Patents by Inventor Juha Pyrhönen

Juha Pyrhönen has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 11927264
    Abstract: A magnetic actuator includes a first element and a second element movable with respect to the first element in a movement direction. The first element includes teeth successively in the movement direction, two coils in slots defined by the teeth, and a permanent magnet. The second element includes teeth successively in the movement direction. The teeth of the first and second elements and the permanent magnet are arranged so that the second element is held by magnetic forces in each of three positions also when there are no currents in the coils. The second element can be moved between the three positions by supplying electric currents to the coils. Thus, the second element is held in any of the three positions also when current supply to the magnetic actuator is unintentionally lost.
    Type: Grant
    Filed: January 7, 2020
    Date of Patent: March 12, 2024
    Assignee: LAPPEENRANNAN-LAHDEN TEKNILLINEN YLIOPISTO LUT
    Inventors: Ilya Petrov, Juha Pyrhönen
  • Publication number: 20230221148
    Abstract: A variable reluctance position sensor includes a first element having magnetic sensor sections having excitation coils, first detection coils, and second detection coils, and a second element moveable with respect to the first element. An airgap surface of the second element is periodically meandering. When an alternating signal is supplied to the excitation coils, envelopes of alternating signals induced in the first and second detection coils are dependent on a position of the second element so that the envelopes have a phase shift with respect to each other. The number of the magnetic sensor sections is 1+nP2/P1, where P1 is a spatial shift between successive magnetic sensor sections, P2 is a spatial meandering period of the airgap surface, and n is an integer. The magnetic sensor section in addition to the nP2/P1 magnetic sensor sections is suitable for compensating for unwanted effects caused by ends of the first element.
    Type: Application
    Filed: May 24, 2021
    Publication date: July 13, 2023
    Inventors: Juha PYRHÖNEN, Chong DI, Ilya PETROV
  • Publication number: 20220111504
    Abstract: A linear electric machine includes a mover and a stator. The mover includes permanent magnets, and the stator includes a ferromagnetic core-structure and windings for conducting electric currents. The linear electric machine includes support structures on both sides of the ferromagnetic core-structure and supporting the mover to be linearly movable with respect to the stator in the longitudinal direction of the linear electric machine. At least one of the support structures includes a support element arranged to keep the mover a distance away from solid metal constituting a frame-portion of the support structure. The support element includes material whose electrical conductivity is less than that of the solid metal. As the mover is kept the distance away from the solid metal, eddy currents induced by the moving permanent magnets to the solid metal are reduced.
    Type: Application
    Filed: August 5, 2019
    Publication date: April 14, 2022
    Inventors: Jyri PELTOLA, Tuomo PELTOLA, Juha PYRHÖNEN
  • Publication number: 20220099181
    Abstract: A magnetic actuator includes a first element and a second element movable with respect to the first element in a movement direction. The first element includes teeth successively in the movement direction, two coils in slots defined by the teeth, and a permanent magnet. The second element includes teeth successively in the movement direction. The teeth of the first and second elements and the permanent magnet are arranged so that the second element is held by magnetic forces in each of three positions also when there are no currents in the coils. The second element can be moved between the three positions by supplying electric currents to the coils. Thus, the second element is held in any of the three positions also when current supply to the magnetic actuator is unintentionally lost.
    Type: Application
    Filed: January 7, 2020
    Publication date: March 31, 2022
    Inventors: Ilya PETROV, Juha PYRHÖNEN
  • Publication number: 20210367462
    Abstract: A rotor for a synchronous reluctance machine includes a first layered structure having ferromagnetic sheets stacked in a direction of a quadrature axis of the rotor and being separated from each other by layers of non-ferromagnetic material, a second layered structure similar to the first layered structure, and a ferromagnetic center part between the first and second layered structures in the direction of the quadrature axis and attached to the first and second layered structures. The ferromagnetic center part is a single piece of ferromagnetic material that is wider in a direction of the direct axis of the rotor than in the direction of the quadrature axis. The width of the ferromagnetic center part in the direction of the quadrature axis is greater than a thickness of each ferromagnetic sheet in order to improve the mechanical strength of the rotor.
