Search Patents
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Patent number: 8546718Abstract: An electrode for a contact start plasma arc torch includes an elongated electrode body formed of an electrically conductive material. The electrode body is movable relative to the torch. A resilient element, contacting a proximal end of the electrode body, is used for imparting a separation force to the electrode body. The electrode body is adapted to overcome the separation force and engage a contact element of the torch when the torch is operated in a transferred arc mode.Type: GrantFiled: December 20, 2011Date of Patent: October 1, 2013Assignee: Hypertherm, Inc.Inventors: Jonathan P. Mather, Stephen T. Eickhoff, Jesse Roberts
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Patent number: 7375302Abstract: An electrode for a plasma arc cutting torch which minimizes the deposition of high emissivity material on the nozzle, reduces electrode wear, and improves cut quality. The electrode has a body having a first end, a second end in a spaced relationship relative to the first end, and an outer surface extending from the first end to the second end. The body has an end face disposed at the second end. The electrode also includes at least one passage extending from a first opening in the body to a second opening in the end face.Type: GrantFiled: November 16, 2004Date of Patent: May 20, 2008Assignee: Hypertherm, Inc.Inventors: Peter J. Twarog, Charles M. Hackett, David J. Cook, Bruce P. Altobelli, David L. Bouthillier
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Patent number: 7375303Abstract: An electrode for a plasma arc cutting torch which minimizes the deposition of high emissivity material on the nozzle, reduces electrode wear, and improves cut quality. The electrode has a body having a first end, a second end in a spaced relationship relative to the first end, and an outer surface extending from the first end to the second end. The body has an end face disposed at the second end. The electrode also includes at least one passage extending from a first opening in the body to a second opening in the end face. A controller can control the electrode gas flow through the passages as a function of a plasma arc torch parameter. Methods for operating the plasma arc cutting torch with the electrode are disclosed.Type: GrantFiled: September 9, 2005Date of Patent: May 20, 2008Assignee: Hypertherm, Inc.Inventor: Peter J. Twarog
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Patent number: 8680425Abstract: An electrode for a plasma arc cutting torch which minimizes the deposition of high emissivity material on the nozzle, reduces electrode wear, and improves cut quality. The electrode has a body having a first end, a second end in a spaced relationship relative to the first end, and an outer surface extending from the first end to the second end. The body has an end face disposed at the second end. The electrode also includes at least one passage extending from a first opening in the body to a second opening in the end face. A controller can control the electrode gas flow through the passages as a function of a plasma arc torch parameter. Methods for operating the plasma arc cutting torch with the electrode are disclosed.Type: GrantFiled: April 11, 2008Date of Patent: March 25, 2014Assignee: Hypertherm, Inc.Inventors: Peter J. Twarog, Charles Marcou Hackett, David Jonathan Cook, Bruce Peter Altobelli, David L. Bouthillier
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Patent number: 8115136Abstract: An electrode for a contact start plasma arc torch includes an elongated electrode body formed of an electrically conductive material. The electrode body is movable relative to the torch. A resilient element is used for passing substantially all of a pilot arc current between a power supply, a power connection in electrical communication with the power supply, and the electrode body during pilot arc operation of the plasma arc torch. The electrode and torch can include a contact element having a first surface in electrical communication with the power contact and a second surface for physical contact and electrical communication with a corresponding contact surface of the electrode body for passing substantially all of a transferred arc current between the power supply and the electrode body during transferred arc mode.Type: GrantFiled: February 20, 2007Date of Patent: February 14, 2012Assignee: Hypertherm, Inc.Inventors: Jonathan P. Mather, Stephen T. Eickhoff, Jesse Roberts
