Alloy Or Free Metal Patents (Class 428/433)
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Publication number: 20130213582Abstract: A laminate including a supporting member which is light transmissive; a supported substrate supported by the supporting member; an adhesive layer provided on a surface of the supported substrate which surface faces toward the supporting member; and a release layer which is made of an inorganic material and is provided between the supporting member and the supported substrate, the release layer having a property that changes when the release layer absorbs light coming through the supporting layer, and the release layer having a flat surface which faces the adhesive layer.Type: ApplicationFiled: October 7, 2011Publication date: August 22, 2013Applicant: TOKYO OHKA KOGYO CO., LTD.Inventors: Yoshihiro Inao, Yasushi Fujii, Atsushi Matsushita, Koki Tamura, Atsushi Kubo
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Patent number: 8486537Abstract: Transparent conductive films, articles made from them, and methods of making them are disclosed. Some transparent conductive films include flexible glass substrates and conductive layers containing metal nanoparticles. Others include at least one layer with cell walls that contain metal nanorods or conductive nanowires. Still others include a substrate with a coating disposed on it, with the coating including conductive components and photopolymers. Such films are useful in such articles as electronic displays, touch screens, and the like.Type: GrantFiled: March 7, 2011Date of Patent: July 16, 2013Assignee: Carestream Health, Inc.Inventors: David R. Whitcomb, Chaofeng Zou
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Publication number: 20130157896Abstract: A nanoscale calcinated silicate film fabricated on a gold substrate for highly effective, matrix-free laser desorption ionization mass spectrometry (LDI-MS) analysis of biomolecules. The calcinated film is prepared by a layer-by-layer (LbL) deposition/calcination process wherein the thickness of the silicate layer and its surface properties are precisely controlled. The film exhibits outstanding efficiency in LDI-MS with extremely low background noise in the low-mass region, allowing for effective analysis of low mass weight samples and detection of large biomolecules including amino acids, peptides and proteins. Additional advantages for the calcinated film include ease of preparation and modification, high reproducibility, low cost and excellent reusability.Type: ApplicationFiled: May 18, 2011Publication date: June 20, 2013Applicant: The Regents of the University of CaliforniaInventors: Quan Cheng, Jicheng Duan, Matthew James Linman
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Publication number: 20130130023Abstract: The invention relates to a glass item, at least one of the surfaces thereof having antimicrobial properties that are resistant to a temperature treatment, especially a temperature treatment in preparation of the subsequent tempering thereof. The glass item especially comprises an antimicrobial agent beneath the surface of the glass, and an inorganic component in the mass of the glass close to said surface, the concentration of the inorganic component being distributed according to a diffusion profile.Type: ApplicationFiled: July 27, 2011Publication date: May 23, 2013Applicant: AGC GLASS EUROPEInventors: Pierre Boulanger, Fabian Mariage
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Patent number: 8445112Abstract: The present invention relates to essentially transparent glazings comprising a system of films deposited under vacuum by magnetron, and having antisun and/or low-emission properties, comprising as protective surface layer a layer based on titanium oxide and on at least one other metal oxide of high hardness from the group comprising: ZrO2, SiO2, Cr2O3. The glazings according to the invention are of “matchable” type.Type: GrantFiled: March 20, 2009Date of Patent: May 21, 2013Assignee: AGC Glass EuropeInventor: Gaetan Di Stefano
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Publication number: 20130122321Abstract: The present invention comprises methods and compositions comprising metal nanoparticles. The invention comprises metal nanoparticles and surfaces treated with a metal nanoparticle coating. The present invention further comprises compositions for preparing nanoparticles comprising at least one stabilizing agent, one or more metal compounds, at least one reducing agent and a solvent. In one aspect, the stabilizing agent comprises a surfactant or a polymer. The polymer may comprise polymers such as polyacrylamides, polyurethanes, and polyamides. In one aspect, the metal compound comprises a salt comprising a metal cation and an anion. The anion may comprise saccharinate derivatives, long chain fatty acids, and alkyl dicarboxylates.Type: ApplicationFiled: January 11, 2013Publication date: May 16, 2013Applicant: KIMBERLY-CLARK WORLDWIDE, INC.Inventor: KIMBERLY-CLARK WORLDWIDE, INC.
