Nozzle System Patents (Class 219/121.5)
  • Patent number: 8440937
    Abstract: A self-cleaning GMAW nozzle characterized by the inner surface thereof having a laminate group, preferably composed of sequentially alternating layers of metal and bonding material. Over a period of time of welding, welding spatter begins to accumulate upon an outermost metal layer of the laminate group. As the heat of welding proceeds over this same time, the adhesion of the adjoining bonding layer releases, whereby the outermost metal layer detaches, exposing a clean, new outermost metal layer. The process sequentially repeats until all metal layers have detached.
    Type: Grant
    Filed: December 11, 2008
    Date of Patent: May 14, 2013
    Assignee: GM Global Technology Operations LLC
    Inventors: Jay Hampton, Alexander D. Khakhalev
  • Publication number: 20130098880
    Abstract: A liquid-in-gas injector tube in which the diameter of the inner liquid-bearing tube within the gas-transmitting tube is reduced adjacent the outlet end of the injector. Clogging may be further reduced by adding vanes to the outer surface of the inner liquid-bearing tube within the gas-transmitting tube to impart swirling or otherwise focus the flow of gas at the exit of the injector tube.
    Type: Application
    Filed: August 31, 2012
    Publication date: April 25, 2013
    Applicant: NORTHWEST METTECH CORP.
    Inventors: Alexander Korolev, Zbigniew Celler
  • Patent number: 8420975
    Abstract: A plasma torch includes a torch main unit and a nozzle. The torch main unit has a nozzle seat member on which the nozzle is mounted. The nozzle is arranged to move toward or away from the nozzle seat member in a direction substantially parallel to a center axis of the nozzle when the nozzle is mounted on or removed from the nozzle seat member. The nozzle has an electroconductive surface facing the nozzle seat member. The torch main unit has an elastic electric contact portion contacting with the electroconductive surface of the nozzle to form an electroconductive path for a pilot arc to the nozzle. The electroconductive surface of the nozzle presses the electric contact portion in the direction substantially parallel to the center axis when the nozzle is moved toward the nozzle seat member to mount the nozzle on the nozzle seat member.
    Type: Grant
    Filed: June 27, 2008
    Date of Patent: April 16, 2013
    Assignee: Komatsu Industries Corp.
    Inventors: Yoshihiro Yamaguchi, Kazuhiro Kuraoka
  • Publication number: 20130075372
    Abstract: This application relates to a nozzle (3) for a liquid-cooled plasma cutting torch, having at least one groove (6a) which is arranged on an outer wall (4) of the nozzle (3) with which the liquid makes contact, is oriented with the direction of its longitudinal axis (18) approximately perpendicular to the nozzle mid-axis (17) of the nozzle (3) and reduces the wall thickness (15) of the nozzle (3), at least in this region, and has a groove base (12, 13) that reaches into the wall thickness (15), wherein the groove base (12, 13) of the groove (6a) is formed so as to be approximately parallel to the contour of the inner wall (5) of the nozzle (3).
    Type: Application
    Filed: February 1, 2011
    Publication date: March 28, 2013
    Applicant: HOLMA AG
    Inventor: Manfred Hollberg
  • Publication number: 20130068732
    Abstract: A nozzle for attachment to a cold plasma device configured to maintain delivery of a stable cold plasma. The nozzle can have many different shaped apertures to support different applications requiring different shaped cold plasma plumes. Use of a disc of foam material within a nozzle can expand the size of aperture of a nozzle while maintaining delivery of a stable cold plasma. The nozzle can be an elongated cannula tube for internal delivery of a cold plasma treatment. The cannula tube can provide an aperture at its distal end or one or more apertures along its length. A shroud can partially enclose the distal aperture of the nozzle. A sterile sleeve can be used in conjunction with a nozzle to provide a sterile means of attachment and operation of the nozzle with a cold plasma device.
    Type: Application
    Filed: September 14, 2012
    Publication date: March 21, 2013
    Applicant: Cold Plasma Medical Technologies, Inc.
    Inventors: Gregory A. WATSON, Robert M. HUMMEL, Marc C. JACOFSKY, David J. JACOFSKY
  • Patent number: 8395076
    Abstract: An apparatus and method of manufacturing a plasma torch consumable is disclosed. The invention includes at least two of a tip, a shielding cup, an electrode, and a swirl ring being integral to form a unitary one-piece assembly prior to being attached to the torch. Such a construction minimizes the number of parts that must be handled and orientated when connecting the consumable assembly to a plasma torch.
    Type: Grant
    Filed: November 6, 2003
    Date of Patent: March 12, 2013
    Assignee: Illinois Tool Works Inc.
