General Fusion Inc.

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Type PI
        Brevet 69
        Marque 4
Juridiction
        États-Unis 27
        Canada 23
        International 23
Date
2024 3
2023 4
2022 5
2021 3
2020 5
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Classe IPC
H05H 1/24 - Production du plasma 19
H05H 1/00 - Production du plasmaMise en œuvre du plasma 18
H05H 1/54 - Accélérateurs de plasma 17
G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide 13
G21B 1/11 - Réacteurs de fusion thermonucléaire Détails 11
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Classe NICE
09 - Appareils et instruments scientifiques et électriques 4
11 - Appareils de contrôle de l'environnement 4
07 - Machines et machines-outils 1
37 - Services de construction; extraction minière; installation et réparation 1
40 - Traitement de matériaux; recyclage, purification de l'air et traitement de l'eau 1
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Statut
En Instance 4
Enregistré / En vigueur 69

1.

ROTATING ELEMENT CONTAINING A LIQUID METAL LINER AND HAVING A PLURALITY OF VALVES

      
Numéro d'application CA2024050023
Numéro de publication 2024/148430
Statut Délivré - en vigueur
Date de dépôt 2024-01-10
Date de publication 2024-07-18
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Wilkie, James
  • Segas, Raphael
  • Zimmermann, Joerg
  • Mossman, Alexander Douglas
  • Plant, David Franklin
  • Suponitsky, Victoria
  • Dick, Jean-Sebastien
  • Esterer, Christopher Russell
  • Mcilwraith, Lon William

Abrégé

An apparatus is configured to be rotated within a vacuum vessel of a plasma compression system. The apparatus includes a substantially cylindrical outer wall configured to rotate about a longitudinal symmetry axis. The outer wall includes an outer surface, an inner surface at least partially bounding an inner volume of the apparatus, and a plurality of channels extending through the outer wall. The inner volume is configured to contain a liquid medium. The apparatus further includes a plurality of valves affixed to the outer wall and in fluid communication with the plurality of channels. The plurality of valves is configured to selectively control pressurized gas flow from outside the outer surface, through the plurality of channels, into the inner volume.

Classes IPC  ?

  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails

2.

METHOD AND APPARATUS FOR CONTROLLING PLASMA COMPRESSION

      
Numéro d'application 18259249
Statut En instance
Date de dépôt 2021-12-16
Date de la première publication 2024-02-22
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Plant, David Franklin
  • Segas, Raphael
  • Smith, Ii, William Randolph

Abrégé

A control system manipulates one or more of the shape, timing, and magnitude of a pressure pulse (“plasma pulse trajectory”) generated by a plasma compression system to implode a liquid liner surrounding a cavity containing plasma, thereby compressing the plasma. The liquid liner and cavity are created by rotating a liquid medium in a vessel. Compression drivers extend perpendicularly around the liquid medium's rotational axis. Multiple layers of compression drivers are stacked in an axial direction parallel to the rotational axis to form multiple pressure zones extending along the rotational axis. The control system separately controls each pressure zone, or groups of pressure zones, to generate individual pressure pulses each having a different pressure pulse trajectory in each pressure zone. The multiple individual pressure pulses collectively form a combined pressure pulse having a pressure pulse trajectory that varies along the rotational axis.

Classes IPC  ?

  • G21B 1/05 - Réacteurs de fusion thermonucléaire avec confinement magnétique ou électrique du plasma
  • G21B 1/13 - Première paroiParoi de couvertureDivertor
  • G21B 1/15 - Injecteurs de particules pour la génération de réactions de fusion thermonucléaire, p. ex. injecteurs de pastilles
  • G21B 1/17 - Chambres à videInstallations de vide

3.

ROTATING CORE PLASMA COMPRESSION SYSTEM

      
Numéro d'application 18260700
Statut En instance
Date de dépôt 2021-12-16
Date de la première publication 2024-02-22
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Zimmermann, Joerg
  • Bouchal, Robert
  • Smith, Ii, William Randolph

Abrégé

A plasma compression system comprises a plasma containment vessel, an annular rotating core inside the vessel, and a plurality of compression drivers fixedly mounted to an outer surface of the vessel wall. The annular rotating core contains a liquid medium and is rotatable to circulate the liquid medium and form a liquid liner with a cavity. The rotating core comprises an outer surface spaced from an inner surface of the vessel wall to define an annular gap, and a plurality of implosion drivers each comprising a pusher bore with a pusher piston slideable therein. Each pusher bore extends through the rotating core. The plurality of compression drivers compresses a compression fluid in the annular gap and creates a pressure pulse, such that when the rotating core rotates and the liquid medium fills the pusher bores, the pusher pistons are operable to push the liquid medium inwards to collapse the liquid liner and compress a plasma in the cavity.

Classes IPC  ?

  • G21B 1/05 - Réacteurs de fusion thermonucléaire avec confinement magnétique ou électrique du plasma
  • G21B 1/13 - Première paroiParoi de couvertureDivertor
  • G21B 1/15 - Injecteurs de particules pour la génération de réactions de fusion thermonucléaire, p. ex. injecteurs de pastilles
  • G21B 1/17 - Chambres à videInstallations de vide

4.

