Patents by Inventor Paul Allen Felter

Paul Allen Felter 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).

  • Patent number: 9061370
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Grant
    Filed: October 11, 2013
    Date of Patent: June 23, 2015
    Assignees: BRIGHAM YOUNG UNIVERSITY, MEGASTIR TECHNOLOGIES LLC
    Inventors: Tracy W. Nelson, Carl D. Sorenson, Scott M. Packer, Paul Allen Felter
  • Publication number: 20140034710
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Application
    Filed: October 11, 2013
    Publication date: February 6, 2014
    Applicants: BRIGHAM YOUNG UNIVERSITY, MEGASTIR TECHNOLOGIES LLC
    Inventors: Tracy W. Nelson, Carl D. Sorenson, Scott M. Packer, Paul Allen Felter
  • Patent number: 8302834
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Grant
    Filed: August 9, 2011
    Date of Patent: November 6, 2012
    Assignees: MegaStar Technologies LLC, Bringham Young University
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott M. Packer, Paul Allen Felter
  • Publication number: 20110297733
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Application
    Filed: August 9, 2011
    Publication date: December 8, 2011
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Patent number: 7993575
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Grant
    Filed: February 16, 2010
    Date of Patent: August 9, 2011
    Assignee: Megastir Technologies, LLC
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Publication number: 20100146866
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Application
    Filed: February 16, 2010
    Publication date: June 17, 2010
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Patent number: 7661572
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Grant
    Filed: December 12, 2006
    Date of Patent: February 16, 2010
    Assignees: Brigham Young University, SII MegaDiamond, Inc., Advanced Metal Products, Inc.
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Patent number: 7152776
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Grant
    Filed: November 10, 2003
    Date of Patent: December 26, 2006
    Assignees: SII MegaDiamond, Inc., Advanced Metal Products, Inc., Bringham Young University
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Patent number: 7124929
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Grant
    Filed: November 10, 2003
    Date of Patent: October 24, 2006
    Assignees: SII MegaDiamond, Inc., Advanced Metal Products, Inc., Brigham Young University
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Patent number: 6779704
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Grant
    Filed: May 8, 2001
    Date of Patent: August 24, 2004
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Publication number: 20040155093
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Application
    Filed: November 10, 2003
    Publication date: August 12, 2004
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Publication number: 20040134972
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Application
    Filed: November 10, 2003
    Publication date: July 15, 2004
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Patent number: 6648206
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Grant
    Filed: May 8, 2001
    Date of Patent: November 18, 2003
    Inventors: Tracey W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Publication number: 20020014516
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Application
    Filed: May 8, 2001
    Publication date: February 7, 2002
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Publication number: 20020011509
    Abstract: A probe for friction stir welding MMCs, ferrous alloys, non-ferrous alloys, and superalloys, as well as non-ferrous alloys, the probe including a shank, a shoulder, and a pin disposed through the shoulder and into the shank, wherein the pin and the shoulder at least include a coating comprised of a superabrasive material, the pin and shoulder being designed to reduce stress risers, disposing a collar around a portion of the shoulder and the shank to thereby prevent movement of the shoulder relative to the shank, and incorporating thermal management by providing a thermal flow barrier between the shoulder and the shank, and between the collar and the tool.
    Type: Application
    Filed: May 8, 2001
    Publication date: January 31, 2002
    Inventors: Tracy W. Nelson, Carl D. Sorensen, Scott Packer, Paul Allen Felter
  • Patent number: 6327946
    Abstract: A method for manufacturing a mechanical seal used in fluid applications, wherein the mechanical seal is comprised of a sintered (cemented) tungsten carbide ring that is turned on a lathe at a negative top rake angle instead of formed by grinding. The cemented tungsten carbide ring is initially prepared by rounding corners of the top surface to form a radii. The resulting mechanical seal yields significantly less surface damage, can be formed using faster cutting speeds and feeds than when grinding, enables formation of a greater range of complex geometries for the mechanical seals, and requires fewer passes than grinding. The compact is also formed at a significantly reduced cost as compared to grinding.
    Type: Grant
    Filed: November 16, 1999
    Date of Patent: December 11, 2001
    Assignee: Advanced Metal Products, Inc.
    Inventors: Paul Allen Felter, Tracy Shane Nye