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Patent number: 9480139Abstract: An electrode for a plasma arc torch includes a generally cylindrical elongated body formed of an electrically conductive material. The elongated body includes a proximal end that connects to a power supply and a distal end that receives an emissive element. The electrode can include a flange that is disposed about a surface relative to the distal end of the elongated body, extends radially from the surface of the elongated body, and is utilized to establish a uniform gas flow distribution of a plasma gas flow about the distal end of the elongated body. The electrode can include a contact element that is in electrical communication with the proximal end of the electrode. The contact element includes seating portion that has an outer width that is greater than the outermost diameter of the electrode body and is configured to position the contact element within the plasma arc torch.Type: GrantFiled: September 27, 2013Date of Patent: October 25, 2016Assignee: Hypertherm, Inc.Inventors: Yu Zhang, Zheng Duan
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Patent number: 6841754Abstract: A plasma arc torch that includes a torch body having a nozzle mounted relative to a composite electrode in the body to define a plasma chamber. The torch body includes a plasma flow path for directing a plasma gas to the plasma chamber in which a plasma arc is formed. The nozzle includes a hollow, body portion and a substantially solid, head portion defining an exit orifice. The composite electrode can be made of a metallic material (e.g., silver) with high thermal conductivity in the forward portion electrode body adjacent the emitting surface, and the aft portion of the electrode body is made of a second low cost, metallic material with good thermal and electrical conductivity. This composite electrode configuration produces an electrode with reduced electrode wear or pitting comparable to a silver electrode, for a price comparable to that of a copper electrode.Type: GrantFiled: March 8, 2002Date of Patent: January 11, 2005Assignee: Hypertherm, Inc.Inventors: David J. Cook, Kirk H. Ferland, Charles Hackett, Young Yang, Richard W. Couch, Zhipeng Lu
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Patent number: 8035055Abstract: An electrode for a contact start plasma arc torch includes an elongated electrode body formed of an electrically conductive material that defines a longitudinal axis and a distal end for housing an emissive element. The electrode includes a second end positioned adjacent the electrode body. The second end defines an extensive portion having a first length along a first direction and a second length along a second direction. The second length is greater than the first length. A component for use with the electrode includes a hollow body element having an interior surface with one or more of a contour, step, or flange that defines a shaped opening capable of slideably receiving a complementary-shaped portion of an electrode body.Type: GrantFiled: February 20, 2007Date of Patent: October 11, 2011Assignee: Hypertherm, Inc.Inventors: Peter John Twarog, Jonathan P. Mather, Stephen T. Eickhoff, Jesse Roberts
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Patent number: 10561010Abstract: A coolant tube for a plasma arc torch is provided. The coolant tube includes an elongated coolant tube body including a distal portion configured to engage an electrode and a proximal portion configured to engage a body of the plasma arc torch. The coolant tube also includes a first electrically conductive element coupled to the distal portion of the elongated coolant tube body. The first electrically conductive element is configured to physically contact an electrode. The coolant tube further includes a second electrically conductive element coupled to the proximal portion of the elongated coolant tube body. The second electrically conductive element is configured to physically contact the body of the plasma arc torch. The elongated coolant tube body defines a current path and a fluid path between the body of the plasma arc torch and the electrode.Type: GrantFiled: December 21, 2016Date of Patent: February 11, 2020Assignee: Hypertherm, Inc.Inventors: Micah Roberts, Christopher Pillsbury, Steve Dunbar
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Publication number: 20120181257Abstract: A component for a contact start plasma arc torch is provided. The component includes a hollow body defining a channel with a longitudinal axis. The channel is capable of slideably receiving an electrode body along the longitudinal axis. The component includes a contact element disposed in the hollow body and includes a first surface and a second surface. The first surface is adapted to facilitate electrical communication with a power supply and the second surface is adapted to physically contact a surface of the electrode body when the plasma arc torch is operated in a transferred arc mode. In addition, the second surface is characterized by the absence of physical contact with the surface of the electrode body when the torch is operated in a pilot arc mode.Type: ApplicationFiled: January 6, 2012Publication date: July 19, 2012Applicant: Hypertherm, Inc.Inventors: Jonathan P. Mather, Nicholas A. Sanders, Jon W. Lindsay, Peter Twarog, E. Michael Shipulski, Zheng Duan, David Jonathan Cook
