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Résultats pour
brevets
1.
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TITANIUM WELDING WIRE, ULTRASONICALLY INSPECTABLE WELDS AND PARTS THEREFROM, AND ASSOCIATED METHODS
Numéro d'application |
US2015058607 |
Numéro de publication |
2016/073349 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2015-11-02 |
Date de publication |
2016-05-12 |
Propriétaire |
RTI INTERNATIONAL METALS (USA)
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Inventeur(s) |
- Bernath, Jeffrey J.
- Tamirisakandala, Sesh A.
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Abrégé
A welding wire formed of a trace boron titanium base alloy is provided, along with welds formed from the wire and articles comprising one or more of such welds. A method may include forming such a weld or welds from such a welding wire, and may also include non-destructively inspecting titanium alloy articles comprising one or more of such welds using ultrasonic waves to detect internal flaws.
Classes IPC ?
- B23K 35/32 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à plus de 1550°C
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2.
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TITANIUM ALLOY, PARTS MADE THEREOF AND METHOD OF USE
Numéro d'application |
US2015028003 |
Numéro de publication |
2015/168131 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2015-04-28 |
Date de publication |
2015-11-05 |
Propriétaire |
RTI INTERNATIONAL METALS, INC. (USA)
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Inventeur(s) |
- Schutz, Ronald W.
- Jena, Birendra C.
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Abrégé
A titanium alloy, components formed thereof, and methods of use are provided. Embodiments of the alloy may be useful in the energy extraction environment. Components formed of the alloy may include subsea or land-based components associated with oil and gas production and drilling.
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3.
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TITANIUM ALLOYS
Numéro d'application |
US2013021525 |
Numéro de publication |
2013/154629 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2013-01-15 |
Date de publication |
2013-10-17 |
Propriétaire |
RTI INTERNATIONAL METALS, INC. (USA)
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Inventeur(s) |
- Sun, Fusheng
- Yu, Kuang-O
- Crist, Jr., Ernest M.
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Abrégé
A titanium alloy contains niobium from 8 to 18% by weight; zirconium from 2 to 15% by weight; tin from 0 to 8% by weight; yttrium from 0.0 to 0.3% by weight, and a balance essentially titanium. The titanium alloy has a low Young's modulus, high yield strength, excellent cold bending properties, and good cold stamping and forming performance.
Classes IPC ?
- C22F 1/18 - Métaux réfractaires ou à point de fusion élevé ou leurs alliages
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4.
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METHOD AND APPARATUS FOR SEALING AN INGOT AT INITIAL STARTUP
Numéro d'application |
US2009005014 |
Numéro de publication |
2010/030331 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2009-09-03 |
Date de publication |
2010-03-18 |
Propriétaire |
RTI INTERNATIONAL METALS, INC. (USA)
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Inventeur(s) |
- Jacques, Michael P.
- Yu, Kuang-O
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Abrégé
A continuous casting furnace for producing metal ingots includes a molten seal which prevents external atmosphere from entering the melting chamber. A startup sealing assembly allows an initial seal to be formed to prevent external atmosphere from entering the melting chamber prior to the formation of the molten seal.
Classes IPC ?
- B22D 11/00 - Coulée continue des métaux, c.-à-d. en longueur indéfinie
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5.
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CONTINUOUS CASTING OF REACTIONARY METALS USING A GLASS COVERING
Numéro d'application |
US2008005444 |
Numéro de publication |
2008/136956 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2008-04-28 |
Date de publication |
2008-11-13 |
Propriétaire |
RTI INTERNATIONAL METALS, INC. (USA)
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Inventeur(s) |
- Jacques, Michael P.
- Spadafora, Frank P.
- Yu, Kuang-O
- Martin, Brian W.
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Abrégé
A seal for a continuous casting furnace having a melting chamber with a mold therein for producing a metal cast includes a passage between the melting chamber and external atmosphere. As the cast moves through the passage, the cast outer surface and the passage inner surface define therebetween a reservoir for containing liquid glass or other molten material to prevent the external atmosphere from entering the melting chamber. Particulate material fed into the reservoir is melted by heat from the cast to form the molten material. The molten material coats the cast as it moves through the passage and solidifies to form a coating to protect the hot cast from reacting with the external atmosphere. Preferably, the mold has an inner surface with a cross-sectional shape to define a cross-sectional shape of the cast outer surface whereby these cross-sectional shapes are substantially the same as a cross-sectional shape of the passage inner surface.
Classes IPC ?
- B22D 11/04 - Coulée continue des métaux, c.-à-d. en longueur indéfinie dans des moules sans fond
- B22D 11/12 - Accessoires pour le traitement ultérieur ou le travail sur place des barres coulées
- B22D 11/07 - Lubrification des moules
- B22D 11/16 - Commande ou régulation des opérations ou du fonctionnement
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6.
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METHOD AND APPARATUS FOR TEMPERATURE CONTROL IN A CONTINUOUS CASTING FURNACE
Numéro d'application |
US2007017028 |
Numéro de publication |
2008/020988 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2007-07-30 |
Date de publication |
2008-02-21 |
Propriétaire |
RTI INTERNATIONAL, METALS, INC. (USA)
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Inventeur(s) |
- Yu, Kuang-O
- Spadafora, Frank P.
- Jacques, Michael P.
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Abrégé
A continuous casting furnace includes a temperature control mechanism for controlling the temperature of a metal cast as it exits a continuous casting mold in order to provide improved characteristics of the metal cast. The temperature control mechanism includes a temperature sensor for sensing the temperature of the metal cast, and a heat source and cooling device for respectively heating and cooling the metal cast in light of the temperature of the metal cast. A control unit determines if the temperature of the metal cast is within a predetermined range and controls the heat source and cooling device accordingly. The heat source may double as a cooling device or the cooling device may be separate from the heat source.
