Patents by Inventor Shenyan Huang

Shenyan Huang 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: 20240123492
    Abstract: A system is provided with a controller configured to receive a computer model of a mold configured to cast a part. The computer model has a variable wall thickness of the mold thermally tailored to a geometry of the part. The controller is configured to control a manufacturing system to produce the mold based on the computer model.
    Type: Application
    Filed: October 14, 2022
    Publication date: April 18, 2024
    Inventors: Jared Micheal Iverson, Shenyan Huang, Christopher Raymond Hanslits, Canan Uslu Hardwicke
  • Publication number: 20240113570
    Abstract: Dual-phase magnetic components include an intermixed first region and second region formed from a single material, wherein the first region includes a magnetic ferrous composition, and wherein the second region includes a non-magnetic austenite composition and a dispersion of nitride precipitates.
    Type: Application
    Filed: September 15, 2023
    Publication date: April 4, 2024
    Inventors: Shenyan Huang, Laura Cerully Dial, Wanming Zhang, Steve John Buresh
  • Publication number: 20240100595
    Abstract: The present application provides a container for use in manufacturing a metal billet from a metal powder in a hot isostatic pressing process. The container may include a top, a bottom, a wall extending between the top and the bottom, an enhanced directional consolidation feature in the wall, and a sleeve positioned about the enhanced directional consolidation feature.
    Type: Application
    Filed: September 26, 2022
    Publication date: March 28, 2024
    Inventors: Steve J. BURESH, Shenyan HUANG
  • Patent number: 11926880
    Abstract: Methods for forming a dual-phase magnetic component from an initial component comprising a non-magnetic austenite composition are provided. The method may include: forming a coating on a portion of the surface of the initial component to form a masked area while leaving an unmasked area thereon. Thereafter the initial component may be heated to a treatment temperature such that nitrogen diffuses out of the unmasked area of the initial component to transform the non-magnetic austenite composition to a magnetic phase in the unmasked area. Thereafter, the initial component may be cooled from the treatment temperature to form a dual-phase magnetic component having a magnetic region corresponding to the unmasked area and a non-magnetic region corresponding to the masked area.
    Type: Grant
    Filed: April 21, 2021
    Date of Patent: March 12, 2024
    Assignee: General Electric Company
    Inventors: Shenyan Huang, Min Zou, Steve John Buresh, Wanming Zhang, Pazhayannur Ramanathan Subramanian
  • Publication number: 20240075523
    Abstract: A method of forming a directionally-solidified casting component using a casting system is provided. The casting system includes a chamber having a heating zone and a cooling zone separated by a baffle plate. The method includes pouring an alloy in a liquid state into a mold shell. The mold shell is positioned on a chill plate within the heating zone. The method further includes moving the mold shell from the heating zone into the cooling zone. The alloy transfers from the liquid state to a solid state within the mold shell while moving the mold shell from the heating zone to the cooling zone. The method further includes contacting the mold shell with a heat transfer member.
    Type: Application
    Filed: September 13, 2023
    Publication date: March 7, 2024
    Inventors: Shenyan Huang, Christopher Raymond Hanslits, Canan Uslu Hardwicke, Jared Micheal Iverson, Jon Conrad Schaeffer
  • Publication number: 20240075521
    Abstract: A casting system for forming a directionally-solidified casting component is provided. The casting system defines an axial direction, a radial direction, and a circumferential direction. The casting system includes a chamber and a baffle plate disposed within the chamber. The chamber and the baffle plate collectively define a heating zone and a cooling zone. The heating zone and the cooling zone are separated by the baffle plate. The casting system further includes a shaft and a cooling plate disposed on the shaft. The cooling plate is movable between the heating zone and the cooling zone. A mold shell is disposed on the cooling plate. The casting system further includes a cooling system for directing a coolant fluid towards the mold shell.
    Type: Application
    Filed: September 7, 2022
    Publication date: March 7, 2024
    Inventors: Jared Micheal Iverson, Christopher Raymond Hanslits, Shenyan Huang, Canan Uslu Hardwicke
  • Patent number: 11833581
    Abstract: A method of forming a directionally-solidified casting component using a casting system is provided. The casting system includes a chamber having a heating zone and a cooling zone separated by a baffle plate. The method includes pouring an alloy in a liquid state into a mold shell. The mold shell is positioned on a chill plate within the heating zone. The method further includes moving the mold shell from the heating zone into the cooling zone. The alloy transfers from the liquid state to a solid state within the mold shell while moving the mold shell from the heating zone to the cooling zone. The method further includes contacting the mold shell with a heat transfer member.
