Patents by Inventor Yuhui Jin

Yuhui Jin 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: 20210163349
    Abstract: A chemical ion exchange process, including: dissolving a carbonate salt in a molten salt bath disposed in a furnace and including a non-lithium non-carbonate alkali salt; immersing a lithium-containing glass-based substrate in the molten salt bath including the dissolved carbonate salt and the non-lithium non-carbonate alkali salt, where immersing the lithium-containing glass-based substrate in the molten salt bath results in an ion-exchange between the lithium-containing glass-based substrate and the molten salt bath and results in the formation of a lithium-containing carbonate salt in the molten salt bath; and reducing a concentration of the lithium-containing carbonate salt in the molten salt bath or increasing a solubility limit of the lithium-containing carbonate salt in the molten salt bath.
    Type: Application
    Filed: December 1, 2020
    Publication date: June 3, 2021
    Inventors: Yuhui Jin, Qiao Li, Wei Sun
  • Publication number: 20210165461
    Abstract: An article includes a substrate; a first layer disposed on the first major surface of the substrate, wherein the first layer has an adherence to the substrate of greater than or equal to 4B according to a cross hatch adhesion test set forth in ASTM D3359-17; and at least one ink layer disposed on the first layer having a surface roughness Ra greater than or equal 50 nm to provide a textured surface. Also disclosed is an article a substrate a coating disposed on the first major surface, wherein the coating has an adherence to the substrate of greater than or equal to 4B according to a cross hatch adhesion test set, a gauge hardness greater than or equal to 4H according to a pencil test, and a scratch hardness greater than or equal to 3H according to a pencil test set.
    Type: Application
    Filed: February 12, 2021
    Publication date: June 3, 2021
    Inventors: Matthew Wade Fenton, Yuhui Jin, Timothy James Kiczenski
  • Patent number: 11019739
    Abstract: Methods and apparatus provide for an improved visual and optionally tactile features on a visible element of an article, such as a consumer electronic device (e.g., a mobile electronic device, a mobile phone, a smartphone, a tablet, a phablet, a notebook computer, a laptop, etc.).
    Type: Grant
    Filed: May 7, 2019
    Date of Patent: May 25, 2021
    Assignee: Corning Incorporated
    Inventors: Matthew John Dejneka, Matthew Wade Fenton, Yuhui Jin, Timothy James Kiczenski
  • Patent number: 11009736
    Abstract: Embodiments of anti-glare substrates and articles including the same are disclosed. In one or more embodiments, the anti-glares substrate includes a textured surface with a plurality of features having an average cross-sectional dimension of about 30 micrometers or less. The substrate or article exhibits a transmission haze of 10% or less, a PPDr of about 7% or less or 6% or less, and a DOI of about 80 or less. Method for forming the anti-glare substrates are also disclosed and include etching a surface of a substrate with an etchant having low water solubility to provide an etched surface, and removing a portion of the etched surface. The method includes generating a plurality of insoluble crystals (e.g., any one or more of K2SiF6 and K3AlF6) on the surface while etching the surface. The etchant may include a potassium salt, an organic solvent and a fluoride containing acid.
    Type: Grant
    Filed: April 14, 2020
    Date of Patent: May 18, 2021
    Assignee: Corning Incorporated
    Inventors: Brandon Allen Bazemore, Yuhui Jin, Jun Hou
  • Publication number: 20210108077
    Abstract: Polymer-based portions comprise an index of refraction ranging from about 1.49 to about 1.55. In some embodiments, the polymer-based portion comprises the product of curing 45-75 wt % of a difunctional urethane-acrylate oligomer with 25-55 wt % of a difunctional cross-linking agent and optionally a reactive diluent. In some embodiments, the polymer-based portion comprises the product of curing 75-100 wt % of a reactive diluent and optionally one or more a difunctional urethane-acrylate oligomer and/or a difunctional cross-linking agent. Adhesives comprise an index of refraction ranging from about 1.49 to about 1.55. In some embodiments, the adhesive comprises the product of heating 10-35 wt % of a silane-hydride-terminated siloxane and 65-90 wt % of a vinyl-terminated siloxane. In some embodiments, the adhesive comprises the product of irradiating a thiol-containing siloxane and a photo-initiator with at least one wavelength of light that the photo-initiator is sensitive to.