    Type: Application
    Filed: November 7, 2018
    Publication date: November 25, 2021
    Inventors: Juha PYRHÖNEN, Jussi SOPANEN
  • Patent number: 11075572
    Abstract: A linear flux switching permanent magnet (FSPM) motor includes a longitudinal linear stator with stator teeth facing an air gap and a mover including at least one armature with armature teeth, whereby at least some of said, preferably all of said armature teeth embed at least one permanent magnet, respectively, which armature teeth are spaced apart by slots for receiving an armature winding. The permanent magnets embedded in the corresponding armature teeth protrude by an overhang over the back of the armature in a direction facing away from the air gap.
    Type: Grant
    Filed: April 4, 2018
    Date of Patent: July 27, 2021
    Assignee: KONE CORPORATION
    Inventors: Tero Hakala, Tuukka Korhonen, Tero Purosto, Ilya Petrov, Juha Pyrhönen
  • Patent number: 10998785
    Abstract: A rotor of an induction machine includes a ferromagnetic core structure and a cage winding. The cage winding includes rotor bars and end-rings. The rotor bars are located in slots of the ferromagnetic core structure. The end-rings connect the ends of the rotor bars to each other at the ends of the ferromagnetic core structure. The radial height of the slots of the ferromagnetic core structure is greater than the radial height of the rotor bars so that the bottom portions of the slots are free from the rotor bars. Therefore, the bottom portions of the slots constitute cooling ducts for conducting cooling fluid through the rotor. As the rotor bars constitute one wall of each cooling duct, the cooling fluid has a direct contact with the rotor bars.
    Type: Grant
    Filed: February 13, 2018
    Date of Patent: May 4, 2021
    Assignee: LAPPEENRANNAN-LAHDEN TEKNILLINEN YLIOPISTO LUT
    Inventors: Juha Pyrhönen, Jussi Sopanen
  • Publication number: 20210013757
    Abstract: A stator of an electric machine comprises a stator core structure (101) and a stator winding comprising a plurality of stator coils (102a-102f) mechanically supported by the stator core structure. Each stator coil comprises electrical conductors and a cooling tube (103) for conducting cooling fluid in the longitudinal direction of the electrical conductors. The stator comprises cooling elements (104a-104c) having heat-conductive mechanical contacts with the stator core structure. The cooling elements comprise channels for conducting the cooling fluid, and the cooling tubes of the stator coils are connected to each other via the cooling elements. The cooling elements transfer heat caused by iron losses from the stator core structure to the cooling fluid. Furthermore, the cooling elements act as manifolds for conducting the cooling fluid between the cooling tubes of the stator coils.
    Type: Application
    Filed: February 28, 2019
    Publication date: January 14, 2021
    Inventors: Ilya PETROV, Juha PYRHÖNEN
  • Patent number: 10826368
    Abstract: A linear flux switching permanent magnet (FSPM) motor includes a longitudinal, linear stator with stator teeth facing an air gap and a mover including at least one armature including armature teeth embedding at least one permanent magnet, which armature teeth are spaced apart by slots for receiving an armature winding, and which armature teeth have an extended width portion towards the air gap. The extended width portion of the armature teeth begins in the longitudinal direction of the armature teeth already at the level of the armature windings.
    Type: Grant
    Filed: April 4, 2018
    Date of Patent: November 3, 2020
    Assignee: KONE CORPORATION
    Inventors: Tero Hakala, Tuukka Korhonen, Tero Purosto, Ilya Petrov, Juha Pyrhönen
  • Patent number: 10749423
    Abstract: A linear flux switching permanent magnet (FSPM) motor includes a longitudinal linear stator with stator teeth facing an air gap and a mover including at least one armature including armature teeth, which are spaced apart by slots for receiving an armature winding. At least some, preferably all of the armature teeth embed at least two permanent magnets, respectively, which are positioned successively in longitudinal direction of the tooth, whereby the two permanent magnets have different magnetic properties.