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Patent number: 10542614Abstract: An electrode for a plasma arc torch includes a generally cylindrical elongated body formed of an electrically conductive material. The elongated body includes a proximal end that connects to a power supply and a distal end that receives an emissive element. The electrode can include a flange that is disposed about a surface relative to the distal end of the elongated body, extends radially from the surface of the elongated body, and is utilized to establish a uniform gas flow distribution of a plasma gas flow about the distal end of the elongated body. The electrode can include a contact element that is in electrical communication with the proximal end of the electrode. The contact element includes seating portion that has an outer width that is greater than the outermost diameter of the electrode body and is configured to position the contact element within the plasma arc torch.Type: GrantFiled: September 27, 2013Date of Patent: January 21, 2020Assignee: Hypertherm, Inc.Inventors: Zheng Duan, Yu Zhang, Peter Twarog, Sung Je Kim, Michael F. Kornprobst, Josh Murray, Jeffrey Cornish
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Publication number: 20080116179Abstract: A coolant tube and electrode are adapted to mate with each other to align the tube relative to the electrode during operation of the torch. Improved alignment ensures an adequate flow of coolant along an interior surface of the electrode. In one aspect, an elongated body of the coolant tube has a surface adapted to mate with the electrode. In another aspect, an elongated body of the electrode has a surface adapted to mate with the coolant tube. The surfaces of the tube and electrode may, for example, be flanges, tapered surfaces, contours, or steps.Type: ApplicationFiled: November 27, 2007Publication date: May 22, 2008Applicant: Hypertherm, Inc.Inventors: David J. Cook, Richard W. Couch, Aaron D. Brandt, Richard R. Anderson, Brian J. Currier, Jon W. Lindsay, Zheng Duan, Casey Jones, Edward M. Shipulski
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Patent number: 11523492Abstract: A torch tip is provided for a liquid-cooled plasma arc cutting torch. The torch tip includes an electrode with an elongated electrode body having a distal end and a proximal end extending along a longitudinal axis. The electrode body includes at least one interior threaded connection at the proximal end for engaging a liquid-cooled electrode holder. The electrode holder comprises a liquid coolant channel that does not extend into the electrode body. The electrode body has (i) a length extending along the longitudinal axis and (ii) a diameter associated with a widest portion of the electrode body along the longitudinal axis between the proximal and distal ends, where a ratio of the length to the diameter of the electrode body is greater than about 5.Type: GrantFiled: April 6, 2020Date of Patent: December 6, 2022Assignee: Hypertherm, Inc.Inventors: Soumya Mitra, Jeremy Beliveau, John Peters, Stephen M. Liebold
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Patent number: 8759709Abstract: An improved electrode for use in a plasma arc torch. The electrode includes an electrode body, a cavity in a front face at a first end of the electrode body, and an insert disposed in the cavity. The first end of the electrode body is formed of high purity copper containing at least 99.81% copper. The insert has a first end and a second end and is formed of a high emissivity material. A diameter of the first end of the insert is less than a diameter of a second end of the insert. An electrode is compressed to retain the insert using radial compression. The invention also includes a method for forming the electrode, and a method of operation of an electrode in a plasma torch.Type: GrantFiled: May 23, 2012Date of Patent: June 24, 2014Assignee: Hypertherm, Inc.Inventors: Jonathan P. Mather, Peter J. Twarog
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Patent number: 8866038Abstract: A component for a plasma arc torch includes a body portion, a tapered surface on the body portion, the tapered surface including a compressible member that provides a disengagement force relative to the body portion, and an axially disposed surface on the body portion for coupling a mating surface on an adjacent structure of the torch. The component can be a nozzle and/or an electrode.Type: GrantFiled: January 23, 2007Date of Patent: October 21, 2014Assignee: Hypertherm, Inc.Inventors: Jon W. Lindsay, Brent R. Bartlett, Aaron D. Brandt, Zheng Duan, Stephen M. Liebold
