Zinc Or Aluminium Containing Patents (Class 252/389.52)
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Patent number: 11702553Abstract: A method to prevent corrosion of a susceptible article of a two-article system, in which first and second articles of the two-article system have surfaces facing one another and in which the two articles have different anodic indices includes applying a coating material to the surface of the first article and curing the coating material on the surface of the first article. The method further includes contacting and securing the surface of the first article with the surface of the second article. The two articles exhibit substantially no corrosion following exposure to a corrosive environment under standard GMW17026 for a 15 year simulated test.Type: GrantFiled: November 29, 2021Date of Patent: July 18, 2023Assignee: Nylok LLCInventors: Jeffrey M. Stupar, Franco A. Cisternino, Eugene D. Sessa, Robin F. Monahan
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Patent number: 11692275Abstract: Corrosion inhibitor compositions are provided that can include a mixture of one or more alkaline earth metals, one or more organic phosphates, one or more inorganic phosphates, optionally a dispersant, and hydroxyphosphono acetic acid and/or salts thereof and/or derivatives of hydroxyphosphono acetic acid and/or salts thereof. Methods of mitigating or inhibiting corrosion of metal surfaces are also disclosed. The methods can include the steps of adding a corrosion inhibitor composition as described in the present disclosure to a medium in contact with the metal surface and optionally to the metal surface before it is contacted by the medium.Type: GrantFiled: February 10, 2021Date of Patent: July 4, 2023Assignee: ECOLAB USA INC.Inventors: Ana Ferrer Carrera, Yolanda Maria De-Abreu
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Patent number: 10407353Abstract: The present technology relates to a micronutrient fertilizer comprising immediate release and sustained release components contained within a hydrated polyelectrolyte solution. The fertilizer is readily dispersed and stable over long periods of time.Type: GrantFiled: September 10, 2015Date of Patent: September 10, 2019Assignee: Sun Chemical CorporationInventors: Anthony Rohrer, Jonathan Doll, Lisa Clapp
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Patent number: 10253188Abstract: A composition to cover a metal surface comprises an organic continuous phase comprising at least one anticorrosive pigment, and a hydrophilic phase dispersed in the organic continuous phase, the hydrophilic phase comprising a chemical agent for the surface treatment of the metal surface. The surface treatment chemical agent can advantageously be cerium nitrate. A process for the manufacture of a composition according to the present invention is provided.Type: GrantFiled: July 16, 2014Date of Patent: April 9, 2019Assignee: SOCIETE NOUVELLE DES COULEURS ZINCIQUESInventors: Christelle Berteloot, Ludovic Mavel, Alexander Gibb, Jérôme Bibette, Damien Demoulin
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Patent number: 9376644Abstract: The lubricant composition of this invention comprises a base oil and an additive, which is at least one selected from the group consisting of an organic sulfonate, a carboxylate, a thiocarbamate and a thiophosphoric acid ester salt. The lubricant composition can effectively suppress hydrogen embrittlement-caused flaking of an element, such as a rolling bearing, a sliding bearing, a gear, a ball thread, a linear guide, a linear bearing, a cam and various joints in a high concentration hydrogen environment. The invention provides also a rolling bearing, a sliding bearing, a gear, a ball thread, a linear guide, a linear bearing, a cam and various joints using the lubricant composition.Type: GrantFiled: June 23, 2014Date of Patent: June 28, 2016Assignee: KYODO YUSHI CO., LTD.Inventors: Toshiaki Endo, Da Ming Dong, Yutaka Imai
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Patent number: 9005355Abstract: Anticorrosive coating compositions as disclosed comprise a binding polymer and an aluminum phosphate corrosion inhibiting pigment dispersed therein. The coating composition comprises up to 25 percent by weight aluminum phosphate. The binding polymer can include solvent-borne polymers, water-borne polymers, solventless polymers, and combinations thereof. The aluminum phosphate is made by sol gel process of combining an aluminum salt with phosphoric acid and a base material. Aluminum phosphate colloidal particles are nanometer sized, and aggregate to form substantially spherical particles. The coating composition provides a controlled delivery of phosphate anions of 100 to 1,500 ppm, depending on post-formation treatment of the aluminum phosphate, and has a total solubles content of less than 1500 ppm, The amorphous aluminum phosphate is free of alkali metals and alkaline earth metals, and has a water adsorption potential of up to about 25 percent by weight water when present in a cured film.Type: GrantFiled: October 15, 2010Date of Patent: April 14, 2015Assignee: Bunge Amorphic Solutions LLCInventor: Raymond E. Foscante
