Patents by Inventor Paul C. Turner
Paul C. Turner has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20140230703Abstract: An oxygen fueled integrated pollutant removal and combustion system includes a combustion system and an integrated pollutant removal system. The combustion system includes a furnace having at least one burner that is configured to substantially prevent the introduction of air. An oxygen supply supplies oxygen at a predetermine purity greater than 21 percent and a carbon based fuel supply supplies a carbon based fuel. Oxygen and fuel are fed into the furnace in controlled proportion to each other and combustion is controlled to produce a flame temperature in excess of 3000 degrees F. and a flue gas stream containing CO2 and other gases. The flue gas stream is substantially void of non-fuel borne nitrogen containing combustion produced gaseous compounds.Type: ApplicationFiled: April 2, 2014Publication date: August 21, 2014Inventors: Brian R. Patrick, Thomas L. Ochs, Cathy A. Summers, Danylo B. Oryshchyn, Paul C. Turner
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Patent number: 8714968Abstract: An oxygen fueled integrated pollutant removal and combustion system includes a combustion system and an integrated pollutant removal system. The combustion system includes a furnace having at least one burner that is configured to substantially prevent the introduction of air. An oxygen supply supplies oxygen at a predetermine purity greater than 21 percent and a carbon based fuel supply supplies a carbon based fuel. Oxygen and fuel are fed into the furnace in controlled proportion to each other and combustion is controlled to produce a flame temperature in excess The integrated. pollutant removal system includes at least one direct contact heat exchanger for bringing the flue gas into intimated contact with a cooling liquid to produce a pollutant-laden liquid stream and a stripped flue gas stream and at least one compressor for receiving and compressing the stripped flue gas stream.Type: GrantFiled: December 29, 2011Date of Patent: May 6, 2014Assignee: Jupiter Oxygen CorporationInventors: Brian R. Patrick, Thomas L. Ochs, Cathy A. Summers, Danylo B. Oryshchyn, Paul C. Turner
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Patent number: 6498282Abstract: A method of processing spent aluminum pot liner containing carbon, cyanide compositions, fluorides and inorganic oxides. The spent aluminum pot liner is crushed iron oxide is added to form an agglomerated material. The agglomerated material is melted in an electric arc furnace having the electrodes submerged in the molten material to provide a reducing environment during the furnace operation. In the reducing environment, pot liner is oxidized while the iron oxides are reduced to produce iron and a slag substantially free of cyanide compositions and fluorides. An off-gas including carbon oxides and fluorine is treated in an air pollution control system with an afterburner and a scrubber to produce NaF, water and a gas vented to the atmosphere free of cyanide compositions, fluorine and CO.Type: GrantFiled: June 19, 2000Date of Patent: December 24, 2002Assignee: The United States of America as represented by the United States Department of EnergyInventors: William K. O'Connor, Paul C. Turner, Gerald W. Addison
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Patent number: 6425504Abstract: A one-piece, composite open-bottom casting mold with integral withdrawal section is fabricated by thermal spraying of materials compatible with and used for the continuous casting of shaped products of reactive metals and alloys such as, for example, titanium and its alloys or for the gas atomization thereof.Type: GrantFiled: January 11, 2000Date of Patent: July 30, 2002Assignee: Iowa State University Research Foundation, Inc.Inventors: Matthew Besser, Robert L. Terpstra, Daniel J. Sordelet, Iver E. Anderson, Alan D. Hartman, Edward R. Argetsinger, Jeffrey S. Hansen, Jack I. Paige, Paul C. Turner
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Patent number: 6342102Abstract: In a dip forming process the core material to be coated is introduced directly into a source block of coating material eliminating the need for a bushing entrance component. The process containment vessel or crucible is heated so that only a portion of the coating material becomes molten, leaving a solid portion of material as the entrance port of, and seal around, the core material. The crucible can contain molten and solid metals and is especially useful when coating core material with reactive metals. The source block of coating material has been machined to include a close tolerance hole of a size and shape to closely fit the core material. The core material moves first through the solid portion of the source block of coating material where the close tolerance hole has been machined, then through a solid/molten interface, and finally through the molten phase where the diameter of the core material is increased.Type: GrantFiled: June 14, 2000Date of Patent: January 29, 2002Assignee: The United States of America as represented by the United States Department of EnergyInventors: Alan D. Hartman, Edward R. Argetsinger, Jeffrey S. Hansen, Jack I. Paige, Paul E. King, Paul C. Turner
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Patent number: 5799238Abstract: A method making a titanium ceramic composite involves forming a hot pressed powder body having a microstructure comprising at least one titanium metal or alloy layer and at least one ceramic particulate reinforced titanium metal or alloy layer and hot forging the hot pressed body follwed by hot rolling to substantially reduce a thickness dimension and substantially increase a lateral dimension thereof to form a composite plate or sheet that retains in the microstructure at least one titanium based layer and at least one ceramic reinforced titanium based layer in the thickness direction of the composite plate or sheet.Type: GrantFiled: June 14, 1995Date of Patent: August 25, 1998Assignee: The United States of America as represented by the United States Department of EnergyInventors: George T. Fisher, II, Jeffrey S. Hansen, Laurance L. Oden, Paul C. Turner, Thomas L. Ochs
