Refractory (group Ivb, Vb, Or Vib) Metal-base Component Patents (Class 428/660)
  • Publication number: 20090191423
    Abstract: A method of securing a precast refractory shape within a refractory structure, comprising the steps of forming a precast refractory shape by casting a refractory shape to have a plurality of spaced-apart cavities formed in an outer surface thereof; positioning the precast refractory within a refractory structure; and casting a refractory material around the precast refractory shape such that the refractory material covers the outer surface of the precast refractory and fills the cavities.
    Type: Application
    Filed: January 30, 2008
    Publication date: July 30, 2009
    Inventor: Ronald L. Barrett
  • Publication number: 20090155622
    Abstract: Provided is a titanium-nickel alloy improved in corrosion resistance due to the reduced Ni content in the surface layer. Since a film (modified layer) extremely reduced in Ni concentration compared to the interior can be formed on the surface of a titanium-nickel alloy, by applying electrolysis treatment in a properly controlled electrolytic solution, the corrosion resistance of the alloy is improved. Specific examples of the electrolytic solution may include a mixture of glycerol, lactic acid and water (H2O).
    Type: Application
    Filed: August 8, 2006
    Publication date: June 18, 2009
    Inventors: Takayuki Yoneyama, Osamu Fukushima, Takao Hanawa, Hisashi Doi
  • Publication number: 20090136778
    Abstract: Method for producing coated assembly parts for chemical device elements including the following series of steps: (a) the formation of an initial assembly including a steel support part, typically a plate, a zirconium or zirconium alloy coating, typically a sheet having dimensions similar to those of the steel plate, and at least one brazing material between the support part and the coating, wherein said brazing material is an alloy including silver and copper; (b) the insertion of the initial assembly into a brazing chamber with a controlled atmosphere; (c) the formation of a controlled atmosphere in said chamber; (d) the reheating of said assembly to a temperature at least equal to the melting temperature of said brazing material; wherein, prior to the formation of said initial assembly, the deposition of a titanium or titanium alloy layer on said zirconium (or zirconium alloy) coating is performed, and in that said coating is placed so that its titanium- or (titanium alloy-) coated surface is in contact w
    Type: Application
    Filed: March 9, 2006
    Publication date: May 28, 2009
    Applicant: CARBONE LORRAINE EQUIPEMENTS GENIE CHIMIQUE (S.A.S.U)
    Inventors: Ernest Totino, Emmanuel Kelbert
  • Patent number: 7527876
    Abstract: A surface-treated steel sheet is disclosed, including a zinc based plated steel sheet having thereon a surface-treated film containing titanium, nickel, aluminum and fluorine and having a film thickness of from 0.05 to 1.0 ?m, the surface-treated film having a titanium deposition amount of from 0.01 to 0.5 g/m2 and containing from 0.01 to 5 parts by mass of nickel, from 0.1 to 25 parts by mass of aluminum and from 1 to 500 parts by mass of fluorine relative to 100 parts by mass of titanium. This surface-treated steel sheet does not contain hexavalent chromium in the film thereof at all and has excellent heat discoloration resistance, corrosion resistance and resistance to blackening.
    Type: Grant
    Filed: September 6, 2007
    Date of Patent: May 5, 2009
    Assignees: JFE Steel Corporation, Kansai Paint Co., Ltd.
    Inventors: Nobue Fujibayashi, Akira Matsuzaki, Satoru Ando, Syuji Nomura, Takahiro Kubota, Yoshikazu Morohoshi, Takashi Nakano, Takashi Okubo, Jun Akui
  • Patent number: 7507483
    Abstract: An implantable device with a metal, metal alloy, metalloid, polymeric or ceramic surface and a phosphonic acid coating layer directly contacting the surface wherein the surface has hydroxyl groups covalently bonded to the acid groups of the coating layer and the phosphonate organic ligands are omega-functionalized.
    Type: Grant
    Filed: April 1, 2003
    Date of Patent: March 24, 2009
    Inventors: Jeffrey Schwartz, Michael J. Avaltroni, Michael D. Carolus, Eric L. Hanson, Jean E. Schwarzbauer, Kim S. Midwood, Michael P. Danahy
  • Patent number: 7482065
    Abstract: A multi-layered metallic material comprising a metallic glass layer comprising an alloy layer that has a hardness of at least about 9.2 GPa and a metal layer having a hardness of less than about 9.2 GPa. In application form, an armor structure is provided that is suitable for protecting against ballistic projectiles.
    Type: Grant
    Filed: May 24, 2004
    Date of Patent: January 27, 2009
    Assignee: The Nanosteel Company, Inc.
