Patents by Inventor Kelly M. Weiler

Kelly M. Weiler 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: 12018380
    Abstract: Metallic substrate treatment methods and articles comprising a phosphonate functionalized layer are provided. The method comprises contacting a metallic substrate comprising at least one of aluminum and an aluminum alloy with a fluid to form a phosphonate functionalized layer on at least a region of the metallic substrate. The fluid comprises at least one of a phosphonate containing acid and a derivative thereof. At least one of the phosphonate containing acid and the derivative thereof comprises a pKa of a first acidic proton. The fluid comprises a pH at least 0.5 pH value greater than the pKa of the first acidic proton. The article comprises a metallic substrate comprising aluminum or an aluminum alloy and a phosphonate functionalized layer on at least a region of the metallic substrate.
    Type: Grant
    Filed: December 18, 2019
    Date of Patent: June 25, 2024
    Assignee: HOWMET AEROSPACE INC.
    Inventors: Ryan N. Scott, Kevin M. Robare, Jennifer L. Giocondi, Nicola Menegazzo, Kelly M. Weiler
  • Publication number: 20240026545
    Abstract: Metallic substrate treatment methods and articles comprising a phosphonate functionalized layer are provided. The method comprises contacting a metallic substrate comprising at least one of aluminum and an aluminum alloy with a fluid to form a phosphonate functionalized layer on at least a region of the metallic substrate. The fluid comprises at least one of a phosphonate containing acid and a derivative thereof. At least one of the phosphonate containing acid and the derivative thereof comprises a pKa of a first acidic proton. The fluid comprises a pH at least 0.5 pH value greater than the pKa of the first acidic proton. The article comprises a metallic substrate comprising aluminum or an aluminum alloy and a phosphonate functionalized layer on at least a region of the metallic substrate.
    Type: Application
    Filed: September 29, 2023
    Publication date: January 25, 2024
    Inventors: Ryan N. Scott, Kevin M. Robare, Jennifer L. Giocondi, Nicola Menegazzo, Kelly M. Weiler
  • Publication number: 20220145471
    Abstract: Metallic substrate treatment methods and articles comprising a phosphonate functionalized layer are provided. The method comprises contacting a metallic substrate comprising at least one of aluminum and an aluminum alloy with a fluid to form a phosphonate functionalized layer on at least a region of the metallic substrate. The fluid comprises at least one of a phosphonate containing acid and a derivative thereof. At least one of the phosphonate containing acid and the derivative thereof comprises a pKa of a first acidic proton. The fluid comprises a pH at least 0.5 pH value greater than the pKa of the first acidic proton. The article comprises a metallic substrate comprising aluminum or an aluminum alloy and a phosphonate functionalized layer on at least a region of the metallic substrate.
    Type: Application
    Filed: December 18, 2019
    Publication date: May 12, 2022
    Inventors: Ryan N. Scott, Kevin M. Robare, Jennifer L. Giocondi, Nicola Menegazzo, Kelly M. Weiler
  • Publication number: 20190338434
    Abstract: The present application relates to systems and methods for electrodepositing multi-component alloys, and products made by the same. The electrodeposition may be accomplished to deposit one or more multi-component alloy layers on a substrate. In one embodiment, a substrate is a bulk metal glass. In one embodiment, a substrate is an aluminum alloy substrate. In one embodiment, preconfigured cathode and/or anode configurations are used, which may facilitate, among other things, a uniform current density.
    Type: Application
    Filed: July 10, 2019
    Publication date: November 7, 2019
    Inventors: Dharma Maddala, Shawn Sullivan, Vivek Sample, Andreas Kulovits, Raphael S. Morales, Kelly M. Weiler