Patents by Inventor Mark Edward Irving

Mark Edward Irving 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: 20240101841
    Abstract: An aqueous colored pigment-based ink that is capable of fluorescence, has a pigment colorant in an amount of 1-7 weight %; a non-polymeric fluorophore that when excited by fluorescence-exciting radiation having a peak of at least 200 nm and up to and including 400 nm, exhibits an emission peak of at least 400 nm and up to and including 750 nm, and which non-polymeric fluorophore is present in an amount of 0.1-2 weight %; and an aqueous medium comprising water. This aqueous colored pigment-based ink can be included in an ink set that also includes one or more aqueous colored pigment-based inks that are non-fluorescent. All of these inks can be inkjet printed on non-UV fluorescent substrates to provide images that can be detected when excited as noted above, which images can be provided on documents, lottery tickets, and other security papers.
    Type: Application
    Filed: September 14, 2022
    Publication date: March 28, 2024
    Inventors: Barbara Boland Lussier, Douglas Eugene Bugner, Mark Edward Irving
  • Publication number: 20240100871
    Abstract: An aqueous colored pigment-based ink that is capable of fluorescence, has a pigment colorant in an amount of 1-7 weight %; a non-polymeric fluorophore that when excited by fluorescence-exciting radiation having a peak of at least 200 nm and up to and including 400 nm, exhibits an emission peak of at least 400 nm and up to and including 750 nm, and which non-polymeric fluorophore is present in an amount of 0.1-2 weight %; and an aqueous medium comprising water. This aqueous colored pigment-based ink can be included in an ink set that also includes one or more aqueous colored pigment-based inks that are non-fluorescent. All of these inks can be applied for example using inkjet printing, onto non-UV fluorescent substrates to provide images that can be detected when excited as noted above, which images can be provided on articles such as security documents, currency, and lottery tickets.
    Type: Application
    Filed: September 14, 2022
    Publication date: March 28, 2024
    Inventors: Barbara Boland Lussier, Douglas Eugene Bugner, Mark Edward Irving
  • Publication number: 20240101846
    Abstract: An aqueous colored pigment-based ink that is capable of fluorescence, has a pigment colorant in an amount of 1-7 weight %; a non-polymeric fluorophore that when excited by fluorescence-exciting radiation having a peak of at least 200 nm and up to and including 400 nm, exhibits an emission peak of at least 400 nm and up to and including 750 nm, and which non-polymeric fluorophore is present in an amount of 0.1-2 weight %; and an aqueous medium comprising water. This aqueous colored pigment-based ink can be included in an ink set that also includes one or more aqueous colored pigment-based inks that are non-fluorescent. All of these inks can be applied using continuous inkjet (CIJ) printing, onto non-UV fluorescent substrates to provide images that can be detected when excited as noted above, which images can be provided on articles such as security documents, currency, and lottery tickets.
    Type: Application
    Filed: September 14, 2022
    Publication date: March 28, 2024
    Inventors: Barbara Boland Lussier, Douglas Eugene Bugner, Mark Edward Irving
  • Publication number: 20240102929
    Abstract: A fluorescent colored image can be detected in an image on an article. This fluorescent colored image is obtained from applying an aqueous colored pigment-based ink that is capable of fluorescence, onto a suitable non-UV fluorescent substrate. This aqueous colored pigment-based ink has 1-7 weight % of a pigment colorant; and 0.1-2 weight % of a non-polymeric fluorophore that when excited by fluorescence-exciting radiation having a peak of at least 200 nm and up to and including 400 nm, exhibits an emission peak of at least 400 nm and up to and including 750 nm. This aqueous colored pigment-based ink that is capable of fluorescence can be applied using inkjet printing, onto non-UV fluorescent substrates to provide images that can be detected when excited as noted above, which images can be provided on articles such as security documents, currency, and lottery tickets.
