Ceramic Containing Electrode, Or Coil, Electrode, Or Coil Having Ceramic Portion, Or Shaped Electrolyte Body Patents (Class 264/618)
  • Publication number: 20140212749
    Abstract: Disclosed are a method for preparing a positive electrode active material for a lithium secondary battery and a positive electrode active material for a lithium secondary battery, the method including: preparing a mixture of a precursor represented by Chemical Formula 1 below, a lithium composite oxide represented by Chemical Formula 2 below and capable of intercalating/deintercalating lithium ions, and a lithium feed material; and firing the prepared mixture: A(OH)2-a??[Chemical Formula 1] Li[LizA(1-z-a)Da]EbO2-b??[Chemical Formula 2]
    Type: Application
    Filed: March 27, 2014
    Publication date: July 31, 2014
    Applicant: L&F Material Co., Ltd.
    Inventors: Su An Choi, Seung-Won Lee, Sang-Hoon Jeon
  • Publication number: 20140203224
    Abstract: The present invention is an electroconductive particle for forming an electrode including a precious metal particle including Pt or a Pt alloy and having an average particle diameter of 50 to 150 nm, a first ceramic particle including Al2O3 or ZrO2 dispersed in the precious metal particle and having an average particle diameter of 5 to 50 nm, and a second ceramic particle including Al2O3 or ZrO2 bonded to an outer periphery of the precious metal particle and having an average particle diameter of 5 to 50 nm. The sum of the volume of the first ceramic particle and the volume of the second ceramic particle is preferably 2 to 40 vol % based on the whole electroconductive particle. A metal paste containing the electroconductive particle according to the invention is one from which an electrode film of low resistance and excellent durability can be manufactured and further excellent in adherence and conformability to a substrate.
    Type: Application
    Filed: September 25, 2012
    Publication date: July 24, 2014
    Applicant: TANAKA KIKINZOKU KOGYO K.K.
    Inventors: Takuya Hosoi, Nobuhisa Okamoto, Koichi Sakairi
  • Patent number: 8778542
    Abstract: A conventional, multilayer, all-solid-state, lithium ion secondary battery where an electrode layer and an electrolyte layer are stacked has a problem that it has a high interface resistance between the electrode layer and the electrolyte layer and has a difficulty in increasing the capacity of the battery. A battery has been manufactured by applying pastes of a mixture of an active material and a solid electrolyte to form electrode layers and baking a laminate of electrode layers and electrolyte layers at a time. As a result, a matrix structure including the active material and the solid electrolyte has been formed in the electrode layers, so that a battery with a large capacity and a reduced interface resistance between the electrode layer and the electrolyte layer has been successfully achieved.
    Type: Grant
    Filed: December 9, 2009
    Date of Patent: July 15, 2014
    Assignee: Namics Corporation
    Inventors: Shoichi Iwaya, Hiroshi Sato, Takayuki Fujita, Gou Toida
  • Patent number: 8753785
    Abstract: A shaped part that is particularly suited as an interconnector or an end plate for a fuel cell stack, is produced by pressing and sintering a pulverulent starting material. The shaped part has a basic body with a multiplicity of knob-like and/or ridge-like elevations with a height h. Each elevation has two inclined side flanks which lead, proceeding from an end contour of the elevation, via rounded corner portions, with a radius r or r? directly or via intermediate rectilinear portions, into curved portions, with a radius R or R?, which in turn merge into the surface contour, of the basic body. The rectilinear portions, or, in the case of a direct transition of the rounded corner portions into the curved portions, the tangents at the point of the transition, have an angle of inclination relative to the surface contour, between 95° and 135°.
    Type: Grant
    Filed: December 15, 2010
    Date of Patent: June 17, 2014
    Assignee: Plansee SE
    Inventors: Marco Brandner, Stefan Gerzoskovitz, Wolfgang Kraussler, Alexander Leuprecht, Andreas Venskutonis
  • Publication number: 20140131927
    Abstract: A spark plug is provided. The spark plug has an insulative sleeve with a central axial bore and an exterior surface of a shaped tip portion. A coating is disposed on the exterior surface of the shaped tip portion and the coating comprises a transition metal compound or a combination of transition metal compounds, and an alkali metal compound. A center electrode extends through the central axial bore of the insulative sleeve. A metal sleeve is provided, wherein the insulating sleeve is positioned within, and secured to the metal shell. A ground electrode is coupled to the metal shell and positioned in a spaced relationship relative to the center electrode so as to define a spark gap.
    Type: Application
    Filed: January 16, 2014
    Publication date: May 15, 2014
    Inventors: Peter D. Unger, Ronald P. Rohrbach, Jeffrey T. Boehler, Jing Zheng
  • Publication number: 20140126109
    Abstract: There is provided a multilayered ceramic electronic component including: a ceramic body including dielectric layers; internal electrodes disposed to face each other, having the dielectric layers therebetween; and external electrodes formed on outer surfaces of the ceramic body and electrically connected to the internal electrodes, wherein the internal electrodes include a first ceramic powder formed of barium titanate (BaTiO3) and having a particle diameter corresponding to 70% to 100% of a thickness of the respective internal electrodes. According to the present invention, disconnection generated due to differences in contraction and extension between the internal electrodes and the dielectric layers may be improved, whereby the multilayered ceramic electronic component having excellent capacitance and reliability may be implemented.
