Patents by Inventor Gilbert N. Riley, Jr.

Gilbert N. Riley, Jr. has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 7579112
    Abstract: An energy storage device includes a first electrode comprising a first material and a second electrode comprising a second material, at least a portion of the first and second materials forming an interpenetrating network when dispersed in an electrolyte, the electrolyte, the first material and the second material are selected so that the first and second materials exert a repelling force on each other when combined. An electrochemical device, includes a first electrode in electrical communication with a first current collector; a second electrode in electrical communication with a second current collector; and an ionically conductive medium in ionic contact with said first and second electrodes, wherein at least a portion of the first and second electrodes form an interpenetrating network and wherein at least one of the first and second electrodes comprises an electrode structure providing two or more pathways to its current collector.
    Type: Grant
    Filed: July 26, 2002
    Date of Patent: August 25, 2009
    Assignees: A123 Systems, Inc., Massachusetts Institute of Technology
    Inventors: Yet Ming Chiang, William Douglas Moorehead, Antoni S. Gozdz, Richard K. Holman, Andrew Loxley, Gilbert N. Riley, Jr., Michael S. Viola
  • Publication number: 20090123813
    Abstract: Electroactive compositions are disclosed for use in lithium ion battery electrodes. The compositions, such as multifunctional mixed metal olivines, provide an electrochemical cell having a plurality of open circuit voltages at different states of charge. The compositions afford improved state-of-charge monitoring, overcharge protection and/or overdischarge protection for lithium ion batteries.
    Type: Application
    Filed: July 11, 2008
    Publication date: May 14, 2009
    Applicant: A123 SYSTEMS, INC.
    Inventors: Yet-Ming CHIANG, Andrew C. CHU, Young-Il JANG, Nonglak MEETHONG, Yu-Hua KAO, Gilbert N. RILEY, JR., Anthony E. PULLEN, Karen E. THOMAS-ALYEA
  • Publication number: 20090087728
    Abstract: An electrochemical cell, such as Li-Ion, having (a) a positive electrode; (b) a negative electrode, (c) a porous inorganic/organic composite layer interposed between the positive electrode and the negative electrode, and (d) an electrolyte comprising a lithium salt and a non-aqueous solvent. The composite layer includes inorganic nanoparticles and a binder to form a nanocomposite separator (NCS). In addition to the composite layer, the electrochemical cell includes a porous separator.
    Type: Application
    Filed: September 29, 2008
    Publication date: April 2, 2009
    Applicant: A123 SYSTEMS, INC.
    Inventors: Gregory B. LESS, Susan J. BABINEC, Gilbert N. RILEY, JR.
  • Patent number: 7261979
    Abstract: A high capacity, high charge rate lithium secondary cell includes a high capacity lithium-containing positive electrode in electronic contact with a positive electrode current collector, said current collector in electrical connection with an external circuit, a high capacity negative electrode in electronic contact with a negative electrode current collector, said current collector in electrical connection with an external circuit, a separator positioned between and in ionic contact with the cathode and the anode, and an electrolyte in ionic contact with the positive and negative electrodes, wherein the total area specific impedance for the cell and the relative area specific impedances for the positive and negative electrodes are such that, during charging at greater than or equal to 4C, the negative electrode potential is above the potential of metallic lithium.
    Type: Grant
    Filed: March 9, 2005
    Date of Patent: August 28, 2007
    Assignee: A123 Systems, Inc.
    Inventors: Antoni S. Gozdz, Andrew C. Chu, Yet Ming Chiang, Gilbert N. Riley, Jr.
  • Patent number: 7018954
    Abstract: Processes for the fabrication of MgB2 powder and wires are provided. Powders are produced by mechanically alloying magnesium- and boron-containing precursors under controlled conditions to avoid secondary phase and impurity formation. Powders are also prepared by vapor phase reaction of volatile magnesium- and boron-containing precursors. Wires, tapes, films and coatings are provided.
    Type: Grant
    Filed: March 8, 2002
    Date of Patent: March 28, 2006
    Assignee: American Superconductor Corporation
    Inventors: Cornelis L. Thieme, Martin W. Rupich, Alexander Otto, Gilbert N. Riley, Jr.
  • Patent number: 6960554
    Abstract: A method of making an oxide superconductor article includes converting an oxide superconducting precursor into an oxide superconductor by thermo-mechanical processing using intermediate rolling deformation and heat treatment (including liquid-phase sintering and low temperature baking) and applying an additional heat treatment after the material is fully processed (including optional liquid-phase sintering and low temperature baking) to decompose any secondary phase remaining at the grain boundaries and to promote diffusion of the secondary phase into the oxide grain, where they form 2223 phase. The material has a better superconducting grain connectivity and improved superconducting transport property.
