Patents by Inventor Vladislav Yuryevich Golyatin

Vladislav Yuryevich Golyatin 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: 10906831
    Abstract: A method for making a glass ribbon that includes: flowing a glass into a caster having a width (Wcast) from about 100 mm to about 5 m and a thickness (t) from about 1 mm to about 500 mm to form an a cast glass; cooling the cast glass in the caster to a viscosity of at least 108 Poise; conveying the cast glass from the caster; drawing the cast glass, the drawing comprising heating the cast glass to an average viscosity of less than 107 Poise and drawing the cast glass into a glass ribbon having a width (Wribbon) that is less than Wcast; and thereafter cooling the glass ribbon to ambient temperature. Further, the cast glass during the cooling, conveying and drawing steps is about 50° C. or higher.
    Type: Grant
    Filed: June 20, 2019
    Date of Patent: February 2, 2021
    Assignee: Corning Incorporated
    Inventors: Thierry Luc Alain Dannoux, Vladislav Yuryevich Golyatin, Randy Lee Rhoads
  • Patent number: 10889520
    Abstract: Described herein are glass forming apparatuses with cooled muffle assemblies and methods for using the same to form glass ribbons. According to one embodiment, a muffle assembly for a fusion forming apparatus may include a muffle frame comprising a back wall, a front wall opposite the back wall, and a pair of sidewalls joining the front wall to the back wall in a closed-loop. At least one first cooling tube may extend through the back wall and the front wall across the closed-loop. At least one second cooling tube may extend through the back wall and the front wall across the closed loop such that the at least one second cooling tube is spaced apart from and parallel with the at least one first cooling tube.
    Type: Grant
    Filed: April 13, 2017
    Date of Patent: January 12, 2021
    Assignee: Corning Incorporated
    Inventors: John Michael Feenaughty, Vladislav Yuryevich Golyatin, Bulent Kocatulum, Jeremy Walter Turner
  • Publication number: 20200307173
    Abstract: According to one or more embodiments described herein, a laminate glass article may be produced by a method that includes providing a first glass sheet and a second glass sheet, assembling the first glass sheet and second glass sheet into a glass stack, and bonding the first glass sheet to the second glass sheet to form the laminate glass article. In one or more embodiments, an intermediate layer may be positioned between the first bonding surface and the second bonding surface, the first bonding surface and the second bonding surface may be roughened surfaces, or the first bonding surface and the second bonding surface may be chemically treated by vacuum deposition.
    Type: Application
    Filed: June 7, 2017
    Publication date: October 1, 2020
    Inventors: Paul Bennett Dohn, Vladislav Yuryevich Golyatin, Butchi Reddy Vaddi, Natesan Venkataraman
  • Publication number: 20200299173
    Abstract: An apparatus for making a glass ribbon can include a heating plane including a heat footprint facing the surface of an edge director. A projection of the heat footprint in a resultant direction of the heating plane within the heat footprint can intersect the surface of the edge director. In further embodiments, a fusion draw method of making a glass ribbon can include radiating heat within a heat footprint of a heating plane toward a surface of an edge director. At least a portion of the heating plane within the heat footprint can face the surface of the edge director so that the surface of the edge director is intersected with heat radiating from the heat footprint of the heating plane.
    Type: Application
    Filed: April 16, 2018
    Publication date: September 24, 2020
    Inventors: Frank Coppola, Robert Delia, Vladislav Yuryevich Golyatin, Shawn Rachelle Markham, Jon Anthony Passmore
  • Patent number: 10737962
    Abstract: A system includes an overflow distributor and a support member. The overflow distributor includes a first sidewall, a second sidewall opposite the first sidewall, and a floor extending between the opposing first and second sidewalls. Interior surfaces of the first sidewall, the second sidewall, and the floor cooperatively define a trough configured to receive molten glass. Exterior surfaces of the first sidewall and the second sidewall are configured to direct molten glass that overflows the trough. The support member is disposed between the opposing first and second sidewalls of the overflow distributor and abutting an exterior surface of the floor of the overflow distributor.
