Patents Assigned to The NanoSteel company, Inc.
  • Patent number: 10953465
    Abstract: The present invention relates to alloy compositions for 3D metal printing procedures which provide metallic parts with high hardness, tensile strengths, yield strengths, and elongation. The alloys include Fe, Cr and Mo and at least three or more elements selected from C, Ni, Cu, Nb, Si and N. Ni may be replaced with Mn. As built parts indicate a tensile strength of at least 1000 MPa, yield strength of at least 640 MPa, elongation of at least 3.0% and hardness (HV) of at least 375.
    Type: Grant
    Filed: April 24, 2019
    Date of Patent: March 23, 2021
    Assignee: The NanoSteel Company, Inc.
    Inventors: Charles D. Tuffile, Harald Lemke
  • Patent number: 10920295
    Abstract: The present invention relates to alloy compositions for 3D metal printing procedures which provide metallic parts with high hardness, tensile strengths, yield strengths, and elongation. The alloys include Fe, Cr and Mo and at least three or more elements selected from C, Ni, Cu, Nb, Si and N. As built parts indicate a tensile strength of at least 1000 MPa, yield strength of at least 640 MPa, elongation of at least 3.0% and hardness (HV) of at least 375.
    Type: Grant
    Filed: November 1, 2017
    Date of Patent: February 16, 2021
    Assignee: The NanoSteel Company, Inc.
    Inventors: Charles D. Tuffile, Harald Lemke
  • Patent number: 10851445
    Abstract: The present disclosure is directed at alloys and method for layer-by-layer deposition of metallic alloys on a substrate to produce a metallic part. Applications for the metallic parts include pumps, pump parts, valves, molds, bearings, cutting tools, filters or screens.
    Type: Grant
    Filed: November 2, 2016
    Date of Patent: December 1, 2020
    Assignee: The NanoSteel Company, Inc.
    Inventors: Charles D. Tuffile, Harald Lemke, Patrick E. Mack
  • Patent number: 10654100
    Abstract: The present disclosure is directed at alloys and method for layer-by-layer deposition of metallic alloys on a substrate. The resulting deposition provides for relatively high hardness metallic parts with associated wear resistance. Applications for the metallic parts include pumps, valves and/or bearings.
    Type: Grant
    Filed: May 18, 2015
    Date of Patent: May 19, 2020
    Assignee: The NanoSteel Company, Inc.
    Inventors: Charles D. Tuffile, Harald Lemke
  • Patent number: 10480042
    Abstract: This disclosure is directed at methods for mechanical property improvement in a metallic alloy that has undergone one or more mechanical property losses as a consequence of shearing, such as in the formation of a sheared edge portion or a punched hole. Methods are disclosed that provide the ability to improve mechanical properties of metallic alloys that have been formed with one or more sheared edges which may otherwise serve as a limiting factor for industrial applications.
    Type: Grant
    Filed: April 8, 2016
    Date of Patent: November 19, 2019
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Andrew E. Frerichs, Brian E. Meacham, Grant G. Justice, Andrew T. Ball, Jason K. Walleser, Kurtis Clark, Logan J. Tew, Scott T. Anderson, Scott Larish, Sheng Cheng, Taylor L. Giddens, Alla V. Sergueeva
  • Patent number: 10465260
    Abstract: This disclosure is directed at methods for mechanical property improvement in a metallic alloy that has undergone one or more mechanical property losses as a consequence of forming an edge, such as in the formation of an internal hole or an external edge. Methods are disclosed that provide the ability to improve mechanical properties of metallic alloys that have been formed with one or more edges placed in the metallic alloy by a variety of methods which may otherwise serve as a limiting factor for industrial applications.
    Type: Grant
    Filed: February 21, 2017
    Date of Patent: November 5, 2019
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Andrew E. Frerichs, Brian E. Meacham, Grant G. Justice, Andrew T. Ball, Jason K. Walleser, Kurtis Clark, Logan J. Tew, Scott T. Anderson, Scott Larish, Sheng Cheng, Taylor L. Giddens, Alla V. Sergueeva
  • Patent number: 10378078
    Abstract: This invention relates to prevention of delayed cracking of metal alloys during drawing which may occur from hydrogen attack. The alloys find applications in parts or components used in vehicles, such as bodies in white, vehicular frames, chassis, or panels.
    Type: Grant
    Filed: December 27, 2016
    Date of Patent: August 13, 2019
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Andrew E. Frerichs, Brian E. Meacham, Grant G. Justice, Andrew T. Ball, Jason K. Walleser, Kurtis Clark, Logan J. Tew, Scott T. Anderson, Scott Larish, Sheng Cheng, Taylor L. Giddens, Alla V. Sergueeva
  • Patent number: 10266930
    Abstract: A method of forming an alloy composition including spinodal based glass matrix microconstituents. The method comprises melting an alloy composition comprising iron present in the range of 49 atomic percent (at %) to 65 at %, nickel present in the range of 10.0 at % to 16.5 at %, cobalt optionally present in the range of 0.1 at % to 12 at %, boron present in the range of 12.5 at % to 16.5 at %, silicon optionally present in the range of 0.1 at % to 8.0 at %, carbon optionally present in the range of 2 at % to 5 at %, chromium optionally present in the range of 2.5 at % to 13.35 at %, and niobium optionally present in the range of 1.5 at % to 2.5 at %, cooling the alloy composition at a rate of 103 K/s to 106 K/s.