    Type: Application
    Filed: October 12, 2020
    Publication date: April 15, 2021
    Inventors: Tara Marie Berleue, Charles Brandenburg, Justin Bernard Bult, Matthew John Dejneka, Sushmit Sunil Kumar Goyal, Timothy Michael Gross, Yungfeng Gu, Yuhui Jin, Jenny Kim, Xinghua Li, Jian Luo, Kevin Robert McCarthy, Weijun Niu, Terri Lee Sines-Melock, Michael Lesley Sorensen, Jonathan Earl Walter, Arline Lee Weikel, Lei Yuan
  • Publication number: 20210107829
    Abstract: Foldable apparatus can comprise a foldable substrate comprising a thickness (T) and a plurality of grooves extending through a first major surface. A groove spacing (Gs) is defined between a pair of grooves. A first groove of the plurality of grooves comprises a groove depth (Gd) and a groove width (Gw). In some embodiments, 7.93-6.19*(Gw/T) ?9.52*(Gd/T) +6.05*(Gs/T) <0. In some embodiments, (Gw/T) ?0.1, (Gs/T) ?1.5, 0.3?Gd/T 0.95. In some embodiments, a combined groove volume divided by a central volume can be about 0.3 or more. Methods of making a foldable apparatus comprise drawing a ribbon from a quantity of molten material off a forming device. Methods further comprising impinging a target location of the ribbon traveling in a draw direction with a laser beam to form a groove in the ribbon. In some embodiments, the groove can comprise a plurality of grooves.
    Type: Application
    Filed: October 12, 2020
    Publication date: April 15, 2021
    Inventors: Naigeng Chen, Matthew Wade Fenton, Timothy Michael Gross, Yuhui Jin, Xinghua Li, Yousef Kayed Qaroush, Lei Yuan
  • Publication number: 20210070652
    Abstract: A glass article is provided that includes: a glass substrate comprising a thickness and a primary surface; and a textured region defined by the primary surface. The textured region comprises a low spatial frequency region and a high spatial frequency region substantially superimposed within the low spatial frequency region. Further, the low spatial frequency region comprises an average lateral feature size that exceeds an average lateral feature size of the high spatial frequency region. In addition, the textured region comprises a surface roughness (Ra) from about 10 nm to about 1000 nm.
    Type: Application
    Filed: September 9, 2020
    Publication date: March 11, 2021
    Inventors: Jaymin Amin, Yuhui Jin, Karl William Koch, III, Aize Li, David Lee Weidman
  • Publication number: 20210061705
    Abstract: Glass-based articles comprise stress profiles providing improved scratch resistance. The glass-based articles comprise: a thickness t; a lithium aluminosilicate composition; and a molar ratio of sodium oxide (Na2O) to lithium oxide (Li2O) that is less than or equal to 0.63 at the center of the glass-based article. The articles have a molar ratio of sodium dioxide (Na2O) to lithium dioxide (Li2O) in a post-spike near region that is greater than or equal to 0.9 and/or less than 1.5.
    Type: Application
    Filed: August 28, 2020
    Publication date: March 4, 2021
    Inventors: Yuhui Jin, Joshua James McCaslin, Vitor Marino Schneider, Wei Sun, Taylor Marie Wilkinson
  • Patent number: 10928561
    Abstract: Embodiments of an electronic device comprising an enclosure and electrical components disposed at least partially inside the enclosure, wherein the enclosure comprises a substrate having a tactile surface are disclosed. The tactile surface may include a textured surface, a coated surface or a coated textured surface that exhibits a low fingerprint visibility, when a fingerprint is applied to the tactile surface. In one or more embodiments, the substrate exhibits an average transmittance of about 80% or greater over the visible spectrum, a coefficient of friction less than about 0.3, a surface roughness Ra of about 500 nm or greater, and either one or both a transmission haze greater than about 60%, and a reflection haze at either 2 degrees from specular or 5 degrees from specular greater than 60%.
    Type: Grant
    Filed: November 8, 2019
    Date of Patent: February 23, 2021
    Assignee: Corning Incorporated
    Inventors: Jaymin Amin, Yuhui Jin, Timothy James Kiczenski, Michelle Diane Pierson-Stull
  • Publication number: 20210047236
    Abstract: An article is described herein that includes: a glass, glass-ceramic or ceramic substrate comprising a primary surface; at least one of an optical film and a scratch-resistant film disposed over the primary surface; and an easy-to-clean (ETC) coating comprising a fluorinated material that is disposed over an outer surface of the at least one of an optical film and a scratch-resistant film. The at least one of an optical film and a scratch-resistant film comprises an average hardness of 10 GPa or more. Further, the outer surface of the at least one of an optical film and a scratch-resistant film comprises a surface roughness (Rq) of less than 1.0 nm.