    Type: Grant
    Filed: April 26, 2002
    Date of Patent: November 1, 2005
    Assignee: American Superconductor Corporation
    Inventors: Yibing Huang, Gilbert N. Riley, Jr., Noe DeMedeiros
  • Patent number: 6906265
    Abstract: A cabled conductor comprises a plurality of transposed strands each comprising one or more preferably twisted filaments preferably surrounded or supported by a matrix material and comprising textured anisotropic superconducting compounds which have crystallographic grain alignment that is substantially unidirectional and independent of the rotational orientation of the strands and filaments in the cabled conductors. The cabled conductor is made by forming a plurality of suitable composite strands, forming a cabled intermediate from the strands by transposing them about the longitudinal axis of the conductor at a preselected strand lay pitch, and, texturing the strands in one or more steps including at least one step involving application of a texturing process with a primary component directed orthogonal to the widest longitudinal cross-section of the cabled intermediate, at least one such orthogonal texturing step occurring subsequent to said strand transposition step.
    Type: Grant
    Filed: January 25, 2001
    Date of Patent: June 14, 2005
    Assignee: American Superconductor Corporation
    Inventors: Gregory L. Snitchler, Jeffrey M. Seuntjens, William L. Barnes, Gilbert N. Riley, Jr.
  • Patent number: 6828507
    Abstract: This invention relates to a practical superconducting conductor based upon biaxially textured high temperature superconducting coatings. In particular, methods for producing flexible and bend strain-resistant articles and articles produced in accordance therewith are described which provide improved current sharing, lower hysteretic losses under alternating current conditions, enhanced electrical and thermal stability and improved mechanical properties between otherwise isolated films in a coated high temperature superconducting (HTS) wire. Multilayered materials including operational material which is sensitive to bend strain can be constructed, in which the bend strain in the region in which such operational material is located is minimized. The invention also provides a means for splicing coated tape segments and for termination of coated tape stack ups or conductor elements.
    Type: Grant
    Filed: July 14, 2000
    Date of Patent: December 7, 2004
    Assignee: American Superconductor Corporation
    Inventors: Leslie G. Fritzemeier, Cornelis Leo Hans Thieme, Steven Fleshler, John D. Scudiere, Gregory L. Snitchler, Bruce B. Gamble, Robert E. Schwall, Dingan Yu, Alexander Otto, Elliott D. Thompson, Gilbert N. Riley, Jr.
  • Patent number: 6765151
    Abstract: This invention relates to a practical superconducting conductor based upon biaxially textured high temperature superconducting coatings. In particular, methods for producing flexible and bend strain-resistant articles and articles produced in accordance therewith are described which provide improved current sharing, lower hysteretic losses under alternating current conditions, enhanced electrical and thermal stability and improved mechanical properties between otherwise isolated films in a coated high temperature superconducting (HTS) wire. Multilayered materials including operational material which is sensitive to bend strain can be constructed, in which the bend strain in the region in which such operational material is located is minimized. The invention also provides a means for splicing coated tape segments and for termination of coated tape stack ups or conductor elements.
    Type: Grant
    Filed: May 24, 2002
    Date of Patent: July 20, 2004
    Assignee: American Superconductor Corporation
    Inventors: Leslie G. Fritzemeier, Cornelis Leo Hans Thieme, Steven Fleshler, John D. Scudiere, Gregory L. Snitchler, Bruce B. Gamble, Robert E. Schwall, Dingan Yu, Alexander Otto, Elliott D. Thompson, Gilbert N. Riley, Jr.
  • Patent number: 6762673
    Abstract: An elongated current limiting composite material comprising one or more high-temperature superconductor filaments and a second electrically conductive member, which may include a sheath of high bulk resistivity surrounding the filament. The current limiter exhibits dissipation in the range of 0.05-0.5 V/cm at currents of 3-10 times the operating current, thereby minimizing fault currents and improving recovery capability.
    Type: Grant
    Filed: January 20, 2000
    Date of Patent: July 13, 2004
    Assignees: American Superconductor Corp., ABB Transmission & Distribution Technologies, Ltd.
    Inventors: Alexander Otto, Ralph P. Mason, Craig J. Christopherson, Peter R. Roberts, Steven Fleshler, Gilbert N. Riley, Jr., Swarn S. Kalsi, Gregory L. Snitchler, Robert C. Diehl, Dietrich Bonmann, Martin Lakner, Willi Paul, Harry Zueger
  • Patent number: 6694600
    Abstract: A method is described to prepare a highly textured oxide superconductor article in a single deformation-sinter process. A precursor article including a plurality of filaments comprising a precursor oxide having a dominant amount of a tetragonal BSCCO 2212 phase and a constraining member substantially surrounding each of the filaments is provided. Each of the filaments extends along the length of the article. The oxide article is subjected to a heat treatment at an oxygen partial pressure and temperature selected to convert a tetragonal BSCCO 2212 oxide into an orthorhombic BSCCO 2212 oxide and, thereafter, roll worked in a high reduction draft in a range of about 40% to 95% in thickness so that the filaments have a constraining dimension is substantially equivalent to a longest dimension of the oxide superconductor grains. The rolled article is sintered to obtain a BSCCO 2223 oxide superconductor.
