Patents Assigned to Corning Incorporated
  • Patent number: 11860408
    Abstract: The disclosure provides optical fibers that exhibit low macrobend loss at 1550 nm at bend diameters between 10 mm and 40 mm. The relative refractive index profile of the fibers includes a trench cladding region with small depth, large width and a trench volume configured to minimize macrobend loss at large and small bend diameters. The optical fiber includes an outer cladding region that surrounds and is directly adjacent to the trench cladding region and an optional offset cladding region between the trench cladding region and the core region. In some embodiments, the trench cladding region has a relative refractive index that decreases monotonically from the inner radius to the outer radius. The monotonic decrease in relative refractive index may have a constant slope. The low macrobend loss at large and small diameters makes the optical fibers well suited for space-constrained deployment environments, such as data centers.
    Type: Grant
    Filed: February 28, 2022
    Date of Patent: January 2, 2024
    Assignee: Corning Incorporated
    Inventors: Ming-Jun Li, Pushkar Tandon
  • Patent number: 11860090
    Abstract: Systems and methods of performing a stress measurement of a chemically strengthened glass using a light-scattering polarimetry system include adjusting the intensity of a light beam from a light source in an illumination system using a rotatable half-wave plate and a first polarizer operably disposed between the light source and a rotating light diffuser that has a rotation time tR. The first polarizer is aligned with a second polarizer in a downstream optical compensator to have matching polarization directions by rotating the rotatable half-wave plate to a position where the exposure time tE falls within an exposure range tR?tE. The method also includes performing an exposure using the exposure time tE to obtain the stress measurement. One or both of the half-wave plate and first polarizer can be tilted to avoid deleterious back-reflected light from entering the light source.
    Type: Grant
    Filed: March 31, 2022
    Date of Patent: January 2, 2024
    Assignee: CORNING INCORPORATED
    Inventors: Ryan Claude Andrews, Pierre Michel Bouzi, William John Furnas, Jacob Immerman, Jeremiah Robert Jacobson, Katherine Anne Lindberg, Evan Lewis Olson, Nathaniel David Wetmore
  • Patent number: 11859064
    Abstract: A method of modifying a deformable substrate that includes depositing a sessile liquid droplet on a first surface of a deformable substrate, the sessile liquid droplet forming a deformed region in the first surface of the deformable substrate, the deformed region having a recess and a perimeter rim, the recess extending toward a second surface of the deformable substrate, and the perimeter rim extending away from the second surface of the deformable substrate and curing the deformable substrate, thereby increasing an elastic modulus of the deformable substrate such that upon removal of the sessile liquid droplet, the deformed region remains in the first surface of the deformable substrate.
    Type: Grant
    Filed: May 23, 2019
    Date of Patent: January 2, 2024
    Assignee: CORNING INCORPORATED
    Inventors: Prantik Mazumder, Wageesha Senaratne
  • Patent number: 11858854
    Abstract: A sintered composite ceramic includes: a lithium-garnet major phase; and a lithium-rich minor phase, such that the lithium-rich minor phase has LixTiO(x+4)/2, with 0.66?x?4. The sintered composite ceramic may exhibit a relative density of at least 90% of a theoretical maximum density of the ceramic, an ionic conductivity of at least 0.35 mS·cm?1, or a critical current density (CCD) of at least 1.0 mA·cm?2.
    Type: Grant
    Filed: May 5, 2021
    Date of Patent: January 2, 2024
    Assignees: CORNING INCORPORATED, Shanghai Institute of Ceramics Chinese Academy of Sciences
    Inventors: Michael Edward Badding, Jun Jin, Zhen Song, Jianmeng Su, Zhaoyin Wen, Tongping Xiu, Chujun Zheng
  • Patent number: 11858351
    Abstract: A glass article is provided with a cover glass sheet having first and second major surfaces. The second major surface has a first region with a first curve of a first radius of curvature, and a second region that is different than the first region. A frame's support surface has a third region of a first frame material and a fourth region of a different, second frame material. The second major surface faces the support, and the third region includes a second curve that complements the first curve while the fourth region complements the second region. A first adhesive is between the third region and the first region. A second adhesive is disposed between the fourth region and the second region. The first adhesive has a first Young's modulus, and the second adhesive comprising a second Young's modulus that is different than the first Young's modulus.