    Type: Application
    Filed: January 22, 2013
    Publication date: May 8, 2014
    Applicant: SAMSUNG ELECTRO-MECHANICS CO., LTD.
    Inventors: Young Ho KIM, Ro Woon LEE, Hyoung Wook LIM
  • Publication number: 20140120404
    Abstract: According to one embodiment, an active material containing a niobium titanium composite oxide is provided. The niobium titanium composite oxide has average composition represented by LiyNb2+xTi1?xO7+0.5x (0?x?0.5, 0?y?5.5). The niobium titanium composite oxide satisfies peak intensity ratios represented by the following formulae (1) to (3): 0.05?(B/A)?0.7??(1) 0.01?(C/A)?0.2??(2) 0?(D/A)?0.
    Type: Application
    Filed: October 23, 2013
    Publication date: May 1, 2014
    Applicant: KABUSHIKI KAISHA TOSHIBA
    Inventors: Kazuki ISE, Yorikazu YOSHIDA, Yasuhiro HARADA, Hiroki INAGAKI, Norio TAKAMI
  • Patent number: 8697308
    Abstract: A solid oxide electrolyte including an oxide represented by Formula 1: (1?a?b)(Ce1-xMaxO2-?)+a(Mb)+b(Mc)??Formula 1 wherein 0<a<0.2, 0<b<0.2, 0<x<0.5, ? is selected so that the Ce1-xMaxO2-? is electrically neutral, Ma is a rare-earth metal, Mb is an oxide, a nitride, or a carbide of aluminum (Al), silicon (Si), magnesium (Mg), or titanium (Ti), or a combination including at least one of the foregoing, and Mc is an oxide of a metal of Groups 6 through 11.
    Type: Grant
    Filed: March 15, 2011
    Date of Patent: April 15, 2014
    Assignees: Samsung Electronics Co., Ltd., Samsung SDI Co., Ltd., Industry-University Cooperation Foundation Hanyang University
    Inventors: Sang-mock Lee, Hee-jung Park, Yong-ho Choa, Chan Kwak
  • Publication number: 20140088506
    Abstract: The present disclosure relates, according to some embodiments, to methods, devices, and systems for fluid delivery to a subject using pumps, for example, non-gassing, direct current (DC), electro-osmotic pumps. In some embodiments, delivery of an aqueous fluid may be achieved by contacting the aqueous liquid with an electro-osmotic pump comprising (i) a cathode (e.g., a cathode comprising porous carbon coated with a cerium oxide-comprising coating), (ii) an anode (e.g., an anode comprising porous carbon coated with a cerium oxide-comprising coating), and (iii) a ceramic membrane (e.g., a ceramic membrane formed by fusing uncoated silica spheres, phosphosilicic-acid-coated fused silica spheres, or borosilicic-acid-coated fused silica spheres, wherein the fused spheres are randomly packed between the cathode and the anode) and/or optionally applying (a) a constant potential difference or constant voltage between the anode and the cathode of from about 0.
    Type: Application
    Filed: August 13, 2013
    Publication date: March 27, 2014
    Applicant: Board of Regents of the University of Texas System
    Inventors: Adam Heller, Rajaram K. Nagarale
  • Publication number: 20140079993
    Abstract: In an aspect, a composite anode active material including particles, wherein the particles include: a first carbonaceous material that is substantially crystalline and includes at least one carbon nano-sheet; a non-carbonaceous material capable of intercalating and deintercalating lithium; and a second carbonaceous material that binds the first carbonaceous material and the non-carbonaceous material, wherein the particles have pores having a size of 50 nm or more is disclosed.
    Type: Application
    Filed: March 14, 2013
    Publication date: March 20, 2014
    Applicant: SAMSUNG SDI CO., LTD.
    Inventors: So-La Lee, Ui-Song Do, Chang-Su Shin
  • Publication number: 20140065481
    Abstract: A positive-electrode active material for a non-aqueous electrolyte rechargeable battery includes a core portion and a shell portion. The core portion contains an inorganic oxide with a polyanionic structure. The shell portion coats the core portion. The shell portion contains a carbon and an inorganic accelerator that accelerates generation of the shell portion by the carbon. The content of the inorganic accelerator is 0.2 mass % or more of the inorganic oxide when the mass of the inorganic oxide is defined as 100%.
    Type: Application
    Filed: August 28, 2013
    Publication date: March 6, 2014
    Applicants: Tokyo Metropolitan University, DENSO CORPORATION
    Inventors: Shuhei Yoshida, Daisuke Shibata, Kiyoshi Kanamura
  • Publication number: 20130316097
    Abstract: A cathode thin film for a lithium secondary cell, which uses a cathode active material substituting Sn for Mn in lithium manganese oxide, has a high discharge capacity and an improved cycle property.