    Inventor: Tim A. Matus
  • Patent number: 8395077
    Abstract: Plasma arc torches described herein include a torch tip with an improved nozzle that provides angular shield flow injection. In particular, the nozzle provides angular/conical impingement of a fluid (e.g., a shield gas) on an ionized plasma gas flowing through a plasma arc torch. Some of the torch tips described herein include a nozzle with a conical external shape combined with a shield with complementing internal geometry to form the angular fluid flow. As a result, a plasma arc torch including the improved nozzle have the benefits of a stabilized ionized plasma gas flow together with enhanced nozzle cooling and protection from reflecting slag during torch use.
    Type: Grant
    Filed: November 5, 2010
    Date of Patent: March 12, 2013
    Assignee: Hypertherm, Inc.
    Inventors: Zheng Duan, Stephen M. Liebold, Aaron D. Brandt
  • Patent number: 8389888
    Abstract: The invention relates to a plasma torch, comprising: a plasma generator comprising a cathode extending along an axis X and an anode (24), the cathode and the anode being arranged so as to be capable of generating, in a chamber (26), an electric arc between the anode and the cathode due to an electrical voltage, the plasma generator also comprising a plasmagen gas injection device (30) comprising an injection pipe (72) leading, along an injection axis (Ii), to an injection opening (74) in the chamber; a means for injecting a material to be discharged into a plasma flow generated by said plasma generator, the plasma torch being characterized in that: the relationship R? between: the radial distance (yi) of said injection opening, defined as the minimum distance between the axis X and the center of said injection orifice; the largest transverse size (DC) of the cathode in the region of the chamber downstream from the position PAC, wherein PAC denotes the axial position of maximum radial mutual encroachment of th
    Type: Grant
    Filed: March 12, 2010
    Date of Patent: March 5, 2013
    Assignee: Saint-Gobain Centre de Recherches et d'Etudes Europeen
    Inventors: Alain Allimant, Dominique Billieres
  • Patent number: 8389887
    Abstract: A shield for a plasma arc torch that pierces and cuts a metallic workpiece producing a splattering of molten metal directed at the torch, the shield protecting consumable components of the plasma arc torch from the splattering molten metal. The shield can include a body, a first surface of the body configured to be contact-cooled by a gas flow, a second surface of the body configured to be contact-cooled by a liquid flow, and a seal assembly configured to be secured to the body and disposed relative to the second surface configured to retain the liquid flow contact-cooling the second surface.
    Type: Grant
    Filed: September 29, 2008
    Date of Patent: March 5, 2013
    Assignee: Hypertherm, Inc.
    Inventors: Stephen M. Liebold, Jon W. Lindsay, Brian J. Currier
  • Publication number: 20130043222
    Abstract: A retaining cap for a plasma torch is provided that includes fast securing threads. The retaining cap includes internal threads that couple to external threads of a torch body of the plasma torch. The internal and external threads may be multiple start threads having a thread angle greater than 60°. Plasma torches and plasma cutting systems are also provided.
    Type: Application
    Filed: August 19, 2011
    Publication date: February 21, 2013
    Applicant: Illinois Tool Works Inc.
    Inventors: Nathan Gerald Leiteritz, George Arthur Crowe
  • Patent number: 8373087
    Abstract: The invention is a plasma torch for insertion through an opening in the wall of a waste processing chamber. The plasma torch of the invention is characterized by comprising a coaxial sleeve having an upper end and a lower end. The sleeve surrounds at least the portion of the outer surface of the torch that is located in the opening, thereby forming an insulating chamber between the outer surface if the torch and the inner surface of the sleeve. At least a portion of the portion of the coaxial sleeve that surrounds at least the portion of the outer surface of the torch that is located in the opening in the wall of the processing chamber is porous or permeable to a heat exchanging fluid. The torch comprises an inlet for introducing the heat exchanging fluid into the insulating chamber. When the plasma torch is inserted through the opening, a gap exists between the processing chamber wall and the coaxial sleeve.
    Type: Grant
    Filed: April 27, 2006
    Date of Patent: February 12, 2013
    Assignee: E.E.R. Enviromental Energy Resources (Israel) Ltd.
    Inventors: Valeri G. Gnedenko, Alexander L. Suris, David Pegaz
  • Patent number: 8373088
    Abstract: An atmospheric pressure plasma generation apparatus is provided for generating plasma at the atmospheric pressure with stable voltage supply. A plasma generation apparatus of the preset invention includes a first conductor arranged to face a workpiece and having a power plate through power is applied; a second conductor arranged oppositely to a surface facing the workpiece along the first conductor for define a discharge space; and a gas supply unit having a gas supply passage for guiding gas to the discharge space and supporting the first and second conductors. The atmospheric plasma generation apparatus of the present invention is advantageous since the plasma can be uniformly generated in stable manner at an atmospheric pressure on the basis of a stable voltage supply.
