Patents by Inventor Stuart D. Hellring

Stuart D. Hellring 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: 20210163759
    Abstract: A coating composition includes: (i) a film-forming resin; (ii) an infrared reflective pigment; and (iii) an infrared fluorescent pigment or dye different from the infrared reflective pigment. A multi-layer coating including the coating composition, and a substrate at least partially coated with the coating composition is also disclosed. A method of detecting an article at least partially coated with the coating composition is also disclosed.
    Type: Application
    Filed: October 28, 2016
    Publication date: June 3, 2021
    Inventors: Michael A. Zalich, Paul H. Berdahl, Stuart D. Hellring, William H. Retsch, Jr.
  • Publication number: 20210116563
    Abstract: A method for increasing a detection distance of a surface of an object illuminated by near-IR electromagnetic radiation, including: (a) directing near-IR electromagnetic radiation from a near-IR electromagnetic radiation source towards an object at least partially coated with a near-IR reflective coating that increases a near-IR electromagnetic radiation detection distance by at least 15% as measured at a wavelength in a near-IR range as compared to the same object coated with a color matched coating which absorbs more of the same near-IR radiation, where the color matched coating has a ?E color matched value of 1.5 or less when compared to the near-IR reflective coating; and (b) detecting reflected near-IR electromagnetic radiation reflected from the near-IR reflective coating. A system for detecting proximity of vehicles is also disclosed.
    Type: Application
    Filed: December 18, 2020
    Publication date: April 22, 2021
    Inventors: Eldon L. Decker, Kristen Kruszewski, LuAnn Holsing, Stephen G. McQuown, Stuart D. Hellring, Michael Andrew Zalich
  • Patent number: 10964949
    Abstract: An electrode binder of a lithium ion battery comprising: (a) a polyvinylidene binder dispersed in an organic diluent with (b) a (meth)acrylic polymer dispersant. The binder can be used in the assembly of electrodes of lithium ion batteries.
    Type: Grant
    Filed: June 20, 2018
    Date of Patent: March 30, 2021
    Assignee: PPG Industries Ohio, Inc.
    Inventors: Stuart D. Hellring, Randy E. Daughenbaugh, Shanti Swarup, Ellor James Van Buskirk
  • Patent number: 10927267
    Abstract: The present invention provides for a composition comprising a pigment, wherein the composition is suitable for coating a surface that is, or is expected to be, exposed to the sun. The pigment comprises particles that fluoresce in sunlight, thereby remaining cooler in the sun than coatings pigmented with non-fluorescent particles. The particles comprise solids that fluoresce or glow in the visible or near infrared (NIR) spectra, or that fluoresce when doped. Suitable dopants include, but are not limited to, ions of rare earths and transition metals. A coating composition includes: (i) a film-forming resin; (ii) an infrared reflective pigment; and (iii) an infrared fluorescent pigment different from the infrared reflective pigment.
    Type: Grant
    Filed: June 28, 2017
    Date of Patent: February 23, 2021
    Assignee: PPG Industries Ohio, Inc.
    Inventors: Michael Andrew Zalich, Michael F. Baxter, Paul H. Berdahl, Stuart D. Hellring, Jeffrey Lynn Stalker
  • Patent number: 10901086
    Abstract: A method for increasing a detection distance of a surface of an object illuminated by near-IR electromagnetic radiation, including: (a) directing near-IR electromagnetic radiation from a near-IR electromagnetic radiation source towards an object at least partially coated with a near-IR reflective coating that increases a near-IR electromagnetic radiation detection distance by at least 15% as measured at a wavelength in a near-IR range as compared to the same object coated with a color matched coating which absorbs more of the same near-IR radiation, where the color matched coating has a ?E color matched value of 1.5 or less when compared to the near-IR reflective coating; and (b) detecting reflected near-IR electromagnetic radiation reflected from the near-IR reflective coating. A system for detecting proximity of vehicles is also disclosed.
    Type: Grant
    Filed: March 26, 2020
    Date of Patent: January 26, 2021
    Assignee: PPG Industries Ohio, Inc.