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Patent number: 8440310Abstract: A coated article is provided which may be heat treated (e.g., thermally tempered) and/or heat bent in certain example instances. In certain example embodiments, a zinc stannate based layer is provided between a tin oxide based layer and a silicon nitride based layer, and this has been found to significantly reduce undesirable mottling damage upon heat treatment/bending. This results in significantly improved bendability of the coated article in applications such as vehicle windshields and the like.Type: GrantFiled: September 20, 2012Date of Patent: May 14, 2013Assignees: Centre Luxembourgeois de Recherches pour le Verre et la Ceramique S.A. (C.R.V.C), Guardian Industries Corp.Inventors: Jose Ferreira, Pierrot Pallotta, Richard Blacker, Muhammad Imran
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Publication number: 20130105211Abstract: A low cost and high performance method for bonding a wafer to an interposer is provided. The technology provides designs and metallization techniques for through via glass applications that is thermal coefficient expansion matched to the glass or synthetic fused quartz substrates. An off-the-shelf glass, such as borosilicate based or Fused Synthetic Quartz, is used with a thick film Cu or Ag and/or a Sodium Ion Enriched (SIE) coating or glass, which may be applied or fired onto the substrate or wafer. Polymer based coatings can be applied in a sequential build-up process for purposes of redistribution of signals from a silicon integrated circuit to the opposite side of the substrate or wafer. Additionally, metallizations can be applied on top of the polymers and patterned to create a multilayer circuit.Type: ApplicationFiled: November 1, 2012Publication date: May 2, 2013Inventor: Tim Mobley
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Publication number: 20130099187Abstract: A multilayer structure is disclosed that includes a conductive layer, a layer of a negative differential resistance (NDR) material disposed above the conductive layer, a layer M2 disposed above the NDR material, a second layer of NDR material disposed above layer M2, and a conductive layer disposed above the second NDR layer. Layer M2 can include a conductive material interspersed with regions of a dielectric material or a layer of the dielectric material and regions of the conductive material disposed above and below the dielectric material.Type: ApplicationFiled: October 25, 2011Publication date: April 25, 2013Inventors: Matthew D. Pickett, R. Stanley Williams, Gilberto M. Ribeiro, Warren Jackson
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Publication number: 20130095313Abstract: A method for inhibiting corrosion under insulation (CUI) on the exterior of a structure, e.g., pipelines, piping, vessels and tanks, is provided. The method involves providing a structure that is at least partially formed from a corrosion resistant carbon steel (CRCS) composition. The CRCS composition includes corrosion resistance alloying additions in the amount of 0.1 weight percent to 9 weight percent. At least one alloying addition has a low free energy of formation for its oxide and/or hydroxide, e.g., vanadium and/or titanium. A corrosion inhibited structure that includes a structure at least partially formed from a corrosion resistant carbon steel (CRCS) composition, and insulation positioned around at least a portion of the structure.Type: ApplicationFiled: October 13, 2011Publication date: April 18, 2013Applicant: EXXONMOBIL RESEARCH AND ENGINEERING COMPANYInventors: Shiun Ling, Brian Joseph Fitzgerald, James Edward Feather
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Patent number: 8415017Abstract: The present invention relates to a luminescent glass element comprising a luminescent glass substrate, which a metal layer is positioned on a surface thereof. The metal layer is provided with a metal microstructure. The luminescent glass substrate has composite oxides represented as the following formula: aM2O.bY2O3.cSiO2.dDy2O3, wherein M represents alkali metal element, a, b, c and d are, by mol part, 25-60, 1-30, 20-70 and 0.001-10 respectively. The present invention also provides a producing method of the luminescent glass element and a luminescing method thereof. The metal layer is positioned on the luminescent glass substrate, thereby improving luminescence efficiency of the luminescent glass substrate. The luminescent glass element can be used in luminescent devices with ultrahigh brightness or high-speed operation.Type: GrantFiled: September 9, 2011Date of Patent: April 9, 2013Assignee: Ocean's King Lighting Science & Technology Co., Ltd.Inventors: Mingjie Zhou, Wenbo Ma, Yugang Liu
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Patent number: 8409694Abstract: A coated glass includes a substrate, a first conductive layer, a metallic layer and a second conductive layer. The first conductive layer is deposited on the substrate. The metallic layer is deposited on the first conductive layer. The second conductive layer is deposited on the metallic layer. The first conductive layer and the second conductive layer are consisted of tin oxide, antimony oxide and zinc oxide, zinc oxide has a mole percentage in a range from about 30% to about 50%, antimony oxide has a mole percentage in a range from about 1% to about 5%, and the remaining is tin oxide.Type: GrantFiled: June 28, 2011Date of Patent: April 2, 2013Assignees: Hong Fu Jin Precision Industry (ShenZhen) Co., Ltd., Hon Hai Precision Industry Co., Ltd.Inventors: Hsin-Pei Chang, Wen-Rong Chen, Huann-Wu Chiang, Cheng-Shi Chen, Jia Huang