    Type: Application
    Filed: August 6, 2013
    Publication date: November 28, 2013
    Applicant: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    Inventors: Ji-Won CHOI, Seok-Jin YOON, Dong Wook SHIN
  • Publication number: 20130240354
    Abstract: A gas sensor element includes a basal body, at least one solid electrolyte portion and a pair of electrodes. The basal body has a bottomed tubular shape and is made of an electrically insulative ceramic material. The basal body has a side wall and a bottom wall. The at least one solid electrolyte portion is formed in the bottom wall or the side wall of the basal body. The pair of electrodes are opposed to each other with the at least one solid electrolyte portion interposed therebetween. The difference in surface level between the basal body and the at least one solid electrolyte portion at a boundary therebetween is less than or equal to 30 ?m.
    Type: Application
    Filed: March 15, 2013
    Publication date: September 19, 2013
    Applicant: DENSO CORPORATION
    Inventors: Masami SAITOU, Namitsugu FUJII, Norikazu KAJIYAMA
  • Publication number: 20130221584
    Abstract: An NTC thermistor having a metal base material, a thermistor film layer formed on the metal base material, and a pair of split electrodes formed on the thermistor film layer. A ceramic slurry is applied onto a carrier film to form the thermistor film layer, a metal powder containing paste is applied onto the thermistor film layer to form the metal base material, and further an electrode paste is applied onto the metal base material to form the split electrodes. Thereafter, the three substances are integrally fired.
    Type: Application
    Filed: April 8, 2013
    Publication date: August 29, 2013
    Applicant: MURATA MANUFACTURING CO. LTD.
    Inventor: MURATA MANUFACTURING CO., LTD.
  • Patent number: 8512910
    Abstract: A solid oxide electrolyte including an oxygen ion conducting solid solution, wherein the solid solution is represented by Formula 1 below: Zr1-x-y-zMaxMbyMczO2-???Formula 1 wherein x is greater than 0 and less than about 0.3, y is greater than 0 and less than about 0.1, z is greater than 0 and less than about 0.1, ? is selected to make the solid solution ionically neutral, Ma, Mb, and Mc are each independently a metal selected from the group consisting of elements of Groups 3, Groups 5 through 13, and Group 14, and an ionic radius of each of Ma+3, Mb+3, and Mc+3 are different from each other.
    Type: Grant
    Filed: September 23, 2010
    Date of Patent: August 20, 2013
    Assignees: Samsung Electroncis Co., Ltd., Samsung SDI Co., Ltd., Industry-University Cooperation Foundation Hanyang University
    Inventors: Hee-jung Park, Sang-mock Lee, Chan Kwak, Soo-yeon Seo, Yong-ho Choa
  • Patent number: 8512628
    Abstract: A method for manufacturing a fired ceramic body including a metal wire wherein the metal wire is placed in a mold and then, a ceramic slurry having a heat-gelling characteristic or a thermoset characteristic is poured into the mold. Subsequently, the ceramic slurry is dried and hardened to form a ceramic-compact-before-fired, and then, the ceramic-compact-before-fired is fired. In this firing process, a degreasing of the ceramic compact is firstly performed, and thereafter, a temperature of the ceramic compact is increased up to a second temperature at which the metal wire is softened and the ceramic compact is fired at a second temperature increasing rate. The second temperature increasing rate is set at such a rate that a shrinkage ratio of the ceramic compact when the temperature of the ceramic compact reaches the second temperature is smaller than or equal to a predetermined threshold shrinkage ratio.
    Type: Grant
    Filed: January 22, 2010
    Date of Patent: August 20, 2013
    Assignee: NGK Insulators, Ltd.
    Inventors: Natsumi Shimogawa, Shuichi Ozawa, Nobuyuki Kobayashi
  • Publication number: 20130143114
    Abstract: A nano cathode material usable for batteries and a method for preparing the same are provided. The cathode material is comprised of nano particles so that the specific surface area of such particles is increased, thereby allowing a suitable size distribution of the particles, improving the conductivity of the cathode material, and maintaining the capacity characteristics of the cathode material for batteries.
    Type: Application
    Filed: January 27, 2012
    Publication date: June 6, 2013
    Applicants: GOLDEN CROWN NEW ENERGY (HK) LIMITED, SUZHOU GOLDEN CROWN NEW ENERGY CO., LTD.
    Inventor: Jen-Chin Huang
  • Publication number: 20130137010
    Abstract: A method of forming a solid, dense, hermetic lithium-ion electrolyte membrane comprises combing an amorphous, glassy, or low melting temperature solid reactant with a refractory oxide reactant to form a mixture, casting the mixture to form a green body, and sintering the green body to form a solid membrane. The resulting electrolyte membranes can be incorporated into lithium-ion batteries.
    Type: Application
    Filed: November 29, 2011
    Publication date: May 30, 2013
    Inventors: Bruce Gardiner Aitken, Michael Edward Badding, George Halsey Beall, Curtis Robert Fekety, Lanrik Wayne Kester, Robert Michael Morena, Zhen Song
  • Publication number: 20130137014
    Abstract: A bonding layer, disposed between an interconnect layer and an electrode layer of a solid oxide fuel cell article, may be formed from a yttria stabilized zirconia (YSZ) powder having a monomodal particle size distribution (PSD) with a d50 that is greater than about 1 ?m and a d90 that is greater than about 2 ?m.