    Type: Application
    Filed: September 14, 2022
    Publication date: March 28, 2024
    Inventors: Barbara Boland Lussier, Douglas Eugene Bugner, Mark Edward Irving
  • Publication number: 20230406021
    Abstract: Inkjet-printed articles have a topcoat composition on a substrate surface. This topcoat composition has (a) a water-soluble salt of a multivalent metal cation in an amount of 0.4-40 weight %; (b) a nonionic or cationic water-soluble or water-dispersible polymeric binder materials in an amount of 2-90 weight %; and (c) visible light-scattering particles that have been surface-treated so that the surface-treated visible light-scattering particles have a stable zeta potential of treater than +4 millivolts (mV) using a (f) dispersing aids. These surface-treated visible light-scattering particles are present in an amount of 6-90 weight %. The (f) dispersing aid is cationic in cumulative charge, and are present in the topcoat composition in an amount of 0.2-50 weight %, based on the total weight of the (c) surface-treated visible light-scattering particles. A monochrome or multicolor inkjet-printed layer or image is disposed over the topcoat composition.
    Type: Application
    Filed: September 5, 2023
    Publication date: December 21, 2023
    Inventors: Mark Edward Irving, David D. Putnam
  • Patent number: 11813882
    Abstract: An aqueous composition can be used for pre-treating a substrate prior to inkjet printing to provide a white opaque background for inkjet-printed images. This aqueous composition includes: (a) one or more water-soluble salts of a multivalent metal cation at 5-30 weight %; (b) a nonionic or cationic water-soluble or water-dispersible polymeric binder material at 5-30 weight %; and (c) surface-treated visible light-scattering particles having a D50 (median) particle size of at least 0.04 ?m and up to and including 2 ?m in an amount of 5-60 weight % based on the total aqueous composition weight. The pre-treated substrate is useful as an inkjet receiving medium that can be readily inkjet-printed particularly with anionically-stabilized aqueous pigment-based inks.
    Type: Grant
    Filed: May 19, 2021
    Date of Patent: November 14, 2023
    Assignee: EASTMAN KODAK COMPANY
    Inventors: Mark Edward Irving, Douglas Eugene Bugner, David D. Putnam
  • Publication number: 20220379646
    Abstract: An aqueous composition can be used for pre-treating a substrate prior to inkjet printing to provide a white opaque background for inkjet-printed images. This aqueous composition includes: (a) one or more water-soluble salts of a multivalent metal cation at 5-30 weight %; (b) a nonionic or cationic water-soluble or water-dispersible polymeric binder material at 5-30 weight %; and (c) surface-treated visible light-scattering particles having a D50 (median) particle size of at least 0.04 ?m and up to and including 2 ?m in an amount of 5-60 weight % based on the total aqueous composition weight. The pre-treated substrate is useful as an inkjet receiving medium that can be readily inkjet-printed particularly with anionically-stabilized aqueous pigment-based inks.
    Type: Application
    Filed: May 19, 2021
    Publication date: December 1, 2022
    Inventors: Mark Edward Irving, Douglas Eugene Bugner, David D. Putnam
  • Patent number: 11401434
    Abstract: A flexible inkjet-printed article is prepared by: A?) providing an ink receptive medium having a substrate and an aqueous-based ink-receptive layer. This layer has: (a) a water-soluble salt of a multivalent metal cation; (b) one or both of a polyvinyl alcohol and a polyvinyl amine (or a copolymer derived from a vinyl alcohol and a vinyl amine) at 0.5-30 weight %; and optionally, (c) a crosslinking agent and (d) silica particles. At least one aqueous pigment-based ink is deposited directly on the aqueous-based ink-receptive layer, each having: a) an anionically-stabilized pigment colorant; and b) a water-miscible humectant at 1-20 weight %, each having a carbon to oxygen atom ratio of ?1.0:1.0 and only two hydroxy groups. After drying, a functional layer with adhesive composition is formed on the inkjet-printed image and a flexible material is laminated to the functional layer, to form a flexible inkjet printed article.
    Type: Grant
    Filed: August 27, 2019
    Date of Patent: August 2, 2022
    Assignee: Eastman kodak company
    Inventors: David D. Putnam, Mark Edward Irving, Douglas Eugene Bugner, Todd Russell Griffin, Barbara Boland Lussier, Allan Francis Sowinski
  • Publication number: 20220119666
    Abstract: An aqueous composition can be used for pre-treating a substrate prior to inkjet printing to provide a white opaque background for inkjet-printed images. This aqueous composition includes: (a) one or more water-soluble salts of a multivalent metal cation at 5-30 weight %; (b) a nonionic or cationic water-soluble or water-dispersible polymeric binder material at 5-30 weight %; and (c) surface-treated visible light-scattering particles having a D50 (median) particle size of at least 0.04 ?m and up to and including 2 ?m in an amount of 5-60 weight % based on the total aqueous composition weight. The pre-treated substrate is useful as an inkjet receiving medium that can be readily inkjet-printed particularly with anionically-stabilized aqueous pigment-based inks.