    Type: Grant
    Filed: February 1, 2008
    Date of Patent: February 12, 2013
    Inventor: Bang Kwon Kang
  • Patent number: 8367963
    Abstract: A method and apparatus for microplasma spray coating a portion of a turbine vane without masking any portions thereof. The apparatus includes a microplasma gun with an anode, cathode, and an arc generator for generating an electric arc between the anode and cathode. An arc gas emitter injects gas through the electric arc. The electric arc is operable for ionizing the gas to create a plasma gas stream. A powder injector injects powdered material into a plasma stream. A localized area of the turbine vane is coated with the powdered material without having to mask the turbine vane.
    Type: Grant
    Filed: October 29, 2004
    Date of Patent: February 5, 2013
    Assignee: United Technologies Corporation
    Inventors: Paul H. Zajchowski, Donn Blankenship, Gary C. Shubert, Robert L. Memmen
  • Patent number: 8367967
    Abstract: A method and apparatus for repairing a thermal barrier coating on components in gas turbine engines and the like. The apparatus includes a microplasma spray gun having an anode, cathode, and an arc generator for generating an electric arc between the anode and cathode. The apparatus includes a nozzle for emitting arc gas into the electric arc. The electric arc is operable for ionizing the gas to create a plasma gas stream. A powder injector injects powdered thermal barrier coating material into the plasma gas stream. Defective areas of the thermal barrier coating can be patched on the component without masking the component.
    Type: Grant
    Filed: October 29, 2004
    Date of Patent: February 5, 2013
    Assignee: United Technologies Corporation
    Inventors: Paul H. Zajchowski, Donn Blankenship, Gary C. Shubert
  • Patent number: 8362387
    Abstract: Electrodes are disclosed for use in a non-contact initiation plasma arc torch, the electrodes including an electrode body having a distal end opposing the outlet of the nozzle and a tapered section adjacent the distal end configured so that the electrode diameter decreases in the direction of the distal end. The electrode tapered section includes at least one discontinuity forming an edge, the edge being disposed as so to have an included angle of no greater than about 90 degrees. The configuration of the edge provides a localized enhancement of electrical field during non-contact initiation of a pilot arc using the electrode. The discontinuity and edge can be formed in various ways. Related torch designs including nozzles are disclosed.
    Type: Grant
    Filed: December 3, 2010
    Date of Patent: January 29, 2013
    Assignee: Kaliburn, Inc.
    Inventor: Jesse M. Wilson
  • Patent number: 8338740
    Abstract: A nozzle for a plasma torch can include a body that has an inner surface, an outer surface, a proximal end, and an exit orifice at a distal end. The nozzle can also include a liner surrounded by the inner surface of the body. The liner can include a proximal end and an exit orifice at a distal end adjacent the exit orifice of the body. The nozzle can include at least one vent passage formed in the body. The vent passage can have an inlet formed in the inner surface of the body and an outlet formed in the outer surface of the body. The vent passage can be disposed between the proximal end of the body and the proximal end of the liner. The plasma arc torch can include a configuration that allows for increased electrode life and nozzle life for a vented high current plasma process.
    Type: Grant
    Filed: September 30, 2008
    Date of Patent: December 25, 2012
    Assignee: Hypertherm, Inc.
    Inventors: Stephen M. Liebold, Brian J. Currier
  • Patent number: 8334473
    Abstract: A method and apparatus for microplasma spray coating a portion of a substrate, such as a gas turbine compressor blade, without masking any portions thereof. The apparatus includes a microplasma gun with an anode, cathode, and an arc generator for generating an electric arc between the anode and cathode. An arc gas emitter injects inert gas through the electric arc. The electric arc is operable for ionizing the gas to create a plasma gas stream. A powder injector injects powdered material into a plasma stream. A localized area of the compressor blade is coated with the powdered material without having to mask the compressor blade.
    Type: Grant
    Filed: April 22, 2010
    Date of Patent: December 18, 2012
    Assignee: United Technologies Corporation
    Inventors: Paul Zajchowski, Donn Blankenship, Gary Shubert
  • Patent number: 8330069
    Abstract: An ablative plasma gun includes a first portion having a first diameter and a second portion having a second diameter that is larger than the first diameter, wherein a chamber is defined by the first portion and the second portion.
    Type: Grant
    Filed: September 16, 2010
    Date of Patent: December 11, 2012
    Assignee: General Electric Company
    Inventors: Seth Adam Cutler, Dean Arthur Robarge, George William Roscoe
  • Publication number: 20120298631
    Abstract: The invention relates to a nontransferred arc plasma torch comprising: a tubular torch body (10); at least one cathode (20) placed inside said torch body and defining a so-called cathode cavity (50); and at least one tubular anode (30) also placed inside the torch body and forming a plasma ejection nozzle. Said torch is characterized in that the torch also comprises a means (100) for minimizing the resonant pressure waves in said or each cathode cavity. The invention also relates to a method for stabilizing a plasma torch by means of acoustic coupling of the cathode cavity thereof to at least one acoustic oscillator. The invention moreover relates to the use of a thus-stabilized torch for surface coating deposition.
