Patents by Inventor David Michael Custers

David Michael Custers 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: 20230413395
    Abstract: A rotating magnet heater for metal products, such as aluminum strip, can include permanent magnet rotors arranged above and below a moving metal strip to induce moving or time varying magnetic fields through the metal strip. The changing magnetic fields can create currents (e.g., eddy currents) within the metal strip, thus heating the metal strip. A magnetic rotor set can include a pair of matched magnetic rotors on opposite sides of a metal strip that rotate at the same speed. Each magnetic rotor of a set can be positioned equidistance from the metal strip to avoid pulling the metal strip away from the passline. A downstream magnetic rotor set can be used in close proximity to an upstream magnetic rotor set to offset tension induced by the upstream magnetic rotor set.
    Type: Application
    Filed: August 31, 2023
    Publication date: December 21, 2023
    Applicant: Novelis Inc.
    Inventors: Antoine Jean Willy Pralong, Peter Knelsen, David Anthony Gaensbauer, Rodger Brown, Michael Kosmicki, David Michael Custers, Natasha Iyer, Robert Bruce Wagstaff, Alp Manavbasi, ChangOok Son, Duane E. Bendzinski, Rajeev G. Kamat, David Skingley Wright, Andrew James Hobbis, Christophe Besson
  • Patent number: 11785678
    Abstract: A rotating magnet heater for metal products, such as aluminum strip, can include permanent magnet rotors arranged above and below a moving metal strip to induce moving or time varying magnetic fields through the metal strip. The changing magnetic fields can create currents (e.g., eddy currents) within the metal strip, thus heating the metal strip. A magnetic rotor set can include a pair of matched magnetic rotors on opposite sides of a metal strip that rotate at the same speed. Each magnetic rotor of a set can be positioned equidistance from the metal strip to avoid pulling the metal strip away from the passline. A downstream magnetic rotor set can be used in close proximity to an upstream magnetic rotor set to offset tension induced by the upstream magnetic rotor set.
    Type: Grant
    Filed: September 27, 2017
    Date of Patent: October 10, 2023
    Assignee: NOVELIS INC.
    Inventors: Antoine Jean Willy Pralong, Peter Knelsen, David Anthony Gaensbauer, Rodger Brown, Michael Kosmicki, David Michael Custers, Natasha Iyer, Robert Bruce Wagstaff, Alp Manavbasi, ChangOok Son, Duane E. Bendzinski, Rajeev G. Kamat, David Skingley Wright, Andrew James Hobbis, Christophe Besson
  • Publication number: 20230002876
    Abstract: Systems and methods of pre-ageing of a metal strip during metal processing include passing the metal strip adjacent a magnetic rotor of a reheater. The systems and methods also include heating the metal strip through the magnetic rotor by rotating the magnetic rotor. Rotating the magnetic rotor induces a magnetic field into the metal strip such that the metal strip is heated.
    Type: Application
    Filed: August 17, 2022
    Publication date: January 5, 2023
    Applicant: Novelis Inc.
    Inventor: David Michael Custers
  • Patent number: 11479837
    Abstract: Systems and methods of pre-ageing of a metal strip during metal processing include passing the metal strip adjacent a magnetic rotor of a reheater. The systems and methods also include heating the metal strip through the magnetic rotor by rotating the magnetic rotor. Rotating the magnetic rotor induces a magnetic field into the metal strip such that the metal strip is heated.
    Type: Grant
    Filed: September 27, 2017
    Date of Patent: October 25, 2022
    Assignee: Novelis Inc.
    Inventor: David Michael Custers
  • Patent number: 11268765
    Abstract: System and method for using fast response heaters to pre-heat metal before entering a metal treatment furnace, which may improve control over metal processing, especially in response to changes in material, mass flow rate, line speed, and/or desired treatment process. Fast response heaters may be used with control systems to adjust the output of the fast response heater based on operator inputs, direct or indirect sensing of process parameters, and/or the use of thermal models to quickly adjust fast response heater output while a metal treatment furnace remains at a constant temperature or slowly transitions into a new operating state. The resulting gains in process control result in higher quality products, reduced scrap, and increases in line speed and output.