    Type: Grant
    Filed: April 4, 2018
    Date of Patent: August 18, 2020
    Assignee: KONE CORPORATION
    Inventors: Tero Hakala, Tuukka Korhonen, Tero Purosto, Ilya Petrov, Juha Pyrhönen
  • Patent number: 10541573
    Abstract: A segment for supporting electromagnetic coupling elements of a stator or rotor of an electrical machine comprises a plurality of elongate laminations which are stacked in a first direction to form a lamination stack with elongate edges of the laminations defining opposite first and second major faces of the lamination stack. The segment comprises a plurality of elongate compression devices passing internally through the lamination stack in the first direction and arranged to compress together the laminations in the lamination stack.
    Type: Grant
    Filed: March 21, 2018
    Date of Patent: January 21, 2020
    Assignee: Lappeenranta University of Technology
    Inventors: Robert Semken, Juha Pyrhönen, Yulia Alexandrova, Maria Polikarpova
  • Publication number: 20190372414
    Abstract: A rotor of an induction machine includes a ferromagnetic core structure and a cage winding. The cage winding includes rotor bars and end-rings. The rotor bars are located in slots of the ferromagnetic core structure. The end-rings connect the ends of the rotor bars to each other at the ends of the ferromagnetic core structure. The radial height of the slots of the ferromagnetic core structure is greater than the radial height of the rotor bars so that the bottom portions of the slots are free from the rotor bars. Therefore, the bottom portions of the slots constitute cooling ducts for conducting cooling fluid through the rotor. As the rotor bars constitute one wall of each cooling duct, the cooling fluid has a direct contact with the rotor bars.
    Type: Application
    Filed: February 13, 2018
    Publication date: December 5, 2019
    Inventors: Juha PYRHÖNEN, Jussi SOPANEN
  • Publication number: 20180294705
    Abstract: A linear flux switching permanent magnet (FSPM) motor includes a longitudinal linear stator with stator teeth facing an air gap and a mover including at least one armature including armature teeth, which are spaced apart by slots for receiving an armature winding. At least some, preferably all of the armature teeth embed at least two permanent magnets, respectively, which are positioned successively in longitudinal direction of the tooth, whereby the two permanent magnets have different magnetic properties.
    Type: Application
    Filed: April 4, 2018
    Publication date: October 11, 2018
    Applicant: KONE Corporation
    Inventors: Tero HAKALA, Tuukka KORHONEN, Tero PUROSTO, Ilya PETROV, Juha PYRHÖNEN
  • Publication number: 20180294706
    Abstract: A linear flux switching permanent magnet (FSPM) motor includes a longitudinal linear stator with stator teeth facing an air gap and a mover including at least one armature with armature teeth, whereby at least some of said, preferably all of said armature teeth embed at least one permanent magnet, respectively, which armature teeth are spaced apart by slots for receiving an armature winding. The permanent magnets embedded in the corresponding armature teeth protrude by an overhang over the back of the armature in a direction facing away from the air gap.
    Type: Application
    Filed: April 4, 2018
    Publication date: October 11, 2018
    Applicant: KONE Corporation
    Inventors: Tero HAKALA, Tuukka KORHONEN, Tero PUROSTO, Ilya PETROV, Juha PYRHÖNEN
  • Publication number: 20180294704
    Abstract: A linear flux switching permanent magnet (FSPM) motor includes a longitudinal, linear stator with stator teeth facing an air gap and a mover including at least one armature including armature teeth embedding at least one permanent magnet, which armature teeth are spaced apart by slots for receiving an armature winding, and which armature teeth have an extended width portion towards the air gap. The extended width portion of the armature teeth begins in the longitudinal direction of the armature teeth already at the level of the armature windings.
    Type: Application
    Filed: April 4, 2018
    Publication date: October 11, 2018
    Applicant: KONE Corporation
    Inventors: Tero HAKALA, Tuukka KORHONEN, Tero PUROSTO, Ilya PETROV, Juha PYRHÖNEN
  • Publication number: 20180212481
    Abstract: A segment for supporting electromagnetic coupling elements of a stator or rotor of an electrical machine comprises a plurality of elongate laminations which are stacked in a first direction to form a lamination stack with elongate edges of the laminations defining opposite first and second major faces of the lamination stack. The segment comprises a plurality of elongate compression devices passing internally through the lamination stack in the first direction and arranged to compress together the laminations in the lamination stack.