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Patent number: 8932491Abstract: The present invention relates to a composition for an anti-corrosive coating agent and a manufacturing method for same. The present invention includes: a metal flake; a sol-gel resin; a polyurethane prepolymer having NCO % of 2.5-3.1 and average molecular weight of 70,000-100,000; and a solvent.Type: GrantFiled: January 27, 2011Date of Patent: January 13, 2015Assignee: L'Beste Gat Ltd.Inventors: Hyung Oh Lee, Hyun Min Kim, Jeung Euy Song, Soo Ryang Park, Kyong Ho Jang
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Patent number: 8932492Abstract: The present invention relates to an energy-saving anti-corrosive metal film composition and manufacturing method for the same. The energy-saving anti-corrosive metal film composition includes: at least one metal powder selected from the group consisting of aluminum, magnesium, and alloys thereof, having particle size of 5-10 um; a first sol-gel resin selected from the group consisting of zirconium tetra-n-butanolate, zirconium butoxide, isopropyl titanate, and mixtures thereof; a second sol-gel resin selected from the group consisting of tris[3-(trimethoxysilyl)propyl] isocyanurate, gamma-meta-acryloxypropyl trimethoxysilane and n-phenyl-gamma-aminopropyltrimetoxysilane, and mixtures thereof; and a solvent.Type: GrantFiled: January 27, 2011Date of Patent: January 13, 2015Assignee: L'Beste Gat Ltd.Inventors: Hyung Oh Lee, Hyun Min Kim, Jeung Euy Song, Soo Ryang Park
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Publication number: 20140315004Abstract: Corrosion inhibition systems, including coated substrates, coating materials and corrosion inhibition compounds, and methods of making the same are disclosed. These systems and methods include corrosion inhibition compounds that are responsive to corrosion at a surface, releasing active inhibitor groups upon a corrosion stimulus. The active inhibitor groups are selected to block corrosion at the surface by inhibiting oxidation reactions, reduction reactions and/or by forming a passivation layer.Type: ApplicationFiled: April 19, 2013Publication date: October 23, 2014Applicant: The Boeing CompanyInventor: The Boeing Company
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Publication number: 20140186210Abstract: Water treatment compositions are provided that are effective for mitigating corrosion or fouling of surfaces in contact with aqueous systems. The water treatment compositions can include one or more azole compounds, one or more transition metals, and one or more dispersants, in addition to various other additives. The water treatment compositions can exclude phosphorus and still be effective. Methods for mitigating corrosion or fouling of a surface in an aqueous system are also provided.Type: ApplicationFiled: December 28, 2012Publication date: July 3, 2014Inventor: JASBIR S. GILL
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Patent number: 8722147Abstract: A corrosion resistant primer coating comprises one or more corrosion inhibiting additives; and one or more nonaqueous resins, and the method of making and using the primer coating. The corrosion inhibiting additive comprises metal ferrate(IV) compounds, metal ferrate(V) compounds, metal ferrate(VI) compounds, or a mixture thereof (collectively called the ferrate compound). The ferrate compound has a low solubility in water in the range of about 0.001 ppm to about 2000 ppm at a temperature in the range of about 0° C. to 71° C.Type: GrantFiled: October 19, 2009Date of Patent: May 13, 2014Assignee: Battelle Memorial InstituteInventors: Bruce F. Monzyk, Jerad A. Ford, John T. Stropki, David N. Clark, Vinay V. Gadkari, Katherine P. Mitchell
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Patent number: 8637158Abstract: The present invention relates to a polymerizable composition and to a method for coating metal surfaces, in particular steel, galvanized and alloy-galvanized steel, and also aluminum and alloys thereof, as protection against corrosion. The polymerizable composition preferably contains less than 10% by weight of portions which are not incorporated in the cured coating. In a further aspect, the invention relates to the use of the claimed composition for coating workpieces consisting of the above-mentioned metals, particularly metal surfaces in blanking lines (coil coating). The present invention therefore also comprises the use of metal surfaces, coated according to the invention, for the production of “white goods” (household appliances), automobile bodies, electronic component housings, and for the building trade and the transport sector.Type: GrantFiled: September 23, 2009Date of Patent: January 28, 2014Assignee: Henkel AG & Co. KGaAInventors: Jörg Sander, Jürgen Stodt, Holger Endres