    Type: Grant
    Filed: April 6, 2020
    Date of Patent: March 8, 2022
    Assignee: Novelis Inc.
    Inventors: David Michael Custers, Michael Bull, Andrew Hobbis
  • Publication number: 20210372470
    Abstract: A non-contact steering device includes one or more magnetic rotors positioned near a metal strip. Each rotor includes one or more permanent magnets and rotates to impart a changing magnetic field on the metal strip passing nearby. The magnetic rotors can rotate around an axis of rotation that is parallel to the longitudinal direction of travel of the metal strip. The magnetic rotors can be positioned to impart forces on the strip in any combination of laterally, vertically, or longitudinally. A control mechanism can control the rotor speed, rotor direction, vertical position of the rotors, vertical spacing between rotors, and/or lateral position of the rotors. In some cases, the control mechanism can be coupled to sensors, such as a light curtain and a laser distance sensor, in order to provide closed loop feedback control of a metal strip passing through the non-contact magnetic rotor steering device.
    Type: Application
    Filed: August 17, 2021
    Publication date: December 2, 2021
    Applicant: Novelis Inc.
    Inventors: Michael Kosmicki, Michael Bommarito, David Gaensbauer, Robert Bruce Wagstaff, David Michael Custers
  • Patent number: 11125271
    Abstract: A method of steering a moving metal strip by positioning one or more magnetic rotors near a metal strip. Each rotor includes one or more permanent magnets and rotates to impart a changing magnetic field on the metal strip passing nearby. The magnetic rotors can rotate around an axis of rotation that is parallel to the longitudinal direction of travel of the metal strip. The magnetic rotors can be positioned to impart forces on the strip in any combination of laterally, vertically, or longitudinally. A control mechanism can control the rotor speed, rotor direction, vertical position of the rotors, vertical spacing between rotors, and/or lateral position of the rotors. In some cases, the control mechanism can be coupled to sensors, such as a light curtain and a laser distance sensor, in order to provide closed loop feedback control of a metal strip passing through the non-contact magnetic rotor steering device.
    Type: Grant
    Filed: June 29, 2020
    Date of Patent: September 21, 2021
    Assignee: NOVELIS INC.
    Inventors: Michael Kosmicki, Michael Bommarito, David Gaensbauer, Robert Bruce Wagstaff, David Michael Custers
  • Patent number: 10844467
    Abstract: A compact heat treatment line can include a short heating zone capable of rapidly bringing a metal strip to a suitable solutionizing temperature through the use of magnetic rotors, such as permanent magnet magnetic rotors. A fast and efficient soaking zone can be achieved as well, such as through the use of magnetic rotors to levitate the metal strip within a gas-filled chamber. Magnetic rotors can further levitate the metal strip through a quenching zone, and can optionally reheat the metal strip prior to final coiling. Magnetic rotors used to heat and/or levitate the metal strip can also provide tension control, can facilitate initial threading of the metal strip, and can cure coatings and/or promote uniformity of coatings/lubricants applied to the metal strip without overheating. Such a heat treatment line can provide continuous annealing and solution heat treating in a much more compacted space than traditional processing lines.
    Type: Grant
    Filed: September 27, 2017
    Date of Patent: November 24, 2020
    Assignee: NOVELIS INC.
    Inventors: David Anthony Gaensbauer, David Michael Custers, Michael Kosmicki, Curtis Eddie, Andrew James Hobbis
  • Publication number: 20200332834
    Abstract: A non-contact steering device includes one or more magnetic rotors positioned near a metal strip. Each rotor includes one or more permanent magnets and rotates to impart a changing magnetic field on the metal strip passing nearby. The magnetic rotors can rotate around an axis of rotation that is parallel to the longitudinal direction of travel of the metal strip. The magnetic rotors can be positioned to impart forces on the strip in any combination of laterally, vertically, or longitudinally. A control mechanism can control the rotor speed, rotor direction, vertical position of the rotors, vertical spacing between rotors, and/or lateral position of the rotors. In some cases, the control mechanism can be coupled to sensors, such as a light curtain and a laser distance sensor, in order to provide closed loop feedback control of a metal strip passing through the non-contact magnetic rotor steering device.