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Patent number: 8409717Abstract: Example embodiments of this invention relate to a coated article including an infrared (IR) reflecting layer of a material such as silver or the like, for use in an insulating glass (IG) window unit for example. In certain example embodiments, the coating is a single-silver type coating, and includes an overcoat including an uppermost layer of or including silicon nitride and a layer of or including tin oxide immediately under and contacting the silicon nitride based overcoat. In certain example embodiments, the thicknesses of the silicon nitride based overcoat and the tin oxide based layer are balanced (e.g., substantially equal, or equal plus/minus about 10%). It has surprisingly been found that such balancing results in an improvement in thermal cycling performance and improved mechanical durability. In certain example embodiments, the coating may realize surprisingly good substantially neutral film side reflective coloration, and may achieve an improved visible transmission, SHGC ratio and low U-values.Type: GrantFiled: April 21, 2008Date of Patent: April 2, 2013Assignees: Guardian Industries Corp., Centre Luxembourgeois de Recherches pour le Verre et la Ceramique S.A. (C.R.V.C.)Inventors: Jingyu Lao, Philip J. Lingle, Brent Boyce, Bernd Disteldorf, Richard Blacker
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Publication number: 20130045389Abstract: A composition that upon firing, forms a low-temperature clean enamel layer is disclosed. The composition can be applied to a metal substrate to provide a low-temperature cleaning, durable coating for cooking surfaces. Also disclosed are methods of forming enamel layers and corresponding coated substrates. Various ground coats and related methods are also described. Furthermore, various multilayer coatings and structures are disclosed that include an enamel layer and a ground coat layer.Type: ApplicationFiled: October 26, 2012Publication date: February 21, 2013Applicant: FERRO CORPORATIONInventor: Ferro Corporation
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Publication number: 20130042912Abstract: The solder bonded body according to the present invention contains: an oxide body to be bonded having an oxide layer on the surface thereof; and a solder layer bonded to the oxide layer, which the solder layer is formed by an alloy containing at least two metals selected from the group consisting of tin, copper, silver, bismuth, lead, aluminum, titanium and silicon and having a melting point of lower than 450° C. and has a zinc content of 1% by mass or less.Type: ApplicationFiled: August 10, 2012Publication date: February 21, 2013Inventors: Yoshiaki KURIHARA, Masato Yoshida, Takeshi Nojiri, Shuichiro Adachi, Takashiko Kato, Yasushi Kurata
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Publication number: 20130034701Abstract: A resin composition used to being injection molded to metal to make composite of resin and metal, comprises 40% to 90% by weight of main resin, 5% to 30% by weight of crystallization modifier; and 0% to 40% by weight of filler. The main resin comprises one or more ingredients selected from a group consisting of one or more ingredients selected from polyamide polymers. The resin composition has a low crystallization temperature and an appropriate crystallization rate.Type: ApplicationFiled: December 15, 2011Publication date: February 7, 2013Applicants: HON HAI PRECISION INDUSTRY CO., LTD., HONG FU JIN PRECISION INDUSTRY (ShenZhen) CO., LTD.Inventors: HSIN-PEI CHANG, JUN-YI WANG, XUE-PENG LI, MING-HSU LU, LIANG-LIANG DONG
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Patent number: 8367226Abstract: A layer system that can be annealed comprises a transparent substrate, preferably a glass substrate, and a first layer sequence which is applied directly to the substrate or to one or more bottom layers that are deposited onto the substrate. The layer sequence includes a substrate-proximal blocking layer, a selective layer and a substrate-distal blocking layer. Also provided is a method for producing a layer system that can be annealed and has a sufficient quality even under critical climatic conditions and/or undefined conditions of the substrate. During the heat treatment (annealing, bending), the color location of the layer system is maintained substantially stable and the color location can be widely varied at a low emissivity of the layer system. For this purpose, a first dielectric intermediate layer is interposed between the substrate-proximal blocking layer and the selective layer and is configured as a substoichiometric gradient layer.Type: GrantFiled: July 23, 2010Date of Patent: February 5, 2013Assignee: Von Ardenne Anlagentechnik GmbHInventors: Joerg Fiukowski, Matthias List, Hans-Christian Hecht, Falk Milde