    Inventor: Daniel James Branagan
  • Publication number: 20090017329
    Abstract: The method according to the invention comprises the following operations: a) prepare a substrated formed of the said intermetallic alloy; b) deposit a coating of gold on the surface to be protected of the substrate; and c) subject the substrate thus equipped with the gold coating to annealing in controlled conditions in order to bring about limited diffusion of the gold into the surface to be protected. The invention is applicable in particular to parts of gas turbines, e.g. parts of aircraft engines.
    Type: Application
    Filed: July 8, 2008
    Publication date: January 15, 2009
    Inventors: Marie-Pierre Bacos, Pierre Josso
  • Publication number: 20080292899
    Abstract: A titanium alloy composite material including dispersed carbon fibers coated with a layer containing an element which forms a carbide in reaction with carbon, and the carbide formed thereby, in crystal grains of the titanium alloy. The element which forms a carbide in reaction with carbon is preferably at least one of silicon (Si), chromium (Cr), titanium (Ti), vanadium (V), tantalum (Ta), molybdenum (Mo), zirconium (Zr), boron (B), and calcium (Ca). The carbon fibers are preferably carbon nanotubes, vapor-grown carbon fibers, or a mixture thereof. The titanium alloy composite material has excellent mechanical strength, such as tensile strength, Young's modulus, toughness, and hardness.
    Type: Application
    Filed: August 22, 2006
    Publication date: November 27, 2008
    Applicants: E&F CORPORATION, NAGANO PREFECTURE
    Inventors: Toshio Tanimoto, Hidekazu Takizawa
  • Publication number: 20080274370
    Abstract: In a process involving the formation of an insulating film on a substrate for an electronic device, the insulating film is formed on the substrate surface by carrying out two or more steps for regulating the characteristic of the insulating film involved in the process under the same operation principle. The formation of an insulating film having a high level of cleanness can be realized by carrying out treatment such as cleaning, oxidation, nitriding, and a film thickness reduction while avoiding exposure to the air. Further, carrying out various steps regarding the formation of an insulating film under the same operation principle can realize simplification of the form of an apparatus and can form an insulating film having excellent property with a high efficiency.
    Type: Application
    Filed: June 25, 2008
    Publication date: November 6, 2008
    Applicant: TOKYO ELECTRON LIMITED
    Inventors: Takuya Sugawara, Yoshihide Tada, Genji Nakamura, Shigenori Ozaki, Toshio Nakanishi, Masaru Sasaki, Seiji Matsuyama
  • Publication number: 20080274369
    Abstract: An alloy for use in vapor deposition or atomic layer deposition is described herein that includes ruthenium and at least one element from group IV, V or VI of the Periodic Chart of the Elements or a combination thereof. In addition, a layered material is described herein that comprises at least one layer that includes a ruthenium-based material or ruthenium-based alloy and at least one layer that includes at least one element from group IV, V or VI of the Periodic Chart of the Elements or a combination thereof.
    Type: Application
    Filed: April 21, 2005
    Publication date: November 6, 2008
    Inventors: Eal H. Lee, Nicola Truong, Robert Prater, Morales Diana
  • Publication number: 20080268281
    Abstract: The invented shield components are used for a plasma processing system to adhere deposition materials or process residuals during wafer processing, thus preventing excessive wafer contamination, even when exposed to high temperatures. One embodiment of the invented shields consists of a reaction barrier layer to separate the underlying substrate from the overlying spray coating to prevent solid-state chemical reaction between the substrate and the coating. Another embodiment of the invented shields consists of a substrate and a coating with a substrate-coating combination chosen to allow no new solid-state phase to form at the interface. The invented shields have well-bonded materials interfaces that preserve thermal and mechanical stability under high temperature conditions in a plasma processing system for the containment of deposition contaminates.
    Type: Application
    Filed: April 27, 2007
    Publication date: October 30, 2008
    Inventors: Quan Bai, Patrick Rymer, Jose Gonzalez, Gary Groshong
  • Publication number: 20080241583
    Abstract: The application relates to the problem of improving the corrosion resistance and creep properties of standard Cr-steels like E911 (table 1) at high temperatures. To solve this problem, a method of adding up to 0.5 atomic % Hf both during casting or molding and by ion implantation is provided. The addition of Hf improves the corrosion resistance and creep properties inter alia, as it forms a finely distributed stable second phase and as the harmful M23C6 disappears, because all carbon is taken by Hf to form HfC.
    Type: Application
    Filed: April 1, 2005
    Publication date: October 2, 2008
    Applicant: LOUGHBOROUGH UNIVERSITY
    Inventor: Roy Faulkner
  • Publication number: 20080233428
    Abstract: The present invention relates to wear-resistant mechanical parts.
    Type: Application
    Filed: March 21, 2008
    Publication date: September 25, 2008
    Applicant: Skaff Corporation of America, Inc.