    Inventors: Eldon L. Decker, Kristen Kruszewski, LuAnn Holsing, Stephen G. McQuown, Stuart D. Hellring, Michael Andrew Zalich
  • Publication number: 20200365873
    Abstract: The present invention is directed toward a coating system for electrodepositing a battery electrode coating onto a foil substrate, the system comprising a tank structured and arranged to hold an electrodepositable coating composition; a feed roller positioned outside of the tank structured and arranged to feed the foil into the tank; at least one counter electrode positioned inside the tank, the counter electrode in electrical communication with the foil during operation of the system to thereby deposit the battery electrode coating onto the foil; and an in-line foil drier positioned outside the tank structured and arranged to receive the coated foil from the tank. Also disclosed are methods for electrocoating battery electrode coatings onto conductive foil substrates, coated foil substrates, and electrical storage devices comprising the coated foil substrates.
    Type: Application
    Filed: May 17, 2019
    Publication date: November 19, 2020
    Applicant: PPG Industries Ohio, Inc.
    Inventors: Landon J. Oakes, Haley L. Orler, Stuart D. Hellring
  • Publication number: 20200362178
    Abstract: A solar reflective coating composition includes: a film-forming resin; a plurality of near-IR transparent pigments dispersed in the film-forming resin, the plurality of near-IR transparent pigments including a first perylene pigment and a second perylene pigment different from the first perylene pigment; and a near-IR reflective pigment dispersed in the film-forming resin, the near-IR reflective pigment different from the first perylene pigment and the second perylene pigment. When formed into a cured coating over a substrate, the cured coating exhibits an off-white or grey color. The solar reflective coating composition is substantially free of carbon black. The present invention is also directed to a substrate having a surface at least partially coated with a solar reflective coating composition and a method of preparing a low weight aerospace component.
    Type: Application
    Filed: March 10, 2020
    Publication date: November 19, 2020
    Inventors: Stephen G. McQuown, John Slomski, Stuart D. Hellring, LuAnn Holsing, Tejveen Gill
  • Publication number: 20200358075
    Abstract: Electrodepositable compositions including an aqueous medium, an ionic resin and particles including thermally produced graphenic carbon nanoparticles are disclosed. The compositions may also include lithium-containing particles. Electrodeposited coatings comprising a cured ionic resin, thermally produced graphenic carbon nanoparticle and lithium-containing particles are also disclosed. The electrodeposited coatings may be used as coatings for lithium ion battery electrodes.
    Type: Application
    Filed: July 28, 2020
    Publication date: November 12, 2020
    Applicant: PPG Industries Ohio, Inc.
    Inventors: Randy E. Daughenbaugh, Noel R. Vanier, Stuart D. Hellring, Cheng-Hung Hung
  • Publication number: 20200350093
    Abstract: The present invention is directed to electrodepositable compositions comprising: (a) an aqueous medium; (b) an ionic resin; and (c) solid particles comprising: (i) lithium-containing particles, and (ii) electrically conductive particles, wherein the composition has a weight ratio of the solid particles to the ionic resin of at least 17:1, and wherein the weight ratio of the lithium-containing particles to the electrically conductive particles is at least 3:1. The present invention is additionally directed to a battery electrode comprising a substrate and a coating applied to a surface of the substrate. The coating is deposited from the electrodepositable composition described above.
    Type: Application
    Filed: July 13, 2020
    Publication date: November 5, 2020
    Applicant: PPG INDUSTRIES OHIO, INC.
    Inventors: Randy E. Daughenbaugh, Stuart D. Hellring
  • Publication number: 20200343526
    Abstract: The present invention is directed towards an electrodepositable coating composition comprising an electrochemically active material comprising a protective coating; an electrodepositable binder; and an aqueous medium. Also disclosed herein is a method of coating a substrate, as well as coated substrates and electrical storage devices.
    Type: Application
    Filed: April 26, 2019
    Publication date: October 29, 2020
    Applicant: PPG Industries Ohio, Inc.