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Publication number: 20130022798Abstract: Provided is a low reflection glass excellent in the abrasion resistance, the weather resistance, and the productivity. A low reflection glass includes a glass substrate and an antireflection film formed on the surface of the glass substrate. The antireflection film includes an interlayer and an outermost layer. The outermost layer contains Si atoms, C atoms and O atoms, and the content of C atoms is from 0.5 to 3 mol. % based on 100 mol. % of the total amount of Si, C and O atoms. The interlayer is a high refractive index layer or a light absorbing layer. Also provides is a protective plate for a display including a support substrate including the low reflection glass and a conductive film provided on a side where no antireflection film is formed of the support substrate.Type: ApplicationFiled: July 20, 2012Publication date: January 24, 2013Applicant: ASAHI GLASS COMPANY LIMITEDInventors: Makoto FUKAWA, Kenichi TANAKA, Shinsuke KAGA
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Publication number: 20130009846Abstract: Apparatuses such as inserts for radomes are described herein. The apparatuses and inserts including a metal layer having a frequency selective surface.Type: ApplicationFiled: June 27, 2012Publication date: January 10, 2013Applicant: TRITON SYSTEMS, INC.Inventors: Douglas Ward FREITAG, Scott MORRISON, Arthur GAVRIN, Ken MAHMUD
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Patent number: 8349750Abstract: The glass of the glass-metal bond contains the following ingredients in the following amounts: SiO2, 72-80 wt %; B2O3, 4-<6 wt %; Al2O3, 2-5 wt %; Na2O, 4-7 wt %; K2O, 0-3 wt %; CaO, 2.5-8 wt %; MgO, 0-2 wt %; BaO, 0-4 wt %; TiO2, 0-5 wt %; CeO2, 0-2 wt %; Fe2O3, 0-0.1 wt %; F, 0-2 wt %; and the ratio of the sum total amount of Al2O3 and B2O3 (in mol %) to the sum total amount of MgO, CaO and BaO (in mol %) in the glass is less than 5. The glass-metal bond advantageously includes a KOVAR® alloy and the glass of the aforesaid composition and connects the glass envelope tube with an inner metal absorber tube in a tube collector.Type: GrantFiled: August 18, 2010Date of Patent: January 8, 2013Assignee: Schott AGInventors: Joerg Hinrich Fechner, Christof Kass
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Publication number: 20130004762Abstract: The present disclosure relates to a method of manufacturing of a glass coated metal product. This invention also relates to a coated metallic substrate material that is suitable for manufacturing flexible solar cells and other articles in which a passivated stainless steel surface is desirable.Type: ApplicationFiled: July 9, 2012Publication date: January 3, 2013Applicant: E. I. DU PONT DE NEMOURS AND COMPANYInventors: SALAH BOUSSAAD, DAMIEN FRANCIS REARDON
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Publication number: 20120325297Abstract: Disclosed is a constitution formed from an oxide of an element having a smaller work function than aluminum. This oxide is comprises an oxide of vanadium (V), an oxide of an alkaline earth metal and an oxide of an alkali metal. The elements for the alkaline earth metal are comprise one or more elements out of the elements calcium (Ca), strontium (Sr) and barium (Ba) and at least contain barium. The elements for the alkali metal include at least one or more of sodium (Na), potassium (K), rubidium (Rb) and cesium (Cs). When the element vanadium is included as vanadium pentoxide (V2O5), the vanadium pentoxide content is 40-70 wt %. Thus, a glass composition for aluminum electrode wiring with an apparent work function for electrode wiring that is smaller than the work function for aluminum (Al) can be provided without the inclusion of lead.Type: ApplicationFiled: February 17, 2011Publication date: December 27, 2012Applicants: HITACHI CHEMICAL COMPANY, LTD., HITACHI, LTD.Inventors: Takashi Naito, Takuya Aoyagi, Shinichi Tachizono, Kei Yoshimura, Yuji Hashiba
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Patent number: 8329303Abstract: A method is described herein for controlling the oxygen level within an oven while sintering a frit to a glass plate where the sintered frit and glass plate are subsequently sealed to another glass plate to form a sealed glass package. Examples of the sealed glass package include a light-emitting device (e.g., organic light emitting diode (OLED) device), a photovoltaic device, a food container, and a medicine container.Type: GrantFiled: February 28, 2012Date of Patent: December 11, 2012Assignee: Corning IncorporatedInventors: Andrew Douglas Banks, Heather Debra Boek, Jason Arthur Howles