GENERALFUSION

      
Numéro d'application 229856500
Statut En instance
Date de dépôt 2023-12-12
Propriétaire GENERAL FUSION INC. (Canada)
Classes de Nice  ?
  • 07 - Machines et machines-outils
  • 09 - Appareils et instruments scientifiques et électriques
  • 11 - Appareils de contrôle de l'environnement
  • 37 - Services de construction; extraction minière; installation et réparation
  • 40 - Traitement de matériaux; recyclage, purification de l'air et traitement de l'eau
  • 42 - Services scientifiques, technologiques et industriels, recherche et conception

Produits et services

(1) Nuclear fusion energy reactor and reactor subcomponents; nuclear fusion power generators (2) Plasma generator for scientific, research and development purposes; plasma injector for scientific, research and development purposes; plasma accelerator for scientific, research and development purposes; nuclear fusion reactor for scientific, research and development purposes; plasma generator for plasma physics research; nuclear fusion reactor for plasma physics research; nuclear gauges used for measuring the physical properties of matter (3) Nuclear power plants; nuclear generators; nuclear reactors; nuclear reactor pressure vessels; installations for processing nuclear fuel and nuclear moderating material (1) Installation, maintenance and repair of nuclear fusion based power plants; providing information relating to the repair or maintenance of nuclear power plants; consulting services in the field of construction of nuclear fusion power facilities; construction of nuclear fusion power plants; installation, maintenance and repair of energy generation equipment (2) Providing technical information in the field of power generation; consultation in the field of custom fabrication of Nuclear fusion energy reactors and reactor subcomponents (3) Research and development in the field of nuclear energy; project design development in the field of nuclear fusion energy reactors, reactor subcomponents, and nuclear fusion energy systems; nuclear engineering; research and development in the field of energy transfer performance

5.

PLASMA COMPRESSION SYSTEM UTILIZING POLOIDAL FIELD COILS

      
Numéro d'application CA2023050331
Numéro de publication 2023/173210
Statut Délivré - en vigueur
Date de dépôt 2023-03-14
Date de publication 2023-09-21
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Howard, Stephen James
  • Reynolds, Meritt Wayne
  • Laberge, Michel
  • Mossman, Alexander Douglas
  • Plant, David
  • Ribeiro, Celso

Abrégé

Examples of a plasma compression system are disclosed. The system includes a metallic vessel configured to receive and contain a plasma. The system further includes a metallic liquid liner in the vessel and at least partially bounding a plasma compression region having a longitudinal axis, and means for moving the liquid liner inwardly towards the longitudinal axis to compress the plasma in the plasma compression region. The system further includes a plurality of electrically conductive coils outside the plasma compression region and configured to generate a poloidal magnetic field in the liquid liner and the plasma compression region. At least some of the poloidal magnetic field within the plasma compression region extends along the longitudinal axis, and at least some of the poloidal magnetic field in the liquid liner moves inwardly towards the longitudinal axis with the liquid liner as the liquid liner moves towards the longitudinal axis.

Classes IPC  ?

  • H05H 1/10 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant uniquement des champs magnétiques appliqués

6.

FAST OPENING, LOW FORCE POPPET VALVE

      
Numéro d'application CA2023050186
Numéro de publication 2023/154998
Statut Délivré - en vigueur
Date de dépôt 2023-02-14
Date de publication 2023-08-24
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Esau, Cody John Pavel
  • Zimmermann, Joerg
  • Wilkie, James Hastings
  • Sirmas, Nick

Abrégé

A valve includes a body, an inlet configured to receive a pressurized gas, an outlet configured to receive the pressurized gas from the inlet, and a region configured to receive the pressurized gas from the inlet. The valve further includes a plug having a longitudinal axis and configured to be controllably moved within the body along the longitudinal axis. The plug is movable between a sealed position and at least one non-sealed position. The plug in the sealed position forms a first seal and a second seal with the body, the first seal between the inlet and the outlet and the second seal between the inlet and the region. The plug in the sealed position is biased towards the sealed position by the pressurized gas. The plug in the at least one non-sealed position is biased away from the sealed position by the pressurized gas.

Classes IPC  ?

  • F16K 31/12 - Moyens de fonctionnementDispositifs de retour à la position de repos actionnés par un fluide
  • F16K 31/122 - Moyens de fonctionnementDispositifs de retour à la position de repos actionnés par un fluide le fluide agissant sur un piston
  • F16K 41/16 - Joints d'étanchéité pour tiges avec une saillie conique portée par la tige qui repose sur une bague d'étanchéité

7.