    Inventor: Habib Skaff
  • Publication number: 20080226936
    Abstract: A method for producing an outer layer for a roll having a structure having MC carbide dispersed at an area ratio of 20-60%, comprising the steps of (1) centrifugally casting a melt having a composition comprising, by mass, 2.2-6.0% of C, 0.1-3.5% of Si, 0.1-3.5% of Mn, and 8-22% of V, the balance being Fe and inevitable impurity elements, to produce a cylindrical body comprising an inner layer having concentration MC carbide, an MC-carbide-poor outer layer, and a concentration gradient layer between the inner layer and the outer layer, in which the area ratio of MC carbide changes, and (2) cutting the cylindrical body to a depth at which the area ratio of MC carbide is 20% or more.
    Type: Application
    Filed: September 13, 2002
    Publication date: September 18, 2008
    Applicant: Hitachi Metals, Ltd.
    Inventors: Kiyoshi Furushima, Shunji Matsumoto, Ryota Honda, Kiyoshi Hayashi, Takashi Honda, Masatsugu Uchida
  • Publication number: 20080213619
    Abstract: A method for diffusing titanium and nitride into a sports equipment component. The method generally includes the steps of providing a sports equipment component providing a salt bath which includes sodium dioxide and a salt selected from the group consisting of sodium cyanate and potassium cyanate; dispersing metallic titanium formed by electrolysis of a titanium compound in the bath, heating the salt bath to a temperature ranging from about 430° C. to about 670° C.; and soaking the sports equipment component in the salt bath for a time of from about 10 minutes to about 24 hours. In accordance with another aspect of the present invention, the sports equipment component may further be treated with conventional surface treatments or coatings.
    Type: Application
    Filed: September 5, 2007
    Publication date: September 4, 2008
    Inventors: Philos Jongho Ko, Bongsub Samuel Ko
  • Patent number: 7416789
    Abstract: A substrate for semiconductor and integrated circuit components including: a core plate containing a Group VIB metal from the periodic table of the elements and/or an anisotropic material, having a first major surface and a second major surface and a plurality of openings extending, at least partially, from the first major surface to the second major surface; and a Group IB metal from the periodic table of the elements or other high thermally conductive material filling at least a portion of the space encompassed by at least some of the openings; and optionally, a layer containing a Group IB metal from the periodic table or other high thermally conductive material disposed over at least a portion of the first major surface and at least a portion of the second major surface. The substrate can be used in electronic devices, which can also include one or more semiconductor components.
    Type: Grant
    Filed: November 1, 2004
    Date of Patent: August 26, 2008
    Assignee: H.C. Starck Inc.
    Inventors: Henry F. Breit, Rong-Chein Richard Wu, Prabhat Kumar
  • Patent number: 7413814
    Abstract: Getter multilayer structures are disclosed, embodiments of which include at least a layer of a non-evaporable getter alloy having a low activation temperature over a layer of a different non-evaporable getter material having high specific surface area, both preferably obtained by cathodic deposition. The multilayer NEG structures exhibit better gas sorbing characteristics and lower activation temperature lower than those of deposits made up of a single material. A process for manufacturing such structures includes depositing a first, high surface area NEG film on a support, and then depositing a thin over layer of low activation NEG film.
    Type: Grant
    Filed: June 10, 2004
    Date of Patent: August 19, 2008
    Assignee: SAES Getters S.p.A.
    Inventors: Andrea Conte, Marco Moraja
  • Publication number: 20080176097
    Abstract: A turbine engine component is provided which has a substrate, a yttria-stabilized zirconia coating applied over the substrate, and a molten silicate resistant outer layer. The molten silicate resistant outer layer is formed from gadolinia or gadolinia-stabilized zirconia. A method for forming the coating system of the present invention is described.
    Type: Application
    Filed: January 20, 2006
    Publication date: July 24, 2008
    Inventors: Kevin W. Schlichting, Michael J. Maloney, David A. Litton, Melvin Freling, John G. Smeggil, David B. Snow
  • Patent number: 7399532
    Abstract: A corrosive resistant metal material covered with a conductive substance suitable for use in a component material requiring conductivity and corrosion resistance like electrical conductive material, electrical contact, electromagnetic wave shield, electrochemical electrode or antistatic material, specifically for component material requiring conductivity in sever condition of corrosive environment is provided. A corrosive resistant metal material covered with a conductive substance is formed by cladding a corrosive resistant metal selected from the group consisting of titanium, zirconium, tantalum, niobium and alloy thereof on a conductive metal selected from the group consisting of iron, aluminum, copper, titanium, magnesium, zirconium, tantalum, niobium, tungsten, nickel, chrome and alloy thereof, and covering a conductive surface finishing layer over surface of a corrosive resistant metal layer with a mixture of conductive substance and resinous binder.