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Patent number: 8329304Abstract: A plasma display panel (PDP) includes an EMI filter supported by a glass substrate for blocking/shielding substantial amounts of electromagnetic waves, with the filter being supported by a side of the substrate opposite a viewer. In certain example embodiments, a black frit and a silver frit comprise a filter frame and are supported by the filter such that the filter is closer to the glass substrate than either or both of the frits. Alternatively, in certain example embodiments, a conductive black frit comprises a filter frame and is supported by the filter such that the filter is closer to the glass substrate than the frit. The filter has high visible transmission, and is capable of blocking/shielding electromagnetic waves. Advantageously, a transparent conductive coating (TCC) can be coated on a stock, non-cut glass sheet.Type: GrantFiled: August 21, 2008Date of Patent: December 11, 2012Assignee: Guardian Industries Corp.Inventors: Yei-Ping (Mimi) H. Wang, Brandon Bolt
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Patent number: 8309165Abstract: The present invention discloses a color filter by copper and silver film, comprising: a lower copper layer; a lower silver layer formed on the lower copper layer; a medium formed on the lower silver layer; an upper copper layer formed on the medium; and an upper silver layer formed on the upper copper layer.Type: GrantFiled: December 15, 2011Date of Patent: November 13, 2012Assignee: Pixart Imaging Inc.Inventors: Sen-Huang Huang, Chin-Poh Pang, Hsin-Hui Hsu
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Patent number: 8304072Abstract: Certain example embodiments relate to robust semi-transparent coatings that are suitable for use in a wide variety of display-on-demand mirror applications, and methods of making the same. In certain example embodiments, a coated article includes a coating supported by a glass substrate. A reflective metal-inclusive layer is formed, directly or indirectly, on the glass substrate. A silicon oxide inclusive layer is formed, directly or indirectly, on the reflective metallic layer. A titanium oxide inclusive layer is formed, directly or indirectly, on the silicon oxide inclusive layer. The metal-inclusive layer is formed so as to reflect incoming light away from the glass substrate such that substantially less incoming light would be reflected away from the glass substrate if lighting were provided on a side of the glass substrate opposite the coating than if no lighting were provided. The surface of the coated article need not necessarily be conductive.Type: GrantFiled: October 7, 2008Date of Patent: November 6, 2012Assignee: Guardian Industries Corp.Inventors: Desaraju V. Varaprasad, Yiwei Lu
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Patent number: 8297094Abstract: An article includes a titanium substrate, a metallic layer diffusion bonded with the titanium substrate and a residual stress region that extends through the metallic layer and at least partially into the titanium substrate.Type: GrantFiled: October 19, 2011Date of Patent: October 30, 2012Assignee: Hamilton Sundstrand CorporationInventors: Aaron T. Nardi, Blair A. Smith, Timothy R. Boysen
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Patent number: 8283268Abstract: The colorless transparent colloid-former-containing glass that is convertible into a colorless transparent glass ceramic or a metal colloid-colored glass ceramic via respective heat treatments contains a combination of one or more metal colloid formers and one or more redox partners. The metal colloid formers are compounds containing Au, Ag, As, Bi, Nb, Cu, Fe, Pd, Pt, Sb and/or Sn. The redox partners are compounds containing As, Ce, Fe, Mn, Sb, Sn and/or W, with the proviso that the redox partner must be different from the metal colloid former.Type: GrantFiled: April 23, 2008Date of Patent: October 9, 2012Assignee: Schott AGInventors: Meike Schneider, Thilo Zachau, Friedrich Siebers, Wolfgang Schmidbauer
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Patent number: 8283048Abstract: A thermally sprayed coating, coating system and coated article are disclosed. The disclosed embodiments of the thermally sprayed coating, coating system and coated article use a customized ceramic powder comprising ceramic powder particles having an average particle size of about 25 to about 75 microns. In particular, the ceramic powder particles contain from about 70 to about 95 percent by weight of a zirconia-based component, with the balance being an (alumina+silica)-based component and wherein said ceramic powder particles comprise micronized sub-particles of the zirconia-based component and the (alumina+silica)-based component.Type: GrantFiled: August 4, 2011Date of Patent: October 9, 2012Assignee: Praxair S. T. Technology, Inc.Inventor: Thomas Alan Taylor
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Publication number: 20120234391Abstract: The present disclosure relates to a method of manufacturing of a glass coated material that is suitable for use in the manufacture of flexible solar cells and other electronic devices. The invention is also to articles comprising the flexible solar cells described herein.Type: ApplicationFiled: September 14, 2011Publication date: September 20, 2012Applicant: E. I. DU PONT DE NEMOURS AND COMPANYInventors: Salah Boussaad, Damien Francis Reardon
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Publication number: 20120225305Abstract: Component manufactured of a polymer composition, which component has been plated with electrical conductive material to provide EMI shielding and which polymer composition contains (a) polyethylene terephthalate (b) glass fibres. The component preferably is a RF filter housing, more preferably a RF filter housing for use in base station for mobile telephone.Type: ApplicationFiled: November 17, 2010Publication date: September 6, 2012Inventor: Abel Frans Pot