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Publication number: 20130327992Abstract: The disclosed invention relates to corrosion resistant additive composition comprising an aniline oligomer and a catalyst. The invention also relates to a coating composition comprising the foregoing corrosion resistant additive composition and a resin that is reactive with the aniline oligomer, the catalyst being present at an effective concentration to effect room temperature cure of the coating composition.Type: ApplicationFiled: June 12, 2013Publication date: December 12, 2013Applicant: CBI POLYMERS, INC.Inventors: Garry J. Edgington, Andreas Mylonakis
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Patent number: 8603392Abstract: Corrosion-inhibited hypochlorite compositions and methods of use are disclosed. Corrosion inhibitors including sugar acids and calcium compounds, polyacrylate and calcium compounds, and/or zinc and calcium compounds are used with hypochlorite sources to enhance the longevity and performance of electrochemical cells as well as reducing corrosion of metal in contact with the generated hypochlorite sources. The methods for generation employ a variety of electrochemical cells, beneficially including use of portable electrochemical cell system for production of corrosion-inhibited hypochlorite cleaning solutions.Type: GrantFiled: June 25, 2012Date of Patent: December 10, 2013Assignee: Ecolab USA Inc.Inventors: Jenna Johnson, Kim R. Smith, Erik C. Olson, Steven E. Lentsch
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Patent number: 8585812Abstract: A novel method for the removal and prevention of rust from corroded iron surfaces is disclosed. This is done by inducing reducing conditions at the interphase between the rusted surface and the attached aluminum surface. An iron coating provided by the reducing conditions surrounds the clean iron and creates a barrier against future rust. Our technology is an oxygen displacement technology which essentially removes rust from iron and iron based tools and structures. It is cost effective, non-invasive, environmentally friendly and can be mass produced.Type: GrantFiled: December 12, 2011Date of Patent: November 19, 2013Assignee: Jackson State UniversityInventors: Hari Har Parshad Cohly, Rajendram V. Rajnarayanan, Bharat Subodh Agrawal, Hui Chu Tsai
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Patent number: 8496853Abstract: Corrosion inhibitor compositions and methods of use are disclosed. Zinc and calcium corrosion inhibitors combined with hypochlorite sources provide use solutions for effective corrosion inhibition for metal surfaces.Type: GrantFiled: June 12, 2012Date of Patent: July 30, 2013Assignee: Ecolab USA Inc.Inventors: Erik C. Olson, Kim R. Smith, Steven E. Lentsch
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Patent number: 8409478Abstract: The invention relates to a flame retardant composition, particularly designed for fire fighting with aerial means. The retardant composition comprises a liquid ammonium polyphosphate of chain length with a value of n between 2 and 3, n being the number of condensation groups, and an ammonium polyphosphate in powder form in suspension, with a chain length with a value of n between 100 and 1500. In addition to the above, the flame retardant composition comprises corrosion inhibitors, in particular zinc orthophosphate dihydrate, and at least one surfactant agent as wetting agent or dispensing agent, an organic or inorganic thickening agent and at least one coloring agent.Type: GrantFiled: May 20, 2008Date of Patent: April 2, 2013Assignee: Budenheim Iberica, S.L. Sociedad En ComanditaInventors: Vicente Mans Fibla, David Garcia Martinez
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Publication number: 20130032853Abstract: The present invention relates to a silver anti-tarnish agent having, as an effective component, a zinc salt and/or a zinc complex, preferably at least one kind selected from the group consisting of a carboxylic acid zinc salt having a carbon atom number of 3 to 20, a phosphoric acid zinc salt, a phosphate ester zinc salt and a carbonyl compound zinc complex; a silver anti-tarnish method for preventing tarnish of a silver part by applying said silver anti-tarnish agent to the silver part. According to the present invention, tarnish of a silver part such as a silver-plated part due to a sulfur-based gas can be prevented. The present invention is useful particularly as a silver anti-tarnish agent for a light-emitting diode and allows preventing tarnish of a silver part of a light-emitting diode and reduction in illuminance by applying the silver anti-tarnish agent of the present invention to a silver part such as a silver-plated part of a light-emitting diode for covering the silver part.Type: ApplicationFiled: April 20, 2011Publication date: February 7, 2013Applicant: NIPPON KAYAKU KABUSHIKI KAISHAInventors: Yoshihiro Kawata, Chie Sasaki, Masato Yarita, Shizuka Aoki, Masataka Nakanishi
