Patents by Inventor Larry Hefti

Larry Hefti 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).

  • Publication number: 20090026246
    Abstract: A method of superplastic forming of titanium packs and an associated assembly is provided. The titanium packs can include sheets having different granular structures so that the different sheets are adapted to superplastically form at different temperatures. One or more of the sheets can be formed at a temperature that is below the superplastic forming temperature of another sheet in the pack. In some cases, the occurrence of markoff can be reduced or eliminated.
    Type: Application
    Filed: November 10, 2005
    Publication date: January 29, 2009
    Inventors: Thomas Connelly, Kent Dunstan, William Williams, Peter Comley, Larry Hefti
  • Publication number: 20070228114
    Abstract: The invention provides methods of superplastic forming and diffusion bonding and a gas inlet tube that facilitates the methods which produce structures that are substantially mark off free. Methods include disposing a sealed pack into a die having a patterned surface and an opposite surface; applying a first pressure within the die around an outside of the pack; applying a second pressure within the pack, the second pressure exceeding the first pressure; and forming the pack by superplastic deformation into a diffusion-bonded structure. Further, a gas inlet tube is provided having an inner tube and an outer tube, where the outer tube is weldable to the pack in a gas tight seal.
    Type: Application
    Filed: March 30, 2006
    Publication date: October 4, 2007
    Applicant: The Boeing Company
    Inventors: Daniel Sanders, Larry Hefti, Gregory Ramsey
  • Publication number: 20070102494
    Abstract: A method of superplastic forming of titanium packs and an associated assembly is provided. The titanium packs can include sheets having different granular structures so that the different sheets are adapted to superplastically form at different temperatures. One or more of the sheets can be formed at a temperature that is below the superplastic forming temperature of another sheet in the pack. In some cases, the occurrence of markoff can be reduced or eliminated.
    Type: Application
    Filed: November 10, 2005
    Publication date: May 10, 2007
    Inventors: Thomas Connelly, Kent Dunstan, William Williams, Peter Comley, Larry Hefti
  • Publication number: 20060000873
    Abstract: A method for providing a stop-off material on a workpiece is provided, as is an associated assembly. A maskant is provided on the workpiece such that a first portion of the workpiece is exposed and a second portion of the workpiece is covered by the maskant. The stop-off is then disposed, with the maskant on the workpiece preventing the stop-off from being applied to the second portion of the workpiece. The maskant is removed from the workpiece leaving the stop-off disposed on a select portion of the workpiece. The removal of the maskant can leave the workpiece substantially free of debris. Thereafter, the workpiece can be further processed, e.g., by diffusion bonding, with the stop-off preventing diffusion bonding of part of the workpiece.
    Type: Application
    Filed: July 2, 2004
    Publication date: January 5, 2006
    Inventors: Don Arnold, Jeff Guentzel, Larry Hefti, Franna Pitt, Gregory Ramsey
  • Publication number: 20050218193
    Abstract: A method for superplastically forming and/or diffusion bonding a structural member and an associated structural member are provided. The structural member is formed at least partially of titanium, e.g., Ti-6Al-4V, and has a fine grain structure. For example, the grain size of the material of the structural member can be less than 2 micron. The member can be superplastically formed and/or diffusion bonded at a reduced temperature, thereby potentially reducing the thermal energy required for forming and bonding, and also reducing the effects of heating on the structural member and the forming apparatus. In addition, the structural member can be formed at an increased strain rate.
    Type: Application
    Filed: March 31, 2004
    Publication date: October 6, 2005
    Inventors: Peter Comley, Larry Hefti