjamin S. Hsiao, Dufei Fang, Kwang-Sok Kim
  • Patent number: 8211218
    Abstract: The assemblies of the invention can comprise a fine fiber layer having dispersed within the fine fiber layer an active particulate material. Fluid that flows through the assemblies of the invention can have any material dispersed or dissolved in the fluid react with, be absorbed by, or adsorbed onto, the active particulate within the nanofiber layer. The structures of the invention can act simply as reactive, absorptive, or adsorptive layers with no filtration properties, or the structures of the invention can be assembled into filters that can filter particulate from a mobile fluid while simultaneously reacting, absorbing, or adsorbing materials from the mobile fluid.
    Type: Grant
    Filed: August 2, 2011
    Date of Patent: July 3, 2012
    Assignee: Donaldson Company, Inc.
    Inventors: Andrew J. Dallas, William Lefei Ding, Jon D. Joriman, Dustin Zastera, James R. Giertz, Veli E. Kalayci, Hoo Y. Chung
  • Patent number: 8183337
    Abstract: Methods for the purification of ethylene vinyl alcohol copolymers are provided.
    Type: Grant
    Filed: April 29, 2009
    Date of Patent: May 22, 2012
    Assignee: Abbott Cardiovascular Systems Inc.
    Inventor: Stephen D. Pacetti
  • Patent number: 8173260
    Abstract: The present invention features additions of nano-structures to interconnect conductor fine particles (spheres) to: (1) reduce thermal interface resistance by using thermal interposers that have high thermal conductivity nano-structures at their surfaces; (2) improve the anisotropic conductive adhesive interconnection conductivity with microcircuit contact pads; and (3) allow lower compression forces to be applied during the microcircuit fabrication processes which then results in reduced deflection or circuit damage. When pressure is applied during fabrication to spread and compress anisotropic conductive adhesive and the matrix of interconnect particles and circuit conductors, the nano-structures mesh and compress into a more uniform connection than current technology provides, thereby eliminating voids, moisture and other contaminants, increasing the contact surfaces for better electrical and thermal conduction.
    Type: Grant
    Filed: January 12, 2010
    Date of Patent: May 8, 2012
    Assignee: The Research Foundation of State University of New York
    Inventors: Bahgat Sammakia, Wayne E. Jones, Ganesh Subbarayan
  • Patent number: 8168570
    Abstract: Proppants having added functional properties are provided, as are methods that use the proppants to track and trace the characteristics of a fracture in a geologic formation. Information obtained by the methods can be used to design a fracturing job, to increase conductivity in the fracture, and to enhance oil and gas recovery from the geologic formation. The functionalized proppants can be detected by a variety of methods utilizing, for example, an airborne magnetometer survey, ground penetrating radar, a high resolution accelerometer, a geophone, nuclear magnetic resonance, ultra-sound, impedance measurements, piezoelectric activity, radioactivity, and the like. Methods of mapping a subterranean formation are also provided and use the functionalized proppants to detect characteristics of the formation.
    Type: Grant
    Filed: May 19, 2009
    Date of Patent: May 1, 2012
    Assignee: Oxane Materials, Inc.
    Inventors: Andrew R. Barron, Robert D. Skala, Christopher E. Coker, Dilip K. Chatterjee, Yuming Xie
  • Patent number: 8168003
    Abstract: The present invention relates to a fiber having starch and a surfactant, and a web employing such a fiber.
    Type: Grant
    Filed: March 31, 2011
    Date of Patent: May 1, 2012
    Assignee: The Procter & Gamble Company
    Inventors: Valerie Ann Bailey, Larry Neil Mackey, Paul Dennis Trokhan
  • Patent number: 8158253
    Abstract: Fibers (2, 14) having a plurality of colored regions printed on front and rear sides of said fiber are disclosed, wherein the colors are visible only under ultra-violet light. The regions may be in the form of stripes (4, 6, 8, 10 and 12) or may be arranged is a pseudo-random pattern (16, 18, 20, 22, 24). The regions may be differently colored. Such fibers can be incorporated into paper products as a form of counterfeit protection.
    Type: Grant
    Filed: August 28, 2003
    Date of Patent: April 17, 2012
    Assignee: D W Spinks (Embossing) Ltd.
    Inventor: Gary D. Spinks
  • Patent number: 8147722
    Abstract: Certain spin-coatable liquids and application techniques are described, which can be used to form nanotube films or fabrics of controlled properties. A spin-coatable liquid for formation of a nanotube film includes a liquid medium containing a controlled concentration of purified nanotubes, wherein the controlled concentration is sufficient to form a nanotube fabric or film of preselected density and uniformity, and wherein the spin-coatable liquid comprises less than 1×1018 atoms/cm3 of metal impurities. The spin-coatable liquid is substantially free of particle impurities having a diameter of greater than about 500 nm.
    Type: Grant
    Filed: July 25, 2007
    Date of Patent: April 3, 2012
    Assignee: Nantero Inc.
    Inventors: Rahul Sen, Ramesh Sivarajan, Thomas Rueckes, Brent M. Segal
  • Patent number: 8143350
    Abstract: The invention relates to a polyethylene composition for the production of peroxide crosslinked polyethylene and a method for the production thereof. The invention further relates to the use of such a polymer composition and to a peroxide crosslinked polyethylene pipe made from the polyethylene composition.
    Type: Grant
    Filed: January 30, 2003
    Date of Patent: March 27, 2012
    Assignee: Borealis Technology Oy
    Inventor: Magnus Palmlöf
  • Patent number: 8124227
    Abstract: The object of the present invention is carbon nanofibers mainly characterized by their high specific volume of mesopores, their high gas adsorption capacity and presenting a graphitic hollow structure. A second object of this invention is a procedure for obtaining such carbon nanofibers, which makes use of a metallic nickel catalyst and specific process furnace parameters that combined with the chemical composition of the furnace atmosphere and the fluidodynamic conditions of the gas stream inside the furnace, result in a faster growth of the carbon nanofibers and also in a higher quality of the carbon nanofibers obtained.
    Type: Grant
    Filed: May 9, 2008
    Date of Patent: February 28, 2012
    Assignee: Grupo Antolin-Ingenieria, S.A.
    Inventors: José Luis Gonzalez Moral, José Vera Agulló, César Merino Sánchez, Ignacio Martín Gullón
  • Patent number: 8118901
    Abstract: Disclosed are improved polymer materials. Also disclosed are fine fiber materials that can be made from the improved polymeric materials in the form of microfiber and nanofiber structures. The microfiber and nanofiber structures can be used in a variety of useful applications including the formation of filter materials.
    Type: Grant
    Filed: October 30, 2009
    Date of Patent: February 21, 2012
    Assignee: Donaldson Company, Inc.
    Inventors: Hoo Y. Chung, John R. B. Hall, Mark A. Gogins, Douglas G. Crofoot, Thomas M. Weik