    Type: Grant
    Filed: November 30, 2015
    Date of Patent: April 23, 2019
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Brian E. Meacham, Jason K. Walleser, Jikou Zhou, Alla V. Sergueeva
  • Publication number: 20190084074
    Abstract: This disclosure relates to weldability of steel alloys that provide weld joints which retain hardness values in a heat affected zone adjacent to a fusion zone and which also have improved resistance to liquid metal embrittlement due to the presence of zinc coatings.
    Type: Application
    Filed: September 18, 2018
    Publication date: March 21, 2019
    Applicant: The NanoSteel Company, Inc.
    Inventors: Daniel James BRANAGAN, Alla V. SERGUEEVA, Brian E. MEACHAM, Andrew E. FRERICHS, Sheng CHENG, Scott T. LARISH, Grant G. JUSTICE, Andrew T. BALL, Craig S. PARSONS, Logan J. TEW, Scott T. ANDERSON, Kurtis R. CLARK, Taylor L. GIDDENS, Tad V. MACHROWICZ, Jonathan M. CISCHKE
  • Patent number: 10233524
    Abstract: This disclosure deals with steel alloys containing mixed microconstituent structure that has the ability to provide ductility at tensile strength levels at or above 900 MPa. More specifically, the alloys contain Fe, B, Si and Mn and indicate tensile strengths of 900 MPa to 1820 MPa and elongations of 2.5% to 76.0%.
    Type: Grant
    Filed: September 24, 2015
    Date of Patent: March 19, 2019
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Grant G. Justice, Andrew T. Ball, Jason K. Walleser, Brian E. Meacham, Kurtis Clark, Logan J. Tew, Scott T. Anderson, Scott Larish, Sheng Cheng, Taylor L. Giddens, Andrew E. Frerichs, Alla V. Sergueeva
  • Publication number: 20190003003
    Abstract: This invention is related to retention of mechanical properties in high strength steel at reduced thicknesses and which mechanical property performance is also retained at relatively high strain rates. These new steels can offer advantages for a myriad of applications where reduced sheet thickness is desirable. In addition, the alloys herein are those that retain useful mechanical properties after introduction of a geometric discontinuity and an accompanying stress concentration.
    Type: Application
    Filed: June 28, 2018
    Publication date: January 3, 2019
    Applicant: The NanoSteel Company, Inc.
    Inventors: Daniel James BRANAGAN, Alla V. SERGUEEVA, Brian E. MEACHAM, Andrew E. FRERICHS, Sheng CHENG, Scott T. LARISH, Grant G. JUSTICE, Andrew T. BALL, Jason K. WALLESER, Logan J. TEW, Scott T. ANDERSON, Kurtis R. CLARK, Taylor L. GIDDENS
  • Patent number: 10054616
    Abstract: A device and method are provided for monitoring voltage and current in a continuous conductor. A current sensor is configured to sense current in the continuous conductor. A voltage sense conductor is provided and a guided path is configured to bring the voltage sense conductor into contact with the continuous conductor at a pre-determined orientation. A communication interface is configured to receive information about a common reference voltage from a source, the source being external to the device. A voltage measuring circuit is configured to estimate voltage between a voltage sensed by the voltage sense conductor and the common reference voltage using the information about the common reference voltage.
    Type: Grant
    Filed: August 16, 2013
    Date of Patent: August 21, 2018
    Assignee: The NanoSteel Company, Inc.
    Inventors: Kevin M. Johnson, Greg Hunter, Paul C. M. Hilton
  • Patent number: 9834832
    Abstract: The present disclosure is directed and formulations and methods to provide alloys having relative high strength and ductility. The alloys may be provided in seamless tubular form and characterized by their particular alloy chemistries and identifiable crystalline grain size morphology. The alloys are such that they include boride pinning phases. In what is termed a Class 1 Steel the alloys indicate tensile strengths of 700 MPa to 1400 MPa and elongations of 10-70%. Class 2 Steel indicates tensile strengths of 800 MPa to 1800 MPa and elongations of 5-65%. Class 3 Steel indicates tensile strengths of 1000 MPa to 2000 MPa and elongations of 0.5-15%.
    Type: Grant
    Filed: January 9, 2014
    Date of Patent: December 5, 2017
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Sheng Cheng, Longzhou Ma, Jason K. Walleser, Grant G. Justice, Andrew T. Ball, Kurtis Clark, Scott Larish, Alissa Peterson, Patrick E. Mack, Brian D. Merkle, Brian D. Meacham, Alla V. Sergueeva
  • Patent number: 9493855
    Abstract: Metallic alloys are disclosed containing Fe at 48.0 to 81.0 atomic percent, B at 2.0 to 8.0 atomic percent, Si at 4.0 to 14.0 atomic percent, and at least one or more of Cu, Mn or Ni, wherein the Cu is present at 0.1 to 6.0 atomic percent, Mn is present at 0.1 to 21.0 atomic percent and Ni is present at 0.1 to 16.0 atomic percent. The alloys may be heated at temperatures of 200° C. to 850° C. for a time period of up to 1 hour and upon cooling there is no eutectoid transformation. The alloys may then be formed into a selected shape.