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Patent number: 8343380Abstract: Corrosion inhibitor compositions and methods of use are disclosed. Sugar acids and calcium corrosion inhibitors combined with hypochlorite sources provide use solutions for effective corrosion inhibition for metal surfaces.Type: GrantFiled: November 9, 2011Date of Patent: January 1, 2013Assignee: Ecolab USA Inc.Inventors: Kim R. Smith, Erik C. Olson, Steven E. Lentsch
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Publication number: 20120298929Abstract: This is to provide reducing agent composition for a conductive metal paste which improves the pot life of the conductive metal paste and controls fluctuation of a connection resistance value, and a process for preparing the same, and a conductive metal paste. It is a reducing agent composition for a conductive metal paste comprising at least one compound selected from the group consisting of a hydroxyquinoline compound, an aromatic amino alcohol compound, an aromatic amine compound, an anthraquinone compound, an indole compound and an indane compound, and an organic aluminum compound. It is a conductive metal paste comprising the above-mentioned reducing agent composition for a conductive metal paste, metal conductive particles and a resin. It is a method for preparing the reducing agent composition for a conductive metal paste comprising the step of mixing the above-mentioned compound and the organic aluminum compound at a temperature of 5 to 30° C. for within 30 minutes.Type: ApplicationFiled: February 4, 2011Publication date: November 29, 2012Inventors: Noritsuka Mizumura, Takashi Yamaguchi
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Patent number: 8288000Abstract: Coating compositions are disclosed that include corrosion resisting particles such that the coating composition can exhibit corrosion resistance properties. Also disclosed are substrates at least partially coated with a coating deposited from such a composition and multi-component composite coatings, wherein at least one coating later is deposited from such a coating composition. Methods and apparatus for making ultrafine solid particles are also disclosed.Type: GrantFiled: August 13, 2007Date of Patent: October 16, 2012Assignee: PPG Industries Ohio, Inc.Inventors: Kaliappa G. Ragunathan, John R. Schneider
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Patent number: 8287764Abstract: The invention relates to coated particles comprising a core material and a shell and wherein said core material is an organic compound and wherein said shell comprises a layered double hydroxide comprising a hydroxide or an organic anion as charge-balancing anion.Type: GrantFiled: July 20, 2009Date of Patent: October 16, 2012Assignee: Akzo Nobel N.V.Inventors: Cornelis Elizabeth Johannus Van Lare, Auke Gerardus Talma, Hendrika Petronella Maria Verlaan-Hooft
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Patent number: 8277688Abstract: This invention relates to galvanic aluminum alloy powder-pigments coated with a semi-conducting corrosion inhibiting oxide and the process for preparing said coated powder-pigments in combination with film-forming binders for coating metal substrates to inhibit corrosion. The coated aluminum alloy powder-pigments are electrically active and prevent corrosion of metals which are more cathodic (electropositive) than the aluminum alloy pigments.Type: GrantFiled: July 27, 2011Date of Patent: October 2, 2012Assignee: The United States of America as represented by the Secretary of the NavyInventors: Craig Matzdorf, William Nickerson
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Patent number: 8262938Abstract: Chromate-free corrosion-inhibiting coating compositions comprising film-forming binders and galvanic aluminum alloy powders prepared in an oxygen (oxidizing), nitrogen (inert) or nitrogen-hydrogen (reducing) atmosphere having particle sizes ranging up to 100 microns. The aluminum alloy powders having the formula: aluminum-zinc-X (AlZnX) wherein X is an element selected from the group consisting of indium, gallium, tin and bismuth. Improvement in corrosion protection is obtained by the addition of chemical inhibitors such as an azole or talcite clay to the coating which further inhibits the self-corrosion of the aluminum alloy and extends the corrosion protection of the metal substrate being protected.Type: GrantFiled: January 21, 2011Date of Patent: September 11, 2012Assignee: The United States of America, as represented by the Secretary of the Navy.Inventors: Craig Matzdorf, William Nickerson