    Type: Application
    Filed: November 2, 2020
    Publication date: February 18, 2021
    Inventors: Kaveh Adib, Robert Alan Bellman, Yuhui Jin, Benedict Yorke Johnson, Timothy Edward Myers, Eric Louis Null, Charles Andrew Paulson, James Joseph Price, Florence Christine Monique Verrier
  • Patent number: 10921860
    Abstract: An article includes a substrate; a first layer disposed on the first major surface of the substrate, wherein the first layer has an adherence to the substrate of greater than or equal to 4B according to a cross hatch adhesion test set forth in ASTM D3359-17; and at least one ink layer disposed on the first layer having a surface roughness Ra greater than or equal 50 nm to provide a textured surface. Also disclosed is an article a substrate a coating disposed on the first major surface, wherein the coating has an adherence to the substrate of greater than or equal to 4B according to a cross hatch adhesion test set, a gauge hardness greater than or equal to 4H according to a pencil test, and a scratch hardness greater than or equal to 3H according to a pencil test set.
    Type: Grant
    Filed: November 14, 2018
    Date of Patent: February 16, 2021
    Assignee: Corning Incorporated
    Inventors: Matthew Wade Fenton, Yuhui Jin, Timothy James Kiczenski
  • Patent number: 10894739
    Abstract: Methods of etching an inorganic layer on a glass substrate are described, the methods comprising contacting the glass substrate including an inorganic layer with an etching solution comprising a polar organic solvent and an etchant, wherein the inorganic layer is removed at an inorganic layer etching rate and the glass substrate is etched as a glass etching rate.
    Type: Grant
    Filed: November 21, 2016
    Date of Patent: January 19, 2021
    Assignee: CORNING INCORPORATED
    Inventors: Yuhui Jin, Aize Li
  • Publication number: 20200407270
    Abstract: A method is described herein of making a textured glass article where the method includes: providing a glass substrate having an initial primary surface and an opposing primary surface; disposing a protective coating on at least one of the initial primary surface or the opposing primary surface; and etching the glass substrate with a hydrofluoric acid-free etchant having a pH of about 7 or less to form a leached layer in the glass substrate.
    Type: Application
    Filed: June 25, 2020
    Publication date: December 31, 2020
    Inventors: Gilbert Alexander Castillo, Melanie Lian Geiger, Yuhui Jin, Aize Li, Ying Zhang
  • Publication number: 20200399173
    Abstract: Methods of manufacturing a glass-based article comprise: after mechanical polishing of a glass-based substrate, treating at least one surface of the glass-based substrate for protection of the at least one surface from contamination and/or for removal of contaminants from the at least one surface by a treatment other than ultrasonic cleaning; and exposing the glass-based substrate to an ion exchange treatment after the treating step to form the glass-based article. The treating step includes: exposing the at least one surface to a high pH soaking for removal of contaminants; deionizing the at least one surface for removal of contaminants; and/or applying a temporary coating to the at least one surface for protection of the at least one surface from contamination, and removing the temporary coating prior to the ion exchange treatment step. The ion exchange treatment may comprise a molten salt bath having an increased pH and temperature.
    Type: Application
    Filed: March 8, 2019
    Publication date: December 24, 2020
    Inventors: Jaymin Amin, Matthew John Dejneka, Yuhui Jin, Robert George Manley, Jonathan Michael Mis, Pascale Oram, Vitor Marino Schneider, Charlene Marie Smith, Wei Sun, Wanda Janina Walczak, Liying Zhang
  • Publication number: 20200377409
    Abstract: A glass article is provided that includes: a glass substrate comprising a thickness and a primary surface; and a textured region defined by the primary surface. The textured region comprises a plurality of sub-surface hillocks, each hillock having a top surface and a base, the base located below the primary surface of the substrate. The plurality of hillocks comprises an average lateral feature size from 0.1 ?m to 3 ?m and an average height from 5 nm to 200 nm. Further, the primary surface of the substrate is substantially planar.