    Type: Grant
    Filed: February 3, 2016
    Date of Patent: August 11, 2020
    Assignee: Corning Incorporated
    Inventors: Frank Coppola, John Michael Feenaughty, Vladislav Yuryevich Golyatin, John Jerry Kersting, Steven Michael Milillo, Eric James Nichols, Nikolay Anatolyevich Panin
  • Publication number: 20200229559
    Abstract: A glass sleeve assembly for a portable electronic device may comprise a glass sleeve extending longitudinally from a first opening defined by a first rim to a second opening defined by a second rim. The glass sleeve may have an internal surface. A first end cap may be positioned adjacent to the first opening and may have at least a portion extending longitudinally beyond the first rim. A second end cap may be positioned adjacent to the second opening and may have at least a portion extending longitudinally beyond the second rim. A frame may comprise first and second ends and a central portion between the first and second ends. The central portion may be located within the glass sleeve. The ends of the frame may be connected to the end caps. Shock absorbing interlayers may be mounted to the end caps and the glass sleeve.
    Type: Application
    Filed: August 29, 2016
    Publication date: July 23, 2020
    Inventors: Thierry Luc Alain Dannoux, Vladislav Yuryevich Golyatin, Petr Gorelchenko, Bin Zhang
  • Publication number: 20200062631
    Abstract: A method includes contacting a glass sheet with a forming surface to form a shaped glass article. An effective viscosity of the glass sheet during the contacting step is less than a contact viscosity of the glass sheet in contact with the forming surface during the contacting step.
    Type: Application
    Filed: July 31, 2019
    Publication date: February 27, 2020
    Inventors: Thierry Luc Alain Dannoux, Vladislav Yuryevich Golyatin, John Richard Ridge, Ljerka Ukrainczyk, Butchi Reddy Vaddi, Natesan Venkataraman
  • Publication number: 20200002211
    Abstract: A method for making a glass ribbon that includes: flowing a glass into a caster having a width (Wcast) from about 100 mm to about 5 m and a thickness (t) from about 1 mm to about 500 mm to form an a cast glass; cooling the cast glass in the caster to a viscosity of at least 108 Poise; conveying the cast glass from the caster; drawing the cast glass, the drawing comprising heating the cast glass to an average viscosity of less than 107 Poise and drawing the cast glass into a glass ribbon having a width (Wribbon) that is less than Wcast; and thereafter cooling the glass ribbon to ambient temperature. Further, the cast glass during the cooling, conveying and drawing steps is about 50° C. or higher.
    Type: Application
    Filed: June 20, 2019
    Publication date: January 2, 2020
    Inventors: Thierry Luc Alain Dannoux, Vladislav Yuryevich Golyatin, Randy Lee Rhoads
  • Publication number: 20190367401
    Abstract: An apparatus for fusion draw glass manufacture, including: at least one isopipe having at least one weir; and a fluid discharge member in proximity to the at least one weir of the at least one isopipe, the fluid discharge member is in fluid communication with a remote fluid source. Methods of making and using the apparatus are also disclosed.
    Type: Application
    Filed: August 14, 2019
    Publication date: December 5, 2019
    Inventors: Vladislav Yuryevich Golyatin, George Clinton Shay, William Anthony Whedon
  • Patent number: 10421682
    Abstract: An apparatus for fusion draw glass manufacture, including at least one isopipe (110) having at least one weir (114); and a fluid discharge member in proximity to the at least one weir (114) of the at least one isopipe (110), the fluid discharge member is in fluid communication with a remote fluid source. The fluid source can be a source of a gas, liquid, solid or radiation. The fluid can be heated or cooled. At least one of the temperature properties, flow properties and thickness properties of the molten glass can be locally changed with the discharged fluid. A method of forming a glass-glass laminate sheet and uses of the laminate sheet are disclosed.
    Type: Grant
    Filed: April 29, 2014
    Date of Patent: September 24, 2019
    Assignee: Corning Incorporated
    Inventors: Vladislav Yuryevich Golyatin, George Clinton Shay, William Anthony Whedon
  • Patent number: 10377656
    Abstract: A method includes contacting a second layer of a glass sheet with a forming surface to form a shaped glass article. The glass sheet includes a first layer adjacent to the second layer. The first layer includes a first glass composition. The second layer includes a second glass composition. An effective viscosity of the glass sheet during the contacting step is less than a viscosity of the second layer of the glass sheet during the contacting step. A shaped glass article includes a first layer including a first glass composition and a second layer including a second glass composition. A softening point of the first glass composition is less than a softening point of the second glass composition. An effective 108.2 P temperature of the glass article is at most about 900° C.