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Publication number: 20120187343Abstract: Chromate-free corrosion-inhibiting coating compositions comprising film-forming binders and galvanic aluminum alloy powders prepared in an oxygen (oxidizing), nitrogen (inert) or nitrogen-hydrogen (reducing) atmosphere having particle sizes ranging up to 100 microns. The aluminum alloy powders having the formula: aluminum-zinc-X (AlZnX) wherein X is an element selected from the group consisting of indium, gallium, tin and bismuth. Improvement in corrosion protection is obtained by the addition of chemical inhibitors such as an azole or talcite clay to the coating which further inhibits the self-corrosion of the aluminum alloy and extends the corrosion protection of the metal substrate being protected.Type: ApplicationFiled: January 21, 2011Publication date: July 26, 2012Inventors: Craig Matzdorf, William Nickerson
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Publication number: 20120183806Abstract: Disclosed are pretreatment compositions and associated methods for treating metal substrates with pretreatment compositions, including ferrous substrates, such as cold rolled steel and electrogalvanized steel. The pretreatment composition includes: (a) a group IIIB and/or IVB metal; (b) free fluorine; (c) a source of aluminum ions; and (d) water. The methods include contacting the metal substrates with the pretreatment composition.Type: ApplicationFiled: January 17, 2011Publication date: July 19, 2012Applicant: PPG Industries, Inc.Inventors: Mark W. McMillen, Edward F. Rakiewicz, Mark W. Simpson, James A. DeChant
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Patent number: 8182888Abstract: A polymer with a backbone and an unsaturated side chain attached to the backbone. The polymer may optionally be combined with an oxidation catalyst and/or other ingredients.Type: GrantFiled: July 8, 2011Date of Patent: May 22, 2012Assignee: Valspar Sourcing, Inc.Inventors: Paul E. Share, Keith R. Pillage, Charles I. Skillman, Paul E. Fuchs
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Publication number: 20120119152Abstract: This invention relates to novel corrosion inhibitors which are capable of sequestering metal ions such as calcium and magnesium and are derived in part from renewable carbohydrate feedstocks. The corrosion inhibitors are mixtures containing one or more hydroxycarboxylic acid salts and one or more suitable oxoacid anion salts.Type: ApplicationFiled: November 10, 2011Publication date: May 17, 2012Inventors: Tyler N. Smith, Donald E. Kiely, Kylie Kramer-Presta
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Patent number: 8128841Abstract: A method and composition are provided for the operation of an evaporative cooling tower with minimal, or no, blowdown. In some embodiments, the method involves using sodium cation-exchanged softened water as makeup water for the cooling tower, providing a bypass filter for suspended solids removal from the cooling water, treating the cooling water with a composition for control of corrosion and deposition, and using an effective biocide for control of biological growth within the cooling tower system. In some embodiments, a composition is provided that comprises AMPS acrylic terpolymer, sodium silicate, phosphate ions, and polyphosphate ions. When dosed at the recommended levels, the composition controls corrosion of cooling system materials to generally acceptable levels in spite of the extremely corrosive environment resulting from the cycling of sodium cation-exchanged softened water in the cooling tower.Type: GrantFiled: September 11, 2009Date of Patent: March 6, 2012Assignee: Prochemtech International, Inc.Inventor: Timothy E. Keister
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Patent number: 8114344Abstract: Corrosion inhibitor compositions and methods of use are disclosed. Sugar acids and calcium corrosion inhibitors combined with hypochlorite sources provide use solutions for effective corrosion inhibition for metal surfaces.Type: GrantFiled: December 21, 2010Date of Patent: February 14, 2012Assignee: Ecolab USA Inc.Inventors: Kim R. Smith, Erik C. Olson, Steven E. Lentsch
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Patent number: 8114343Abstract: Corrosion inhibitor compositions and methods of use are disclosed. Zinc and calcium corrosion inhibitors combined with hypochlorite sources provide use solutions for effective corrosion inhibition for metal surfaces.Type: GrantFiled: December 21, 2010Date of Patent: February 14, 2012Assignee: Ecolab USA, Inc.Inventors: Kim R. Smith, Erik C. Olson, Steven E. Lentsch