Plasma compression driver

      
Numéro d'application 17756405
Numéro de brevet 11711884
Statut Délivré - en vigueur
Date de dépôt 2020-12-02
Date de la première publication 2023-01-05
Date d'octroi 2023-07-25
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Wilkie, James Hastings
  • Zimmermann, Joerg
  • Wight, Martin Clifford
  • Esau, Cody John Pavel
  • Khalzov, Ivan Victorovich

Abrégé

A plasma compression driver is connected to a plasma containment vessel containing a liquid medium that forms a liquid liner containing plasma, and comprises a pair of coaxially aligned pistons that are sequentially driven towards the liquid liner. A pusher bore containing a pusher piston is coaxial with and has a smaller diameter than a driver bore containing a driver piston such that an interconnecting annular face surface is defined at the junction of the driver and pusher bores. During the compression operation, a prime mover accelerates the driver piston towards the pusher piston and compresses a compression fluid, which accelerates the pusher piston and pushes the liquid medium in the pusher bore into the vessel, causing the liquid liner to collapse, and compressing the plasma. Outward forces on the vessel wall caused by compression driver recoil and increased vessel pressure is counteracted by an inward force applied by the compression fluid on the annular face surface during the compression operation.

Classes IPC  ?

  • H05H 1/24 - Production du plasma
  • F04B 37/18 - Pompes spécialement adaptées aux fluides compressibles et ayant des caractéristiques pertinentes non prévues dans les groupes ou présentant un intérêt autre que celui visé par ces groupes pour utilisation particulière pour fluides élastiques particuliers
  • F04B 39/00 - Parties constitutives, détails ou accessoires de pompes ou de systèmes de pompage spécialement adaptés aux fluides compressibles, non prévus dans les groupes ou présentant un intérêt autre que celui visé par ces groupes
  • F04B 35/00 - Pompes à piston spécialement adaptées aux fluides compressibles et caractérisées par les moyens d'entraînement de leurs organes de travail ou par leur combinaison avec les machines motrices ou moteurs qui les entraînent ou bien par leurs adaptations à cet effet, non prévues ailleurs
  • F04B 53/14 - Pistons, tiges de piston ou liaisons piston-tige
  • F04B 53/16 - Carcasses d'enveloppeCylindresChemises de cylindre ou culassesConnexions des tubulures pour fluide
  • H05H 1/50 - Production du plasma utilisant un arc et utilisant des champs magnétiques appliqués, p. ex. pour focaliser ou pour faire tourner l'arc

8.

ROTATING CORE PLASMA COMPRESSION SYSTEM

      
Numéro d'application CA2021051824
Numéro de publication 2022/155725
Statut Délivré - en vigueur
Date de dépôt 2021-12-16
Date de publication 2022-07-28
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Zimmermann, Joerg
  • Bouchal, Robert
  • Smith, W. Randolph

Abrégé

A plasma compression system comprises a plasma containment vessel, an annular rotating core inside the vessel, and a plurality of compression drivers fixedly mounted to an outer surface of the vessel wall. The annular rotating core contains a liquid medium and is rotatable to circulate the liquid medium and form a liquid liner with a cavity. The rotating core comprises an outer surface spaced from an inner surface of the vessel wall to define an annular gap, and a plurality of implosion drivers each comprising a pusher bore with a pusher piston slideable therein. Each pusher bore extends through the rotating core. The plurality of compression drivers compresses a compression fluid in the annular gap and creates a pressure pulse, such that when the rotating core rotates and the liquid medium fills the pusher bores, the pusher pistons are operable to push the liquid medium inwards to collapse the liquid liner and compress a plasma in the cavity.

Classes IPC  ?

  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails

9.

METHOD AND APPARATUS FOR CONTROLLING PLASMA COMPRESSION

      
Numéro d'application CA2021051825
Numéro de publication 2022/155726
Statut Délivré - en vigueur
Date de dépôt 2021-12-16
Date de publication 2022-07-28
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel
  • Plant, David
  • Segas, Raphael
  • Smith, W. Randolph

Abrégé

A control system manipulates one or more of the shape, timing, and magnitude of a pressure pulse ("plasma pulse trajectory") generated by a plasma compression system to implode a liquid liner surrounding a cavity containing plasma, thereby compressing the plasma. The liquid liner and cavity are created by rotating a liquid medium in a vessel. Compression drivers extend perpendicularly around the liquid medium's rotational axis. Multiple layers of compression drivers are stacked in an axial direction parallel to the rotational axis to form multiple pressure zones extending along the rotational axis. The control system separately controls each pressure zone, or groups of pressure zones, to generate individual pressure pulses each having a different pressure pulse trajectory in each pressure zone. The multiple individual pressure pulses collectively form a combined pressure pulse having a pressure pulse trajectory that varies along the rotational axis.

Classes IPC  ?

  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails

10.

ROTATING CORE PLASMA COMPRESSION SYSTEM

      
Numéro de document 03204955
Statut Délivré - en vigueur
Date de dépôt 2021-12-16
Date de disponibilité au public 2022-07-28
Date d'octroi 2024-01-02
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Zimmermann, Joerg
  • Bouchal, Robert
  • Smith, W. Randolph

Abrégé

A plasma compression system comprises a plasma containment vessel, an annular rotating core inside the vessel, and a plurality of compression drivers fixedly mounted to an outer surface of the vessel wall. The annular rotating core contains a liquid medium and is rotatable to circulate the liquid medium and form a liquid liner with a cavity. The rotating core comprises an outer surface spaced from an inner surface of the vessel wall to define an annular gap, and a plurality of implosion drivers each comprising a pusher bore with a pusher piston slideable therein. Each pusher bore extends through the rotating core. The plurality of compression drivers compresses a compression fluid in the annular gap and creates a pressure pulse, such that when the rotating core rotates and the liquid medium fills the pusher bores, the pusher pistons are operable to push the liquid medium inwards to collapse the liquid liner and compress a plasma in the cavity.