    Type: Application
    Filed: November 12, 2010
    Publication date: November 29, 2012
    Inventors: Vincent Rat, Jean Françoís Coudert
  • Patent number: 8319142
    Abstract: A component for use in a plasma arc torch is provided that includes an orifice that defines a continuously changing cross-sectional size along the length of a surface of the orifice from an inlet portion to an outlet portion. The surface extends along the component and directs a flow of shield gas at a predetermined angle to result in a specific pierce or cut location on a workpiece. In one form, the component is a shield cap. The continuously changing surface may be convergent, divergent, or a combination of convergent and divergent according to the principles of the present disclosure. Additionally, the shield cap may comprise a single, unitary piece or alternately a plurality of pieces or components.
    Type: Grant
    Filed: May 3, 2010
    Date of Patent: November 27, 2012
    Assignee: Thermal Dynamics Corporation
    Inventors: Nakhleh Hussary, Christopher Conway, Thierry Renault, Darrin MacKenzie
  • Patent number: 8309892
    Abstract: There is disclosed a control system for operating automotive vehicle components. The control system typically includes at least a control module programmed with instructions for controlling a heater, a ventilator or both.
    Type: Grant
    Filed: August 23, 2010
    Date of Patent: November 13, 2012
    Assignee: W.E.T. Automotive System, Ltd
    Inventors: Lucas Fernandez, Konstantin Majarov
  • Patent number: 8304684
    Abstract: A plasma torch rotation assembly for relieving stress on a lead. The rotation assembly can include an outer housing, which can have a mounting surface adapted to be fixedly coupled to a torch mount. The rotation assembly can include an inner component disposed at least partially within the outer housing, and a bearing structure disposed between the outer housing and the inner component. The bearing structure can facilitate rotational movement of the outer housing relative to the inner component, about a longitudinal axis of the rotation assembly. The rotation assembly can include a torch adapter disposed near a first end of the inner component. The torch adapter can be adapted to mate with a plasma arc torch. The rotation assembly can include a receiving portion disposed at a second end of the inner component, the receiving portion adapted to receive at least a portion a lead.
    Type: Grant
    Filed: March 29, 2010
    Date of Patent: November 6, 2012
    Assignee: Hypertherm, Inc.
    Inventors: Brian J. Currier, Ross A. Smith, Jeremy Beliveau, Jon W. Lindsay
  • Publication number: 20120248072
    Abstract: A plasma-actuated vortex generator arrangement includes a plurality of spaced-apart vortex generators, and a plasma actuator distributed amongst the plurality of vortex generators.
    Type: Application
    Filed: March 28, 2011
    Publication date: October 4, 2012
    Applicant: Lockheed Martin Corporation
    Inventors: Paul D. McClure, Dennis B. Finley, Sergey Macheret
  • Publication number: 20120241418
    Abstract: Nozzles for plasma torches and plasma torch systems utilizing such nozzles are provided herein. One such nozzle may include a body having a first end, a second end having an exit orifice disposed therein, and a passageway extending from the first end to the second end and adapted to enable the flow of plasma gas from the first end, through the passageway, and to the exit orifice. Greater than or equal to approximately 50% of an overall mass of the body is distributed between the second end and a midpoint of the body with respect to a longitudinal length of the body.
    Type: Application
    Filed: March 23, 2012
    Publication date: September 27, 2012
    Applicant: Illinois Tool Works Inc.
    Inventor: Nathan Gerald Leiteritz
  • Patent number: 8269134
    Abstract: A DC steam plasma torch includes front, middle and rear sections. The front section includes a first amount and a first electrode attached to the first amount, thus defining co-axial first internal and external coolant channels. The middle section includes a second mount and a second electrode co-axially connected to the second mount, thus defining co-axial second internal and external coolant channels. The rear section includes an insulating transient element connected to the second electrode, a window frame connected to the insulating transient element and a window provided in the window frame. A first swirl generator is provided between the first and second sections to receive primary working gas and generating a swirl in the same. A second swirl generator is provided between the middle and rear sections to receive auxiliary working gas and generating a swirl in the same.