    Type: Grant
    Filed: March 14, 2003
    Date of Patent: July 15, 2008
    Assignees: Hitachi Cable, Ltd., Hitachi Powdered Metals Co., Ltd.
    Inventors: Masahiro Seido, Tatsuya Tonogi, Kazuhiko Nakagawa, Minoru Shirahige, Masahiro Okahara
  • Patent number: 7396595
    Abstract: A soft metal and a decorative article of wristwatch are produced by forming, on the surface of a soft metal article (2), a hard layer (3, 13) containing zirconium and molybdenum, or containing zirconium, molybdenum and further an additive element constituted of at least one or more elements selected from niobium, tantalum, and titanium. It is preferable that the content of molybdenum constituting the hard layer (3, 13) is about 30 to 75 wt %, or that the content of molybdenum is about 25 to 65 wt % and the total content of the additive elements is about 25 wt % or less.
    Type: Grant
    Filed: August 30, 2002
    Date of Patent: July 8, 2008
    Assignee: Citizen Holdings Co., Ltd.
    Inventors: Yoshitsugu Shibuya, Junji Satoh, Shizue Ito
  • Patent number: 7371467
    Abstract: A component capable of being exposed to a plasma in a process chamber has a structure having an electroplated coating comprising yttrium-containing species. The electroplated coating is resistant to corrosion in the plasma, and can have a compositional gradient of yttrium-containing species through a thickness of the coating. In one embodiment, the coating is formed by electroplating a layer comprising yttrium onto the surface, and then electroplating a second layer onto the first layer, and annealing the first and second layers. The second layer can comprise aluminum or zirconium. In another embodiment, the coating is formed by electroplating a layer comprising a mixture of aluminum and yttrium onto the surface and annealing the layer.
    Type: Grant
    Filed: April 13, 2004
    Date of Patent: May 13, 2008
    Assignee: Applied Materials, Inc.
    Inventors: Nianci Han, Li Xu, Hong Shih, Yang Zhang, Danny Lu, Jennifer Y. Sun
  • Publication number: 20080081214
    Abstract: A diffusion barrier alloy film has a diffusion barrier layer which has more excellent diffusion barrier properties than an Re—Cr alloy film, and can stand usage at higher temperatures (e.g., 1150° C. or higher). The diffusion barrier layer 18 is made of an Re—W alloy ? phase containing 12.5 to 56.5% of. W in terms of atomic composition and the remainder of Re excluding unavoidable impurities. A metal base 10 has a surface coated with a diffusion barrier layer 18. If required, the diffusion barrier layer 18 has a surface coated with a diffusion alloy layer 20 containing 10% or greater and less than 50% of Al, Cr, or Si in terms of atomic composition, providing a high-temperature apparatus member.
    Type: Application
    Filed: January 14, 2005
    Publication date: April 3, 2008
    Inventors: Toshio Narita, Hiroshi Yakuwa
  • Patent number: 7338717
    Abstract: A method 10 and a laminated tool 31 which is created by the method 10 and which is formed by the selective coupling or attachment of sectional members, such as members 14, 16. The formed tool 31 includes a finished surface 36 which is formed by the selective deposition of material 30 onto surface 22.
    Type: Grant
    Filed: November 7, 2002
    Date of Patent: March 4, 2008
    Assignee: FloodCooling Technologies, LLC
    Inventors: Mark Manuel, Thomas N. Greaves
  • Publication number: 20080003453
    Abstract: The process of brazing a pair of gamma titanium aluminide articles is disclosed and may include creating an assembly by placing a brazing filler material between and in contact with the pair of gamma titanium aluminide articles and heating the assembly in a furnace to braze the pair of gamma titanium aluminide articles together to form a composition. The composition may include gamma titanium aluminide and stainless steel being formed at a braze joint.
    Type: Application
    Filed: July 3, 2006
    Publication date: January 3, 2008
    Inventor: John Ogren
  • Patent number: 7300708
    Abstract: An erosion resistant protective structure for a turbine engine component comprises a shape memory alloy. The shape memory alloy includes nickel-titanium based alloys, indium-titanium based alloys, nickel-aluminum based alloys, nickel-gallium based alloys, copper based alloys, gold-cadmium based alloys, iron-platinum based alloys, iron-palladium based alloys, silver-cadmium based alloys, indium-cadmium based alloys, manganese-copper based alloys, ruthenium-niobium based alloys, ruthenium-tantalum based alloys, titanium based alloys, iron-based alloys, or combinations comprising at least one of the foregoing alloys. Also, disclosed herein are methods for forming the shape memory alloy onto turbine component.