    Type: Application
    Filed: May 19, 2021
    Publication date: April 21, 2022
    Inventors: Mark Edward Irving, Douglas Eugene Bugner, David D. Putnam
  • Patent number: 11155076
    Abstract: Inkjet printing is carried out to provide monochrome or polychrome inkjet-printed images. An ink-receptive medium is provided with a substrate with an aqueous-based ink-receptive layer disposed thereon. The aqueous-based ink-receptive layer has: (a) one or more water-soluble salts of a multivalent metal cation in an amount of 0.6-49 weight %; (b) one or both of a polyvinyl alcohol and a polyvinyl amine (or a copolymer of a vinyl alcohol and vinyl amine) in a total amount of 0.5-30 weight %; and optionally, (c) a crosslinking agent and (d) silica particles. One or more aqueous pigment-based inks are inkjet printed onto this aqueous-based ink-receptive layer, each ink comprising: a) one or more anionically-stabilized pigment colorants; b) one or more water-miscible humectants that are present in a total amount of 1-20 weight % and each having a carbon atom to oxygen atom ratio of at least 1.0:1.0 and only two hydroxy groups.
    Type: Grant
    Filed: August 27, 2019
    Date of Patent: October 26, 2021
    Assignee: EASTMAN KODAK COMPANY
    Inventors: Barbara Boland Lussier, Allan Francis Sowinski, Mark Edward Irving, David D. Putnam, Todd Russell Griffin, Douglas Eugene Bugner
  • Publication number: 20210062023
    Abstract: Inkjet printing is carried out to provide monochrome or polychrome inkjet-printed images. An ink-receptive medium is provided with a substrate with an aqueous-based ink-receptive layer disposed thereon. The aqueous-based ink-receptive layer has: (a) one or more water-soluble salts of a multivalent metal cation in an amount of 0.6-49 weight %; (b) one or both of a polyvinyl alcohol and a polyvinyl amine (or a copolymer of a vinyl alcohol and vinyl amine) in a total amount of 0.5-30 weight %; and optionally, (c) a crosslinking agent and (d) silica particles. One or more aqueous pigment-based inks are inkjet printed onto this aqueous-based ink-receptive layer, each ink comprising: a) one or more anionically-stabilized pigment colorants; b) one or more water-miscible humectants that are present in a total amount of 1-20 weight % and each having a carbon atom to oxygen atom ratio of at least 1.0:1.0 and only two hydroxy groups.
    Type: Application
    Filed: August 27, 2019
    Publication date: March 4, 2021
    Inventors: Barbara Boland Lussier, Allan Francis Sowinski, Mark Edward Irving, David D. Putnam, Todd Russell Griffin, Douglas Eugene Bugner
  • Publication number: 20210062024
    Abstract: An inkjet-printed article has an ink receptive medium with a substrate and an aqueous-based ink-receptive layer disposed thereon. The aqueous-based ink-receptive layer includes: (a) a water-soluble salt of a multivalent metal cation at 0.6-49 weight %; (b) one or both of a polyvinyl alcohol and a polyvinyl amine (or a copolymer derived from a vinyl alcohol and a vinyl amine) at 0.5-30 weight %; and optionally, (c) a crosslinking agent or (d) silica particles. The article also has an inkjet-printed image disposed on the aqueous-based ink-receptive layer, provided from one or more aqueous pigment-based inks, each of which has a) an anionically-stabilized pigment colorant; b) one or more water-miscible humectants at a total amount of 1-20 weight %, each of which has a carbon atom to oxygen atom ratio of at least 1.0:1.0 and only two hydroxy groups.