    Type: Application
    Filed: May 28, 2020
    Publication date: December 3, 2020
    Inventors: Yuhui Jin, Aize Li, Qiao Li, Wei Sun
  • Publication number: 20200377406
    Abstract: A method of etching a substrate comprises: contacting a substrate having a thickness with an etchant disposed in a vessel for a period of time until the thickness has reduced by at least 2 ?m and at an average rate of 1 ?m per minute to 6.7 ?m per minute, the etchant having a temperature of 170° C. to 300° C. and comprising a molten mixture of two or more alkali hydroxides; and ceasing contacting the substrate with the etchant. The etchant in some instances comprises a molten mixture of NaOH and KOH. For example, the etchant in some instances includes a molten mixture of 24 wt. % to 72 wt. % NaOH, and 76 wt. % to 28 wt. % KOH. In some instances, the method alters the weight percentage of Na+, K+ and Li+ in the composition of the surface of the substrate by less than 1%.
    Type: Application
    Filed: May 28, 2020
    Publication date: December 3, 2020
    Inventors: Albert Joseph Fahey, Yuhui Jin
  • Patent number: 10843963
    Abstract: Methods for regenerating poisoned salt bath comprising providing a salt bath comprising at least one of KNO3 and NaNO3, providing an ion-exchangeable substrate comprising lithium cations, contacting at least a portion of the ion-exchangeable substrate with the salt bath, whereby lithium cations in the salt bath diffuse from the ion-exchangeable substrate and are dissolved in the salt bath, and selectively precipitating dissolved lithium cations from the salt bath using phosphate salt. The methods further include preventing or reducing the formation of surface defects in the ion-exchangeable substrate by preventing or reducing the formation of crystals on the surface of the ion-exchangeable substrate upon removal from the salt bath.
    Type: Grant
    Filed: February 10, 2020
    Date of Patent: November 24, 2020
    Assignee: Corning Incorporated
    Inventors: Jaymin Amin, Xiaoju Guo, Todd LeRoy Heck, Hongmei Hu, Yuhui Jin, Pascale Oram, Ljerka Ukrainczyk
  • Publication number: 20200361812
    Abstract: A method of modifying a glass substrate comprises: generating surface features with peaks and valleys on a first surface of a glass substrate, the surface features providing a roughness average (Ra) within the range of 10 nm to 2000 nm; generating a region of the glass substrate that is under compressive stress, the region extending from the first surface to a depth of compression; and removing a portion of the region under compressive stress from the first surface into the depth of compression to define a new first surface still having surface features with peaks and valleys providing a roughness average (Ra) within the range of 10 nm to 2000 nm. Removing the portion of the region under compressive stress from the first surface into the depth of the compression to define a new first surface can comprise contacting the first surface with a light etchant.
    Type: Application
    Filed: May 15, 2020
    Publication date: November 19, 2020
    Inventors: Yuhui Jin, Taylor Marie Wilkinson
  • Publication number: 20200361811
    Abstract: A method of modifying a substrate comprising an etching step comprising contacting one or more primary surfaces of a glass, glass-ceramic, or ceramic substrate with a solution for a time period of 20 minutes to 8 hours to generate one or more etched primary surfaces, the solution comprising over 10 percent by weight of one or more alkali hydroxides, the solution having a temperature within the range of 100° C. to 150° C., the substrate having a thickness between the primary surfaces that decreases during the time period by 5 ?m to 100 ?m at a rate of 2 ?m per hour or greater. The solution of the etching step does not comprise hydrogen fluoride. The one or more alkali hydroxides of the solution of the etching step can be sodium hydroxide (NaOH), potassium hydroxide (KOH), or a combination of both sodium hydroxide and potassium hydroxide.
    Type: Application
    Filed: May 13, 2020
    Publication date: November 19, 2020
    Inventors: Janette Dawn Hevner, Yuhui Jin, Aize Li, John Robert Saltzer, JR.
  • Publication number: 20200354262
    Abstract: Disclosed herein are glass compositions with high silica content that present several advantages over glasses and other materials currently used for redistribution layers for RF, interposers, and similar applications. The glasses disclosed herein are low cost, flat glasses that have high throughput for the laser damage and etching process used to create through glass vias (TGVs). TGVs generated using the silicate glasses and processes described herein have large waist diameters, which is a desirable feature with respect to producing glass articles such as interposers.
    Type: Application
    Filed: April 30, 2020
    Publication date: November 12, 2020
    Inventors: Xiaoju Guo, Tian Huang, Yuhui Jin, Tammy Lynn Petriwsky, Liying Zhang