    Inventors: Landon J. Oakes, Stuart D. Hellring, Haley L. Orler
  • Publication number: 20200295373
    Abstract: The present invention provides a slurry composition comprising an electrochemically active material and/or an electrically conductive agent, and a binder comprising a polymer comprising a fluoropolymer dispersed in an organic medium; wherein the organic medium has an evaporation rate less than 10 g/min m2, at the dissolution temperature of the fluoropolymer dispersed in the organic medium. The present invention also provides electrodes and electrical storage devices.
    Type: Application
    Filed: July 6, 2018
    Publication date: September 17, 2020
    Applicant: PPG Industries Ohio, Inc.
    Inventors: Stuart D. HELLRING, Michael R. BEZAK, Randy E. DAUGHENBAUGH, Scott W. SISCO, Jacob W. MOHIN, Calum H. MUNRO, Matthew STEWART
  • Patent number: 10763490
    Abstract: Methods are disclosed in which an electrically conductive substrate is immersed in electrodepositable composition including graphenic carbon particles, the substrate serving as an electrode in an electrical circuit comprising the electrode and a counter-electrode immersed in the composition, a coating being applied onto or over at least a portion of the substrate as electric current is passed between the electrodes. The electrodepositable composition comprises an aqueous medium, an ionic resin, and solid particles including graphenic carbon particles. The solid particles may also include lithium-containing particles.
    Type: Grant
    Filed: September 8, 2016
    Date of Patent: September 1, 2020
    Assignee: PPG Industries Ohio, Inc.
    Inventors: Randy E. Daughenbaugh, Noel R. Vanier, Stuart D. Hellring, Cheng-Hung Hung
  • Patent number: 10748674
    Abstract: A method of producing an electrode for a lithium ion battery is disclosed in which an electrically conductive substrate is immersed into an electrodepositable composition, the substrate serving as the electrode in an electrical circuit comprising the electrode and a counter-electrode immersed in the composition, a coating being applied onto or over at least a portion of the substrate as electric current is passed between the electrodes. The electrodepositable composition comprises: (a) an aqueous medium; (b) an ionic (meth)acrylic polymer; and (c) solid particles comprising: (i) lithium-containing particles, and (ii) electrically conductive particles, wherein the composition has a weight ratio of solid particles to ionic (meth)acrylic polymer of at least 4:1.
    Type: Grant
    Filed: January 15, 2018
    Date of Patent: August 18, 2020
    Assignee: PPG Industries Ohio, Inc.
    Inventors: Randy E. Daughenbaugh, Stuart D. Hellring
  • Publication number: 20200227752
    Abstract: The present invention provides a slurry composition comprising (a) a binder comprising a polymer comprising a fluocopolymer dispersed in a liquid medium; and (b) at least one conductive carbon material having a BET surface area of greater than 100 m2/g. Also provided are electrodes and electrical storage devices.
    Type: Application
    Filed: July 6, 2018
    Publication date: July 16, 2020
    Applicant: PPG Industries Ohio, Inc.
    Inventors: Stuart D. Hellring, Matthew Stewart, Randy E. Daughenbaugh
  • Publication number: 20200225351
    Abstract: A method for increasing a detection distance of a surface of an object illuminated by near-IR electromagnetic radiation, including: (a) directing near-IR electromagnetic radiation from a near-IR electromagnetic radiation source towards an object at least partially coated with a near-IR reflective coating that increases a near-IR electromagnetic radiation detection distance by at least 15% as measured at a wavelength in a near-IR range as compared to the same object coated with a color matched coating which absorbs more of the same near-IR radiation, where the color matched coating has a ?E color matched value of 1.5 or less when compared to the near-IR reflective coating; and (b) detecting reflected near-IR electromagnetic radiation reflected from the near-IR reflective coating. A system for detecting proximity of vehicles is also disclosed.
