Patents Represented by Attorney, Agent or Law Firm Christian E. Schuster
  • Patent number: 6758903
    Abstract: A method and apparatus for extrusion coating both sides of a metal strip. A metal strip, such as aluminum alloy strip, is moved through a pre-conditioner, two extrusion dies, a post-heater and a cooling system. Both sides of the strip are coated with thin coatings of thermoplastic polymers. The coated metal strip is useful for containers, such as cans and can ends, as well as for automobiles, appliances, aerospace, construction and electrical devices.
    Type: Grant
    Filed: July 9, 2003
    Date of Patent: July 6, 2004
    Assignee: Alcoa Inc.
    Inventors: Thomas L. Levendusky, Robert B. Larsen, Vincent J. Downard, Roy B. Steidley, Dawn A. Armfield, Paul H. Fournier, John B. Kapustay, Jr., Jeffrey B. Pezick
  • Patent number: 6742568
    Abstract: The casting apparatus (50) includes a holding vessel (10) for containing a supply of molten metal (12) and a casting mold (52) located above the holding vessel (10) and having a casting cavity (54). A molten metal injector (14) extends into the holding vessel (10) and is at least partially immersed in the molten metal (12) in the holding vessel (10). The molten metal injector (14) is in fluid communication with the casting cavity (54). The molten metal injector (14) has an injector body (16) defining an inlet opening (24) for receiving molten metal into the injector body (16). A gas pressurization source (38) is in fluid communication with the injector body (16) for cyclically pressurizing the injector body (16) and inducing molten metal to flow from the injector body (16) to the casting cavity (54). An inlet valve (42) is located in the inlet opening (24) in the injector body (16) for filling molten metal into the injector body (16).
    Type: Grant
    Filed: May 29, 2001
    Date of Patent: June 1, 2004
    Assignee: Alcoa Inc.
    Inventor: Thomas N. Meyer
  • Patent number: 6712125
    Abstract: A molten metal supply system (90) includes a plurality of injectors (100) each having an injector housing (102) and a reciprocating piston (104). A molten metal supply source (132) is in fluid communication with the housing (102) of each of the injectors (100). The piston (104) is movable through a first stroke allowing molten metal (134) to be received into the housing (102) from the molten metal supply source (132), and a second stroke for displacing the molten metal (134) from the housing (102). A pressurized gas supply source (144) is in fluid communication with the housing (102) of each of the injectors (100) through respective gas control valves (146). The molten metal supply system (90) is in fluid communication with an outlet manifold (140) having a plurality of outlet dies (404), which may be used to form continuous metal articles including rods, bars, ingots, and continuous plate.
    Type: Grant
    Filed: April 19, 2002
    Date of Patent: March 30, 2004
    Assignee: Alcoa Inc.
    Inventors: Vivek M. Sample, Scott E. Reighard, Vincent A. Paola, Ronald G. Chabal
  • Patent number: 6708752
    Abstract: An injector (100) for a molten metal supply system includes an injector housing (102) configured to contain molten metal. A molten metal supply source (132) is in fluid communication with the housing (102). A piston (104) extends into the housing (102). The piston (102) is movable through a return stroke allowing molten metal (134) to be received into the housing (102) from the molten metal supply source (132), and a displacement stroke for displacing the molten metal (134) from the housing (102). A gas supply source (144) is in fluid communication with the housing (102) through a gas control valve (146). The gas supply source (144) is used to pressurize a space (148) formed between the molten metal (134) and the piston (104) during the return stroke of the piston (104) such that when the piston (104) moves through the displacement stroke a compressed gas filled space is formed.
    Type: Grant
    Filed: October 29, 2002
    Date of Patent: March 23, 2004
    Assignee: Alcoa Inc.
    Inventors: Vivek M. Sample, Scott E. Reighard, Vincent A. Paola, Ronald G Chabal
  • Patent number: 6702886
    Abstract: A coating for a mold surface of a casting mold includes a metallic bond coat bonded to the mold surface and having a continuous, uniform thickness of between about 0.002 to 0.005 inch on the mold surface. A topcoat of yttria stabilized zirconia is located on top of the metallic bond coat and has a continuous, uniform thickness of between about 0.005 to 0.030 inch. The topcoat has a porosity between 5-15%. The topcoat has a surface layer having a thickness of between about 0.001 to 0.002 inch and a porosity of less than 1%.
    Type: Grant
    Filed: November 20, 2002
    Date of Patent: March 9, 2004
    Assignee: Alcoa Inc.