    Type: Grant
    Filed: September 7, 2022
    Date of Patent: December 5, 2023
    Assignee: General Electric Company
    Inventors: Shenyan Huang, Christopher Raymond Hanslits, Canan Uslu Hardwicke, Jared Micheal Iverson, Jon Conrad Schaeffer
  • Patent number: 11739398
    Abstract: A composition includes, by weight percent: Cobalt (Co) between about 4.5 and about 7.0; Chromium (Cr) between about 10.2 and about 11.5; Molybdenum (Mo) between about 0.5 and about 2.5; Tungsten (W) between about 4.0 and about 5.5; Rhenium (Re) between about 0 and about 1.2; Aluminum (Al) between about 6.2 and about 6.8; Tantalum (Ta) between about 4.5 and about 6.0; Titanium (Ti) between about 0 and about 0.5; Hafnium (Hf) between about 0 and about 0.5; Carbon (C) between about 0 and about 0.2; Boron (B) between about 0 and about 0.02; and the balance Nickel (Ni), and other incidental impurities.
    Type: Grant
    Filed: February 11, 2021
    Date of Patent: August 29, 2023
    Assignee: General Electric Company
    Inventors: Akane Suzuki, Chen Shen, Arthur Samuel Peck, Shenyan Huang, Michael Douglas Arnett, Jon Conrad Schaeffer, Pazhayannur Ramanathan Subramanian
  • Publication number: 20230260687
    Abstract: Methods for manufacturing dual phase soft magnetic components include combining a plurality of soft ferromagnetic particles with a plurality of paramagnetic particles to form a component structure, wherein the plurality of soft ferromagnetic particles each comprise an electrically insulative coating, and, heat treating the component structure to consolidate the plurality of soft ferromagnetic particles with the plurality of paramagnetic particles.
    Type: Application
    Filed: February 14, 2022
    Publication date: August 17, 2023
    Inventors: Wanming Zhang, Ananda Barua, Shenyan Huang, Changjie Sun, Vandana Prabhakar Rallabandi, Anthony Joseph Vinciquerra, Min Zou
  • Publication number: 20230257864
    Abstract: A dual phase magnetic component, along with methods of its formation, is provided. The dual phase magnetic component may include an intermixed first region and second region formed from a single material, with the first region having a magnetic area and a diffused metal therein, and with the second region having a non-magnetic area. The second region generally has greater than 0.1 weight % of nitrogen.
    Type: Application
    Filed: April 21, 2023
    Publication date: August 17, 2023
    Inventors: Shenyan Huang, Steve John Buresh, Min Zou, Wanming Zhang, Pazhayannur Ramanathan Subramanian, Deborah D. Whitis
  • Publication number: 20230260686
    Abstract: A bulk dual phase soft magnetic component having a three-dimensional magnetic flux and its manufacturing methods are described herein. The methods can include combining a first powder material with a second powder material to form a component structure, wherein the first powder material comprises a plurality of first particles each comprising a first core and a reactive coating, and wherein the second powder material comprises a plurality of second particles each comprising a second core and a non-reactive coating, and, consolidating the component structure to join the plurality of first particles with the plurality of second particles.
    Type: Application
    Filed: February 14, 2022
    Publication date: August 17, 2023
    Inventors: Shenyan Huang, Min Zou, Wanming Zhang
  • Patent number: 11661646
    Abstract: A dual phase magnetic component, along with methods of its formation, is provided. The dual phase magnetic component may include an intermixed first region and second region formed from a single material, with the first region having a magnetic area and a diffused metal therein, and with the second region having a non-magnetic area. The second region generally has greater than 0.1 weight % of nitrogen.
    Type: Grant
    Filed: April 21, 2021
    Date of Patent: May 30, 2023
    Assignee: General Electric Comapny
    Inventors: Shenyan Huang, Steve John Buresh, Min Zou, Wanming Zhang, Pazhayannur Ramanathan Subramanian, Deborah D. Whitis
  • Publication number: 20220341020
    Abstract: A dual phase magnetic component, along with methods of its formation, is provided. The dual phase magnetic component may include an intermixed first region and second region formed from a single material, with the first region having a magnetic area and a diffused metal therein, and with the second region having a non-magnetic area. The second region generally has greater than 0.1 weight % of nitrogen.
    Type: Application
    Filed: April 21, 2021
    Publication date: October 27, 2022
    Inventors: Shenyan Huang, Steve John Buresh, Min Zou, Wanming Zhang, Pazhayannur Ramanathan Subramanian, Deborah D. Whitis
  • Publication number: 20220340987
    Abstract: Methods for forming a dual-phase magnetic component from an initial component comprising a non-magnetic austenite composition are provided. The method may include: forming a coating on a portion of the surface of the initial component to form a masked area while leaving an unmasked area thereon. Thereafter the initial component may be heated to a treatment temperature such that nitrogen diffuses out of the unmasked area of the initial component to transform the non-magnetic austenite composition to a magnetic phase in the unmasked area. Thereafter, the initial component may be cooled from the treatment temperature to form a dual-phase magnetic component having a magnetic region corresponding to the unmasked area and a non-magnetic region corresponding to the masked area.