    Type: Grant
    Filed: April 25, 2008
    Date of Patent: September 18, 2012
    Assignee: Atomic Energy Council—Institute of Nuclear Energy Research
    Inventors: Deng-Lian Lin, Chin-Ching Tzeng
  • Patent number: 8258424
    Abstract: A plasma arc torch is provided that includes a wear stop designed to detect wear of an electrode and prevent the use of the electrode once the electrode has experienced a certain amount of wear. Either the electrode or the nozzle is movable with respect to the main torch body, and the movable component defines a projection. The wear stop is positioned a predetermined distance from a nozzle of the torch, such that prior to experiencing an excessive amount of wear, the electrode is able to contact the nozzle and initiate a pilot arc for starting a torch operation. Once the length of the electrode becomes shorter than a predetermined length due to wear, the projection of the electrode engages the wear stop, and the wear stop prevents the electrode from contacting the nozzle. In this way, an electrode that is excessively worn cannot be used in subsequent torch operations.
    Type: Grant
    Filed: August 20, 2009
    Date of Patent: September 4, 2012
    Assignee: The ESAB Group, Inc.
    Inventor: David C. Griffin
  • Patent number: 8253058
    Abstract: A hybrid nozzle for use in a plasma spray gun, especially for plasma spraying silicon to form semiconductor devices such as solar cell. The outlet of the gun includes a two-piece annular electrode against which the plasma is ignited and through which the plasma plume exits the gun together with entrained silicon. In one embodiment, the upstream part is composed of graphite to allow ignition of the plasma and the downstream part is composed of pure silicon. In another aspect, the silicon feedstock is injected into the plasma plume through ports formed through the silicon part.
    Type: Grant
    Filed: March 9, 2010
    Date of Patent: August 28, 2012
    Assignee: Integrated Photovoltaics, Incorporated
    Inventor: Raanan Zehavi
  • Patent number: 8242404
    Abstract: A plasma jet system includes a housing with a single opening. A plasma generator is coupled to ionize a fluid in the housing. An electromagnetic accelerator is coupled to generate an electric field that accelerates ionized fluid in the housing toward the opening. A controller can modulate the frequency of the electric field to cause the ionized fluid to form a plasma vortex flow through the opening. A magnetic field is applied normal to the direction of the plasma vortex flow to mitigate the momentum of the electrons. The electrons slowed by the magnetic field can be collected and conducted to a location where they are re-inserted into the plasma vortex flow to maintain charge neutrality.
    Type: Grant
    Filed: December 15, 2010
    Date of Patent: August 14, 2012
    Assignee: Lockheed Martin Corporation
    Inventors: Daniel N. Miller, Paul D. McClure, Charles J. Chase, Robert R. Boyd
  • Patent number: 8222561
    Abstract: A drag tip for use in a plasma cutting torch is provided that includes an inner tip portion defining a distal end face, an inner cavity through which a plasma gas flows, and an orifice disposed between the distal end face and the inner cavity. An outer tip portion surrounds the inner tip portion and defines an inner chamber to accommodate a flow of secondary gas and also a distal end portion. The distal end face of the inner tip portion is adapted for contact with a workpiece and extends distally beyond the distal end portion of the outer tip portion, and the flow of secondary gas exits the outer tip portion proximate the distal end portion. Variations of the drag tip and methods of operation are also provided.
    Type: Grant
    Filed: September 4, 2007
    Date of Patent: July 17, 2012
    Assignee: Thermal Dynamics Corporation
    Inventors: Thierry R. Renault, Nakhleh A. Hussary, Christopher J. Conway, Darrin H. MacKenzie
  • Patent number: 8212173
    Abstract: A shield for a plasma arc torch that pierces and cuts a metallic workpiece producing a splattering of molten metal directed at the torch, the shield protecting consumable components of the plasma arc torch from the splattering molten metal. The shield can include a body, a first surface of the body configured to be contact-cooled by a gas flow, a second surface of the body configured to be contact-cooled by a liquid flow, and a seal assembly configured to be secured to the body and disposed relative to the second surface configured to retain the liquid flow contact-cooling the second surface.
    Type: Grant
    Filed: March 12, 2008
    Date of Patent: July 3, 2012
    Assignee: Hypertherm, Inc.
    Inventors: Stephen M. Liebold, Jon W. Lindsay
  • Patent number: 8212172
    Abstract: The invention relates to a vapor plasma burner (6) comprising a burner handle (6a) and a burner base (6b). Inside the burner base (6b), a liquid feed pipe (32), a heating device (26), a burner chamber (27), a cathode (22), connected to a cathode support (28), and an anode (24) which is configured as a nozzle (23) and has an exit opening (25) are arranged. The invention also relates to a cathode (22) and to a nozzle (23) for such a vapor plasma burner (6). The aim of the invention is to provide a vapor plasma burner (6) that can be optimally ignited and the wearing parts of which can be easily removed.