Classes IPC  ?

  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails

11.

METHOD AND APPARATUS FOR CONTROLLING PLASMA COMPRESSION

      
Numéro de document 03204964
Statut Délivré - en vigueur
Date de dépôt 2021-12-16
Date de disponibilité au public 2022-07-28
Date d'octroi 2023-10-24
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel
  • Plant, David
  • Segas, Raphael
  • Smith, W. Randolph

Abrégé

A control system manipulates one or more of the shape, timing, and magnitude of a pressure pulse ("plasma pulse trajectory") generated by a plasma compression system to implode a liquid liner surrounding a cavity containing plasma, thereby compressing the plasma. The liquid liner and cavity are created by rotating a liquid medium in a vessel. Compression drivers extend perpendicularly around the liquid medium's rotational axis. M ultiple layers of compression drivers are stacked in an axial direction parallel to the rotational axis to form multiple pressure zones extending along the rotational axis. The control system separately controls each pressure zone, or groups of pressure zones, to generate individual pressure pulses each having a different pressure pulse trajectory in each pressure zone. The multiple individual pressure pulses collectively form a combined pressure pulse having a pressure pulse trajectory that varies along the rotational axis.

Classes IPC  ?

  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails

12.

System and method for generating and accelerating magnetized plasma

      
Numéro d'application 17607169
Numéro de brevet 11399425
Statut Délivré - en vigueur
Date de dépôt 2020-05-28
Date de la première publication 2022-05-12
Date d'octroi 2022-07-26
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Howard, Stephen James
  • Richardson, Douglas Harvey
  • Laberge, Michel Georges
  • Reynolds, Meritt Wayne
  • Froese, Aaron Matthew
  • Epp, Kelly Bernard
  • Wight, Martin Clifford
  • Gofman, Yakov

Abrégé

A method and system for stably generating and accelerating magnetized plasma comprises ionizing an injected gas in a plasma generator and generating a formation magnetic field to form a magnetized plasma with a closed poloidal field, generating a reverse poloidal field behind the magnetized plasma and having a same field direction as a back edge of the closed poloidal field and having an opposite field direction of the formation magnetic field, and generating a pushing toroidal field that pushes the reverse poloidal field against the closed poloidal field, thereby accelerating the magnetized plasma through a plasma accelerator downstream from the plasma generator. The reverse poloidal field serves to prevent the reconnection of the formation magnetic field and closed poloidal field after the magnetized plasma is formed, which would allow the pushing toroidal field to mix with the closed poloidal field and cause instability and reduced plasma confinement.

Classes IPC  ?

  • H05H 1/54 - Accélérateurs de plasma
  • H01F 7/06 - Électro-aimantsActionneurs comportant des électro-aimants
  • H05H 1/12 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant uniquement des champs magnétiques appliqués dans lesquels l'enceinte forme une boucle fermée

13.

System and method for generating plasma and sustaining plasma magnetic field

      
Numéro d'application 17056716
Numéro de brevet 11404174
Statut Délivré - en vigueur
Date de dépôt 2018-02-28
Date de la première publication 2021-07-15
Date d'octroi 2022-08-02
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Epp, Kelly Bernard
  • Rablah, Blake Kenton
  • Reynolds, Meritt Wayne
  • Mossman, Alexander Douglas
  • Howard, Stephen James

Abrégé

A system for generating magnetized plasma and sustaining plasma's magnetic field comprises a plasma generator for generating magnetized plasma and a flux conserver in which the generated magnetized plasma is injected and confined. A central conductor comprises an upper central conductor and a lower central conductor that are electrically connected forming a single integrated conductor. The upper central conductor and an outer electrode form an annular plasma propagating channel. The lower central conductor extends out of the plasma generator and into the flux conserver such that an end of the inner electrode is electrically connected to a wall of the flux conserver. A power system provides a formation current pulse and a sustainment current pulse to the central conductor to form the magnetized plasma, inject such plasma into the flux conserver and sustain plasma's magnetic field.

Classes IPC  ?

  • G21B 1/21 - Systèmes d'alimentation en courant électrique, p. ex. pour les systèmes magnétiques
  • G21B 1/05 - Réacteurs de fusion thermonucléaire avec confinement magnétique ou électrique du plasma
  • H05H 1/04 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant des champs magnétiques essentiellement engendrés par la décharge dans le plasma
  • H05H 1/02 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma
  • H05H 1/22 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma pour chauffage par injection
  • H05H 1/36 - Dispositions des circuits

14.