    Type: Application
    Filed: April 21, 2021
    Publication date: October 27, 2022
    Inventors: Shenyan Huang, Min Zou, Steve John Buresh, Wanming Zhang, Pazhayannur Ramanathan Subramanian
  • Publication number: 20220251686
    Abstract: A composition includes, by weight percent: Cobalt (Co) between about 4.5 and about 7.0; Chromium (Cr) between about 10.2 and about 11.5; Molybdenum (Mo) between about 0.5 and about 2.5; Tungsten (W) between about 4.0 and about 5.5; Rhenium (Re) between about 0 and about 1.2; Aluminum (Al) between about 6.2 and about 6.8; Tantalum (Ta) between about 4.5 and about 6.0; Titanium (Ti) between about 0 and about 0.5; Hafnium (Hf) between about 0 and about 0.5; Carbon (C) between about 0 and about 0.2; Boron (B) between about 0 and about 0.02; and the balance Nickel (Ni), and other incidental impurities.
    Type: Application
    Filed: February 11, 2021
    Publication date: August 11, 2022
    Inventors: Akane Suzuki, Chen Shen, Arthur Samuel Peck, Shenyan Huang, Michael Douglas Arnett, Jon Conrad Schaeffer, Pazhayannur Ramanathan Subramanian
  • Patent number: 10260370
    Abstract: An article, for example a turbomachinery article is presented. The article includes a weldable first component having a base portion and a flange portion. The flange portion is outwardly projecting normal to a surface of the base portion; and is joined with the base portion by a solid state joint. The base portion comprises a nanostructured ferritic alloy; and the flange portion comprises a steel substantially free of oxide nanofeatures. The first component is joined to a second component through the flange portion of the first component by a weld joint.
    Type: Grant
    Filed: December 10, 2014
    Date of Patent: April 16, 2019
    Assignee: GENERAL ELECTRIC COMPANY
    Inventors: Richard DiDomizio, Anne O'Dell Knight, Laura Cerully Dial, Shenyan Huang, Michael Francis Xavier Gigliotti, Jr.
  • Patent number: 10179943
    Abstract: An article and method of forming the article are disclosed. The article has a surface comprising a nanostructured ferritic alloy. The surface includes a plurality of nanofeatures that include complex oxides of yttrium and titanium disposed in an iron-bearing alloy matrix. The iron-bearing alloy matrix at the surface includes about 5 weight percent to about 30 weight percent of chromium, and about 0.1 weight percent to about 10 weight percent of molybdenum. Further, a concentration of a chi phase or a sigma phase in the nanostructured ferritic alloy at the surface is less than about 5 volume percent. The method generally includes the steps of milling, thermo-mechanically consolidating, annealing, and then cooling at a rate that hinders the formation of chi and sigma phases in the nanostructured ferritic alloy at the surface.
    Type: Grant
    Filed: July 18, 2014
    Date of Patent: January 15, 2019
    Assignee: GENERAL ELECTRIC COMPANY
    Inventors: Shenyan Huang, Richard Didomizio, Raul Basilio Rebak
  • Publication number: 20160312653
    Abstract: An article, for example a turbomachinery article is presented. The article includes a weldable first component having a base portion and a flange portion. The flange portion is outwardly projecting normal to a surface of the base portion; and is joined with the base portion by a solid state joint. The base portion comprises a nanostructured ferritic alloy; and the flange portion comprises a steel substantially free of oxide nanofeatures. The first component is joined to a second component through the flange portion of the first component by a weld joint.
    Type: Application
    Filed: December 10, 2014
    Publication date: October 27, 2016
    Inventors: Richard DiDomizio, Anne O'Dell Knight, Laura Cerully Dial, Shenyan Huang, Michael Francis Xavier Gigliotti, JR.
  • Patent number: 9399223
    Abstract: A system for mechanical milling and a method of mechanical milling are disclosed. The system includes a container, a feedstock, and milling media. The container encloses a processing volume. The feedstock and the milling media are disposed in the processing volume of the container. The feedstock includes metal or alloy powder and a ceramic compound. The feedstock is mechanically milled in the processing volume using metallic milling media that includes a surface portion that has a carbon content less than about 0.4 weight percent.
    Type: Grant
    Filed: July 30, 2013
    Date of Patent: July 26, 2016
    Assignee: General Electric Company
    Inventors: Laura Cerully Dial, Richard DiDomizio, Matthew Joseph Alinger, Shenyan Huang
  • Publication number: 20160207110
    Abstract: An article and method of forming the article are disclosed. The article has a surface comprising a duplex nanostructured ferritic alloy. The surface includes a plurality of nanofeatures that include complex oxides of yttrium and titanium disposed in an iron-bearing alloy matrix. The iron-bearing alloy matrix includes both a ferrite phase and an austenite phase. Further, a concentration of a chi phase or a sigma phase in the duplex nanostructured ferritic alloy at the surface is less than about 5 volume percent. The method generally includes the steps of milling, thermo-mechanically consolidating, annealing, and then cooling at a rate that hinders the formation of chi and sigma phases in the duplex nanostructured ferritic alloy at the surface.
    Type: Application
    Filed: January 20, 2015
    Publication date: July 21, 2016
    Inventors: Shenyan Huang, Raul Basilio Rebak, Richard DiDomizio, Emanuele Pietrangeli