Patents by Inventor Siegfried Riediger

Siegfried Riediger 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: 20210260611
    Abstract: Described herein is a method for producing at least one coating (B1) on a substrate, including provision of a coating material composition (BZ1) (1), determination of at least one characteristic variable of a drop size distribution within a spray formed on atomization of the coating material composition (BZ1), and/or of the homogeneity of this spray (2), reduction of the at least one characteristic variable and/or homogeneity of the spray (3), application of at least the coating material composition (BZ1) obtained after step (3), to a substrate, to form at least one film (F1) (4), and physical curing, chemical curing and/or radiation curing at least of the at least one film (F1) formed on the substrate by application of (BZ1), to produce the coating (B1) on the substrate. Also described herein is a coating (B1) located on a substrate and obtainable by means of this method.
    Type: Application
    Filed: June 24, 2019
    Publication date: August 26, 2021
    Inventors: Dirk Eierhoff, Daniel Briesenick, Georg Wigger, Christian Bornemann, Siegfried Riediger
  • Publication number: 20210262912
    Abstract: Described here is a method for determining the mean length of filaments formed on rotational atomization of a coating material composition, the method including atomization of the coating material composition by means of a rotational atomizer including as application element a bell cup capable of a rotation (1), optical capture of the filaments formed here at the bell cup edge, by means of at least one camera (2), and digital evaluation of the optical data obtained in this way, to give the mean filament length of those filaments formed on atomization that are located at the edge of the bell cup (3), as well as methods for compiling an electronic database and for screening coating material compositions when developing paint formulations.
    Type: Application
    Filed: June 24, 2019
    Publication date: August 26, 2021
    Inventors: Daniel Briesenick, Dirk Eierhoff, Georg Wigger, Christian Bornemann, Siegfried Riediger, Norbert Willenbacher, Walter Oswald
  • Publication number: 20210262911
    Abstract: Disclosed herein is a method for determining a drop size distribution within a spray and/or a homogeneity of this spray, the spray being formed on atomization of a coating material composition, which includes atomization of the coating material composition by means of an atomizer, the atomization producing a spray, optical capture of the drops of the spray formed, by a traversing optical measurement (2), and determination of at least one characteristic variable of the drop size distribution within the spray and/or of the homogeneity of the spray, on the basis of optical data obtained as per step (2). Also described herein are methods for compiling an electronic database and for screening coating material compositions when developing paint formulations, carried out on the basis of the method.
    Type: Application
    Filed: June 24, 2019
    Publication date: August 26, 2021
    Inventors: Georg Wigger, Daniel Briesenick, Dirk Eierhoff, Christian Bornemann, Siegfried Riediger, Lutz Goedeke, Peter Ehrhard
  • Publication number: 20210162452
    Abstract: Described herein is a method for producing at least one coating (B1) on a substrate, including provision of a coating material composition (BZ1) (1), determination of a mean filament length of filaments formed on rotational atomization of the coating material composition (BZ1) provided as per step (1) (2), reduction of the determined mean filament length (3), application of at least the coating material composition (BZ1) obtained after step (3), with reduced mean filament length, to a substrate, to form at least one film (F1) (4), and physical curing, chemical curing and/or radiation curing at least of the at least one film (F1) formed on the substrate as per step (4), to produce the coating (B1) on the substrate (5). Also described herein is a coating (B1) located on a substrate and obtainable by means of this method.
    Type: Application
    Filed: June 24, 2019
    Publication date: June 3, 2021
    Inventors: Dirk Eierhoff, Daniel Briesenick, Georg Wigger, Christian Bornemann, Siegfried Riediger