Patents by Inventor Shinhoo Kang

Shinhoo Kang 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: 11377716
    Abstract: Provided is a cermet having improved toughness, the cermet including particles each of which has a complete solid-solution carbide of two or more metals selected, including titanium, from among Group IVa, Va, and VIa metals in the periodic table and has a core/rim structure composed of a core region and a rim region, and a binder composed of a metal, wherein the composition of the Group VIa metal in the core region is lower than the composition in the rim region, and the lattice constant in the rim region is larger than that in the core region.
    Type: Grant
    Filed: March 19, 2019
    Date of Patent: July 5, 2022
    Assignee: SEOUL NATIONAL UNIVERSITY R&DB FOUNDATION
    Inventors: Shinhoo Kang, Heung Nam Han, Choongkwon Park, Nojun Kwak
  • Publication number: 20200140977
    Abstract: Provided is a cermet having improved toughness, the cermet including particles each of which has a complete solid-solution carbide of two or more metals selected, including titanium, from among Group IVa, Va, and VIa metals in the periodic table and has a core/rim structure composed of a core region and a rim region, and a binder composed of a metal, wherein the composition of the Group VIa metal in the core region is lower than the composition in the rim region, and the lattice constant in the rim region is larger than that in the core region.
    Type: Application
    Filed: March 19, 2019
    Publication date: May 7, 2020
    Inventors: Shinhoo Kang, Heung Nam Han, Choongkwon Park, Nojun Kwak
  • Publication number: 20120063943
    Abstract: Provided are a composite powder of a metal and carbide (carbonitride) for a structural material, a sintered body, and methods of preparing the composite powder and sintered body. The composite powder for a structural member has a composition of M1-x % M2C, M1-x % (M2,M1)C, M1-x % M2(CN), or M1-x % (M2,M1)(CN). A matrix-phase metal M1 is one selected from tungsten (W) and molybdenum (Mo) of the periodic table of the elements, an accessory-phase metal M2 is one selected from the group consisting of Group-IV to Group-VI metals of the periodic table of the elements and forms a carbide or carbonitride having an average particle size of about 1 ?m or less, and the matrix-phase metal M1 and the accessory-phase metal M2 coexist due to a reaction.
    Type: Application
    Filed: September 28, 2009
    Publication date: March 15, 2012
    Applicant: SNU R&DB FOUNDATION
    Inventor: Shinhoo Kang
  • Patent number: 7892315
    Abstract: Disclosed are a solid-solution powder, a method for preparing the solid-solution powder, a cermet powder including the solid-solution powder, a method for preparing the cermet powder, a cermet using the cermet powder and a method to prepare the cermet. According to the present invention, the problem of low toughness due to high hardness that conventional cermets (especially TiC or Ti(CN) based cermet) have is resolved because a complete solid-solution phase without core/rim structure is provided to the cermets as a microstructure thereof, and in which further increased the hardness as well as the toughness, thereby substantially and considerably increasing general mechanical properties of materials using the cermet, and thus substituting WC—Co hard material and allowing manufacturing of cutting tools with high hardness and toughness.
    Type: Grant
    Filed: January 23, 2009
    Date of Patent: February 22, 2011
    Assignee: Seoul National University Industry Foundation
    Inventor: Shinhoo Kang
  • Publication number: 20100273638
    Abstract: The present invention relates to a complete solid solution powder used for preparing a cermet composite sintered body, and method for preparing thereof. Particularly, the present invention is directed to a complete solid solution powder which can improve, to a great extent, toughness of a cermet sintered body which is used for high-speed cutting tool materials and die materials in the field of metal working, such as various machine industries and automobile industry, and method for preparing thereof.
    Type: Application
    Filed: December 26, 2008
    Publication date: October 28, 2010
    Applicant: SEOUL NATIONAL UNIVERSITY INDUSTRY FOUNDATION
    Inventor: Shinhoo Kang
  • Publication number: 20100267542
    Abstract: The present invention relates to a complete solid solution powder used for preparing a cermet composite sintered body, and method for preparing thereof under high temperature. Particularly, the present invention is directed to a complete solid solution powder which can improve, to a great extent, toughness of a cermet sintered body which is used for high-speed cutting tool materials and die materials in the field of metal working, such as various machine industries and automobile industry, and method for preparing thereof under high temperature.