    Type: Grant
    Filed: March 16, 2004
    Date of Patent: November 27, 2007
    Assignee: General Electric Company
    Inventors: Michael Francis Xavier Gigliotti, Jr., Canan Uslu Hardwicke, Liang Jiang, John William Short, Don Mark Lipkin, Jonathan Paul Blank, Krishnamurthy Anand
  • Publication number: 20070243398
    Abstract: A method for diffusing titanium and nitride into a base material having a coating thereon using conventional surface treatments or coatings. The method generally includes the steps of providing a base material having a coating thereon; providing a salt bath which includes sodium dioxide and a salt selected from the group consisting of sodium cyanate and potassium cyanate; dispersing metallic titanium formed by electrolysis of a titanium compound in the bath; heating the salt bath to a temperature ranging from about 430° C. to about 670° C.; and soaking the base material in the salt bath for a time of from about 10 minutes to about 24 hours. In accordance with another aspect of the present invention, titanium and nitride may be diffused into a base material without a coating. The treated base material may further be treated with conventional surface treatments or coatings.
    Type: Application
    Filed: April 18, 2006
    Publication date: October 18, 2007
    Inventors: Philos Jongho Ko, Bongsub Samuel Ko
  • Patent number: 7261942
    Abstract: Method for producing novel photochemically-active metal oxide-containing aqueous compositions such as TiO2 compositions coated or sprayed and dried under ambient conditions to form novel photochemically-active, colorless coatings having strong wetability and adhesion to clear substrates such as window glass. Preferably the present compositions include a suitable wetting agent or combination of agents to improve the wetability of the Titanium peroxide-containing amorphous film, allowing thinner films to be readily applied. Also the inclusion of an acrylic aliphatic urethane polymer can replace wholly or partially the titanium peroxide sol and provide additional film forming and wetability properties. The acrylic urethane polymer reduces or eliminates the amount of titanyl peroxide that is required and thereby reduces or eliminates the yellow color.
    Type: Grant
    Filed: March 3, 2005
    Date of Patent: August 28, 2007
    Assignee: Prizmalite Industries Inc.
    Inventor: John Andrews
  • Patent number: 7223481
    Abstract: An object of the present invention is to produce an ultra-thin copper foil with a carrier which has few pinholes and small surface roughness and which has an the thickness of less than 5 ?m, and to produce the method of producing the foil, and further to produce a printed circuit board for fine pattern, a multilayer printed circuit board and a chip on film circuit board by using the ultra-thin copper foil with a carrier. The present invention provides an ultra-thin copper foil with a carrier produced by stacking a peeling layer and an ultra thin copper foil in order on the surface of a carrier copper foil which is made smooth so that the mean surface roughness of at least one side is Rz of 0.01 to 2.0 ?m by the chemical polishing, the electrochemical dissolution, or the smoothing plating processing method independently, combining two or more, or further combining the mechanical polishing.
    Type: Grant
    Filed: August 31, 2004
    Date of Patent: May 29, 2007
    Assignee: Furukawa Circuit Foil Co., Inc.
    Inventors: Yuuji Suzuki, Akira Matsuda
  • Patent number: 7166367
    Abstract: A titanium alloy having excellent high-temperature oxidation and corrosion resistance is disclosed which comprises, by mass, Al: 0.30–1.50%, and Si: 0.10–1.0%. Preferably, amass ratio Si/Al is not less than 1/3. More preferably, the titanium alloy further comprises Nb: 0.1–0.5% by mass. The titanium alloy is useful as an exhaust system material for a vehicle or a motorbike, which enhances corrosion and high-temperature oxidation resistance, while utilizing inherent lightness and corrosion resistance of an original titanium alloy without impairing economy and workability.
    Type: Grant
    Filed: March 1, 2005
    Date of Patent: January 23, 2007
    Assignee: Kobe Steel, Ltd.
    Inventors: Takashi Yashiki, Kenji Yamamoto, Wataru Urushihara
  • Patent number: 7156282
    Abstract: A titanium-aluminide turbine wheel (120, 220, 320, 420) is joined to the end of a shaft (110, 210, 310, 410) by utilizing a titanium surface on the end of the shaft to be joined to the wheel, and electron-beam welding the wheel onto the titanium surface on the shaft. A steel shaft (110, 310, 410) can have a titanium-containing end piece (130, 330, 430) mechanically joined (by brazing, bonding, or welding) to the end of the shaft, and the end piece can be directly electron-beam welded to the wheel. Alternatively, the shaft (210) can be formed as a titanium member and the end (212) of the shaft can be directly electron-beam welded to the wheel (220). In another embodiment, a ferrous end piece (330) is mechanically joined to the titanium-aluminide turbine wheel (320) and then the end piece is directly electron-beam welded to the end of a steel shaft (310). Alternatively, a silver-titanium alloy member (430) is sandwiched between the wheel (420) and a steel shaft (410) and is melted to join the parts together.