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Publication number: 20120225304Abstract: Certain example embodiments relate to Ni-inclusive ternary alloy being provided as a barrier layer for protecting an IR reflecting layer comprising silver or the like. The provision of a barrier layer comprising nickel, chromium, and/or molybdenum and/or oxides thereof may improve corrosion resistance, as well as chemical and mechanical durability. In certain examples, more than one barrier layer may be used on at least one side of the layer comprising silver. In still further examples, a NixCryMoz-based layer may be used as the functional layer, rather than or in addition to as a barrier layer, in a coating.Type: ApplicationFiled: March 3, 2011Publication date: September 6, 2012Applicant: Guardian Industries Corp.Inventors: Muhammad Imran, Bernd Disteldorf, Marcus Frank, Richard Blacker
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Publication number: 20120196119Abstract: Metal products having improved properties and processes for preparing the metal products are provided. In an embodiment, the present disclosure provides for a metal product comprising a metal surface, an oxide layer and a glass layer. The glass layer is provided by coating a stable aqueous silicate or borosilicate solution onto the metal surface and curing the aqueous solution to produce a glass layer. The metal products have surface characteristics that outperform current anodized metal surfaces.Type: ApplicationFiled: April 10, 2012Publication date: August 2, 2012Applicant: MCT RESEARCH AND DEVELOPEMENTInventors: Hamlin Jennings, Jeffrey J. Thomas, Ramille M. Capito
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Patent number: 8231977Abstract: A multilayer sunshield lamination structure foamed on a sheet of vitreous material which includes at least one functional layer composed of a silver-based material that reflects infrared radiation and at least two dielectric coatings, each function layer being surrounded by dielectric coatings. The lamination structure, when deposited on an ordinary clear soda-lime float glass sheet 6 mm thick, has a solar factor SF of less than 45% and a light transmission LT of less than 70%. The lamination structure is composed of an essentially metal absorbent material based on the following elements: Pd, Pt, Au, Tr, Rh, Ru, Os, Co, Ni, Cu, Cr, La, Ce, Pr, Nd, W, Si, Zn, Mo, Mn, Ti, V, Nb, Hf, Ta and alloys thereof arranged in the immediate vicinity of the functional layer or included in this functional layer.Type: GrantFiled: May 10, 2006Date of Patent: July 31, 2012Assignee: AGC Glass EuropeInventors: Philippe Roquiny, Andre Hecq
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Publication number: 20120183708Abstract: A method of processing an alloy ingot or other alloy workpiece to reduce thermal cracking may generally comprise depositing a glass material onto at least a portion of a surface of a workpiece, and heating the glass material to form a surface coating on the workpiece that reduces heat loss from the workpiece. The present disclosure also is directed to an alloy workpieces processed according to methods described herein, and to articles of manufacture including or made from alloy workpieces made according to the methods.Type: ApplicationFiled: January 17, 2011Publication date: July 19, 2012Applicant: ATI Properties, Inc.Inventors: Ramesh S. Minisandram, Richard L. Kennedy, Robin M. Forbes Jones
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Publication number: 20120183785Abstract: High-temperature-resistant devitrifying solder glasses that contain 20-45 mol % BaO, 40-60 mol % SiO2, 0-30 mol % ZnO, 0-10 mol % Al2O3, 0-5 mol % BaF2, 0-2 mol % MgO, 0-2 mol % CaO, 0-2 mol % TiO2 and 0-10 mol % B2O3, as well as 0.5-4 mol % M2O3 (M=Y, La or rare earth metals) and/or 0.5-4 mol % ZrO2. The application, of said solder glasses are also disclosed.Type: ApplicationFiled: August 25, 2010Publication date: July 19, 2012Applicants: BORSIG PROCESS HEAT EXCHANGER GMBH, THYSSENKRUPP UHDE GMBHInventors: Steffen Schirrmeister, Bernd Langanke, Thomas Schiestel, Bjoern Hoting
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Patent number: 8221888Abstract: The present invention discloses a color filter by copper and silver film, comprising: a lower copper layer; a lower silver layer formed on the lower copper layer; a medium formed on the lower silver layer; an upper copper layer formed on the medium; and an upper silver layer formed on the upper copper layer.Type: GrantFiled: May 22, 2009Date of Patent: July 17, 2012Assignee: PixArt Imaging Inc.Inventors: Sen-Huang Huang, Chin-Poh Pang, Hsin-Hui Hsu