    Type: Application
    Filed: June 29, 2020
    Publication date: October 22, 2020
    Applicant: Novelis Inc.
    Inventors: Michael Kosmicki, Michael Bommarito, David Gaensbauer, Robert Bruce Wagstaff, David Michael Custers
  • Patent number: 10738828
    Abstract: A non-contact steering device includes one or more magnetic rotors positioned near a metal strip. Each rotor includes one or more permanent magnets and rotates to impart a changing magnetic field on the metal strip passing nearby. The magnetic rotors can rotate around an axis of rotation that is parallel to the longitudinal direction of travel of the metal strip. The magnetic rotors can be positioned to impart forces on the strip in any combination of laterally, vertically, or longitudinally. A control mechanism can control the rotor speed, rotor direction, vertical position of the rotors, vertical spacing between rotors, and/or lateral position of the rotors. In some cases, the control mechanism can be coupled to sensors, such as a light curtain and a laser distance sensor, in order to provide closed loop feedback control of a metal strip passing through the non-contact magnetic rotor steering device.
    Type: Grant
    Filed: June 8, 2016
    Date of Patent: August 11, 2020
    Assignee: Novelis Inc.
    Inventors: Michael Kosmicki, Michael Bommarito, David Gaensbauer, Robert Bruce Wagstaff, David Michael Custers
  • Publication number: 20200232706
    Abstract: System and method for using fast response heaters to pre-heat metal before entering a metal treatment furnace, which may improve control over metal processing, especially in response to changes in material, mass flow rate, line speed, and/or desired treatment process. Fast response heaters may be used with control systems to adjust the output of the fast response heater based on operator inputs, direct or indirect sensing of process parameters, and/or the use of thermal models to quickly adjust fast response heater output while a metal treatment furnace remains at a constant temperature or slowly transitions into a new operating state. The resulting gains in process control result in higher quality products, reduced scrap, and increases in line speed and output.
    Type: Application
    Filed: April 6, 2020
    Publication date: July 23, 2020
    Applicant: Novelis Inc.
    Inventors: David Michael Custers, Michael Bull, Andrew Hobbis
  • Patent number: 10648738
    Abstract: System and method for using fast response heaters to pre-heat metal before entering a metal treatment furnace, which may improve control over metal processing, especially in response to changes in material, mass flow rate, line speed, and/or desired treatment process. Fast response heaters may be used with control systems to adjust the output of the fast response heater based on operator inputs, direct or indirect sensing of process parameters, and/or the use of thermal models to quickly adjust fast response heater output while a metal treatment furnace remains at a constant temperature or slowly transitions into a new operating state. The resulting gains in process control result in higher quality products, reduced scrap, and increases in line speed and output.
    Type: Grant
    Filed: June 23, 2016
    Date of Patent: May 12, 2020
    Assignee: NOVELIS INC.
    Inventors: David Michael Custers, Michael Bull, Andrew Hobbis
  • Publication number: 20180087122
    Abstract: Systems and methods of pre-ageing of a metal strip during metal processing include passing the metal strip adjacent a magnetic rotor of a reheater. The systems and methods also include heating the metal strip through the magnetic rotor by rotating the magnetic rotor. Rotating the magnetic rotor induces a magnetic field into the metal strip such that the metal strip is heated.
    Type: Application
    Filed: September 27, 2017
    Publication date: March 29, 2018
    Applicant: Novelis Inc.
    Inventor: David Michael Custers
  • Publication number: 20180092163
    Abstract: A rotating magnet heater for metal products, such as aluminum strip, can include permanent magnet rotors arranged above and below a moving metal strip to induce moving or time varying magnetic fields through the metal strip. The changing magnetic fields can create currents (e.g., eddy currents) within the metal strip, thus heating the metal strip. A magnetic rotor set can include a pair of matched magnetic rotors on opposite sides of a metal strip that rotate at the same speed. Each magnetic rotor of a set can be positioned equidistance from the metal strip to avoid pulling the metal strip away from the passline. A downstream magnetic rotor set can be used in close proximity to an upstream magnetic rotor set to offset tension induced by the upstream magnetic rotor set.