    Type: Application
    Filed: December 26, 2008
    Publication date: October 21, 2010
    Applicant: SEOUL NATIONAL UNIVERSITY INDUSTRY FOUNDATION
    Inventor: Shinhoo Kang
  • Patent number: 7651967
    Abstract: Disclosed are a solid-solution powder, a method for preparing the solid-solution powder, a cermet powder including the solid-solution powder, a method for preparing the cermet powder, a cermet using the cermet powder and a method to prepare the cermet. According to the present invention, the problem of low toughness due to high hardness that conventional cermets (especially TiC or Ti(CN) based cermet) have is resolved because a complete solid-solution phase without core/rim structure is provided to the cermets as a microstructure thereof, and in which further increased the hardness as well as the toughness, thereby substantially and considerably increasing general mechanical properties of materials using the cermet, and thus substituting WC—Co Hard material and allowing manufacturing of cutting tools with high hardness and toughness.
    Type: Grant
    Filed: October 20, 2004
    Date of Patent: January 26, 2010
    Assignee: Seoul National University Industry Foundation
    Inventor: Shinhoo Kang
  • Publication number: 20090133534
    Abstract: Disclosed are a solid-solution powder, a method for preparing the solid-solution powder, a cermet powder including the solid-solution powder, a method for preparing the cermet powder, a cermet using the cermet powder and a method to prepare the cermet. According to the present invention, the problem of low toughness due to high hardness that conventional cermets (especially TiC or Ti(CN) based cermet) have is resolved because a complete solid-solution phase without core/rim structure is provided to the cermets as a microstructure thereof, and in which further increased the hardness as well as the toughness, thereby substantially and considerably increasing general mechanical properties of materials using the cermet, and thus substituting WC—Co hard material and allowing manufacturing of cutting tools with high hardness and toughness.
    Type: Application
    Filed: January 23, 2009
    Publication date: May 28, 2009
    Applicant: Seoul National University Industry Foundation
    Inventor: Shinhoo Kang
  • Publication number: 20060216192
    Abstract: Disclosed are a solid-solution powder, a method for preparing the solid-solution powder, a cermet powder including the solid-solution powder, a method for preparing the cermet powder, a cermet using the cermet powder and a method to prepare the cermet. According to the present invention, the problem of low toughness due to high hardness that conventional cermets (especially TiC or Ti(CN) based cermet) have is resolved because a complete solid-solution phase without core/rim structure is provided to the cermets as a microstructure thereof, and in which further increased the hardness as well as the toughness, thereby substantially and considerably increasing general mechanical properties of materials using the cermet, and thus substituting WC—Co Hard material and allowing manufacturing of cutting tools with high hardness and toughness.
    Type: Application
    Filed: October 20, 2004
    Publication date: September 28, 2006
    Applicant: Seoul National University Industry Foundation
    Inventor: Shinhoo Kang
  • Publication number: 20050180875
    Abstract: Disclosed are a solid-solution powder, a method for preparing the solid-solution powder, a cermet powder including the solid-solution powder, a method for preparing the cermet powder, a cermet using the cermet powder and a method to prepare the cermet. According to the present invention, the problem of low toughness due to high hardness that conventional cermets (especially TiC or Ti(CN) based cermet) have is resolved because a complete solid-solution phase without core/rim structure is provided to the cermets as a micro structure thereof, and in which further increased the hardness as well as the toughness, thereby substantially and considerably increasing general mechanical properties of materials using the cermet, and thus substituting WC—Co Hard material and allowing manufacturing of cutting tools with high hardness and toughness.