PLASMA COMPRESSION DRIVER

      
Numéro de document 03159739
Statut Délivré - en vigueur
Date de dépôt 2020-12-02
Date de disponibilité au public 2021-06-10
Date d'octroi 2022-10-25
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Wilkie, James Hastings
  • Zimmermann, Joerg
  • Wight, Martin Clifford
  • Esau, Cody John Pavel
  • Khalzov, Ivan Victorovich

Abrégé

A plasma compression driver is connected to a plasma containment vessel containing a liquid medium that forms a liquid liner containing plasma, and comprises a pair of coaxially aligned pistons that are sequentially driven towards the liquid liner. A pusher bore containing a pusher piston is coaxial with and has a smaller diameter than a driver bore containing a driver piston such that an interconnecting annular face surface is defined at the junction of the driver and pusher bores. During the compression operation, a prime mover accelerates the driver piston towards the pusher piston and compresses a compression fluid, which accelerates the pusher piston and pushes the liquid medium in the pusher bore into the vessel, causing the liquid liner to collapse, and compressing the plasma. Outward forces on the vessel wall caused by compression driver recoil and increased vessel pressure is counteracted by an inward force applied by the compression fluid on the annular face surface during the compression operation.

Classes IPC  ?

  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • F04B 37/12 - Pompes spécialement adaptées aux fluides compressibles et ayant des caractéristiques pertinentes non prévues dans les groupes ou présentant un intérêt autre que celui visé par ces groupes pour utilisation particulière pour obtenir une haute pression
  • F04B 37/18 - Pompes spécialement adaptées aux fluides compressibles et ayant des caractéristiques pertinentes non prévues dans les groupes ou présentant un intérêt autre que celui visé par ces groupes pour utilisation particulière pour fluides élastiques particuliers
  • H05H 1/24 - Production du plasma

15.

PLASMA COMPRESSION DRIVER

      
Numéro d'application CA2020051655
Numéro de publication 2021/108908
Statut Délivré - en vigueur
Date de dépôt 2020-12-02
Date de publication 2021-06-10
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Wilkie, James Hastings
  • Zimmermann, Joerg
  • Wight, Martin Clifford
  • Esau, Cody John Pavel
  • Khalzov, Ivan Victorovich

Abrégé

A plasma compression driver is connected to a plasma containment vessel containing a liquid medium that forms a liquid liner containing plasma, and comprises a pair of coaxially aligned pistons that are sequentially driven towards the liquid liner. A pusher bore containing a pusher piston is coaxial with and has a smaller diameter than a driver bore containing a driver piston such that an interconnecting annular face surface is defined at the junction of the driver and pusher bores. During the compression operation, a prime mover accelerates the driver piston towards the pusher piston and compresses a compression fluid, which accelerates the pusher piston and pushes the liquid medium in the pusher bore into the vessel, causing the liquid liner to collapse, and compressing the plasma. Outward forces on the vessel wall caused by compression driver recoil and increased vessel pressure is counteracted by an inward force applied by the compression fluid on the annular face surface during the compression operation.

Classes IPC  ?

  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • F04B 37/12 - Pompes spécialement adaptées aux fluides compressibles et ayant des caractéristiques pertinentes non prévues dans les groupes ou présentant un intérêt autre que celui visé par ces groupes pour utilisation particulière pour obtenir une haute pression
  • F04B 37/18 - Pompes spécialement adaptées aux fluides compressibles et ayant des caractéristiques pertinentes non prévues dans les groupes ou présentant un intérêt autre que celui visé par ces groupes pour utilisation particulière pour fluides élastiques particuliers
  • H05H 1/24 - Production du plasma

16.

SYSTEM AND METHOD FOR GENERATING AND ACCELERATING MAGNETIZED PLASMA

      
Numéro de document 03136365
Statut Délivré - en vigueur
Date de dépôt 2020-05-28
Date de disponibilité au public 2020-12-03
Date d'octroi 2022-10-11
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Howard, Stephen James
  • Richardson, Douglas Harvey
  • Laberge, Michel Georges
  • Reynolds, Merritt Wayne
  • Froese, Aaron Matthew
  • Epp, Kelly Bernard
  • Wight, Martin Clifford
  • Gofman, Yakov

Abrégé

A method and system for stably generating and accelerating magnetized plasma comprises ionizing an injected gas in a plasma generator and generating a formation magnetic field to form a magnetized plasma with a closed poloidal field, generating a reverse poloidal field behind the magnetized plasma and having a same field direction as a back edge of the closed poloidal field and having an opposite field direction of the formation magnetic field, and generating a pushing toroidal field that pushes the reverse poloidal field against the closed poloidal field, thereby accelerating the magnetized plasma through a plasma accelerator downstream from the plasma generator. The reverse poloidal field serves to prevent the reconnection of the formation magnetic field and closed poloidal field after the magnetized plasma is formed, which would allow the pushing toroidal field to mix with the closed poloidal field and cause instability and reduced plasma confinement.

Classes IPC  ?

17.