    Type: Grant
    Filed: November 19, 2019
    Date of Patent: January 2, 2024
    Assignee: Corning Incorporated
    Inventors: Carlos Francis Alonzo, Atul Kumar, Jinfa Mou, Christopher Mark Schweiger
  • Patent number: 11852549
    Abstract: The hybrid measurement system includes an evanescent prism coupling spectroscopy (EPCS) sub-system and a light-scattering polarimetry (LSP) sub-system. The EPCS sub-system includes an EPCS light source system optically coupled to an EPCS detector system through an EPCS coupling prism. The LSP sub-system includes an LSP light source optically coupled to an optical compensator, which in turn is optically coupled to a LSP detector system via a LSP coupling prism. A support structure supports the EPCS and LSP coupling prisms to define a coupling prism assembly, which supports the two prisms at a measurement location. Stress measurements made using the EPCS and LSP sub-systems are combined to fully characterize the stress properties of a transparent chemically strengthened substrate. Methods of processing the EPCS and LSP measurements and enhanced configurations of the EPCS and LPS sub-systems to improve measurement accuracy are also disclosed.
    Type: Grant
    Filed: February 21, 2022
    Date of Patent: December 26, 2023
    Assignee: Corning Incorporated
    Inventors: Ryan Claude Andrews, David Matthew Berg, Pierre Michel Bouzi, William John Furnas, Jacob Immerman, Jeremiah Robert Jacobson, Katherine Anne Lindberg, Glenn Abram Newcomer, Evan Lewis Olson, Viktor Stepanov, Nathaniel David Wetmore
  • Patent number: 11850314
    Abstract: A method of disinfecting using a light diffusing fiber includes optically coupling a light source to a light diffusing optical fiber having a core, a cladding surrounding the core, an outer surface, and a plurality of scattering structures positioned within the core, the cladding, or both the core and the cladding. The method further includes positioning the light diffusing optical fiber in optical engagement with a pathogen sample and directing light output by the light source into the light diffusing optical fiber for a first time interval. The scattering structures scatter light propagating along the light diffusing optical fiber toward the outer surface and a portion of the light diffuses through the outer surface thereby irradiating the pathogen sample with light having an average power density of about 5 mW/cm2 to about 30 mW/cm2 at a wavelength from about 380 nm to about 495 nm for an exposure time from about 2 hours to about 24 hours.
    Type: Grant
    Filed: January 16, 2019
    Date of Patent: December 26, 2023
    Assignee: Corning Incorporated
    Inventors: William Spencer Klubben, III, Kaitlyn Matias Rees
  • Patent number: 11850564
    Abstract: A flow reactor includes a flow reactor module having a heat exchange fluid enclosure with an inner surface sealed against a surface of a process fluid module, the inner surface having two or more raised ridges crosswise to a heat exchange flow direction from an inflow port or location to an outflow port or location and having a gap of greater than 0.1 mm between the two or more raised ridges and the surface of the process module.
    Type: Grant
    Filed: August 31, 2020
    Date of Patent: December 26, 2023
    Assignee: CORNING INCORPORATED
    Inventors: Sylvain Maxime F Gremetz, Elena Daniela Lavric
  • Patent number: 11851369
    Abstract: A glass article including at least about 40 mol % SiO2 and, optionally, a colorant imparting a preselected color is disclosed. In general, the glass includes, in mol %, from about 40-70 SiO2, 0-25 Al2O3, 0-10 B2O3; 5-35 Na2O, 0-2.5 K2O, 0-8.5 MgO, 0-2 ZnO, 0-10% P2O5 and 0-1.5 CaO. As a result of ion exchange, the glass includes a compressive stress (?s) at at least one surface and, optionally, a color. In one method, communicating a colored glass with an ion exchange bath imparts ?s while in another; communicating imparts ?s and a preselected color. In the former, a colorant is part of the glass batch while in the latter; it is part of the bath. In each, the colorant includes one or more metal containing dopants formulated to impart to a preselected color. Examples of one or more metal containing dopants include one or more transition and/or rare earth metals.