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Patent number: 8043531Abstract: The invention provides a surface conditioner which can prevent an aluminum alloy from stray current corrosion in chemical conversion treatment and reduce the difference between contact and noncontact areas in conversion coating build-up on an aluminum alloy and which enables the formation of excellent chemical conversion coatings on various metal materials and a surface conditioner which can prevent metal from rusting after surface conditioning and is excellent in dispersion stability in a treating bath. A surface conditioner to be applied prior to the phosphating of metal which contains (A) zinc phosphate particles having D50 of 3 ?m or below, (B) a water-soluble organic polymer, and (C) a layer clay mineral and has a pH of 3 to 12, characterized by further containing as the function imparting agent (D) a di- or tri-valent metal nitrite, zinc oxide and/or sodium hydroxide, or a nonionic or anionic surfactant.Type: GrantFiled: July 28, 2006Date of Patent: October 25, 2011Assignee: Nippon Paint Co., Ltd.Inventors: Toshiko Nakazawa, Seiichiro Shirahata
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Patent number: 8012373Abstract: An anti-corrosion compound including a hydrocarbon grease and an aluminum/indium/zinc powder blended into the hydrocarbon grease.Type: GrantFiled: May 12, 2009Date of Patent: September 6, 2011Assignee: Raytheon CompanyInventor: Robert E. Walsh
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Publication number: 20110200754Abstract: A corrosion resistant primer coating comprises one or more corrosion inhibiting additives; and one or more nonaqueous resins, and the method of making and using the primer coating. The corrosion inhibiting additive comprises metal ferrate(IV) compounds, metal ferrate(V) compounds, metal ferrate(VI) compounds, or a mixture thereof (collectively called the ferrate compound). The ferrate compound has a low solubility in water in the range of about 0.001 ppm to about 2000 ppm at a temperature in the range of about 0° C. to 71° C.Type: ApplicationFiled: October 19, 2009Publication date: August 18, 2011Applicant: BATTELLE MEMORIAL INSTITUTEInventors: Bruce F. Monzyk, Jerad A. Ford, John T. Stropki, David N. Clark, Vinay V. Gadkari, Katherine P. Mitchell
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Patent number: 7981322Abstract: In the invention, use is made of at least one metal organosilicate polymer, in the form of particles, having one of the following formulae I and II: R4Si4Al2O8(OH)x,??Formula I: R8Si8M6O16(OH)y,??Formula II: for the protection from oxidation and/or electromagnetic radiation of a compound sensitive to oxidation and/or to electromagnetic radiation. The invention finds application in particular in the field of the protection from oxidation and photoaging of various materials.Type: GrantFiled: December 5, 2008Date of Patent: July 19, 2011Assignee: Commissariat a l'Energie AtomiqueInventors: Olivier Poncelet, Olivier Raccurt, Olivier Renard, Jorice Samuel
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Publication number: 20110133128Abstract: The invention relates to coated particles comprising a core material and a shell and wherein said core material is an organic compound and wherein said shell comprises a layered double hydroxide comprising a hydroxide or an organic anion as charge-balancing anion.Type: ApplicationFiled: July 20, 2009Publication date: June 9, 2011Applicant: Akzo Nobel N.V.Inventors: Cornelis Elizabeth Johannus Van Lare, Auke Gerardus Talma, Hendrika Petronella Maria Verlaan-Hooft
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POLYANILINE, METHOD FOR MANUFACTURING SAME, AND POLYANILINE-CONTAINING SOLUTION AND COATING MATERIAL
Publication number: 20110012065Abstract: A method for manufacturing a polyaniline by preparing an aniline mixed solution in which an antirust additive and at least one of aniline and aniline derivatives are mixed and polymerizing at least one of the aniline and the aniline derivatives by adding a polymerization initiator to the aniline mixed solution, polyaniline obtained by the method, a polyaniline-containing solution, and a coating material containing the polyaniline.Type: ApplicationFiled: September 26, 2008Publication date: January 20, 2011Applicant: TOYOTA JIDOSHA KABUSHIKI KAISHAInventors: Noriyuki Kuramoto, Shigeyoshi Maeda, Yu Takada, Masahiko Ishii -
Publication number: 20100288978Abstract: An anti-corrosion compound including a hydrocarbon grease and an aluminum/indium/zinc powder blended into the hydrocarbon grease.Type: ApplicationFiled: May 12, 2009Publication date: November 18, 2010Inventor: Robert E. Walsh
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Patent number: 7820076Abstract: The invention relates to an oleaginous mildew and corrosion-inhibiting composition, and the use of said composition to protect metal from corrosion and mildew. The composition comprises, in parts by weight, from about 20 to 60 parts of an oleaginous material such as a lubricating oil, 10 to 40 parts of organic solvent, 20 to 60 parts of corrosion-inhibitor consisting of a sulfonic acid-carboxylic acid metal complex or a mixture of said metal complex with a small but effective amount of an oil soluble alkyl phosphate, from 0.1 to 2.0 parts of an oil soluble antioxidant, from 0.0 to 5.0 parts of a water-displacing compound, an effective amount of a mildew-inhibiting compound, and from 0.0 to 1.0 part of a heterocyclic metal deactivator.Type: GrantFiled: December 20, 2005Date of Patent: October 26, 2010Assignee: The United States of America as represented by the Secretary of the NavyInventors: El Sayed S. Arafat, Craig A. Matzdorf, James A. Whitfield