    Type: Application
    Filed: March 21, 2018
    Publication date: July 26, 2018
    Inventors: Robert Semken, Juha Pyrhönen, Yulia Alexandrova, Maria Polikarpova
  • Patent number: 9712011
    Abstract: A stator of an electrical machine includes a stator core having a plurality of stator teeth and stator slots, and a stator winding having a plurality of stator coils. The width of each stator coil is one stator slot pitch, and the stator teeth are shaped to allow each stator coil to be installed by pushing the stator coil to surround one of the stator teeth. The stator coils include tubular cooling channels for conducting cooling liquid in the stator slots.
    Type: Grant
    Filed: October 17, 2011
    Date of Patent: July 18, 2017
    Assignee: LAPPEENRANNAN TEKNILLINEN YLIOPISTO
    Inventors: Juha Pyrhönen, Janne Nerg, Hanne Jussila, Yulia Alexandrova, Maria Polikarpova, Robert Scott Semken, Pekka Röyttä
  • Publication number: 20170054344
    Abstract: An electrical turbo-machine includes a stator (101), a rotor (102), and a turbine section (110) driven with a working flow containing vaporizable material, for example water, in vaporized form. The rotor includes cooling channels (106-109) for conducting, through the rotor, a cooling flow containing the vaporizable material in liquid form. The rotor is arranged to conduct the cooling flow through an area where an impeller or impellers (111-114) of the turbine section are directly connected to the rotor and conduct the cooling flow to a same room to which the working flow comes out from the turbine section. The above-presented cooling system facilitates constructing the electrical turbo-machine as a hermetic structure in a power plant where bearings of the electrical turbo-machine are lubricated by the vaporizable material, a supply pump is directly connected to the rotor, and the vaporizable material in gaseous form fills the gas spaces of the stator.
    Type: Application
    Filed: March 2, 2015
    Publication date: February 23, 2017
    Inventors: Jaakko LARJOLA, Juha PYRHÖNEN, Jari BACKMAN
  • Publication number: 20130285487
    Abstract: A stator of an electrical machine that is straightforward to assemble and for which an efficient liquid cooling can be arranged includes a stator core (801) having a plurality of stator teeth and stator slots, and a stator winding having a plurality of stator coils (803). The width of each stator coil is one stator slot pitch, and the stator teeth are shaped to allow each stator coil to be installed by pushing the stator coil to surround one of the stator teeth. The stator coils include tubular cooling channels (804) for conducting cooling liquid in the stator slots. The stator winding is designed by taking into account the aspects related to the liquid cooling, and it has been noticed that a stator winding structure which is advantageous for arranging the liquid cooling has satisfactory electrical and magnetic properties too.
    Type: Application
    Filed: October 17, 2011
    Publication date: October 31, 2013
    Applicant: LAPPEENRANNAN TEKNILLINEN YLIOPISTO
    Inventors: Juha Pyrhönen, Janne Nerg, Hanne Jussila, Yulia Alexandrova, Maria Polikarpova, Robert Scott Semken, Pekka Röyttä
  • Patent number: 7772738
    Abstract: An electric machine which has an arched stator and a cylindrical rotor fitted inside it and in which the flux flows in the radial direction between the stator and the rotor as in a permanent-magnet radial-flux synchronous electric machine, and in which the stator of the machine consists of stator segments (2), each of which has an independent stator core and winding, and the stator segments are arranged to be physically separate from each other so that the stator consists of stator segments arched according to the radius of the rotor and working electromagnetically independently like a linear machine, each stator segment having a stator core and a winding separate from the other stator segments, and that it comprises an overhead supporting frame structure separate from the stator cores and consisting of several longitudinal ribs (41) and parts (42) between them.
    Type: Grant
    Filed: July 7, 2005
    Date of Patent: August 10, 2010
    Assignee: The Switch Electrical Machines Oy
    Inventors: Jussi Huppunen, Panu Kurronen, Juha Pyrhönen