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Patent number: 5613244Abstract: A process for preparing radioactive and other hazardous liquid wastes for treatment by the method of vitrification or melting is provided for.Type: GrantFiled: September 26, 1995Date of Patent: March 18, 1997Assignee: United States of AmericaInventors: Laurance L. Oden, Paul C. Turner, William K. O'Connor, Jeffrey S. Hansen
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Patent number: 5560420Abstract: A process for casting a hard-faced cylindrical product such as an automobile camshaft includes the steps of: (a) preparing a composition formed from a molten base metal and an additive in particle form and having a hardness value greater than the hardness value of the base metal; (b) introducing the composition into a flask containing a meltable pattern of a cylindrical product such as an automobile camshaft to be manufactured and encased in sand to allow the composition to melt the pattern and assume the shape of the pattern within the sand; and (c) rotating the flask containing the pattern about the longitudinal axes of both the flask and the pattern as the molten base metal containing the additive in particle form is introduced into the flask to cause particles of the additive entrained in the molten base metal to migrate by centrifugal action to the radial extremities of the pattern and thereby provide a cylindrical product having a hardness value greater at it's radial extremities than at its center whenType: GrantFiled: November 25, 1994Date of Patent: October 1, 1996Assignee: The United States of America as represented by the Secretary of the InteriorInventors: Jeffrey S. Hansen, Paul C. Turner, Edward R. Argetsinger, Rick D. Wilson
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Patent number: 5455079Abstract: A process for forming a hard surface coating on titanium alloys includes providing a piece of material containing titanium having at least a portion of one surface to be hardened. The piece having a portion of a surface to be hardened is contacted on the backside by a suitable heat sink such that the melting depth of said surface to be hardened may be controlled. A hardening material is then deposited as a slurry. Alternate methods of deposition include flame, arc, or plasma spraying, electrodeposition, vapor deposition, or any other deposition method known by those skilled in the art. The surface to be hardened is then selectively melted to the desired depth, dependent on the desired coating thickness, such that a molten pool is formed of the piece surface and the deposited hardening material. Upon cooling a hardened surface is formed.Type: GrantFiled: January 31, 1995Date of Patent: October 3, 1995Assignee: The United States of America as represented by the Secretary of the InteriorInventors: Laurance L. Oden, Paul C. Turner
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Patent number: 5453243Abstract: A process for producing titanium aluminide weld rod comprising: attaching one end of a metal tube to a vacuum line; placing a means between said vacuum line and a junction of the metal tube to prevent powder from entering the vacuum line; inducing a vacuum within the tube; placing a mixture of titanium and aluminum powder in the tube and employing means to impact the powder in the tube to a filled tube; heating the tube in the vacuum at a temperature sufficient to initiate a high-temperature synthesis (SHS) reaction between the titanium and aluminum; and lowering the temperature to ambient temperature to obtain a intermetallic titanium aluminide alloy weld rod.Type: GrantFiled: August 17, 1994Date of Patent: September 26, 1995Assignee: The United States of America as represented by the Secretary of the InteriorInventors: Jeffrey S. Hansen, Paul C. Turner, Edward R. Argetsinger
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Patent number: 5265664Abstract: A method of casting metal using evaporative pattern casting process patterns in combination with a fixture for creating and maintaining a desired configuration in flexible patterns. A pattern is constructed and gently bent to the curvature of a suitable fixture. String or thin wire, which burns off during casting, is used to tie the pattern to the fixture. The fixture with pattern is dipped in a commercially available refractory wash to prevent metal adherence and sticking to the fixture. When the refractory wash is dry, the fixture and pattern are placed in a flask, and sand is added and compacted by vibration. The pattern remains in position, restrained by the fixture. Metal that is poured directly into the pattern replaces the pattern exactly but does not contact or weld to the fixture due to the protective refractory layer. When solid, the casting is easily separated from the fixture. The fixture can be cleaned for reuse in conventional casting cleaning equipment.Type: GrantFiled: December 27, 1991Date of Patent: November 30, 1993Assignee: The United States of America as represented by the Secretary of the InteriorInventors: Paul C. Turner, Ronald R. Jordan, Jeffrey S. Hansen
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Patent number: 5256368Abstract: A pressure-reaction synthesis process for producing increased stiffness and improved strength-to-weight ratio titanium metal matrix composite materials comprising exothermically reacting a titanium powder or titanium powder alloys with non-metal powders or gas selected from the group consisting of C, B, N, BN, B.sub.4 C, SiC and Si.sub.3 N.sub.4 at temperatures from about 900.degree. to about 1300.degree. C., for about 5 to about 30 minutes in a forming die under pressures of from about 1000 to 5000 psi.Type: GrantFiled: July 31, 1992Date of Patent: October 26, 1993Assignee: The United States of America as represented by the Secretary of the InteriorInventors: Laurance L. Oden, Thomas L. Ochs, Paul C. Turner