    Type: Application
    Filed: March 26, 2020
    Publication date: July 16, 2020
    Inventors: Eldon L. Decker, Kristen Kruszewski, LuAnn Holsing, Stephen G. McQuown, Stuart D. Hellring, Michael Andrew Zalich
  • Publication number: 20200203704
    Abstract: The present invention is directed towards an electrodepositable coating composition comprising (a) a fluoropolymer; (b) an electrochemically active material and/or electrically conductive agent; (c) a pH-dependent rheology modifier; and (d) an aqueous medium comprising water; wherein water is present in an amount of at least 45% by weight, based on the total weight of the electrodepositable coating composition. Also disclosed herein is a method of coating a substrate, as well as coated substrates and electrical storage devices.
    Type: Application
    Filed: December 20, 2018
    Publication date: June 25, 2020
    Applicant: PPG Industries Ohio, Inc.
    Inventors: Landon J. Oakes, Stuart D. Hellring, Haley L. Orler, Jacob W. Mohin, Scott W. Sisco
  • Publication number: 20200203707
    Abstract: The present invention is directed towards a method of coating a substrate comprising electrocoating an electrodepositable coating composition onto the substrate, the electrodepositable coating composition comprising a binder comprising a pH-dependent rheology modifier; an electrochemically active material and/or an electrically conductive agent; and an aqueous medium. Also disclosed are electrodepositable coating compositions, coated substrates and electrical storage devices.
    Type: Application
    Filed: December 20, 2018
    Publication date: June 25, 2020
    Applicant: PPG Industries Ohio, Inc.
    Inventors: Stuart D. Hellring, Landon J. Oakes, Kurt G. Olson, Chad A. Landis, Jacob W. Mohin
  • Publication number: 20200190337
    Abstract: A coating composition includes: (i) a film-forming resin; (ii) an infrared reflective pigment; and (iii) an infrared fluorescent pigment different from the infrared reflective pigment. When the coating composition is cured to form a coating and exposed to radiation comprising fluorescence-exciting radiation, the coating has a greater effective solar reflectance (ESR) compared to the same coating exposed to the radiation comprising fluorescence-exciting radiation except without the infrared fluorescent pigment. A multi-layer coating including the coating composition, and a substrate at least partially coated with the coating composition is also disclosed. A method of reducing temperature of an article includes applying the coating composition to at least a portion of the article.
    Type: Application
    Filed: October 28, 2016
    Publication date: June 18, 2020
    Inventors: Michael A. Zalich, Michael F. Baxter, Paul H. Berdahl, Stuart D. Hellring, Jeffrey L. Stalker
  • Publication number: 20200176777
    Abstract: The present invention provides a slurry composition comprising: (a) an electrochemically active material and/or an electrically conductive agent; and (b) a binder comprising: (i) a polymer comprising a fluoropolymer dispersed in a liquid medium; and (ii) a polymer comprising an addition polymer comprising constitutional units comprising the residue of a heterocyclic group-containing ethylenically unsaturated monomer. The present invention also provides electrodes and electrical storage devices.
    Type: Application
    Filed: July 6, 2018
    Publication date: June 4, 2020
    Applicant: PPG Industries Ohio, Inc.
    Inventors: Stuart D. Hellring, Scott W. Sisco, Jacob W. Mohin, Shanti Swarup, Calum H. Munro, Olivia L. Jones, Ryan T. Plazio
  • Patent number: 10641895
    Abstract: A method for increasing a detection distance of a surface of an object illuminated by near-IR electromagnetic radiation, including: (a) directing near-IR electromagnetic radiation from a near-IR electromagnetic radiation source towards an object at least partially coated with a near-IR reflective coating that increases a near-IR electromagnetic radiation detection distance by at least 15% as measured at a wavelength in a near-IR range as compared to the same object coated with a color matched coating which absorbs more of the same near-IR radiation, where the color matched coating has a ?E color matched value of 1.5 or less when compared to the near-IR reflective coating; and (b) detecting reflected near-IR electromagnetic radiation reflected from the near-IR reflective coating. A system for detecting proximity of vehicles is also disclosed.
    Type: Grant
    Filed: January 22, 2019
    Date of Patent: May 5, 2020
    Assignee: PPG Industries Ohio, Inc.
    Inventors: Eldon L. Decker, Kristen Kruszewski, LuAnn Holsing, Stephen G. McQuown, Stuart D. Hellring, Michael Andrew Zalich