    Type: Grant
    Filed: February 24, 2014
    Date of Patent: November 15, 2016
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Jason K. Walleser, Brian E. Meacham, Alla V. Sergueeva, Craig S. Parsons
  • Patent number: 9284635
    Abstract: This disclosure deals with a class of metal alloys with advanced property combinations applicable to metallic sheet production. More specifically, the present application identifies the formation of metal alloys of relatively high strength and ductility and the use of one or more cycles of elevated temperature treatment and cold deformation to produce metallic sheet at reduced thickness with relatively high strength and ductility.
    Type: Grant
    Filed: December 18, 2014
    Date of Patent: March 15, 2016
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Grant G. Justice, Andrew T. Ball, Jason K. Walleser, Brian E. Meacham, Kurtis Clark, Longzhou Ma, Igor Yakubtsov, Scott Larish, Sheng Cheng, Taylor L. Giddens, Andrew E. Frerichs, Alla V. Sergueeva
  • Patent number: 9090287
    Abstract: A method of manufacturing a structural support member for a vehicle includes forming a first portion, forming a second portion, and connecting the first portion and the second portion together. The first portion and the second portion may be formed from one of an aluminum material, a magnesium material, a cold-formable steel material, a glass fiber composite material, or a plastic material. The first portion and the second portion are connected together such that the second portion is disposed in a tensile loading condition in response to an impact load applied to the first portion. A laminate layer is attached to the second portion. The laminate layer includes an ultra high strength material having a yield strength equal to or greater than five hundred fifty (550) MPa. The laminate layer may include, for example, an iron based glassy metal foil or an iron based glassy metal foil fabric.
    Type: Grant
    Filed: January 14, 2013
    Date of Patent: July 28, 2015
    Assignees: GM Global Technology Operations LLC, The Nanosteel Company, Inc.
    Inventors: Hesham A. Ezzat, Charles D Tuffile, Marcel R. Cannon
  • Patent number: 9074273
    Abstract: The present disclosure is directed at metal alloys and methods of processing with application to slab casting methods and post-processing steps towards sheet production. The metals provide unique structure and exhibit advanced property combinations of high strength and/or high ductility.
    Type: Grant
    Filed: February 6, 2015
    Date of Patent: July 7, 2015
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Grant G. Justice, Andrew T. Ball, Jason K. Walleser, Brian E. Meacham, Kurtis Clark, Longzhou Ma, Igor Yakubtsov, Scott Larish, Sheng Cheng, Taylor L. Giddens, Andrew E. Frerichs, Alla V. Sergueeva
  • Patent number: 8986472
    Abstract: The present invention is directed at metal alloys that are capable of forming spinodal glass matrix microconstituent structure. The alloys are iron based and include nickel, boron, silicon and optionally chromium. The alloys exhibit ductility and relatively high tensile strengths and may be in the form of sheet, ribbon, wire, and/or fiber. Applications for such alloys are described.
    Type: Grant
    Filed: November 2, 2011
    Date of Patent: March 24, 2015
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Brian E. Meacham, Jason K. Walleser, Alla V. Sergueeva, Andrew T. Ball, Grant G. Justice
  • Patent number: 8882941
    Abstract: An aspect of the present disclosure relates to an alloy composition, which may include 52 atomic percent to 68 atomic percent iron, 13 to 21 atomic percent nickel, 2 to 12 atomic percent cobalt, 10 to 19 atomic percent boron, optionally 1 to 5 atomic percent carbon, and optionally 0.3 to 16 atomic percent silicon. The alloy may include 5 to 95% by volume of one or more spinodal microconstituents, wherein the microconstituents exhibit a length scale less than 50 nm in a glass matrix.
    Type: Grant
    Filed: October 16, 2009
    Date of Patent: November 11, 2014
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Jeffrey E. Shield, Alla V. Sergueeva
  • Patent number: 8858739
    Abstract: A method and system of forming a micro-wire including heating metal feedstock to a liquid state within a glass tube, wherein the metal feedstock includes an iron based glass forming alloy comprising one or more of nickel and cobalt present in the range of 7 atomic percent to 50 atomic percent and one or more of boron, carbon, silicon, phosphorous and nitrogen present in the range of 1 to 35 atomic percent. Negative pressure may be provided to the interior the glass tube and the glass tube containing the metal feedstock may be drawn down. The metal feedstock in the glass tube may be cooled at a rate sufficient to form a wire exhibiting crystalline microstructures present in the range of 2 to 90 percent by volume in a glass matrix.
    Type: Grant
    Filed: October 22, 2010
    Date of Patent: October 14, 2014
    Assignee: The NanoSteel Company, Inc.
    Inventors: Daniel James Branagan, Alla V. Sergueeva, Jikou Zhou, James N. Milloway