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Publication number: 20100233471Abstract: The anti-corrosion coating material contains corrosion inhibiting inorganic constituents, or a combination of inorganic and organic corrosion inhibiting constituents, suspended in a polymeric resin. The corrosion resistant composition includes a salt of inorganic constituents, and alkaline polyamine fatty acid salt (PFAS) as a corrosion inhibitor, suspended in a polymeric resin remainder. The coating material may be applied to metal parts but not limited to aircraft fasteners, such as aircraft fastener parts, including nuts and bolts, screws, rivets, and sleeved systems.Type: ApplicationFiled: August 5, 2009Publication date: September 16, 2010Inventors: Jeffrey Hayes, Johan Stephan
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Patent number: 7794531Abstract: An organic solderability preservative (OSP) composition comprising an alkyl cyclic alcohol and an azole compound having enhanced composition stability against crystallization of the azole compound.Type: GrantFiled: January 8, 2007Date of Patent: September 14, 2010Assignee: Enthone Inc.Inventors: Joseph A. Abys, Shenliang Sun
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Patent number: 7776233Abstract: The invention relates to an oleaginous corrosion-inhibiting composition, and the use of said composition to protect metal from corrosion. The composition comprises, in parts by weight, from about 20 to 60 parts of lubricating oil, 10 to 40 parts of organic solvent, 20 to 60 parts of corrosion-inhibitor consisting of a sulfonic acid-carboxylic acid metal complex or a mixture of said metal complex with a small but effective amount of an oil soluble alkyl phosphate, from 0.1 to 2.0 parts of an oil soluble antioxidant, from 0.1 to 5.0 parts of a water-displacing compound and from 0.0 to 1.0 part of a metal deactivator.Type: GrantFiled: October 27, 2005Date of Patent: August 17, 2010Assignee: The United States of America as represented by the Secretary of the NavyInventors: El Sayed Arafat, Judy Butler-Kowalik, Kenneth Clark, David L. Gauntt
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Patent number: 7767111Abstract: A surface conditioner contains zinc phosphate particles of D50 of 3 ?m or less and has a pH of 3 to 12, and also contains at least one of (1) carboxylate group-containing copolymers obtained by copolymerizing a monomer composition containing at least one species selected from acrylic acid, maleic acid, maleic anhydride, itaconic acid and itaconic anhydride in an amount less than 50% by weight and at least one species selected from the group consisting of a sulfonic acid monomer, styrene, olefin monomers, amino group-containing monomers and certain polyoxyalkylene derivatives, (2) certain polyamino acids, and (3) certain phosphate esters.Type: GrantFiled: February 18, 2005Date of Patent: August 3, 2010Assignee: Nippon Paint Co., Ltd.Inventor: Toshiko Nakazawa
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Publication number: 20100081001Abstract: The present invention relates to a polymerizable composition and to a method for coating metal surfaces, in particular steel, galvanized and alloy-galvanized steel, and also aluminum and alloys thereof, as protection against corrosion. The polymerizable composition preferably contains less than 10% by weight of portions which are not incorporated in the cured coating. In a further aspect, the invention relates to the use of the claimed composition for coating workpieces consisting of the above-mentioned metals, particularly metal surfaces in blanking lines (coil coating). The present invention therefore also comprises the use of metal surfaces, coated according to the invention, for the production of “white goods” (household appliances), automobile bodies, electronic component housings, and for the building trade and the transport sector.Type: ApplicationFiled: September 23, 2009Publication date: April 1, 2010Applicant: Henkel AG & CO. KGaAInventors: Jörg Sander, Jürgen Stodt, Holger Endres