    Type: Grant
    Filed: May 7, 2015
    Date of Patent: August 13, 2019
    Assignee: Corning Incorporated
    Inventors: Thierry Luc Alain Dannoux, Vladislav Yuryevich Golyatin, John Richard Ridge, Ljerka Ukrainczyk, Butchi Reddy Vaddi, Natesan Venkataraman
  • Publication number: 20190210908
    Abstract: A local bend is formed in a glass sheet (10) by supporting large flat areas (14, 16) of the glass sheet (10) on large flat supports (106L, 106R) that are articulated relative to each other while leaving an area (12) of the glass sheet in which the local bend is to be formed unsupported. A combination of bending forces applied to the glass sheet (10) by articulation of the large flat supports (106L, 106R) and local heating (110) of the unsupported area (12) of the glass sheet (10) produces the local bend.
    Type: Application
    Filed: June 14, 2017
    Publication date: July 11, 2019
    Inventors: Thierry Luc Alain Dannoux, Michele Marie-Louise Fredholm, Vladislav Yuryevich Golyatin, Laurent Joubaud, Ronan Tanguy
  • Publication number: 20190119140
    Abstract: Described herein are glass forming apparatuses with cooled muffle assemblies and methods for using the same to form glass ribbons. According to one embodiment, a muffle assembly for a fusion forming apparatus may include a muffle frame comprising a back wall, a front wall opposite the back wall, and a pair of sidewalls joining the front wall to the back wall in a closed-loop. At least one first cooling tube may extend through the back wall and the front wall across the closed-loop. At least one second cooling tube may extend through the back wall and the front wall across the closed loop such that the at least one second cooling tube is spaced apart from and parallel with the at least one first cooling tube.
    Type: Application
    Filed: April 13, 2017
    Publication date: April 25, 2019
    Inventors: John Michael Feenaughty, Vladislav Yuryevich Golyatin, Bulent Kocatulum, Jeremy Walter Turner
  • Publication number: 20180327298
    Abstract: Apparatuses for making a laminated glass ribbon may include an upper forming body including an outer forming surface bounded by a pair of upper dams, and a lower forming body disposed downstream of the upper forming body and including an outer forming surface spaced from the outer forming surface of the upper forming body by an interior gap. An edge guide may be disposed along an interior upper dam wall and spaced apart in the interior gap from the lower forming body. Surfaces exterior to the outer forming surfaces of the upper and lower forming bodies may abut and be joined. A formed glass ribbon having a core glass layer and a pair of clad glass layers may include inner and outer portions that have substantially equal thickness ratios based on a glass core layer thickness compared to a combined glass cladding layer thickness in each portion.
    Type: Application
    Filed: November 17, 2016
    Publication date: November 15, 2018
    Inventors: Frank Coppola, Vladislav Yuryevich Golyatin, Monica Jo Mashewske, Jae Hyun Yu
  • Publication number: 20180327299
    Abstract: An apparatus for forming a glass ribbon includes a forming body with opposing first and second forming surfaces. An end dam assembly includes a first forming dam wall extending in a draw direction along a first end of the first forming surface. A second forming dam wall can extend in the draw direction along a first end of the second forming surface. A first bridge dam wall can be disposed on an upper surface of the forming body and extend between and join the first forming dam wall and the second forming dam wall. Each of the forming body and the end dam assembly is formed from a refractory material. A method includes flowing a molten glass through a trench defined by forming dam walls extending in the draw direction along opposing first and second ends of the forming surface.
    Type: Application
    Filed: November 16, 2016
    Publication date: November 15, 2018
    Inventors: Frank Coppola, Vladislav Yuryevich Golyatin, Timothy Douglas Lockwood, Monica Jo Mashewske
  • Publication number: 20180312422
    Abstract: A method of cutting a laminate glass article is disclosed. The method comprises heating at least a portion of a laminate glass article to a reheat temperature. The laminate glass article has a core layer and a first cladding layer and is in stress characterized by a thermally-induced differential stress between the core layer and first cladding layer. The laminate glass article having been set at a setting temperature and the reheat temperature is lower than the setting temperature. The heating of the laminate glass article reduces the thermally-induced differential stress between the core layer and first cladding layer. The method may further comprise scoring the laminate glass article in the heated portion to create a score in the laminate glass article along a cutting line and bending the laminate glass article at the score to cut the glass.