SYSTEM AND METHOD FOR GENERATING AND ACCELERATING MAGNETIZED PLASMA

      
Numéro d'application CA2020050727
Numéro de publication 2020/237380
Statut Délivré - en vigueur
Date de dépôt 2020-05-28
Date de publication 2020-12-03
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Howard, Stephen James
  • Richardson, Douglas Harvey
  • Laberge, Michel Georges
  • Reynolds, Merritt Wayne
  • Froese, Aaron Matthew
  • Epp, Kelly Bernard
  • Wight, Martin Clifford
  • Gofman, Yakov

Abrégé

A method and system for stably generating and accelerating magnetized plasma comprises ionizing an injected gas in a plasma generator and generating a formation magnetic field to form a magnetized plasma with a closed poloidal field, generating a reverse poloidal field behind the magnetized plasma and having a same field direction as a back edge of the closed poloidal field and having an opposite field direction of the formation magnetic field, and generating a pushing toroidal field that pushes the reverse poloidal field against the closed poloidal field, thereby accelerating the magnetized plasma through a plasma accelerator downstream from the plasma generator. The reverse poloidal field serves to prevent the reconnection of the formation magnetic field and closed poloidal field after the magnetized plasma is formed, which would allow the pushing toroidal field to mix with the closed poloidal field and cause instability and reduced plasma confinement.

Classes IPC  ?

18.

Methods and systems for forming a liquid liner of a cavity

      
Numéro d'application 16634127
Numéro de brevet 10798808
Statut Délivré - en vigueur
Date de dépôt 2018-04-16
Date de la première publication 2020-07-30
Date d'octroi 2020-10-06
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Zimmermann, Joerg
  • Plant, David Franklin
  • Bouchal, Robert Vlastimil
  • Tyler, Troy Nickolas
  • Suponitsky, Victoria
  • Delage, Michael Harcourt
  • Laberge, Michel Georges

Abrégé

Examples of systems for forming cavity and a liquid liner are described. The system comprises a vessel and a rotating member positioned within the vessel and rotatable about an axis of rotation. The rotating member has an inner surface 5 curved with respect to the axis of rotation, an outer and plurality of fluid passages that each has an inboard opening at the inner surface and an outboard opening at the outer surface. The rotating member is filled with a liquid medium and a rotational driver rotates the rotating member such that when rotating the liquid medium at least partially fills the fluid passages forming liquid liner, defining the 10 cavity. The cavity formation system is used in a liquid liner implosion system with an implosion driver that causes the liquid liner to implode inwardly collapsing the cavity. The imploding liquid liner system can be used in plasma compression systems.

Classes IPC  ?

  • H05H 1/02 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma
  • H05H 1/24 - Production du plasma
  • H05H 1/54 - Accélérateurs de plasma

19.

Vacuum compatible electrical insulator

      
Numéro d'application 16634115
Numéro de brevet 11066327
Statut Délivré - en vigueur
Date de dépôt 2018-05-22
Date de la première publication 2020-07-23
Date d'octroi 2021-07-20
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Epp, Kelly Bernard
  • Laberge, Michel Georges

Abrégé

Examples of a high voltage insulator are described. The high-voltage insulator is vacuum compatible and comprises a glass substrate having a face surface and a ceramic layer with uniform thickness coated on the face surface of 5 the glass substrate. The coated surface of the insulator is able to withstand high voltage pulses and exposure to charged particles radiation for a pre-determined time period. The ceramic coated glass insulator is made of a single piece of glass and can be made to large sizes.

Classes IPC  ?

  • C03C 17/23 - Oxydes
  • H01B 3/08 - Isolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances inorganiques quartzIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances inorganiques verreIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances inorganiques laine de verreIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances inorganiques laine de laitierIsolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances inorganiques émaux vitreux
  • H01B 3/12 - Isolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances inorganiques céramiques
  • H05H 1/24 - Production du plasma

20.

Methods and systems for imploding a liquid liner

      
Numéro d'application 16634129
Numéro de brevet 11064601
Statut Délivré - en vigueur
Date de dépôt 2018-04-16
Date de la première publication 2020-07-23
Date d'octroi 2021-07-13
Propriétaire General Fusion Inc. (USA)
Inventeur(s)
  • Zimmermann, Joerg
  • Plant, David Franklin
  • Bouchal, Robert Vlastimil
  • Tyler, Troy Nickolas
  • Suponitsky, Victoria
  • Delage, Michael Harcourt
  • Laberge, Michel Georges
  • Williams, Malcolm Newton

Abrégé

Examples of systems for imploding liquid liner are described. The imploding system comprises a vessel and a rotating member positioned within the vessel. The rotating member has a plurality of shaped blades that form a plurality of curved passages that have an inboard opening at an inner surface and an outboard end at an outer surface. The rotating member is at least partially filled with liquid medium. A driver is used to rotate the rotating member such that when the rotating member rotates the liquid medium is forced into the passages forming a liquid liner with an interface curved with respect to an axis of rotation and defining a cavity. The system further comprises an implosion driver that changes the rotational speed of the rotating member such that the liquid liner is imploded inwardly collapsing the cavity. The imploding liquid liner can be used in plasma compression systems.