    Type: Grant
    Filed: November 21, 2001
    Date of Patent: February 24, 2004
    Assignee: American Superconductor Corporation
    Inventors: Qi Li, Eric R. Podtburg, Patrick John Walsh, William L. Carter, Gilbert N. Riley, Jr., Martin W. Rupich, Elliott Thompson, Alexander Otto
  • Patent number: 6613270
    Abstract: A novel process of the production and processing of high quality, high Tc BSCCO or (Bi,Pb)SCCO superconductors starts with fabrication of a forming a bundle including a plurality of billets, each billet containing at least one filament comprising a dominant amount of an tetragonal BSCCO phase with selected intermediate phases, and substantially surrounded by a constraining metal. The bundle is thermomechanically consolidated to form a multifilamentary precursor article by applying pressure and heat to the bundle under conditions cooperatively selected to cause interdiffusion of said constraining metal at the interfaces between said metal and said filaments and substantially complete elimination of voids in said bundle, and the consolidation step is completed before any high strain longitudinal deformation is performed on the bundle.
    Type: Grant
    Filed: May 30, 2000
    Date of Patent: September 2, 2003
    Assignee: American Superconductor Corporation
    Inventors: Qi Li, Gilbert N. Riley, Jr., Lawrence J. Masur, Eric R. Podtburg, Ronald D. Parella, Martin W. Rupich, Donald R. Parker, William L. Carter, William J. Rosati, Mark D. Teplitsky
  • Patent number: 6603379
    Abstract: A process for manufacturing superconducting magnetic coils from strain-tolerant, superconducting multi-filament composite conductors is described. The method involves winding the precursor to a multi-filament composite conductor and an insulating material or its precursor around a mandrel in order to form a coil, and then exposing the coil to high temperatures and an oxidizing environment. The insulating material or its precursor is chosen to permit exposure of the superconductor precursor filaments to the oxidizing environment, and to encase the matrix-forming material enclosing the filaments, which is reversibly weakened during processing.
    Type: Grant
    Filed: May 25, 2000
    Date of Patent: August 5, 2003
    Assignee: American Superconductor Corporation
    Inventors: Michael D. Manlief, Gilbert N. Riley, Jr., John Voccio, Anthony J. Rodenbush
  • Patent number: 6555503
    Abstract: A method of making an oxide superconductor article includes subjecting an oxide superconductor precursor to a texturing operation to orient grains of the oxide superconductor precursor to obtain a highly textured precursor; and converting the textured oxide superconducting precursor into an oxide superconductor, while simultaneously applying a force to the precursor which at least matches the expansion force experienced by the precursor during phase conversion to the oxide superconductor. The density and the degree of texture of the oxide superconductor precursor are retained during phase conversion. The constraining force may be applied isostatically.
    Type: Grant
    Filed: September 20, 2000
    Date of Patent: April 29, 2003
    Assignee: American Superconductor Corporation
    Inventors: Qi Li, Elliott D. Thompson, Gilbert N. Riley, Jr., Eric E. Hellstrom, David C. Larbalestier, Kenneth L. DeMoranville, Jeffrey A. Parrell, Jodi L. Reeves
  • Patent number: 6495765
    Abstract: A modified powder-in-tube process produces a superconductor wire having a significantly greater current density than will a superconductor wire of the same nominal superconductor composition produced using conventional draw-swage-extrude-roll deformation. In the process disclosed, a superconductor precursor is placed within a ductile tube, the tube with the powder therein is then deformed into a cross-section substantially corresponding to that of the end product, and the deformed tube is then subject to a plurality of heat treatments to convert the precursor into the desired superconducting ceramic oxide phase. Before the last of the heat treatments, the tube is isostatically pressed to densify and texture the superconductor precursor oxide in the tube.
    Type: Grant
    Filed: March 1, 2001
    Date of Patent: December 17, 2002
    Assignee: American Superconductor Corporation
    Inventor: Gilbert N. Riley, Jr.