    Type: Application
    Filed: September 27, 2017
    Publication date: March 29, 2018
    Applicant: Novelis Inc.
    Inventors: Antoine Jean Willy Pralong, Peter Knelsen, David Anthony Gaensbauer, Rodger Brown, Michael Kosmicki, David Michael Custers, Natasha Iyer, Robert Bruce Wagstaff, Alp Manavbasi, ChangOok Son, Duane E. Bendzinski, Rajeev G. Kamat, David Skingley Wright, Andrew James Hobbis, Christophe Besson
  • Publication number: 20180087138
    Abstract: A compact heat treatment line can include a short heating zone capable of rapidly bringing a metal strip to a suitable solutionizing temperature through the use of magnetic rotors, such as permanent magnet magnetic rotors. A fast and efficient soaking zone can be achieved as well, such as through the use of magnetic rotors to levitate the metal strip within a gas-filled chamber. Magnetic rotors can further levitate the metal strip through a quenching zone, and can optionally reheat the metal strip prior to final coiling. Magnetic rotors used to heat and/or levitate the metal strip can also provide tension control, can facilitate initial threading of the metal strip, and can cure coatings and/or promote uniformity of coatings/lubricants applied to the metal strip without overheating. Such a heat treatment line can provide continuous annealing and solution heat treating in a much more compacted space than traditional processing lines.
    Type: Application
    Filed: September 27, 2017
    Publication date: March 29, 2018
    Applicant: Novelis Inc.
    Inventors: David Anthony Gaensbauer, David Michael Custers, Michael Kosmicki, Curtis Eddie, Andrew James Hobbis
  • Publication number: 20160377345
    Abstract: System and method for using fast response heaters to pre-heat metal before entering a metal treatment furnace, which may improve control over metal processing, especially in response to changes in material, mass flow rate, line speed, and/or desired treatment process. Fast response heaters may be used with control systems to adjust the output of the fast response heater based on operator inputs, direct or indirect sensing of process parameters, and/or the use of thermal models to quickly adjust fast response heater output while a metal treatment furnace remains at a constant temperature or slowly transitions into a new operating state. The resulting gains in process control result in higher quality products, reduced scrap, and increases in line speed and output.
    Type: Application
    Filed: June 23, 2016
    Publication date: December 29, 2016
    Applicant: NOVELIS INC.
    Inventors: David Michael Custers, Michael Bull, Andrew Hobbis
  • Publication number: 20160363164
    Abstract: A non-contact steering device includes one or more magnetic rotors positioned near a metal strip. Each rotor includes one or more permanent magnets and rotates to impart a changing magnetic field on the metal strip passing nearby. The magnetic rotors can rotate around an axis of rotation that is parallel to the longitudinal direction of travel of the metal strip. The magnetic rotors can be positioned to impart forces on the strip in any combination of laterally, vertically, or longitudinally. A control mechanism can control the rotor speed, rotor direction, vertical position of the rotors, vertical spacing between rotors, and/or lateral position of the rotors. In some cases, the control mechanism can be coupled to sensors, such as a light curtain and a laser distance sensor, in order to provide closed loop feedback control of a metal strip passing through the non-contact magnetic rotor steering device.
    Type: Application
    Filed: June 8, 2016
    Publication date: December 15, 2016
    Applicant: Novelis Inc.
    Inventors: Michael Kosmicki, Michael Bommarito, David Gaensbauer, Robert Bruce Wagstaff, David Michael Custers
  • Publication number: 20100124668
    Abstract: The invention relates to a tread plate product having an aluminum composite structure. The structure includes a core layer and at least one clad layer, wherein the core layer is an alloy of the AA5XXX series alloys in which the Mg content is 2% by weight or more and the clad layer(s) is made of an alloy of the AA3XXX series or AA5XXX series alloys, in which the Mg content is 1% by weight or less. The structure may be made in thin gauge while retaining or enhancing desirable mechanical properties.
    Type: Application
    Filed: November 10, 2009
    Publication date: May 20, 2010
    Inventors: Alok Kumar Gupta, Barney I. Costello, David Michael Custers