    Type: Application
    Filed: August 27, 2019
    Publication date: March 4, 2021
    Inventors: Mark Edward Irving, David D. Putnam, Allan Francis Sowinski, Barbara Boland Lussier, Todd Russell Griffin, Douglas Eugene Bugner
  • Publication number: 20210062028
    Abstract: A flexible inkjet-printed article is prepared by: A?) providing an ink receptive medium having a substrate and an aqueous-based ink-receptive layer. This layer has: (a) a water-soluble salt of a multivalent metal cation; (b) one or both of a polyvinyl alcohol and a polyvinyl amine (or a copolymer derived from a vinyl alcohol and a vinyl amine) at 0.5-30 weight %; and optionally, (c) a crosslinking agent and (d) silica particles. At least one aqueous pigment-based ink is deposited directly on the aqueous-based ink-receptive layer, each having: a) an anionically-stabilized pigment colorant; and b) a water-miscible humectant at 1-20 weight %, each having a carbon to oxygen atom ratio of ?1.0:1.0 and only two hydroxy groups. After drying, a functional layer with adhesive composition is formed on the inkjet-printed image and a flexible material is laminated to the functional layer, to form a flexible inkjet printed article.
    Type: Application
    Filed: August 27, 2019
    Publication date: March 4, 2021
    Inventors: David D. Putnam, Mark Edward Irving, Douglas Eugene Bugner, Todd Russell Griffin, Barbara Boland Lussier, Allan Francis Sowinski
  • Patent number: 10926565
    Abstract: An inkjet-printed article has an ink receptive medium with a substrate and an aqueous-based ink-receptive layer disposed thereon. The aqueous-based ink-receptive layer includes: (a) a water-soluble salt of a multivalent metal cation at 0.6-49 weight %; (b) one or both of a polyvinyl alcohol and a polyvinyl amine (or a copolymer derived from a vinyl alcohol and a vinyl amine) at 0.5-30 weight %; and optionally, (c) a crosslinking agent or (d) silica particles. The article also has an inkjet-printed image disposed on the aqueous-based ink-receptive layer, provided from one or more aqueous pigment-based inks, each of which has a) an anionically-stabilized pigment colorant; b) one or more water-miscible humectants at a total amount of 1-20 weight %, each of which has a carbon atom to oxygen atom ratio of at least 1.0:1.0 and only two hydroxy groups.
    Type: Grant
    Filed: August 27, 2019
    Date of Patent: February 23, 2021
    Assignee: EASTMAN KODAK COMPANY
    Inventors: Mark Edward Irving, David D. Putnam, Allan Francis Sowinski, Barbara Boland Lussier, Todd Russell Griffin, Douglas Eugene Bugner
  • Patent number: 10919328
    Abstract: Inkjet printed articles can be made by providing an inkjet receiving medium comprising a substrate and a topcoat layer, and inkjet printing an aqueous pigment-based ink onto the topcoat layer. The topcoat layer has: (a) one or more water-soluble salts of a multivalent metal cation; and (b) composite particles having a Rockwell Hardness of ?R90 and each of the composite particles comprising domains of a (i) first organic polymer and domains of a (ii) second organic polymer. The domains of the (ii) second organic polymer are dispersed within the domains of the (i) first organic polymer. The melting point of the (i) first organic polymer is lower than the melting point of the (ii) second organic polymer. The weight ratio of the (i) first organic polymer to the (ii) second organic polymer is chosen such that the (b) composite particles have a density of 1.0-1.5 g/ml.
    Type: Grant
    Filed: August 21, 2018
    Date of Patent: February 16, 2021
    Assignee: EASTMAN KODAK COMPANY
    Inventors: Mark Edward Irving, Thomas Joseph Dannhauser
  • Patent number: 10894437
    Abstract: A flexible inkjet printed article includes an ink receptive medium comprising a substrate and an aqueous-based ink-receptive layer. The aqueous-based ink-receptive layer has: (a) a water-soluble salt of a multivalent metal cation; (b) one or more of a polyvinyl alcohol and a polyvinyl amine (or a copolymer derived from a vinyl alcohol and a vinyl amine) at 0.5-30 weight %; and optionally, (c) a crosslinking agent or (d) silica particles. An inkjet-printed image is disposed on the ink-receptive layer, provided from one or more aqueous pigment-based inks, each having: a) one or more anionically-stabilized pigment colorants; b) one or more water-miscible humectants at 1-20 weight %, each of which has a carbon atom to oxygen atom ratio of at least 1.0:1.0 and only two hydroxy groups. A functional layer comprising an adhesive composition disposed on the inkjet-printed image; and a flexible polymeric film or paper adhered to the functional layer.