    Type: Grant
    Filed: October 11, 2005
    Date of Patent: January 2, 2007
    Assignee: Honeywell International, Inc.
    Inventors: Phillipe Renaud, Marc Wilson
  • Patent number: 7138189
    Abstract: Disclosed is a heat-resistant Ti alloy material excellent in high-temperature corrosion resistance and oxidation resistance, which comprises a base made of a heat-resistant Ti alloy and a surface layer formed on the surface of the base. The surface layer has a multilayer structure including an inner layer and an outer layer. The inner layer has three coexistent phases consisting of a ? phase, a ? phase and a Laves phase in the phase diagram of a Ti—Al—Cr based alloy, and the outer layer is made of an Al—Ti—Cr based alloy having an Al concentration of 50 atomic % or more.
    Type: Grant
    Filed: March 25, 2003
    Date of Patent: November 21, 2006
    Assignee: Japan Science and Technology Agency
    Inventors: Toshio Narita, Takumi Nishimoto
  • Patent number: 7135238
    Abstract: Oxidation protection of a titanium-based alloy is provided with improved fatigue properties by a titanium aluminide coating of between 2 to 12 microns by diffusing the Al into the Ti at a temperature below the melting point of the Al. The coating is gas deposited and protects the titanium-based alloys from oxidation at high temperature utilization.
    Type: Grant
    Filed: October 29, 2004
    Date of Patent: November 14, 2006
    Assignee: Honeywell International, Inc.
    Inventors: Derek Raybould, Paul Chipko, William E. Fischer
  • Patent number: 7132173
    Abstract: Braze and electrode wire assemblies, e.g., used with an implantable microstimulator, include a wire welded in the through-hole of an electrode, which electrode is brazed to a ceramic case that is brazed to a metal ring that is welded to a metal can. The braze joints are step or similar joints that self-center the case, provide lateral support during braze assembly, and provide increased surface area that prevents braze material from exuding from the joints. The end of the ceramic case that is brazed to the metal ring need not be specially machined. The shell has a reference electrode on one end and an active electrode on the other, and is externally coated on selected areas with conductive and non-conductive materials.
    Type: Grant
    Filed: June 27, 2003
    Date of Patent: November 7, 2006
    Assignee: Advanced Bionics Corporation
    Inventor: Jay Daulton
  • Patent number: 7132149
    Abstract: A data storage medium includes a haze-prevention layer between a heat-resistant thermoplastic substrate and a reflective metal layer. The haze-prevention layer includes a metal having a tensile modulus of at least about 15×106 pounds per square inch. The data storage medium resists hazing of the reflective layer at elevated temperatures.
    Type: Grant
    Filed: August 7, 2003
    Date of Patent: November 7, 2006
    Assignee: General Electric Company
    Inventors: Keith M. Borst, Robert R. Gallucci, Charles D. Iacovangelo, Donald G. LeGrand
  • Patent number: 7129194
    Abstract: An improved catalyst system that includes a metal support structure and an anti-corrosive layer on the metal support structure, and has improved resistance to corrosion and other degradation under corrosive environments. Typically, a catalyst supporting layer is applied over the anti-corrosive layer.
    Type: Grant
    Filed: September 23, 2004
    Date of Patent: October 31, 2006
    Assignee: Corning Incorporated
    Inventors: Adra S. Baca, Lin He, Youchun Shi, Charles M. Sorensen, Jr.
  • Patent number: 7128959
    Abstract: A reflective article useful, for example, in automotive headlights includes a haze-prevention layer between a heat-resistant thermoplastic substrate and a reflective metal layer. The haze-prevention layer includes a metal having a tensile modulus of at least about 15×106 pounds per square inch. The article resists hazing of the reflective layer at elevated temperatures.
    Type: Grant
    Filed: August 7, 2003
    Date of Patent: October 31, 2006
    Assignee: General Electric Company
    Inventors: Keith M. Borst, Robert R. Gallucci, Charles D. Iacovangelo, Donald G. LeGrand
  • Patent number: 7125612
    Abstract: A method of continuous casting non-ferrous alloys which includes delivering molten non-ferrous alloy to a casting apparatus. The casting apparatus rapidly cools at least a portion of the non-ferrous alloy at a rate of at least about 100° C. thereby solidifying an outer layer of the non-ferrous alloy surrounding an inner layer of a molten component and a solid component of dendrites. The dendrites are altered to yield cast product exhibiting good resistance to cracking.
    Type: Grant
    Filed: June 13, 2003
    Date of Patent: October 24, 2006
    Assignee: Alcoa Inc.
    Inventor: Ali Ünal
  • Patent number: 7052621
    Abstract: A metal hardmask for use with a Dual Damascene process used in the manufacturing of semiconductor devices. The metal hardmask has advantageous translucent characteristics to facilitate alignment between levels while fabricating a semiconductor device and avoids the formation of metal oxide residue deposits. The metal hardmask comprises a first or primary layer of TiN (titanium nitride) and a second or capping layer of TaN (tantalum nitride).