    Type: Grant
    Filed: September 6, 2006
    Date of Patent: July 3, 2012
    Assignee: Fronius International GmbH
    Inventors: Wolfgang Haberler, Michal Heinrich, Harald Langeder, Heribert Pauser, Florian Silbermayr, Max Stöger
  • Patent number: 8212174
    Abstract: A casing is used for being rotatably disposed in a plasma jet system. The casing is rotated around a central axis. The casing comprises a main body and a plasma nozzle. The main body has a first cavity. The plasma nozzle is disposed under the main body and has a second cavity and a straight channel. The second cavity is connected to the first cavity. The straight channel is located at a side of the plasma nozzle opposite to the main body and connected to the second cavity. The straight channel has an extension axis which is substantially parallel with the central axis and separated from the central axis by an interval. Plasma generated by the plasma jet system jets out through the straight channel.
    Type: Grant
    Filed: August 7, 2009
    Date of Patent: July 3, 2012
    Assignee: Industrial Technology Research Institute
    Inventors: Chen-Der Tsai, Wen-Tung Hsu, Chin-Jyi Wu, Chih-Wei Chen
  • Publication number: 20120152912
    Abstract: 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: Application
    Filed: December 20, 2011
    Publication date: June 21, 2012
    Applicant: Hypertherm, Inc.
    Inventors: Jonathan P. Mather, Stephen T. Eickhoff, Jesse Roberts
  • Publication number: 20120152913
    Abstract: 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. The electrode and torch can include a contact element having a first surface in electrical communication with the power contact and a second surface characterized by (i) physical contact with the electrode body during transferred arc mode and (ii) absence of physical contact with the electrode body during initiation of a pilot arc.
    Type: Application
    Filed: December 20, 2011
    Publication date: June 21, 2012
    Applicant: Hypertherm, Inc.
    Inventors: Jonathan P. Mather, Stephen T. Eickhoff, Jesse Roberts
  • Publication number: 20120138579
    Abstract: A nozzle for a liquid-cooled plasma torch, comprising a nozzle bore for the exit of a plasma gas jet at a nozzle tip, a first portion, the outer surface of which is substantially cylindrical, and a second portion adjacent thereto towards the nozzle tip, the outer surface of which tapers substantially conically towards the nozzle tip, wherein at least one liquid supply groove and/or at least one liquid return groove is/are provided and extend over the second portion in the outer surface of the nozzle (4) towards the nozzle tip, and wherein the liquid supply groove or at least one of the liquid supply grooves and/or a liquid return groove or at least one of the liquid return grooves also extends/extend over part of the first portion, and there is in the first portion at least one groove which communicates with the liquid supply groove or at least one of the liquid supply grooves or with the liquid return groove or at least one of the liquid return grooves.
    Type: Application
    Filed: May 31, 2010
    Publication date: June 7, 2012
    Applicant: Kjellberg Finsterwalde Plasma Und Maschinen GMBH
    Inventors: Volker Krink, Frank Laurisch, Timo Grundke
  • Publication number: 20120138578
    Abstract: Electrodes are disclosed for use in a non-contact initiation plasma arc torch, the electrodes including an electrode body having a distal end opposing the outlet of the nozzle and a tapered section adjacent the distal end configured so that the electrode diameter decreases in the direction of the distal end. The electrode tapered section includes at least one discontinuity forming an edge, the edge being disposed as so to have an included angle of no greater than about 90 degrees. The configuration of the edge provides a localized enhancement of electrical field during non-contact initiation of a pilot arc using the electrode. The discontinuity and edge can be formed in various ways. Related torch designs including nozzles are disclosed.
    Type: Application
    Filed: December 3, 2010
    Publication date: June 7, 2012
    Applicant: ITT MANUFACTURING ENTERPRISES, INC.
    Inventor: Jesse M. Wilson
  • Publication number: 20120138580
    Abstract: A nozzle protection cap for an arc plasma torch comprises a front end section and a rear end section with a thread region on its inner surface for screwing to a torch body of an arc plasma torch. At least one groove crosses the thread region on the inner surface. A nozzle protection cap holder for the arc plasma torch comprises a section with a thread region on its outer surface for screwing to the nozzle protection cap. At least one groove crosses the thread region on its outer surface. An arc plasma torch comprises a torch body and a nozzle protection cap screwed thereto in a screw connection region. The torch body and/or the nozzle protection cap is/are designed so that at least one channel is formed between them, the channel crossing the screw connection region.
    Type: Application
    Filed: August 4, 2010
    Publication date: June 7, 2012
    Inventors: Volker Krink, Frank Laurisch, Timo Grundke, Martin Kroschwald
  • Patent number: 8168915
    Abstract: A cutting torch splatter and glare guard includes a collar that is structured for releasable engagement with a cutting torch. The collar has first and second collar portions that are biased towards a first position for engagement with the cutting torch and movable against the bias towards a second position for disengagement with the cutting torch. A guard plate coupled to the collar and structured to block splatter and cutting debris emanating from a cutting surface. A plurality of shield plates is pivotably attached to the guard plate so as to pivot info and out of an orientation extending generally perpendicular downwardly relative to the guard plate.