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Patent number: 7678184Abstract: Coatings containing particulate metal alloy are disclosed. The coatings provide corrosion protection to a substrate, such as a metal substrate. The coatings contain zinc-metal-containing alloy in flake form, most particularly an alloy flake of zinc and aluminum. The coating can be from compositions that are water-based or solvent-based. The compositions for providing the coating may also contain a substituent such as a water-reducible organofunctional silane, or a hexavalent-chromium-providing substance, or a titanate polymer, or a silica substance constituent. the coating may desirably be topcoated.Type: GrantFiled: October 14, 2008Date of Patent: March 16, 2010Assignee: Metal Coatings International Inc.Inventors: Etienne G. Maze, Gilbert L. Lelong, Terry E. Dorsett, Donald J. Guhde, Toshio Nishikawa
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Patent number: 7659397Abstract: Zinc pyrithione and copper pyrithione are highly evaluated in the market as an antidandruff agent for shampoo, or an antifouling agent for ship bottom paint and fish-farming net, or an antibacterial/antifungal agent or preservative/mildewcide for industrial products and household articles. For enhancing the market value thereof, there has been a demand for a product that not only attains an increase in conventional antibacterial/antifungal effects but also exhibits novel bioactive effects and that achieves improvement with respect to problems and drawbacks relating to properties, such as solubility in seawater, and stability, such as thermal stability and weather resistance, of polymer materials. There is provided a novel pyrithione complex compound obtained by converting the conventional pyrithione metal salt to a complex compound with an oxide or hydroxide of metal such as zinc, copper or aluminum.Type: GrantFiled: October 22, 2004Date of Patent: February 9, 2010Assignee: YHS Ltd.Inventor: Yasuhiro Hidaka
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Publication number: 20090214883Abstract: Chromium-free, curable corrosion protection composition for primary coating of metallic substrates, which has a pH in the range from 1 to 3 and contains water and a) fluorocomplex ions of titanium and/or zirconium, b), at least one corrosion protection pigment, c) at least one organic polymer which is soluble or dispersible in water in the specified pH range and on its own in aqueous solution at a concentration of 50% by weight has a pH in the range from 1 to 3, process for treating metal strip with this composition and treated metal strip which can be obtained in this way. The organic polymer c) is preferably selected so that it contains at least one monomer selected from among acrylic acid, methacrylic acid, acrylic esters and methacrylic esters as free-radically polymerizable, ethylenically unsaturated monomers and has at least one type of functional groups selected from among epoxy, silane, hydroxy, carboxyl, phosphoric acid and phosphoric ester groups.Type: ApplicationFiled: February 23, 2009Publication date: August 27, 2009Inventors: Ard De Zeeuw, Marcel Roth, Jorg Sander
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Patent number: 7393395Abstract: The present invention provides a surface-treating agent which improves heat resistance, adhesiveness to resin and solder wettability. The surface-treating agent for metal contains a tetrazole derivative represented by the following formula and/or a salt thereof, wherein R1 and R2 each independently represent a hydrogen atom, a halogen atom, or an alkyl group or an aryl group, etc., which each have a carbon number of not more than 10, and a group having a halogen atom, a hydroxyl group, a carboxyl group, an amino group or a mercapto group added thereto, or represent an amino group, a mercapto group, a hydroxyl group or a carboxyl group; and R3 represents a bond or an alkylene group, etc.Type: GrantFiled: January 21, 2005Date of Patent: July 1, 2008Assignee: Nippon Mining & Metals Co., Ltd.Inventors: Akihiro Aiba, Tomoharu Mimura
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Patent number: 7371459Abstract: An electrical device includes two electrodes and a conductive polymer layer, containing a mixture of a polymer and a conductive filler, separating the electrodes. A oxygen barrier material containing a thermosetting polymer component is present on the exposed surface of the conductive polymer layer that is not in contact with the laminar electrodes. The oxygen barrier material may be a polyamine-polyepoxide material, and may provide for acceptable barrier properties over a wide range of humidity levels.Type: GrantFiled: September 3, 2004Date of Patent: May 13, 2008Assignee: Tyco Electronics CorporationInventor: Matthew P. Galla
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Patent number: 7341677Abstract: A non-carcinogenic corrosion inhibiting additive includes an anodic corrosion inhibitor and/or a cathodic corrosion inhibitor and a solubility enhancer for the inhibitors in the form of a metal complexing agent.Type: GrantFiled: June 30, 2003Date of Patent: March 11, 2008Assignee: United Technologies CorporationInventors: Xiaomei Yu, Weilong Zhang, Thomas Garosshen, Promila Bhatia, Mark Jaworowski, Foster Lamm, Xia Tang, Amy Besing, Mike A. Kryzman, Xiaoyuan Chang