    Type: Application
    Filed: November 6, 2015
    Publication date: November 1, 2018
    Applicant: Corning Incorporated
    Inventors: Anatoli Anatolyevich Abramov, Richard Bergman, Vladislav Yuryevich Golyatin, Ritesh Satish Lakhkar, IIia Andreyevich Nikulin
  • Patent number: 10011512
    Abstract: An apparatus for forming laminated sheet glass comprises a first upper pipe and a lower pipe and an adjustment mechanism comprising first and second first-upper-pipe suspension rods supported by a first horizontally extending support member, third and fourth first-upper-pipe suspension rods supported by a second horizontally extending support member the first upper pipe supported, directly or indirectly, by the first, second, third, and fourth first-upper-pipe suspension rods, a first and second lower-pipe suspension rod supported by the first horizontally extending support member and a third and fourth lower-pipe suspension rod and supported by the second horizontally extending support member, lower pipe supported, directly or indirectly, by the first, second, third, and fourth lower-pipe suspension rods, each respective rod suspended so as to be horizontally adjustable and independently vertically adjustable.
    Type: Grant
    Filed: November 24, 2014
    Date of Patent: July 3, 2018
    Assignee: Corning Incorporated
    Inventors: Frank Coppola, Gilbert De Angelis, Vladislav Yuryevich Golyatin, John Jerry Kersting, Chris Scott Kogge
  • Publication number: 20180155233
    Abstract: A method of reforming a glass sleeve and a shaping tool is disclosed. The method for reforming a glass sleeve may be carried out by providing a tube made of glass. The tube may have a longitudinal axis and an inner curved surface enclosing a space. The tube may be heated to a temperature within the soften range of the glass. A shaping tool may be introduced. The shaping tool may have at least two opposing fingers into the enclosed space. The at least two opposing fingers may extend generally radially. The at least two opposing fingers may be moved against the inner curved surface along a radial axis to reform the tube to form the first portion.
    Type: Application
    Filed: April 7, 2016
    Publication date: June 7, 2018
    Inventors: Thierry Luc Alain Dannoux, Vladislav Yuryevich Golyatin, Stephane Poissy
  • Patent number: 9914657
    Abstract: A glass fusion draw apparatus for molten glass stream thermal profile control, including: a first enclosure; and a first isopipe situated within the first enclosure, the first enclosure can include at least one first heating element assembly integral with the wall of the first enclosure, and the at least one first heating element is in proximity to a portion of molten glass stream over-flowing the first isopipe within the enclosure. The apparatus can also include a proximity or temperature sensing system associated with the first enclosure that senses and controls the thermal gradient properties of the molten glass stream or streams in the first enclosure. Also disclosed are methods of making and using the fusion apparatus.
    Type: Grant
    Filed: January 31, 2014
    Date of Patent: March 13, 2018
    Assignee: Corning Incorporated
    Inventors: Frank Coppola, Vladislav Yuryevich Golyatin, John Jerry Kersting, Bulent Kocatulum, Monica Jo Mashewske, Piotr Janusz Wesolowski, Xi Xie
  • Publication number: 20180044215
    Abstract: A system includes an overflow distributor and a support member. The overflow distributor includes a first sidewall, a second sidewall opposite the first sidewall, and a floor extending between the opposing first and second sidewalls. Interior surfaces of the first sidewall, the second sidewall, and the floor cooperatively define a trough configured to receive molten glass. Exterior surfaces of the first sidewall and the second sidewall are configured to direct molten glass that overflows the trough. The support member is disposed between the opposing first and second sidewalls of the overflow distributor and abutting an exterior surface of the floor of the overflow distributor.
    Type: Application
    Filed: February 3, 2016
    Publication date: February 15, 2018
    Inventors: Frank Coppola, John Michael Feenaughty, Vladislav Yuryevich Golyatin, John Jerry Kersting, Steven Michael Milillo, Eric James Nichols, Nikolay Anatolyevich Panin