  • Patent number: 6436876
    Abstract: A method for preparing a BSCCO-2223 oxide superconducting article includes annealing an oxide superconductor article comprised of BSCCO-2223 oxide superconductor at a temperature selected from the range of about 500° C.≦T≦787° C. and an annealing atmosphere having an oxygen pressure selected from within the region having a lower bound defined by the equation, PO2(lower)≧3.5×1010 exp(−32,000/T+273) and an upper bound defined by the equation, PO2(upper)≦1.1×1012 exp(−32,000/T+273). The article is annealed for a time sufficient to provide at least a 10% increase in critical current density as compared to the critical current density of the pre-anneal oxide superconductor article. An oxide superconductor having the formula Bi2−yPbySr2Ca2Cu3O10+x, where 0≦x≦1.5 and where 0≦y≦0.6 is obtained, the oxide superconductor characterized by a critical transition temperature of greater than 111.0 K, as determined by four point probe method.
    Type: Grant
    Filed: May 18, 2001
    Date of Patent: August 20, 2002
    Assignee: American Superconductor Corporation
    Inventors: Alexander Otto, Gilbert N. Riley, Jr., William L. Carter
  • Patent number: 6436875
    Abstract: The invention features high performing composite superconducting oxide articles that can be produced from OPIT precursors substantially without poisoning the superconductor. In general, the superconducting oxide is substantially surrounded by a matrix material. The matrix material contains a first constraining material including a noble metal and a second metal. The second metal is a relatively reducing metal which lowers the overall oxygen activity of the matrix material and the article at a precursor process point prior to oxidation of the second metal. The second metal is substantially converted to a metal oxide dispersed in the matrix during or prior to a first phase conversion heat treatment but after formation of the composite, creating an ODS matrix.
    Type: Grant
    Filed: March 22, 2001
    Date of Patent: August 20, 2002
    Assignee: American Superconductor Corporation
    Inventors: Lawrence J. Masur, Donald R. Parker, Eric R. Podtburg, Peter R. Roberts, Ronald D. Parrella, Gilbert N. Riley, Jr., Steven Hancock
  • Patent number: 6393690
    Abstract: The invention provides a multifilamentary superconducting composite article comprising multiple substantially electrically decoupled domains, each including one or more fine, preferably twisted filaments of a desired superconducting oxide material. In a preferred embodiment, the article comprises a matrix, which substantially comprises a noble metal, a conductive jacketing layer surrounding the matrix, a plurality of discrete filament decoupling layers, each comprising an insulating material, disposed within the matrix to separate the matrix into a plurality of substantially electrically decoupled domains; a plurality of filaments, each comprising a desired superconducting oxide, which are disposed within and essentially encapsulated by the matrix and chemically isolated thereby from the decoupling layers, each of the electrically decoupled domains containing at least one filament.
    Type: Grant
    Filed: July 20, 1999
    Date of Patent: May 28, 2002
    Assignee: American Superconductor Corpration
    Inventors: Gregory L. Snitchler, Gilbert N. Riley, Jr., Alexis P. Malozemoff, Craig J. Christopherson
  • Patent number: 6370762
    Abstract: A reduced coefficient of friction, preferably created by ideal lubrication conditions, may advantageously be employed in the breakdown deformation of a precursor to a multifilamentary superconducting composite, particularly in combination with one or more high reduction breakdown drafts, to improve composite homogeneity and significantly increase the range of deformation conditions over which dimensional tolerances and Je may be optimized. Precursor composites made by this method exhibit reduced microhardness variability and fewer and less serious transverse filament defects than composites made by prior art methods. The method comprises the steps of: first, providing a precursor article comprising a metal matrix surrounding a plurality of filaments extending along the length of the article and comprising precursors to a desired superconducting ceramic; next, roll working the precursor article during a breakdown stage at a predetermined pressure and a coefficient of friction less than about 0.
    Type: Grant
    Filed: May 21, 1996
    Date of Patent: April 16, 2002
    Assignee: American Superconductor Corp.
    Inventors: Qi Li, Theodore S. Greene, Gilbert N. Riley, Jr., William J. Michels, William L. Carter
  • Patent number: 6370405
    Abstract: A multifilamentary superconductor composite having a high fill factor is formed from a plurality of stacked monofilament precursor elements, each of which includes a low density superconductor precursor monofilament. The precursor elements all have substantially the same dimensions and characteristics, and are stacked in a rectilinear configuration and consolidated to provide a multifilamentary precursor composite. The composite is thereafter thermomechanically processed to provide a superconductor composite in which each monofilament is less than about 50 microns thick.
    Type: Grant
    Filed: July 29, 1997
    Date of Patent: April 9, 2002
    Assignee: American Superconductor Corporation
    Inventors: Gilbert N. Riley, Jr., Qi Li, Peter R. Roberts, Peter D. Antaya, Jeffrey M. Seuntjens, Steven Hancock, Kenneth L. DeMoranville, Craig J. Christopherson, Jennifer H. Garrant, Christopher A. Craven