    Type: Application
    Filed: November 14, 2012
    Publication date: May 30, 2013
    Inventors: Guangyong Lin, Yeshwanth Narendar, John D. Pietras, Qiang Zhao, Robert J. Sliwoski, Caroline Levy, Samuel S. Marlin, Aravind Mohanram
  • Publication number: 20130115370
    Abstract: The disclosure provides a process for preparing an inert anode material or inert cathode coating material for aluminium electrolysis, which includes the following steps: A) putting aluminium into a reactor, injecting an inert gas to the reactor after vacuumizing, adding the mixture of dried fluoborate and fluorotitanate in the reactor to enable a reaction to form titanium boride and cryolite, and isolating the titanium boride; and B) melting the obtained titanium boride with a carbon material, tamping the melt liquid on a carbon cathode surface, sintering the carbon cathode surface to form the inert cathode coating material for aluminium electrolysis; or, mixing the obtained titanium boride with the carbon material evenly, then high-pressure moulding the mixture, and finally sintering the moulded mixture at a high temperature to form the inert anode material for aluminium electrolysis.
    Type: Application
    Filed: December 9, 2012
    Publication date: May 9, 2013
    Applicant: SHENZHEN SUNXING LIGHT ALLOYS MATERIALS CO.,LTD
    Inventor: Shenzhen Sunxing Light Alloys Materials Co., Ltd.
  • Publication number: 20130093129
    Abstract: A method for forming a solid oxide fuel cell (SOFC) article includes forming a SOFC unit cell in a single, free-sintering process, wherein the SOFC unit cell is made of an electrolyte layer, an interconnect layer, a first electrode layer disposed between the electrolyte layer and the interconnect layer. The electrolyte layer of the SOFC unit cell is in compression after forming.
    Type: Application
    Filed: October 7, 2012
    Publication date: April 18, 2013
    Inventors: Aravind Mohanram, Yeshwanth Yeshwanth, Hansong Huang, Guangyong Lin
  • Publication number: 20130093128
    Abstract: Disclosed are methods of producing Ni/YSZ porous anode bodies for solid oxide fuel cells. According to the methods, a small amount of a nickel compound or salt is used as a pore former. Upon heating in air, the nickel compound or salt is decomposed into nickel oxide and releases gases, resulting in volume shrinkage. Therefore, Ni/YSZ porous bodies having a uniform pore size and reduction products thereof can be produced in an economical manner.
    Type: Application
    Filed: December 2, 2011
    Publication date: April 18, 2013
    Applicant: KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    Inventors: Chang-Sam KIM, Kyoung Ran HAN, Sang Whan PARK, Sung Woon JEON
  • Publication number: 20130093130
    Abstract: The present invention provides a method for producing a ceramic laminate capable of preventing coming-off of materials and warpage of the ceramic laminate by a heat treatment at a relatively-low temperature, and a ceramic laminate produced by the production method. Disclosed is a method for producing a ceramic laminate having a layer structure in which two or more layers are laminated, including: a step of producing a laminate including a first layer and a second layer, the first layer containing a solid electrolyte and the second layer containing at least composite particles obtained by covering an electrode active material with the solid electrolyte; and a step of performing a heat treatment on the laminate including the first and second layers at a temperature of 500° C. or more and less than 700° C.
    Type: Application
    Filed: July 1, 2010
    Publication date: April 18, 2013
    Applicant: TOYOTA JIDOSHA KABUSHIKI KAISHA
    Inventors: Chihiro Yada, Yoshitaka Minamida, Keiichi Kohama
  • Publication number: 20130049268
    Abstract: The manufacturing method of the honeycomb structure includes a forming step of a honeycomb formed body with non-fired electrodes where there is performed twice a non-fired electrode forming operation in which an electrode paste is attached to a plate including a printing screen, a side surface of a honeycomb formed body, the side surface being a curved side surface, is brought into a pressed state by a squeegee via the printing screen of the plate, in the state, the body is rotated and the plate is linearly moved along the side surface of the body, and the squeegee allows the electrode paste to permeate the printing screen and coat the side surface of the body; and a forming step of the honeycomb structure where the body with the non-fired electrodes is fired to obtain the honeycomb structure.
    Type: Application
    Filed: August 17, 2012
    Publication date: February 28, 2013
    Applicant: NGK Insulators, Ltd.
    Inventors: Shinya YOSHIDA, Shuhei Fujita, Toru Ogawa
  • Patent number: 8333919
    Abstract: A solid oxide fuel cell (SOFC) includes a cathode electrode, an anode electrode, and a solid oxide electrolyte located between the anode electrode and the cathode electrode. The cathode electrode is a porous ceramic layer infiltrated with a cathode catalyst material, and the anode electrode is a porous ceramic layer infiltrated with an anode catalyst material, and the electrolyte is a ceramic layer having a lower porosity than the anode and the cathode electrodes. A ceramic reinforcing region may be located adjacent to the riser opening in the electrolyte.