Classes IPC ?
- B22D 11/00 - Coulée continue des métaux, c.-à-d. en longueur indéfinie
- B22D 11/16 - Commande ou régulation des opérations ou du fonctionnement
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7.
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CREEP FORMING AND STRESS RELIEVING IN METAL BAR
Numéro d'application |
US2007011037 |
Numéro de publication |
2007/145737 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2007-05-08 |
Date de publication |
2007-12-21 |
Propriétaire |
RTI INTERNATIONAL METALS, INC. (USA)
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Inventeur(s) |
- Minakawa, Kuninori
- Keskar, Arvind R.
- Barb, Adrian
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Abrégé
A hot creep stretch wrap forming method includes heating a metal bar (16) to a forming temperature within a temperature range suitable for creep deformation thereof, applying a stretching force to the metal bar at a strain rate no greater than 0.05 inch/inch/second, And wrapping the metal bar around a die (12), preferably having a thermally and /or electrically insulative work surface (34, 36). The stretching force is typically applied to a strain ranging from 0.5% to 15.0%. The metal bar (16) most preferably is a titanium alloy with a forming temperature ranging from 0.45 to 0.60 of its melting temperature. The wrapped metal bar is held in position and its temperature maintained within the temperature range typically for 5 to 120 minutes for stress relief. Preferably, the metal bar (16) is held substantially at the forming temperature throughout the process. Thermal insulation (62) around the die and metal bar reduce heat loss form the metal bar.
Classes IPC ?
- B21D 11/02 - Cintrage par étirage ou par allongement par traction sur une matrice
- B21D 37/16 - Chauffage ou refroidissement
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8.
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METHOD AND APPARATUS FOR HOT FORMING ELONGATED METALLIC BARS
Numéro d'application |
US2007011115 |
Numéro de publication |
2007/133548 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2007-05-08 |
Date de publication |
2007-11-22 |
Propriétaire |
RTI INTERNATIONAL METALS, INC. (USA)
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Inventeur(s) |
- Minakawa, Kuninori
- Keskar, Arvind, R.
- Barb, Adrian
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Abrégé
A hot stretch wrap forming apparatus includes a die having a work surface formed of a thermally and/or electrically insulative material, and a set of spaced jaws for stretching and wrapping the metal form around the work surface. A preferred insulative material is a flexible blanket of woven ceramic fibers. A heat source is used to heat the metal form prior to stretching and wrapping. The metal form is preferably heated resistively to maintain a uniform temperature throughout the metal form. The die is typically formed primarily of metal and thus the insulative material thermally insulates the metal form from the metal of the die to prevent the formation of hot spots which would otherwise occur therebetween. The insulative material also electrically insulates the metal form from the metal of the die to prevent shunting therebetween.
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9.
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METHOD AND APPARATUS FOR CREEP FORMING OF AND RELIEVING STRESS IN AN ELONGATED METAL BAR
Numéro d'application |
US2007011113 |
Numéro de publication |
2007/133546 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2007-05-08 |
Date de publication |
2007-11-22 |
Propriétaire |
RTI INTERNATIONAL METALS, INC. (USA)
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Inventeur(s) |
- Minakawa, Kuninori
- Keskar, Arvind R.
- Barb, Adrian
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Abrégé
A hot creep stretch wrap forming method includes heating a metal bar to a forming temperature within a temperature range suitable for creep deformation thereof, applying a stretching force to the metal bar at a strain rate no greater than 0.05 inch/inch/second, and wrapping the metal bar around a die, preferably having a thermally and/or electrically insulative work surface. The stretching force is typically applied to a strain ranging from 0.5% to 15.0%. The metal bar most preferably is a titanium alloy with a forming temperature ranging from 0.45 to 0.60 of its melting temperature. The wrapped metal bar is held in position and its temperature maintained within the temperature range typically for 5 to 120 minutes for stress relief. Preferably, the metal bar is held substantially at the forming temperature throughout the process. Thermal insulation around the die and metal bar reduce heat loss from the metal bar.
Classes IPC ?
- B21D 11/02 - Cintrage par étirage ou par allongement par traction sur une matrice
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10.
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CONTINUOUS CASTING OF REACTIONARY METALS USING A GLASS COVERING
Numéro d'application |
US2007011114 |
Numéro de publication |
2007/133547 |
Statut |
Délivré - en vigueur |
Date de dépôt |
2007-05-08 |
Date de publication |
2007-11-22 |
Propriétaire |
RMI TITANIUM COMPANY (USA)
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Inventeur(s) |
- Jacques, Michael P.
- Spadafora, Frank P.
- Yu, Kuang-O
- Martin, Brian W.
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Abrégé
A seal for a continuous casting furnace having a melting chamber with a mold therein for producing a metal cast includes a passage between the melting chamber and external atmosphere. As the cast moves through the passage, the cast outer surface and the passage inner surface define therebetween a reservoir for containing liquid glass or other molten material to prevent the external atmosphere from entering the melting chamber. Particulate material fed into the reservoir is melted by heat from the cast to form the molten material. The molten material coats the cast as it moves through the passage and solidifies to form a coating to protect the hot cast from reacting with the external atmosphere. Preferably, the mold has an inner surface with a cross-sectional shape to define a cross-sectional shape of the cast outer surface whereby these cross-sectional shapes are substantially the same as a cross-sectional shape of the passage inner surface.
Classes IPC ?
- B22D 11/00 - Coulée continue des métaux, c.-à-d. en longueur indéfinie
- B22D 11/126 - Accessoires pour le traitement ultérieur ou le travail sur place des barres coulées pour la coupe
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