    Type: Grant
    Filed: April 22, 2009
    Date of Patent: May 1, 2012
    Assignee: Messer Cutting Systems Inc.
    Inventor: Andrew Janecek
  • Patent number: 8148661
    Abstract: A DC plasma torch which includes a long lasting thermionic cathode and has a high thermal efficiency. The DC plasma torch employs a solid cathode made of graphite with highly ordered structure such as Pyrolitic Graphite or Carbon-Carbon composites. Furthermore, carbon containing gases will be used as plasma gas. The cathode will allow for theoretically an unlimited lifetime of the cathode.
    Type: Grant
    Filed: May 16, 2007
    Date of Patent: April 3, 2012
    Inventors: Valerian Pershin, Javad Mostaghimi, Liming Chen
  • Publication number: 20120055906
    Abstract: A nozzle for a plasma arc cutting torch includes a substantially hollow, elongated body capable of receiving an electrode. The nozzle body defines a longitudinal axis and has a length along the axis from a first end of the nozzle body to a second end of the nozzle body. The nozzle also includes a plasma exit orifice disposed at the first end of the body. The first end of the nozzle body has a width and a ratio of the length of the nozzle body to the width of the nozzle body is greater than about 3.
    Type: Application
    Filed: September 9, 2011
    Publication date: March 8, 2012
    Applicant: Hypertherm, Inc.
    Inventors: E. Michael Shipulski, Nicholas A. Sanders, Jay L. Jason, Jonathan Mather, Peter J. Twarog
  • Patent number: 8128783
    Abstract: A plasma generator is provided which includes: a microwave generation portion which generates a microwave; a wave guide for propagating the microwave; a plurality of plasma generation nozzles which are attached to the wave guide so as to be apart from each other in the direction where the microwave is propagated, receive the microwave, and generate and emit a plasmatic gas based on the energy of this microwave; and a plurality of stabs which correspond to a part or the whole part of the plasma generation nozzles and are each disposed in the wave guide so as to lie in a rear position a predetermined distance apart from each other in the direction where the microwave is propagated.
    Type: Grant
    Filed: September 12, 2007
    Date of Patent: March 6, 2012
    Assignees: Amarante Technologies, Inc., Saian Corporation
    Inventors: Hidetaka Matsuuchi, Ryuichi Iwasaki, Hirofumi Mankawa, Shigeru Masuda, Masaaki Mike, Sang Hun Lee
  • Patent number: 8129654
    Abstract: The present invention relates to a plasmatron structure for heating working gas in a DC arc discharge at the atmospheric or lowered pressures and can be used for different electronic, engineering, or vehicle-building industries and for medicine. An object of the invention is to provide improved effectiveness of process gas activation and increased completeness of plasma-chemical reactions. These objects are achieved in a DC arc plasmatron comprising a rod cathode, a nozzle anode having a body member and a through axial orifice, a power supply unit connected to both electrodes, and a gas system for feeding plasma-forming gas into inter-electrode space and supplying suitably selected technologic gas or gas mixture into the anode orifice through an internal opening communicating with said orifice and positioned between its inlet and outlet parts.
    Type: Grant
    Filed: December 26, 2006
    Date of Patent: March 6, 2012
    Assignee: Cheju National University Industry Academic Cooperation Foundation
    Inventors: Heon-Ju Lee, Yong-Son Mok, Valentin Anatolievich Riaby, Valdim Yu Plaksin
  • Publication number: 20120031881
    Abstract: A blow-back plasma arc torch employs a plasma gas and a separately supplied secondary fluid. The secondary fluid serves to internally cool an electrode of the torch and to shield the plasma gas and arc emanating from the primary nozzle of the torch. The secondary fluid can be a gas or liquid water. Secondary fluid or plasma gas is used to actuate a piston to which the electrode is connected so as to move the electrode from a starting position to an operating position. The secondary fluid is supplied to the torch at a greater mass flow rate than the plasma gas.
    Type: Application
    Filed: August 9, 2010
    Publication date: February 9, 2012
    Inventor: David C. Griffin
  • Publication number: 20120012560
    Abstract: A nozzle for a plasma arc torch includes a body having a first end and a second end. The nozzle also includes a plasma exit orifice located at the first end of the body. A flange is located at the second end of the body. The flange is adapted to mate with a corresponding consumable. The flange is configured to selectively block at least one gas passage in the corresponding consumable to establish a gas flow relative to the nozzle body.