    Type: Grant
    Filed: October 7, 2011
    Date of Patent: December 18, 2012
    Assignee: Bloom Energy Corporation
    Inventor: Stephen Couse
  • Publication number: 20120264016
    Abstract: A method of producing a positive electrode active substance comprising steps of: dissolving a lithium source, an M source, a phosphorus source and an X source in amounts needed to form a lithium-containing composite oxide having an olivine structure and represented by the following general formula (1): LixMyP1-zXzO4??(1) wherein, in the formula, M is at least one kind of element selected from the group of Fe, Ni, Mn, Zr, Sn, Ti, Nb, V, Al and Y; X is at least one kind selected from the group of Si and Al; 0<x?2; 0.8?y?1.2; and 0?z?1, in a solvent being capable to dissolve these sources, thereby forming a solution; gelating the obtained solution by adding a cyclic ether compound and sintering the resulting gel to obtain the positive electrode active substance made of the lithium-containing composite oxide having an olivine structure that is covered with carbon deriving from the cyclic ether compound.
    Type: Application
    Filed: March 9, 2012
    Publication date: October 18, 2012
    Inventors: Toshitsugu SUEKI, Motoaki NISHIJIMA
  • Publication number: 20120225373
    Abstract: An electrode assembly for a solid oxide fuel cell, the electrode assembly including a porous ceramic oxide matrix and an array of fluid conduits. The porous ceramic oxide matrix includes a labyrinth of reinforcing walls interconnected to one another. Each of the fluid conduits is formed from the porous ceramic oxide matrix and has an external surface with a plurality of struts projecting outwardly therefrom and an internal surface defining a first passage for flowing a first fluid therethrough. The struts are configured to connect the fluid conduits to one another and the external surfaces and the struts define a second passage around the fluid conduits for flowing a second fluid therethrough.
    Type: Application
    Filed: May 7, 2012
    Publication date: September 6, 2012
    Applicant: NanoCell Systems, Inc.
    Inventors: Peter R. Strutt, Bernard H. Kear
  • Patent number: 8252478
    Abstract: The present invention provides a method of producing a solid oxide fuel cell, comprising the steps of: forming an anode support layer; applying an anode layer on the anode support layer; applying an electrolyte layer on the anode layer; and sintering the obtained structure; wherein the anode support layer and/or the anode layer comprises a composition comprising doped zirconia, doped ceria and/or a metal oxide with an oxygen ion or proton conductivity, NiO and at least one oxide selected from the group consisting of Al2O3, TiO2, Cr2O3, Sc2O3, VOx, TaOx, MnOx, NbOx, CaO, Bi2O3, LnOx, MgCr2O4, MgTiO3, CaAl2O4, LaAlO3, YbCrO3, ErCrO4, NiTiO3, NiCr2O4, and mixtures thereof. According to the invention, a combination of nickel coarsening prevention due to specific Ni-particle growth inhibitors, and, at the same time, a strengthening of the ceramic structure of the anode support layer and/or the anode layer is achieved.
    Type: Grant
    Filed: January 31, 2006
    Date of Patent: August 28, 2012
    Assignee: Technical University of Denmark
    Inventors: Peter Halvor Larsen, Charissa Chung, Mogens Mogensen
  • Publication number: 20120207994
    Abstract: Embodiments presented herein provide a new approach for high-performance lithium-sulfur battery by using novel carbon-metal oxide-sulfur composites. The composites may be prepared by encapsulating sulfur particles in bifunctional carbon-supported metal oxide or other porous carbon-metal oxide composites. In this way, the porous carbon-metal oxide composite confines sulfur particles within its tunnels and maintain the electrical contact during cycling. Furthermore, the uniformly embedded metal oxides in the structure strongly adsorb polysulfide intermediates, avoid dissolution loss of sulfur, and ensure high coulombic efficiency as well as a long cycle life.
    Type: Application
    Filed: February 13, 2012
    Publication date: August 16, 2012
    Inventors: Donghai Wang, Zhongxue Chen, Tianren Xu
  • Publication number: 20120164540
    Abstract: A solid electrolyte is disclosed. The solid electrolyte includes a main portion that includes ?-alumina or ??-alumina, and an edge portion integrally provided with the main portion. The edge portion has a mixed portion that includes ?-alumina and includes ? alumina or ??-alumina. A concentration gradient of the ?-alumina in the edge portion decreases in a first direction from the edge portion to the main portion.
    Type: Application
    Filed: August 25, 2011
    Publication date: June 28, 2012
    Inventors: Hyun-Ki Park, Dong-Hee Han, Jeong-Doo Yi, Ju-Yong Kim
  • Publication number: 20120146189
    Abstract: Disclosed herein are processes for making quaternary chalcogenide wafers. The process comprises milling quaternary chalcogenide crystals to form milled particles, and then compressing the milled particles to form a quaternary chalcogenide wafer. The quaternary chalcogenide wafers are useful for forming solar cells.