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Patent number: 8216671Abstract: The present invention relates to a luminescent glass element comprising a luminescent glass substrate, which a metal layer is positioned on a surface thereof. The metal layer is provided with a metal microstructure. The luminescent glass substrate has composite oxides represented as the following formula: aM2O.bY2O3.cSiO2.dCe2O3, wherein M represents alkali metal element, a, b, c and d are, by mol part, 25-60, 1-30, 20-70 and 0.001-10 respectively. The present invention also provides a producing method of the luminescent glass element and a luminescing method thereof. The metal layer is positioned on the luminescent glass substrate, thereby improving luminescence efficiency of the luminescent glass substrate. The luminescent glass element can be used in luminescent devices with ultrahigh brightness or high-speed operation.Type: GrantFiled: September 9, 2011Date of Patent: July 10, 2012Assignee: Ocean's King Lighting Science & Technology Co., Ltd.Inventors: Mingjie Zhou, Wenbo Ma, Yugang Liu
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Publication number: 20120171510Abstract: A ceramic plate with reflective film and method of manufacturing the same are provided. The ceramic plate with reflective film at least comprises a ceramic substrate and a reflective film. The reflective film at least includes a glass layer and a metal film with metal crystals. Each of the metal crystals possesses a particular diameter for providing high infrared reflectivity with a particular wavelength.Type: ApplicationFiled: April 12, 2011Publication date: July 5, 2012Applicant: TONG HSING ELECTRONIC INDUSTRIES, LTD.Inventors: Ta-Hsiang CHIANG, Chien-Cheng WEI
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Publication number: 20120171516Abstract: An coated article includes a substrate; and a coating deposited on the substrate, wherein the coating being a zirconium layer co-doped with M and R. M is at least one element selected from a group consisting of iron, cobalt, nickel, copper, niobium, hafnium and tantalum. R is at least one element selected from a group consisting of scandium, yttrium and lanthanide.Type: ApplicationFiled: June 27, 2011Publication date: July 5, 2012Applicants: HON HAI PRECISION INDUSTRY CO., LTD., HONG FU JIN PRECISION INDUSTRY (ShenZhen) CO., LTDInventors: HSIN-PEI CHANG, WEN-RONG CHEN, HUANN-WU CHIANG, CHENG-SHI CHEN, SHUN-MAO LIN
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Publication number: 20120171515Abstract: An coated article includes a substrate; and a coating deposited on the substrate, wherein the coating is a titanium layer mixed with a first element and a second element, M is at least one element selected from a group consisting of iron, cobalt, nickel, copper, niobium, hafnium and tantalum; R is at least one element selected from a group consisting of scandium, yttrium and lanthanide.Type: ApplicationFiled: June 27, 2011Publication date: July 5, 2012Applicants: HON HAI PRECISION INDUSTRY CO., LTD., HONG FU JIN PRECISION INDUSTRY (ShenZhen) CO., LTD.Inventors: HSIN-PEI CHANG, WEN-RONG CHEN, HUANN-WU CHIANG, CHENG-SHI CHEN, SHUN-MAO LIN
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Publication number: 20120146501Abstract: A luminescent element is disclosed including: a luminescent substrate; and a metal layer with a metal microstructure formed on a surface of the luminescent substrate; wherein the luminescent substrate comprises a luminescent material with a chemical composition of Y2SiO5:Tb. A preparation method of a luminescent element and a luminescence method are also provided. The luminescent element has good luminescence homogeneity, high luminescence efficiency, good luminescence stability and simple structure, and can be used in luminescent devices with ultrahigh brightness.Type: ApplicationFiled: August 26, 2009Publication date: June 14, 2012Applicant: OCEAN'S KING LIGHTING SCIENCE & TECHNOLOGY CO.,LTDInventors: Mingjie Zhou, Wenbo Ma, Yugang Liu, Jing Tang, Chaopu Shi, Qingtao Li
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Patent number: 8182929Abstract: The present invention provides a solar absorptive material for a solar selective surface of an absorber of solar radiation. The solar absorptive material comprises a dispersed metallic material and a receiving boundary through which the solar radiation is received. Further, the solar absorptive material comprises a first region and a second region. The first region being located at a position closer to the receiving boundary than the second region and the first region has an average volume fraction of the dispersed metallic material that is larger than that of the second region.Type: GrantFiled: March 3, 2006Date of Patent: May 22, 2012Assignee: The University of SydneyInventors: Yongbai Yin, Lingxia Hang, David Mills
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Patent number: 8178205Abstract: A multilayer polyurethane or polyurea erosion resistant coating with a matte topcoat over a primer layer and filled basecoat layer used to protect the leading edge against high speed liquid or solid particle erosion for helicopter rotor blades, propellers and other articles using polyurethane or polyurea compositions.Type: GrantFiled: June 14, 2010Date of Patent: May 15, 2012Assignee: Hontek CorporationInventor: Shek C. Hong