    Type: Grant
    Filed: June 13, 2003
    Date of Patent: May 30, 2006
    Assignees: Infineon Technologies AG, International Business Machines Corporation
    Inventors: Kaushik Kumar, Lawrence Clevenger, Timothy Dalton, Douglas C. La Tulipe, Andy Cowley, Erdem Kaltalioglu, Jochen Schacht, Andrew H. Simon, Mark Hoinkis, Steffen K. Kaldor, Chih-Chao Yang
  • Patent number: 6994919
    Abstract: The invention relates to a brazing sheet product including a core sheet, on at least one side of the core sheet a clad layer of an aluminum alloy including silicon in an amount in the range of 4 to 14% by weight, and further including on at least one outersurface of the clad layer a plated layer of nickel-tin alloy, such that the clad layer and all layers exterior thereto form a metal filler for a brazing operation and have a composition with the proviso that the mol-ratio of Ni:Sn is in the range of 10:(0.5 to 9).
    Type: Grant
    Filed: July 18, 2003
    Date of Patent: February 7, 2006
    Assignees: Corus Aluminium Walzprodukte GmbH, Corus Technology BV
    Inventors: Jacques Hubert Olga Joseph Wijenberg, Adrianus Jacobus Wittebrood, Joop Nicolaas Mooij
  • Patent number: 6984457
    Abstract: (1) A titanium material composed of a substrate of pure titanium or titanium alloy and an aluminum-containing layer formed thereon having a thickness no smaller than 1 ?m and containing no less than 90 mass % aluminum or aluminum plus silicon. (2) A titanium material composed of a substrate of pure titanium or titanium alloy and an aluminum-containing layer formed thereon having a thickness no smaller than 1 ?m and containing no less than 90 mass % aluminum or aluminum plus silicon, with a layer of Al—Ti intermetallic compound interposed between them. (3) A titanium material as defined in (1) wherein the substrate contains 0.5-10 mass % aluminum. (4) A titanium material as defined in (1) wherein that surface of the substrate with which the aluminum-containing layer is in contact contains 20-50 atomic % nitrogen. (5) A titanium material as defined in (1) wherein a layer of aluminum nitride is formed in the interface between the substrate and the aluminum-containing layer.
    Type: Grant
    Filed: June 22, 2004
    Date of Patent: January 10, 2006
    Assignee: Kobe Steel Ltd.
    Inventors: Kenji Yamamoto, Wataru Urushihara, Takashi Yashiki
  • Patent number: 6936354
    Abstract: The invention teaches a system suitable for use in a water-sensitive electronic device which comprises two superimposed layers, the first material of which is formed of a material capable of sorbing hydrogen, the second material formed of a material capable of converting water into hydrogen; a screen of the type with light-emitting organic diodes comprising the system according to the invention.
    Type: Grant
    Filed: September 27, 2002
    Date of Patent: August 30, 2005
    Assignee: SAES Getters S.p.A.
    Inventors: Bruno Ferrario, Stefano Tominetti, Alessandro Gallitognotta
  • Patent number: 6926971
    Abstract: Cookware having improved uniform heat transfer over the entire cross section thereof, the cookware formed from a multi-layered composite metal having a layer of titanium roll bonded at or near the core of the composite. The titanium layer is roll bonded to layers of aluminum which, in turn, is roll bonded to layers of stainless steel. The layer of stainless steel adjacent to the cooking range may be a ferritic stainless steel if induction-type heating is desired. The multi-layered composite is also suitable for making a sole plate for an iron. Both the cookware and sole plate may include a non-stick surface applied thereto.
    Type: Grant
    Filed: June 27, 2003
    Date of Patent: August 9, 2005
    Assignee: All-Clad Metalcrafters LLC
    Inventor: William A. Groll
  • Patent number: 6923625
    Abstract: A method for preventing contamination, oxidation and gas absorption of reactive materials, and articles formed thereby. The method generally entails depositing a first layer of a reactive material and a second layer of a substantially nonreactive material so that the second layer protects the first layer from a surrounding atmosphere. For example, the first and second layers may be deposited to form a film on a surface within a chamber that is desired to be maintained in a vacuum during use of the article. The second layer is sufficiently thin such that appropriately heating the first and second layers causes the reactive material of the first layer to become interdiffused with the nonreactive material of the second layer, to the extent that at least a portion of the reactive material is able to react and getter gases from the surrounding atmosphere.
    Type: Grant
    Filed: January 7, 2003
    Date of Patent: August 2, 2005
    Assignee: Integrated Sensing Systems, Inc.