    Type: Application
    Filed: December 9, 2010
    Publication date: June 14, 2012
    Applicant: E.I. DU PONT DE NEMOURS AND COMPANY
    Inventors: Alex Sergey Ionkin, Brian M. Fish
  • Patent number: 8173063
    Abstract: The invention relates to a process for producing a molding, comprising a disk-like or plate-like basic body -5- having a large number of knob-like and/or web-like elevations -4-3- which merge into the basic body -5- with inclined side surfaces, by means of pressing and sintering powdery raw materials close to the final shape. According to the invention, the pressing is carried out in a two-stage pressing operation. In the first stage the boundary surfaces of the basic body -5- are pressed to at least the approximate final shape as far as the transition regions of the elevations -3-4- and, at the same time, the elevations -3-4- are pressed to an oversize. The projection h? of the elevations -3-4- from the basic body -5- is greater by 10%-150% as compared with the projection h from the basic body -5- in the finally pressed state. Their side surfaces form an angle of inclination ?? in the range from 90°-150° with the respectively adjacent boundary surface of the basic body -5-.
    Type: Grant
    Filed: July 30, 2003
    Date of Patent: May 8, 2012
    Assignee: Plansee SE
    Inventors: Gebhard Zobl, Wolfgang Glatz, Wolfgang Kraussler, Robert Oberbreyer
  • Publication number: 20120049132
    Abstract: A molten cermet material including a molten cermet of cerium oxide CeO2, optionally doped, and nickel Ni and/or cobalt Co, the cermet having a eutectic structure, the cerium oxide, nickel, and cobalt contents being in mol %: 0.351 Ni+0.136 Co?(CeO2+dopant)?0.538 Ni+0.282 Co.
    Type: Application
    Filed: March 12, 2010
    Publication date: March 1, 2012
    Applicant: CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS
    Inventors: Samuel Marlin, Victor Manuel Orera Clemente, Jose Ignacio Pena Torre, Luis Ortega San Martin
  • Publication number: 20120033350
    Abstract: A process for producing a solid electrolyte capacitor with an anode comprising a sintered fine NbOx powder, where 0.5<x<1.7, includes providing a green anode body. The green anode body is sintered so as to provide a sintered anode body. The sintered anode body is formed so as to provide a formed anode body, wherein the forming is essentially performed without applying a pressure. The formed anode body is provided with a cathode so as to provide the solid electrolyte capacitor.
    Type: Application
    Filed: December 7, 2009
    Publication date: February 9, 2012
    Applicant: H. C. STARCK GMBH
    Inventors: Ralph Otterstedt, Marianne Gottschling
  • Publication number: 20120013050
    Abstract: A non-aqueous electrolyte secondary battery having a positive electrode (11) containing a positive electrode active material, a negative electrode (12) containing a negative electrode active material, and a non-aqueous electrolyte solution (14) in which a solute is dissolved in a non-aqueous solvent. The positive electrode active material is obtained by sintering a titanium-containing oxide on a surface of a layered lithium-containing transition metal oxide represented by the general formula Li1+xNiaMnbCocO2+d, where x, a, b, c, and d satisfy the conditions x+a+b+c=1, 0.7?a+b, 0<x?0.1, 0?c/(a+b)<0.35, 0.7?a/b?2.0, and ?0.1?d?0.1.
    Type: Application
    Filed: September 23, 2011
    Publication date: January 19, 2012
    Inventors: Chihiro Yada, Fumiharu Niina, Hiroshi Nakagawa, Hiroyuki Fujimoto
  • Publication number: 20120009507
    Abstract: A high temperature, redox tolerant fuel cell anode electrode and method of fabrication in which the anode electrode is pre-conditioned by application of an initial controlled redox cycle to the electrode whereby an initial re-oxidation of the anode electrode is carried out at temperatures less than or equal to about 650° C.
    Type: Application
    Filed: September 19, 2011
    Publication date: January 12, 2012
    Applicant: VERSA POWER SYSTEMS, LTD.
    Inventors: Anthony Wood, David Waldbillig
  • Publication number: 20110309848
    Abstract: In a conductive conductivity sensor having a probe, which is immersible in a measured medium and which comprises at least two electrodes made of a first, electrically conductive material and at least one probe body made of a second, electrically non-conductive material, the electrodes are at least partially embedded in the probe body and insulated from one another by the probe body, wherein the electrodes and the probe body are embodied as a composite workpiece. There especially exists between the first material and the second material in at least one section of a material transition between the first and the second material a secure bond, especially a bond based on intermolecular interactions or chemical bonds.
    Type: Application
    Filed: November 20, 2009
    Publication date: December 22, 2011
    Applicant: Endress + Hauser Conducta Gesellschaft fur Mess- und Regeltechnik mbH + Co. KG
    Inventors: Andreas Eberheim, Torsten Pechstein, Christian Fanselow, Robert Scholz
  • Publication number: 20110294039
    Abstract: A solid oxide electrolyte including an oxide represented by Formula 1: (1?a?b)(Ce1-xMaxO2-?)+a(Mb)+b(Mc)??Formula 1 wherein 0<a<0.2, 0<b<0.2, 0<x<0.5, ? is selected so that the Ce1-xMaxO2-? is electrically neutral, Ma is a rare-earth metal, Mb is an oxide, a nitride, or a carbide of aluminum (Al), silicon (Si), magnesium (Mg), or titanium (Ti), or a combination including at least one of the foregoing, and Mc is an oxide of a metal of Groups 6 through 11.