    Type: Application
    Filed: December 29, 2010
    Publication date: January 19, 2012
    Applicant: Hypertherm , Inc.
    Inventors: Jesse Roberts, Peter Twarog, Zheng Duan, Sung Je Kim
  • Patent number: 8097828
    Abstract: Apparatus and methods for thermally processing a workpiece include directing a plasma arc to the workpiece and using a dielectric shield or dielectric coating to protect a forward portion (e.g., a torch head) of a plasma arc torch. The dielectric shield or dielectric coating covers a nozzle disposed within the torch head and protects the nozzle from the effects of slag and double arcing. The shield also improves operator visibility due to the spatial relationship between the dielectric shield and the nozzle.
    Type: Grant
    Filed: December 22, 2006
    Date of Patent: January 17, 2012
    Assignee: Hypertherm, Inc.
    Inventors: Jesse A. Roberts, Michael F. Kornprobst, David Jonathan Cook
  • Patent number: 8089025
    Abstract: A method and apparatus for a gas-cooled plasma arc torch. Components of the torch can include an electrode, nozzle and a shield, each of which can be gas-cooled. The nozzle can be disposed relative to the electrode and can include a generally hollow conductive body and a cooling gas flow channel defined by at least one fin disposed about an exterior surface of the body, the body providing a thermal conductive path that transfers heat between the nozzle to the cooling gas flow channel during operation of the torch. The shield can be disposed relative to the nozzle and can include a generally hollow conductive body and a cooling gas flow channel defined by at least one fin disposed about an exterior surface of the body, the body providing a thermal conductive path that transfers heat between the shield to the cooling gas flow channel during operation of the torch.
    Type: Grant
    Filed: February 15, 2008
    Date of Patent: January 3, 2012
    Assignee: Hypertherm, Inc.
    Inventor: Nicholas A. Sanders
  • Patent number: 8080759
    Abstract: A plasma apparatus is provided including a cathode module, an anode module, and at least one inter-electrode insert located between the cathode module and the anode module. The cathode module includes at least one cathode, and a pilot module may be provided adjacent to the cathode module. The pilot module may assist ignition of the plasma apparatus. The inter-electrode insert may have an upstream and a downstream transverse surface. Both the upstream transverse surface and the downstream transverse surface are angled in a downstream direction.
    Type: Grant
    Filed: July 6, 2010
    Date of Patent: December 20, 2011
    Inventor: Vladimir E. Belaschenko
  • Publication number: 20110284502
    Abstract: A nozzle for a liquid cooled plasma torch includes a nozzle bore for the exit of a plasma gas beam at a nozzle tip, a first section, of which the outer surface is essentially cylindrical, and a second section connecting the nozzle tip, of which the second section the outer surface tapers essentially conically towards the nozzle tip, wherein at least one liquid supply groove is provided and extends over a part of the first section and over the second section in the outer surface of the nozzle towards the nozzle tip and at least one liquid return groove separate from the liquid supply groove is provided and extends over the second section.
    Type: Application
    Filed: August 14, 2009
    Publication date: November 24, 2011
    Inventors: Volker Krink, Frank Laurisch, Timo Grundke
  • Publication number: 20110259855
    Abstract: An electrode for a plasma arc torch includes a hollow elongated body having an open end and a closed end and an end face located at the closed end inside of the hollow elongated body. The end face has a center portion. A plurality of heat exchanging elements are in thermal communication with the end face. The heat exchanging elements have side walls defining an elongated channel between adjacent heat exchanging elements. The elongated channel extends radially from the center portion to an inner surface of the elongated body. The elongated channel provides a thermally conductive path that transfers sufficient heat from the elongated body to a cooling fluid during an operation of the plasma arc torch to prevent premature failure of the electrode.
    Type: Application
    Filed: April 19, 2011
    Publication date: October 27, 2011
    Applicant: HYPERTHERM, INC.
    Inventor: Yong Yang
  • Publication number: 20110248002
    Abstract: Provided is an apparatus, such as an arc mitigating device, that includes an annular body that defines a lumen and a longitudinal axis, the annular body having a body length along the longitudinal axis. An electrode can be disposed coaxially within the lumen. The electrode may extend into the body by an electrode length that is at least about 50% of the body length, and may have diameter less than or equal to about 50% of an inner diameter of the annular body. An ablative material portion can be disposed between the annular body and the electrode. The annular body and the electrode may be configured such that when an arc exists between the annular body and the electrode, the ablative material portion undergoes ablation and thereby generates a plasma.
    Type: Application
    Filed: April 13, 2010
    Publication date: October 13, 2011
    Applicant: GENERAL ELECTRIC COMPANY
    Inventors: Adnan Kutubuddin Bohori, Thangavelu Asokan, Govardhan Ganireddy