Classes IPC  ?

  • H05H 1/02 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma
  • H05H 1/24 - Production du plasma
  • H05H 1/54 - Accélérateurs de plasma

21.

SYSTEM AND METHOD FOR GENERATING PLASMA AND SUSTAINING PLASMA MAGNETIC FIELD

      
Numéro de document 03089909
Statut Délivré - en vigueur
Date de dépôt 2018-02-28
Date de disponibilité au public 2019-09-06
Date d'octroi 2023-08-01
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Epp, Kelly Bernard
  • Rablah, Blake Kenton
  • Reynolds, Meritt Wayne
  • Mossman, Alexander Douglas
  • Howard, Stephen James

Abrégé

A system for generating magnetized plasma and sustaining plasma's magnetic field comprises a plasma generator for generating magnetized plasma and a flux conserver in which the generated magnetized plasma is injected and confined. A central conductor comprises an upper central conductor and a lower central conductor that are electrically connected forming a single integrated conductor. The upper central conductor and an outer electrode form an annular plasma propagating channel. The lower central conductor extends out of the plasma generator and into the flux conserver such that an end of the inner electrode is electrically connected to a wall of the flux conserver. A power system provides a formation current pulse and a sustainment current pulse to the central conductor to form the magnetized plasma, inject such plasma into the flux conserver and sustain plasma's magnetic field.

Classes IPC  ?

  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • H05H 1/04 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant des champs magnétiques essentiellement engendrés par la décharge dans le plasma
  • H05H 1/26 - Torches à plasma

22.

SYSTEM AND METHOD FOR GENERATING PLASMA AND SUSTAINING PLASMA MAGNETIC FIELD

      
Numéro d'application CA2018050235
Numéro de publication 2019/165535
Statut Délivré - en vigueur
Date de dépôt 2018-02-28
Date de publication 2019-09-06
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Epp, Kelly Bernard
  • Rablah, Blake Kenton
  • Reynolds, Meritt Wayne
  • Mossman, Alexander Douglas
  • Howard, Stephen James

Abrégé

A system for generating magnetized plasma and sustaining plasma's magnetic field comprises a plasma generator for generating magnetized plasma and a flux conserver in which the generated magnetized plasma is injected and confined. A central conductor comprises an upper central conductor and a lower central conductor that are electrically connected forming a single integrated conductor. The upper central conductor and an outer electrode form an annular plasma propagating channel. The lower central conductor extends out of the plasma generator and into the flux conserver such that an end of the inner electrode is electrically connected to a wall of the flux conserver. A power system provides a formation current pulse and a sustainment current pulse to the central conductor to form the magnetized plasma, inject such plasma into the flux conserver and sustain plasma's magnetic field.

Classes IPC  ?

  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • H05H 1/04 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant des champs magnétiques essentiellement engendrés par la décharge dans le plasma
  • H05H 1/26 - Torches à plasma

23.

System and method for plasma generation and compression

      
Numéro d'application 15804865
Numéro de brevet 10811144
Statut Délivré - en vigueur
Date de dépôt 2017-11-06
Date de la première publication 2019-05-09
Date d'octroi 2020-10-20
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Reynolds, Meritt Wayne
  • Mossman, Alexander Douglas
  • Howard, Stephen James
  • Rablah, Blake Kenton
  • O'Shea, Peter Joseph Larkin
  • Froese, Donald James
  • Eyrich, Charles Beaufort

Abrégé

Examples of a system for generating and compressing magnetized plasma are disclosed. The system comprises a plasma generator with a first closed end and an outlet, and a flux conserving chamber that is in tight fluid communication with the outlet of the plasma generator such that the generated plasma is injected into an inner cavity of the flux conserving chamber. An elongated central axial shaft is also provided such that the central shaft extends through the outlet of the plasma generator into the flux conserver. The end of the central shaft in connected to the flux conserver. A power source that comprises a formation power circuit and a shaft power circuit is provided to provide a formation power pulse to the plasma generator to generate magnetized plasma, and a shaft power pulse to the central axial shaft to generate a toroidal magnetic field into the plasma generator and the flux conserving chamber. The duration of the shaft power pulse is longer than the duration of the formation power pulse to maintain plasma q-profile at a pre-determined range. During plasma compression the shaft power pulse is increased to match the raise of the plasma poloidal field due to the compression and thus maintain the q-profile of the plasma.

Classes IPC  ?

  • G21B 1/05 - Réacteurs de fusion thermonucléaire avec confinement magnétique ou électrique du plasma
  • G21B 1/21 - Systèmes d'alimentation en courant électrique, p. ex. pour les systèmes magnétiques

24.