    Type: Application
    Filed: March 15, 2011
    Publication date: December 1, 2011
    Applicants: SAMSUNG ELECTRONICS CO., LTD., INDUSTRY-UNIVERSITY COOPERATION FOUNDATION HANYANG UNIVERSITY, SAMSUNG SDI CO., LTD.
    Inventors: Sang-mock LEE, Hee-jung PARK, Yong-ho CHOA, Chan KWAK
  • Publication number: 20110212382
    Abstract: Dielectric compositions that include compound of the formula [(M?)1?x(A?)x][(M?)1?y?z,(B?)y(C?)z]O3??(VO)? and protonated dielectric compositions that include a protonated dielectric compound within the formula [(M?)1?x(A?)x](M?)1?y?z(B?)y(C?)z]O3??+h(Vo)?(H*)2h are disclosed. Composite materials that employ one or more of these dielectric compounds together with an electrolyte also are disclosed. Composite material that employs one or more of these dielectric compounds together with an electrochemally active material also are disclosed.
    Type: Application
    Filed: October 7, 2010
    Publication date: September 1, 2011
    Applicants: The Penn State Research Foundation, Recapping, Inc.
    Inventors: Clive A. Randall, Leslie E. Cross, Aram Yang, Niall J. Donnelly, Ramakrishnan Rajagopalan, Amanda Lou Baker
  • Publication number: 20110207025
    Abstract: A gas diffusion layer for fuel cell of the present invention is structured with a porous member mainly comprised of conductive particles such as acetylene black, graphite and a polymer resin such as PTFE. This makes it possible to achieve both an improvement in power generation performance of the fuel cell and a reduction in costs.
    Type: Application
    Filed: October 29, 2009
    Publication date: August 25, 2011
    Inventors: Masaki Yamauchi, Yoichiro Tsuji
  • Publication number: 20110198218
    Abstract: A corrosion-resistant ceramic electrode material includes ceramic particles and, present between them, a three-dimensional network electroconducting path composed of a reductively fired product of a carbon-containing polymeric compound. This material is manufactured by a method in which a polymerization reaction of a polymerizable monomer previously contained in a ceramic slurry is performed to gel the ceramic slurry to thereby give a green body; and after drying and degreasing, the green body is fired in a reducing atmosphere.
    Type: Application
    Filed: October 20, 2009
    Publication date: August 18, 2011
    Applicant: NATIONAL UNIVERSITY CORPORATION NAGOYA INSTITUTE OF TECHNOLOGY
    Inventors: Masayoshi Fuji, Minoru Takahashi, Jingjun Liu, Hideo Watanabe, Takashi Shirai
  • Publication number: 20110177397
    Abstract: An all solid state battery having high output performance and a manufacturing method thereof are provided. The all solid state battery of the present invention comprises a negative electrode layer, a positive electrode layer, and a solid electrolyte layer having a lithium ion conductivity. At least one layer of the solid electrolyte, the positive electrode layer, and the negative electrode layer includes a lithium ion conductive crystal and AxByOz (A is one or more selected from the group consisting of Al, Ti, Li, Ge, and Si. B is one or more selected from the group consisting of P, N, and C, wherein 1?X?4, 1?Y?5, and 1?Z?7). The solid electrolyte material to which a preferable sintering additive is added in a predetermined ratio is densified by firing at relatively low temperature in the manufacturing process. The ion conductivity thereof is also high.
    Type: Application
    Filed: January 19, 2011
    Publication date: July 21, 2011
    Applicant: OHARA INC.
    Inventor: Kazuhito Ogasa
  • Publication number: 20110158880
    Abstract: An anisotropic coefficient of thermal expansion (CTE) cathode of a solid oxide fuel cell (SOFC) is formed by placing a layer of perovskite powder between two platens, and sintering the layer while applying pressure to the platens, thereby forming the anisotropic CTE cathode. The perovskite can be lanthanum strontium manganite (LSM).
    Type: Application
    Filed: December 30, 2010
    Publication date: June 30, 2011
    Applicant: Saint-Gobain Ceramics & Plastics, Inc.
    Inventors: F. Michael Mahoney, Yeshwanth Narendar, Hansong Huang
  • Publication number: 20110133203
    Abstract: A photoconductive semiconductor switch according to one embodiment includes a structure of sintered nanoparticles of a high band gap material exhibiting a lower electrical resistance when excited by light relative to an electrical resistance thereof when not exposed to the light. A method according to one embodiment includes creating a mixture comprising particles, at least one dopant, and at least one solvent; adding the mixture to a mold; forming a green structure in the mold; and sintering the green structure to form a transparent ceramic. Additional system, methods and products are also presented.