    Inventors: Neville C. Whittle, Roger W. Kaufold, Jamal Righi, Joseph P. Harenski
  • Patent number: 6662526
    Abstract: The modular turret cage is used with a capping machine adapted to apply closures to containers, such as beverage, food, or water containers. The capping machine includes a stationary cap. The modular turret cage has a top end and a bottom end. The top end of the turret cage is rotatably received in the stationary cap. The turret cage includes a top mounting plate at the top end of the turret cage and a base mounting plate at the bottom end of the turret cage. A plurality of panel sections extends between and connects the top mounting plate and the base mounting plate. The panel sections are fixedly connected to the top mounting plate and the base mounting plate and are separately removable from the top mounting plate and the base mounting plate.
    Type: Grant
    Filed: May 20, 2002
    Date of Patent: December 16, 2003
    Assignee: Alcoa Closure Systems International, Inc.
    Inventors: Donald A Riggs, Jr., Angela M. Comstock, Randy Uebler, Darwin Ellis
  • Patent number: 6623797
    Abstract: In a preferred embodiment, the present invention is an apparatus and a method for coating both surfaces of a continuous processing aluminum strip by extruding thin polymeric film onto the aluminum strip. Generally, the aluminum strip is uncoiled, passed through a preheating unit, two extrusion heads, a post-heater, an air quench, a lubricator, and then it is recoiled.
    Type: Grant
    Filed: August 13, 2001
    Date of Patent: September 23, 2003
    Assignee: Alcoa Inc.
    Inventor: James T. Avalos
  • Patent number: 6585797
    Abstract: The melter furnace includes a heating chamber (16), a pump chamber (18), a degassing chamber (20), and a filter chamber (22). The pump chamber (18) is located adjacent the heating chamber (16) and houses a molten metal pump (30). The degassing chamber (20) is located adjacent and in fluid communication with the pump chamber (18), and houses a degassing mechanism (36). The filter chamber (22) is located adjacent and in fluid communication with the degassing chamber (20). The filter chamber (22) includes a molten metal filter (38). The melter furnace (12) is used to supply molten metal to an externally located holder furnace (14), which then recirculates molten metal back to the melter furnace (12).
    Type: Grant
    Filed: January 24, 2002
    Date of Patent: July 1, 2003
    Assignee: Alcoa Inc.
    Inventors: Michael J. Kinosz, Thomas N. Meyer
  • Patent number: 6536508
    Abstract: A molten metal supply system (90) includes a plurality of injectors (100) each having an injector housing (102) and a reciprocating piston (104). A molten metal supply source (132) is in fluid communication with the housing (102) of each of the injectors (100). The piston (104) is movable through a return stroke allowing molten metal (134) to be received into the housing (102) from the molten metal supply source (132), and a displacement stroke for displacing the molten metal (134) from the housing (102). A pressurized gas supply source (144) is in fluid communication with the housing (102) of each of the injectors (100) through respective gas control valves (146). The gas supply source (144) is used to pressurize a space formed between the molten metal (134) and the piston (104) during the return stroke of the piston (104) of each of the injectors (100).
    Type: Grant
    Filed: December 11, 2001
    Date of Patent: March 25, 2003
    Assignee: Alcoa Inc.
    Inventors: Vivek M. Sample, Scott E. Reighard, Vincent A. Paola, Ronald G. Chabal
  • Patent number: 6505674
    Abstract: An injector (100) for a molten metal supply system includes an injector housing (102) configured to contain molten metal. A molten metal supply source (132) is in fluid communication with the housing (102). A piston (104) extends into the housing (102). The piston (102) is movable through a return stroke allowing molten metal (134) to be received into the housing (102) from the molten metal supply source (132), and a displacement stroke for displacing the molten metal (134) from the housing (102). A gas supply source (144) is in fluid communication with the housing (102) through a gas control valve (146). The gas supply source (144) is used to pressurize a space (148) formed between the molten metal (134) and the piston (104) during the return stroke of the piston (104) such that when the piston (104) moves through the displacement stroke a compressed gas filled space is formed.
    Type: Grant
    Filed: September 21, 2001
    Date of Patent: January 14, 2003
    Assignee: Alcoa Inc.
    Inventors: Vivek M. Sample, Scott E. Reighard, Vincent A. Paola, Ronald G. Chabal
  • Patent number: D542911
    Type: Grant
    Filed: April 13, 2005
    Date of Patent: May 15, 2007
    Assignee: Medrad, Inc.
    Inventors: Thomas P. Joyce, Gerald W. Callan, Karen M. Zelenski, Michael A. Spohn, Ralph H. Schriver