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Patent number: 9981335Abstract: A replaceable cartridge for a plasma arc torch includes a cartridge body having a first section and a second section. The first and second sections are joined at an interface to form a substantially hollow chamber. The interface provides a coupling force that secures the first and second sections together. The cartridge also includes an arc constricting member located in the second section; an electrode included within the substantially hollow chamber; and a contact start spring element affixed to the electrode. The spring element imparts a separating force that biases the electrode toward at least one of the first section or the second section of the body. The separating force has a magnitude that is less than a magnitude of the coupling force.Type: GrantFiled: May 11, 2015Date of Patent: May 29, 2018Assignee: Hypertherm, Inc.Inventors: Nicholas A. Sanders, Peter J. Twarog, E. Michael Shipulski, Yu Zhang
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Patent number: 11420286Abstract: A liquid cooled electrode for a contact start plasma arc cutting torch is provided. The electrode includes an elongated body defining a longitudinal axis. The elongated body includes a proximal end shaped to matingly engage a torch body of the plasma arc cutting torch and a distal end located substantially opposite of the proximal end along the longitudinal axis. The electrode also includes one or more contact surfaces disposed on an external surface of the distal end of the electrode body between the proximal and distal ends. The one or more contact surfaces are shaped to physically contact a nozzle disposed within the plasma arc cutting torch during a portion of a pilot arc initiation process. The physical contact is configured to support transmission of a pilot arc current between the electrode and the nozzle with a density of at least about 3000 amps per square inch.Type: GrantFiled: November 19, 2020Date of Patent: August 23, 2022Assignee: Hypertherm, Inc.Inventors: Harshawardhan Jogdand, Girish Kamath, Oliver Murphy, Raifer Allen
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Patent number: 9662747Abstract: An electrode is provided for use in a plasma arc torch. The electrode includes a body having an elongated forward portion and a ring-shaped aft portion. The forward portion is configured to provide an electrically conductive path from the distal end to the proximal end. The forward portion comprises a first conductive material. The ring-shaped aft portion, defining a hollow center, is configured to substantially surround a portion of the forward portion when the forward portion is located inside of the hollow center. The aft portion includes a pneumatic reaction region for receiving a biasing flow of a pressurized gas. The aft portion comprises a second material. In some embodiments, the first conductive material is the same as the second material.Type: GrantFiled: October 14, 2014Date of Patent: May 30, 2017Assignee: Hypertherm, Inc.Inventors: Clifford Glenn Darrow, Carey Chen, Nicholas A. Sanders
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Patent number: 10638591Abstract: A plasma gas swirl ring for a liquid cooled plasma arc torch is provided. The swirl ring comprises a substantially hollow body having a distal end, a proximal end, an interior region defined by an interior surface, and an exterior surface. The interior region of the body is configured to receive an electrode of the plasma arc torch. The swirl ring comprises a first opening disposed within a portion of the proximal end of the body, a second opening disposed about a central portion of the body, and a third opening comprising at least one swirling port disposed within a portion of the distal end of the body. The third opening is configured to provide a swirling flow of the plasma gas about the electrode at the distal end of the body.Type: GrantFiled: April 11, 2017Date of Patent: April 28, 2020Assignee: Hypertherm, Inc.Inventor: John Peters
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Patent number: 10335888Abstract: A swirl ring for a plasma arc torch includes a body configured to at least partially surround and slidingly engage an electrode of the plasma arc torch. The body includes a first end and a second end opposite the first end, the first and second ends defining a longitudinal axis, and at least one protuberance extending from the second end in a direction of the longitudinal axis. The at least one protuberance is configured to engage a switch of the plasma arc torch for sensing a presence of a swirl ring in the plasma arc torch.Type: GrantFiled: February 9, 2018Date of Patent: July 2, 2019Assignee: Hypertherm, Inc.Inventors: Yu Zhang, Jesse A. Roberts, Zheng Duan, Michael Scheller, David Agan, Steven Moody, Stephen T. Eickhoff, Garrett K. Quillia