    Type: Application
    Filed: December 8, 2009
    Publication date: June 9, 2011
    Inventors: Roger W. Werne, James S. Sullivan, Richard L. Landingham
  • Patent number: 7947213
    Abstract: According to one aspect of the present invention the fuel cell device includes an electrolyte sheet. The electrolyte sheet has a substantially non-porous body of a varied thickness, a relatively smooth surface and a more textured surface with multiple indentations therein, wherein the thickest part of the electrolyte sheet is at least 0.5 micrometers greater than the thinnest part of said electrolyte sheet. The side of the electrolyte sheet with a relatively smooth surface is subjected to the predominately tensile force and the other, more textured surface subjected to predominately compressive force. According to one embodiment, the fuel cell also includes one cathode disposed on the more textured side of said electrolyte sheet at least at least one anode disposed opposite the cathode on the relatively smooth side of aid electrolyte sheet. According to one embodiment, the relatively smooth side of the electrolyte sheet is the fuel facing side and the more textured side is the air-facing side.
    Type: Grant
    Filed: July 3, 2007
    Date of Patent: May 24, 2011
    Assignee: Corning Incorporated
    Inventors: Michael E. Badding, Jacqueline L. Brown, Sean M. Garner, Thomas D. Ketcham, Dell J. St. Julien
  • Patent number: 7947212
    Abstract: The fabrication of ceria based electrolytes to densities greater than 97% of the theoretical achievable density at temperatures below 1200° C., preferably approximately 1000° C., is disclosed. The electrolyte has a concentration of divalent cations minus an adjusted concentration of trivalent cations of between 0.01 mole % and 0.1 mole %.
    Type: Grant
    Filed: March 25, 2004
    Date of Patent: May 24, 2011
    Assignee: Ceres Intellectual Property Company Limited
    Inventors: Brian Charles Hilton Steele, Norah Ruth Steele, legal representative, Gene Lewis, Naoki Oishi, Ahmet Selcuk
  • Publication number: 20110090619
    Abstract: Multilayer ceramic chip capacitors which satisfy COG requirements and which are compatible with reducing atmosphere sintering conditions so that non-noble metals such as nickel and nickel alloys thereof may be used for internal and external electrodes are made in accordance with the invention. The capacitors exhibit desirable dielectric properties (high capacitance, low dissipation factor, high insulation resistance), excellent performance on highly accelerated life testing, and very good resistance to dielectric breakdown. The dielectric layers comprise a strontium zirconate matrix doped with other metal oxides such as TiO2, MgO, B2O3, CaO, Al2O3, SiO2, and SrO in various combinations.
    Type: Application
    Filed: November 15, 2010
    Publication date: April 21, 2011
    Applicant: FERRO CORPORATION
    Inventors: Walter J. Symes, JR., Mohammed H. Megherhi, Elisabeth W. J. Römer, Mike S. H. Chu, Willibrordus J. L. M. J. Coppens
  • Publication number: 20110070491
    Abstract: The present invention relates to the use of porous structures comprising sulfur in electrochemical cells. Such materials may be useful, for example, in forming one or more electrodes in an electrochemical cell. For example, the systems and methods described herein may comprise the use of an electrode comprising a conductive porous support structure and a plurality of particles comprising sulfur (e.g., as an active species) substantially contained within the pores of the support structure. The inventors have unexpectedly discovered that, in some embodiments, the sizes of the pores within the porous support structure and/or the sizes of the particles within the pores can be tailored such that the contact between the electrolyte and the sulfur is enhanced, while the electrical conductivity and structural integrity of the electrode are maintained at sufficiently high levels to allow for effective operation of the cell.
    Type: Application
    Filed: August 24, 2010
    Publication date: March 24, 2011
    Applicant: SION POWER CORPORATION
    Inventors: Christopher T.S. Campbell, Chariclea Scordilis-Kelley
  • Publication number: 20110058279
    Abstract: A slider for an information storage system. The slider comprising a single overcoat layer, wherein the layer is deposited onto an ABS of the slider by a filtered cathodic arc process, the layer having a Si/C ratio less than about 10% and a thickness of less than about 15 ?.
    Type: Application
    Filed: July 31, 2009
    Publication date: March 10, 2011
    Inventors: Eric FLINT, Joel Forrest, Yiping Hsiao, Yongjian Sun, Qi-Fan Xiao
  • Patent number: 7833469
    Abstract: A method of making a solid electrolyte-YSZ product, where the method includes the step of providing a powdered mixture of zirconia, yttria and about 2%, by wt., or less of a metal oxide, where yttria-stabilized zirconia is not added to the mixture. The method also includes sintering the powdered mixture at about 1500° C. or less, for about 5 hours or less, to form a reaction sintered YSZ. Also, a method of making a fuel cell electrolyte that includes the step of forming a green body that includes zirconia, yttria and about 2%, by wt., or less of a metal oxide, where yttria-stabilized zirconia is not added to the green body. The method also includes shaping the green body into a form of the electrolyte, and sintering the green body at about 1500° C. or less to form a reaction sintered yttria-stabilized zirconia and metal oxide electrolyte.
    Type: Grant
    Filed: January 19, 2007
    Date of Patent: November 16, 2010
    Assignee: CoorsTek, Inc.
    Inventors: Ruthie Swartzlander, W. Grover Coors