    Type: Grant
    Filed: July 18, 2022
    Date of Patent: December 26, 2023
    Assignee: Corning Incorporated
    Inventors: John Christopher Mauro, Marcel Potuzak
  • Patent number: 11850942
    Abstract: Embodiments of an article comprising a cold-formed glass substrate in a curved shape, a plurality of separate mechanical retainers, and a frame are disclosed. The cold-formed glass substrate has a first major surface, and a second major surface opposing the first major surface. In one more embodiments, the plurality of separate mechanical retainers are attached to the second major surface of the cold-formed glass substrate. The mechanical retainers may be attached to the frame to define a position for each of the plurality of mechanical retainers, such that the mechanical retainers define the curved shape. Embodiments of processes to form such articles are also provided. Such processes can include attaching a plurality of separate mechanical retainers to a flexible glass substrate such that the glass substrate maintains its flexibility, and attaching the mechanical retainers to a frame, such that the mechanical retainers attached to the frame define a cold-formed curved shape for the flexible glass substrate.
    Type: Grant
    Filed: February 25, 2022
    Date of Patent: December 26, 2023
    Assignee: Corning Incorporated
    Inventors: Atul Kumar, Cheng-Chung Li, William Michael Seiderman, Yawei Sun
  • Patent number: 11854180
    Abstract: A non-contact method of characterizing the isostatic strength of a ceramic member or article includes capturing a digital image of the ceramic article, and then forming a two-dimensional representation of the ceramic article and the web therein based on the captured digital image. The method also includes performing finite-element analysis on the two-dimensional representation of the ceramic article using a select amount of simulated isostatic pressure to determine a maximum stress value within the two-dimensional representation of the web. The method further includes using the maximum stress value to characterize the isostatic strength of the ceramic article.
    Type: Grant
    Filed: January 13, 2017
    Date of Patent: December 26, 2023
    Assignee: Corning, Incorporated
    Inventors: Seth Thomas Nickerson, David John Worthey
  • Patent number: 11851379
    Abstract: A method of plugging a honeycomb body is disclosed herein, the method comprising: contacting a first end of the honeycomb body comprising a plurality of channels with a light curable sealing mixture such that an infiltrate of the light curable sealing mixture flows into the plurality of channels proximate the first end; emitting a light toward a first portion of the infiltrate within the plurality channels of the filter; and curing the first portion of the infiltrate within the channels with the light to form a plurality of seals.
    Type: Grant
    Filed: June 26, 2019
    Date of Patent: December 26, 2023
    Assignee: Corning Incorporated
    Inventors: Kevin Eugene Elliott, Christina Marie Laskowski, Michael George Shultz, John Christopher Thomas, Kevin Lee Wasson, Calvin Jay Winder
  • Patent number: 11852560
    Abstract: In a first aspect, a testing assembly for conducting reliability tests on liquid lenses includes a liquid lens, and a test frame arranged to receive the liquid lens. The liquid lens includes a lens body defining a cavity, a first liquid disposed within the cavity, and a second liquid disposed within the cavity that is substantially immiscible with the first liquid such that an interface between the first liquid and the second liquid forms a lens. The test frame includes a front wall, and a back wall oriented substantially parallel to the front wall. The liquid lens mounts to at least one of the front wall or the back wall and the test frame simulates a smart device incorporating a liquid lens.
    Type: Grant
    Filed: May 22, 2019
    Date of Patent: December 26, 2023
    Assignee: CORNING INCORPORATED
    Inventors: Petr Gorelchenko, Raymond Miller Karam, Jonathan David Pesansky, Michael David Shorkey, Ming Ying
  • Patent number: 11851367
    Abstract: Disclosed herein are glass-ceramic articles including a crystalline phase comprising a jeffbenite crystalline structure. The glass-ceramic articles may include a first surface, a second surface opposite the first surface, and a perimeter defining a shape of the glass-ceramic article. The glass-ceramic articles may further include a phase assemblage comprising one or more crystalline phases and a glass phase. The one or more crystalline phases may include a crystalline phase having the jeffbenite crystalline structure.
    Type: Grant
    Filed: July 26, 2023
    Date of Patent: December 26, 2023
    Assignee: Corning Incorporated
    Inventors: George Halsey Beall, John Philip Finkeldey, Charlene Marie Smith
  • Patent number: 11845692
    Abstract: The disclosure relates to highly temperable colored glass compositions. The colored glass compositions have high coefficients of thermal expansion and high Young's moduli that advantageously absorb in the ultraviolet and/or blue wavelength ranges. Methods of making such glasses are also provided.