    Inventor: Douglas Ray Sparks
  • Patent number: 6924043
    Abstract: An ultra-thin copper foil with a carrier having a peeling layer able to withstand even high temperature working in the case of using a high heat resistant resin, enabling the carrier foil and the ultra-thin copper foil to be easily peeled apart, and reduced in the number of pinholes by uniform plating without impairing the peelability of the peeling layer, that is, an ultra-thin copper foil with a carrier comprised of a carrier foil, a peeling layer, and an ultra-thin copper foil, wherein the peeling layer and the ultra-thin copper foil are provided between them with a strike plating layer at the surface on the peeling layer side, an ultra-thin layer of copper is provided on this according to need, and an ultra-thin copper foil comprised of copper or a copper alloy or a phosphorus-containing copper or phosphorus-containing copper alloy is provided.
    Type: Grant
    Filed: October 31, 2003
    Date of Patent: August 2, 2005
    Assignee: Furkawa Circuit Foil Co., Ltd.
    Inventors: Yuuji Suzuki, Akira Matsuda
  • Patent number: 6919138
    Abstract: A mixture of TiO2 and Co is placed in a vacuum chamber under selected oxygen pressure and irradiated in the vacuum chamber with a selected laser light to cause TiO2 and Co to evaporate from the target and a layer of TiO2-Co to epitaxially grow on a heated single crystal substrate. The titanium dioxide-cobalt magnetic film for use in a photocatalyst, a semiconductor material having optical, electrical and magnetic functions, and a transparent magnet. The film is expressed by Ti1-xCoxO2 where 0<x?0.3, and wherein a Ti atom at its lattice position is replaced with a Co atom. The film has anatase or rutile crystalline structure, has its band gap energy varying in a range between 3.13 eV and 3.33 eV, retains its magnetization even at a temperature higher than a room temperature, and is transparent to visible light.
    Type: Grant
    Filed: August 17, 2001
    Date of Patent: July 19, 2005
    Assignee: Japan Science and Technology Corporation
    Inventors: Hideomi Koinuma, Yuji Matsumoto
  • Patent number: 6913839
    Abstract: A coated article having a high resistance to particle-impact damage has a substrate, and a layered coating overlying the substrate. The layered coating includes a substantially continuous quasicrystalline layer, and a substantially continuous ductile metallic layer in facing contact with the quasicrystalline layer. The coated article is preferably used in applications where it is subjected to particle-impact conditions.
    Type: Grant
    Filed: February 28, 2003
    Date of Patent: July 5, 2005
    Assignee: General Electric Company
    Inventors: Ramgopal Darolia, Robert Edward Schafrik
  • Patent number: 6896976
    Abstract: A semiconductor device is disclosed containing a semiconductor die having a trimetal electrode soldered to a substrate by a Sn—Sb solder.
    Type: Grant
    Filed: April 9, 2003
    Date of Patent: May 24, 2005
    Assignee: International Rectifier Corporation
    Inventor: Chuan Cheah
  • Patent number: 6887586
    Abstract: Sharp-edged cutting tools and a method of manufacturing sharp-edged cutting tools wherein at least a portion of the sharp-edged cutting tool is formed from a bulk amorphous alloy material are provided.
    Type: Grant
    Filed: March 7, 2002
    Date of Patent: May 3, 2005
    Assignee: Liquidmetal Technologies
    Inventors: Atakan Peker, Scott Wiggins
  • Patent number: 6887585
    Abstract: The invention relates to a wear-resistant coating used for bearing surfaces and flanks of piston rings in internal combustion engines. The wear-resistant inventive coating is obtained by mechanically alloying powders which form a metallic matrix with hard material dispersoids and lubricant material dispersoids. The coating is then thermally applied to the workpieces, especially by means of high velocity oxygen fuel spraying (HVOF). The workpieces coated are bearing surfaces and parts of flanks pertaining to piston rings in internal combustion engines.
    Type: Grant
    Filed: August 17, 2001
    Date of Patent: May 3, 2005
    Assignee: Federal-Mogul Burscheid GmbH
    Inventor: Christian Herbst-Dederichs
  • Patent number: RE39070
    Abstract: A wear resistant coating for protecting surfaces undergoing sliding contact is disclosed. The wear resistant coating is applied by high velocity oxygen-fuel (HVOF) deposition of a powdered blend of the coating constituents. The powdered blend includes a nickel-chromium alloy, chromium carbide, and molybdenum. The disclosed coating should find use as a bearing surface on piston rings, cylinder liners, and other components of a power cylinder assembly of an internal combustion engine.
    Type: Grant
    Filed: December 31, 2003
    Date of Patent: April 18, 2006
    Assignee: Dana Corporation
    Inventors: Thomas C. Stong, Thomas J. Smith, Peter J. Einberger