    Type: Grant
    Filed: August 27, 2019
    Date of Patent: January 19, 2021
    Assignee: EASTMAN KODAK COMPANY
    Inventors: David D. Putnam, Mark Edward Irving, Douglas Eugene Bugner, Allan Francis Sowinski, Todd Russell Griffin, Barbara Boland Lussier
  • Patent number: 10858530
    Abstract: An inkjet receiving medium having enhanced surface properties has a substrate and a topcoat layer disposed thereon. The topcoat layer has: (a) one or more water-soluble salts of a multivalent metal cation; and (b) composite particles having a Rockwell Hardness of less than or equal to R90 and each of the composite particles comprising domains of a (i) first organic polymer and domains of a (ii) second organic polymer. The domains of the (ii) second organic polymer are dispersed within the domains of the (i) first organic polymer. The melting point of the (i) first organic polymer is lower than the melting point of the (ii) second organic polymer. The weight ratio of the (i) first organic polymer to the (ii) second organic polymer is chosen such that the (b) composite particles have a density of 1.0-1.5 g/ml.
    Type: Grant
    Filed: August 21, 2018
    Date of Patent: December 8, 2020
    Assignee: EASTMAN KODAK COMPANY
    Inventors: Thomas Joseph Dannhauser, Mark Edward Irving
  • Patent number: 10858529
    Abstract: An aqueous composition can be used for pre-treating a substrate prior to inkjet printing. This composition includes: (a) one or more water-soluble salts of a multivalent metal cation; and (b) composite particles having a Rockwell Hardness of less than or equal to R90 and each of the composite particles comprising domains of a (i) first organic polymer and domains of a (ii) second organic polymer. The domains of the (ii) second organic polymer are dispersed within the domains of the (i) first organic polymer. Moreover, the melting point of the (i) first organic polymer is lower than the melting point of the (ii) second organic polymer. The weight ratio of the (i) first organic polymer to the (ii) second organic polymer is chosen such that the (b) composite particles have a density of 1.0-1.5 g/ml.
    Type: Grant
    Filed: August 21, 2018
    Date of Patent: December 8, 2020
    Assignee: EASTMAN KODAK COMPANY
    Inventors: Mark Edward Irving, Thomas Joseph Dannhauser
  • Patent number: 10730331
    Abstract: Inkjet receiving medium are prepared by disposing an aqueous composition onto at least one surface of a substrate to provide a topcoat layer. The aqueous composition has: (a) one or more water-soluble salts of a multivalent metal cation; and (b) composite particles having a Rockwell Hardness of less than or equal to R90 and each of the composite particles comprising domains of a (i) first organic polymer and domains of a (ii) second organic polymer. The domains of the (ii) second organic polymer are dispersed within the domains of the (i) first organic polymer. The melting point of the (i) first organic polymer is lower than the melting point of the (ii) second organic polymer. The weight ratio of the (i) first organic polymer to the (ii) second organic polymer is chosen such that the (b) composite particles have a density of 1.0-1.5 g/ml.
    Type: Grant
    Filed: August 21, 2018
    Date of Patent: August 4, 2020
    Assignee: EASTMAN KODAK COMPANY
    Inventors: Thomas Joseph Dannhauser, Mark Edward Irving
  • Publication number: 20200062017
    Abstract: Inkjet printed articles can be made by providing an inkjet receiving medium comprising a substrate and a topcoat layer, and inkjet printing an aqueous pigment-based ink onto the topcoat layer. The topcoat layer has: (a) one or more water-soluble salts of a multivalent metal cation; and (b) composite particles having a Rockwell Hardness of ?R90 and each of the composite particles comprising domains of a (i) first organic polymer and domains of a (ii) second organic polymer. The domains of the (ii) second organic polymer are dispersed within the domains of the (i) first organic polymer. The melting point of the (i) first organic polymer is lower than the melting point of the (ii) second organic polymer. The weight ratio of the (i) first organic polymer to the (ii) second organic polymer is chosen such that the (b) composite particles have a density of 1.0-1.5 g/ml.
    Type: Application
    Filed: August 21, 2018
    Publication date: February 27, 2020
    Inventors: Mark Edward Irving, Thomas Joseph Dannhauser