    Type: Grant
    Filed: September 29, 2022
    Date of Patent: December 19, 2023
    Assignee: Corning Incorporated
    Inventors: Timothy James Kiczenski, Peter Joseph Lezzi, Michelle Diane Pierson-Stull, Jingshi Wu
  • Patent number: 11846597
    Abstract: A method of forming a sensor, such as a glass electrochemical sensor, is described. In some examples, the method may include forming a plurality of apertures in a glass substrate; forming a sensor body comprising the glass substrate and at least one glass sensor component, wherein one or more apertures of the glass substrate are aligned with the at least one glass sensor component to form an outer contact aperture; filling the outer contact aperture in the sensor body with a first conducting material to form an outer contact through glass via (TGV); and forming an electrode on the glass substrate adjacent at least one of the apertures of the plurality of apertures.
    Type: Grant
    Filed: December 28, 2018
    Date of Patent: December 19, 2023
    Assignee: Corning Incorporated
    Inventors: Shrisudersan Jayaraman, Navaneetha Krishnan Subbaiyan
  • Patent number: 11845689
    Abstract: Locally cerammed optically transparent glass-ceramic articles for consumer products. The locally cerammed glass-ceramic articles may have one or more primary glass-ceramic regions including primary crystal phases of a glass-ceramic material and one or more secondary glass-ceramic regions including secondary crystal phases of the glass-ceramic material. The primary glass-ceramic region(s) may be optically transparent and the secondary glass-ceramic region(s) may be non-optically transparent. The primary glass-ceramic region(s) may have a fracture toughness less than the fracture toughness of the secondary glass-ceramic region(s).
    Type: Grant
    Filed: April 9, 2019
    Date of Patent: December 19, 2023
    Assignee: CORNING INCORPORATED
    Inventors: Kirk Wegner Christiansen, Qiang Fu, Petr Gorelchenko, Aniello Mario Palumbo, Michael S Pambianchi, Erick Franklin VanDuyne
  • Patent number: 11840476
    Abstract: ZrO2-toughened glass ceramics having high molar fractions of tetragonal ZrO2 and fracture toughness value of greater than 1.8 MPa·m1/2. The glass ceramic may also include also contain other secondary phases, including lithium silicates, that may be beneficial for toughening or for strengthening through an ion exchange process. Additional second phases may also decrease the coefficient of thermal expansion of the glass ceramic. A method of making such glass ceramics is also provided.
    Type: Grant
    Filed: January 12, 2023
    Date of Patent: December 12, 2023
    Assignee: CORNING INCORPORATED
    Inventors: George Halsey Beall, Qiang Fu, Charlene Marie Smith
  • Patent number: 11840473
    Abstract: A method of manufacturing an optical fiber, the method including drawing a bare optical fiber from an optical fiber preform along a draw pathway. The method further includes during the drawing step, moving a first fluid bearing from a first position to a second position, the first position being removed from the draw pathway and the second position being disposed in the draw pathway such that the movement of the first fluid bearing to the second position causes at least a first portion of the draw pathway to change direction.
    Type: Grant
    Filed: August 25, 2021
    Date of Patent: December 12, 2023
    Assignee: Corning Incorporated
    Inventors: Steven Joseph Gregorski, Kenneth Spencer Morgan, Richard Alan Quinn, Bradley Kent Shepard, John Christopher Thomas, David Andrew Tucker
  • Patent number: 11840475
    Abstract: A glass-ceramic article comprises a petalite crystalline phase and a lithium silicate crystalline phase. The weight percentage of each of the petalite crystalline phase and the lithium silicate crystalline phase in the glass-ceramic article are greater than each of the weight percentages of other crystalline phases present in the glass-ceramic article. The glass-ceramic article has a transmittance color coordinate in the CIELAB color space of: L*=from 20 to 90; a*=from ?20 to 40; and b*=from ?60 to 60 for a CIE illuminant F02 under SCI UVC conditions. In some embodiments, the colorant is selected from the group consisting of TiO2, Fe2O3, NiO, Co3O4, MnO2, Cr2O3, CuO, Au, Ag, and V2O5.
    Type: Grant
    Filed: July 14, 2022
    Date of Patent: December 12, 2023
    Assignee: Corning Incorporated
    Inventors: George Halsey Beall, Qiang Fu, Charlene Marie Smith