    Type: Application
    Filed: October 20, 2004
    Publication date: August 18, 2005
    Applicant: Seoul National University Industry Foundation
    Inventor: Shinhoo Kang
  • Patent number: 5108025
    Abstract: A ceramic-metal article including a ceramic rod, a metal rod, and a braze joining the ceramic and metal rods at a braze area of a coaxial bore in the metal rod. The bore gradually decreases in diameter, having an inward seat area sized for close sliding fit about the ceramic, a larger brazing area near the joint end, and a void area intermediate the braze and seat areas. The ceramic is seated without brazing in the bore seat area. The side wall between the brazing area and the metal outer surface is about 0.030-0.080 inch. The braze includes an inner braze layer, an outer braze layer, and an interlayer about 0.030-0.090 inch thick. A shoulder between the brazing and void areas supports the interlayer during bonding while preventing bonding between the void area and the ceramic member, leaving a void space between the void area and the ceramic member. A venting orifice extends generally radially through the metal member from the outer surface to the void space.
    Type: Grant
    Filed: May 20, 1991
    Date of Patent: April 28, 1992
    Assignee: GTE Laboratories Incorporated
    Inventors: Shinhoo Kang, John H. Selverian, Hans J. Kim, Edmund M. Dunn, Kyung S. Kim
  • Patent number: 4904317
    Abstract: An erosion resistant electrical contact material and a method of making the material is described. The material comprises from about 10 to about 20 volume percent of SnO.sub.2, from about 0.45 to about 1.2 volume percent of an oxide selected from the group consisting of TiO.sub.2, CeO.sub.2, ZrO.sub.2, HfO.sub.2, and combinations thereof and the balance being substantially silver.
    Type: Grant
    Filed: May 16, 1988
    Date of Patent: February 27, 1990
    Assignee: Technitrol, Inc.
    Inventors: Shinhoo Kang, Charles Brecher, Philip C. Wingert
  • Patent number: 4883217
    Abstract: A new and improved method of bonding a bonded ceramic-metal article is described. The ceramic-metal article comprises a ceramic article, such as a lanthana-strengthened yttria article, bonded to a metal article, such as niobium, by a layer of a brazing material, such as a brazing alloy consisting essentially of 63% by weight silver, 35.25% by weight copper, and 1.75% by weight titanium to form a bonded ceramic-metal article. The method of bonding the ceramic article to the metal article comprises placing the brazing alloy between the lanthana-strengthened yttria article and the niobium article and heating the layered structure in vacuum at about 50 degrees centigrade above the liquids temperature of the brazing alloy for a period of about 5 minutes.
    Type: Grant
    Filed: March 17, 1989
    Date of Patent: November 28, 1989
    Assignee: GTE Laboratories Incorporated
    Inventors: Edmund M. Dunn, Shinhoo Kang, George C. Wei
  • Patent number: 4883218
    Abstract: A new and improved method of brazing a ceramic-metal article is described. The ceramic-metal article comprises a ceramic article, such as a lanthana-strengthened yttria article, bonded to a metal article, such as niobium, by a layer of a brazing material, such as brazing alloy consisting essentially of 72% by weight silver, 28% by weight copper to form a joined ceramic-metal article. The method of brazing the ceramic article comprises coating a surface of the lanthana-strengthened yttria article with a group IVB metal, such as titanium, hafnium, and zirconium then placing a brazing alloy, such as a brazing alloy consisting essentially of 72% by weight silver and 28% by weight copper or a brazing alloy consisting essentially of 82% by weight gold and 18% by weight nickel, between the coated lanthana-strengthened yttria article and the niobium article and heating the layered structure in vacuum at about 50 degrees centrigrade above the liquidus temperature of the brazing alloy for a period of about 5 minutes.
    Type: Grant
    Filed: March 17, 1989
    Date of Patent: November 28, 1989
    Assignee: GTE Laboratories Incorporated
    Inventors: Edmund M. Dunn, Shinhoo Kang, George C. Wei
  • Patent number: 4817695
    Abstract: A material for electrical contact use has the following composition: 6 to 18 percent tin oxide, 0.25 to 1% germanium oxide, 0.2 to 2% indium oxide, balance silver, all percentages by weight. The material exhibits superior erosion characterstics.
    Type: Grant
    Filed: December 2, 1987
    Date of Patent: April 4, 1989
    Inventors: Philip C. Wingert, Charles Brecher, Han J. Kim, Shinhoo Kang