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Publication number: 20120114973Abstract: A thermal processing and consolidation system is provided that includes an upper chamber assembly lower chamber assembly, layup and demolding station, transfer assembly, automatic or permanent coupling system, and controller. The upper and lower chamber assemblies are coupled to form an enclosed plenum operable to maintain a pressurized environment about a tool. The layup and demolding station receives the tool and facilitates the layup, bagging and sealing of unprocessed components at the tool. A transfer assembly accurately positions the tool on the lower chamber assembly in alignment with the upper chamber assembly. An automatic or permanent coupling system provides services to the tool and the enclosed plenum. A controller directs services to be supplied to the enclosed plenum and tool in accordance with a set of process parameters. This set of process parameters allows an individual set of unprocessed components to be thermally processed and consolidated.Type: ApplicationFiled: November 7, 2011Publication date: May 10, 2012Applicant: GLOBE MACHINE MANUFACTURING COMPANYInventors: Ronald M. JACOBSEN, Antonin PELC, Calvin D. BAMFORD, JR., Terrance William COOKE, Victor Wayne CROSTON, Russell Carver WARRICK
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Patent number: 8168300Abstract: The present invention provides a method of producing an electromagnetic interference shield glass, which comprises (a) forming a conductive pattern on at least one side of a front side and a rear side of the glass by using a conductive paste comprising a colored glass frit, and (b) firing the conductive pattern to blacken the conductive pattern, and a blackened electromagnetic interference shield glass.Type: GrantFiled: April 2, 2008Date of Patent: May 1, 2012Assignee: LG Chem, Ltd.Inventors: Seung-Wook Kim, Dong-Wook Lee, Sang-Ki Chun, In-Seok Hwang
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Patent number: 8147975Abstract: A plasma display panel (PDP) includes a frameless EMI filter supported by a glass substrate for blocking/shielding substantial amounts of electromagnetic waves, with the filter being supported by a side of the substrate opposite a viewer. In certain example embodiments, the PDP filter includes a transparent conductive coating (TCC) for electromagnetic interference (EMI) and near infrared (NIR) blocking without the need for a conductive, peripheral buss bar. Additionally, in certain example embodiments, the need for a conductive frame is reduced or eliminated. The filter has high visible transmission, and is capable of blocking/shielding electromagnetic waves.Type: GrantFiled: November 6, 2008Date of Patent: April 3, 2012Assignee: Guardian Industries Corp.Inventors: Willem den Boer, Philip J. Lingle
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Patent number: 8147972Abstract: A coated article is provided that may be used as a vehicle windshield, insulating glass (IG) window unit, or the like. Ion beam treatment is performed on a layer(s) of the coating. For example, a silicon nitride layer of a low-E coating may be ion beam treated. It has been found that ion beam treatment, for example, of a silicon nitride underlayer is advantageous in that sodium migration from the glass substrate toward the IR reflecting layer(s) can be reduced during heat treatment.Type: GrantFiled: May 18, 2009Date of Patent: April 3, 2012Assignee: Guardian Industries Corp.Inventor: Vijayen S. Veerasamy
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Patent number: 8147969Abstract: The invention relates to a substrate (1) provided with a thin-film multilayer comprising an alternation of n functional layers (3) having reflection properties in the infrared and/or in solar radiation, and (n+1) coatings (2, 5), where n?1, said coatings being composed of a layer or a plurality of layers (2a, 2b, 5a, 5b), characterized in that, in order to preserve the optical and/or mechanical quality of the multilayer in the case in which the substrate (1) provided with said multilayer is subjected to a heat treatment of the toughening, bending or annealing type, at least one of the functional layers (3) includes a blocker coating (4) consisting of: on the one hand, a “protection” layer made of a material capable of helping to protect the functional layer from oxidizing and/or nitriding attack, immediately in contact with said functional layer; and on the other hand, at least one “adhesion” layer made of a material capable of promoting adhesion, immediately in contact with said “protection” layer.Type: GrantFiled: April 27, 2005Date of Patent: April 3, 2012Assignee: Saint-Gobain Glass FranceInventors: Laurent LaBrousse, Eric Petitjean
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Patent number: 8147976Abstract: A method is described herein for sintering a frit to a glass plate where the sintered frit and glass plate are subsequently sealed to another glass plate to form a sealed glass package. Examples of the sealed glass package include a light-emitting device (e.g., organic light emitting diode (OLED) device), a photovoltaic device, a food container, and a medicine container.Type: GrantFiled: June 29, 2011Date of Patent: April 3, 2012Assignee: Corning IncorporatedInventors: Heather Debra Boek, John W Botelho, Jason Arthur Howles