SYSTEM AND METHOD FOR PLASMA GENERATION AND COMPRESSION

      
Numéro de document 02984756
Statut Délivré - en vigueur
Date de dépôt 2017-11-06
Date de disponibilité au public 2019-05-06
Date d'octroi 2019-08-13
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel
  • Reynolds, Meritt
  • Mossman, Alexander
  • Howard, Stephen
  • Rablah, Blake
  • O'Shea, Peter
  • Froese, Donald
  • Eyrich, Charles

Abrégé

Examples of a system for generating and compressing magnetized plasma are disclosed. The system comprises a plasma generator with a first closed end and an outlet, and a flux conserving chamber that is in tight fluid communication with the outlet of the plasma generator such that the generated plasma is injected into an inner cavity of the flux conserving chamber. An elongated central axial shaft is also provided such that the central shaft extends through the outlet of the plasma generator into the flux conserver. The end of the central shaft in connected to the flux conserver. A power source that comprises a formation power circuit and a shaft power circuit is provided to provide a formation power pulse to the plasma generator to generate magnetized plasma, and a shaft power pulse to the central axial shaft to generate a toroidal magnetic field into the plasma generator and the flux conserving chamber. The duration of the shaft power pulse is longer than the duration of the formation power pulse to maintain plasma q- profile at a pre-determined range. During plasma compression the shaft power pulse is increased to match the raise of the plasma poloidal field due to the compression and thus maintain the q-profile of the plasma.

Classes IPC  ?

  • H05H 1/24 - Production du plasma
  • H05H 1/10 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant uniquement des champs magnétiques appliqués
  • G21B 1/05 - Réacteurs de fusion thermonucléaire avec confinement magnétique ou électrique du plasma
  • G21G 4/02 - Sources de neutrons

25.

VACUUM COMPATIBLE ELECTRICAL INSULATOR

      
Numéro d'application CA2018050595
Numéro de publication 2018/232495
Statut Délivré - en vigueur
Date de dépôt 2018-05-22
Date de publication 2018-12-27
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Epp, Kelly Bernard
  • Laberge, Michel Georges

Abrégé

Examples of a high voltage insulator are described. The high-voltage insulator is vacuum compatible and comprises a glass substrate having a face surface and a ceramic layer with uniform thickness coated on the face surface of 5 the glass substrate. The coated surface of the insulator is able to withstand high voltage pulses and exposure to charged particles radiation for a pre-determined time period. The ceramic coated glass insulator is made of a single piece of glass and can be made to large sizes.

Classes IPC  ?

  • H01B 3/12 - Isolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances inorganiques céramiques

26.

VACUUM COMPATIBLE ELECTRICAL INSULATOR

      
Numéro de document 03067260
Statut En instance
Date de dépôt 2018-05-22
Date de disponibilité au public 2018-12-27
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Epp, Bernard Kelly
  • Laberge, Michel Georges

Abrégé

Examples of a high voltage insulator are described. The high-voltage insulator is vacuum compatible and comprises a glass substrate having a face surface and a ceramic layer with uniform thickness coated on the face surface of 5 the glass substrate. The coated surface of the insulator is able to withstand high voltage pulses and exposure to charged particles radiation for a pre-determined time period. The ceramic coated glass insulator is made of a single piece of glass and can be made to large sizes.

Classes IPC  ?

  • H01B 3/12 - Isolateurs ou corps isolants caractérisés par le matériau isolantEmploi de matériaux spécifiés pour leurs propriétés isolantes ou diélectriques composés principalement de substances inorganiques céramiques

27.

METHODS AND SYSTEMS FOR IMPLODING A LIQUID LINER

      
Numéro de document 03062202
Statut Délivré - en vigueur
Date de dépôt 2018-04-16
Date de disponibilité au public 2018-11-08
Date d'octroi 2023-08-15
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Zimmermann, Joerg
  • Plant, David Franklin
  • Bouchal, Robert Vlastimil
  • Tyler, Troy Nickolas
  • Suponitsky, Victoria
  • Delage, Michael Harcourt
  • Laberge, Michel Georges
  • Williams, Malcolm Newton

Abrégé

Examples of systems for imploding liquid liner are described. The imploding system comprises a vessel and a rotating member positioned within the vessel. The rotating member has a plurality of shaped blades that form a plurality of curved passages that have an inboard opening at an inner surface and an outboard end at an outer surface. The rotating member is at least partially filled with liquid medium. A driver is used to rotate the rotating member such that when the rotating member rotates the liquid medium is forced into the passages forming a liquid liner with an interface curved with respect to an axis of rotation and defining a cavity. The system further comprises an implosion driver that changes the rotational speed of the rotating member such that the liquid liner is imploded inwardly collapsing the cavity. The imploding liquid liner can be used in plasma compression systems.

Classes IPC  ?

  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails
  • H05H 1/24 - Production du plasma

28.

METHODS AND SYSTEMS FOR FORMING A LIQUID LINER OF A CAVITY

      
Numéro de document 03062209
Statut Délivré - en vigueur
Date de dépôt 2018-04-16
Date de disponibilité au public 2018-11-08
Date d'octroi 2024-01-02
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Zimmermann, Joerg
  • Plant, David Franklin
  • Bouchal, Robert Vlastimil
  • Tyler, Troy Nickolas
  • Suponitsky, Victoria
  • Delage, Michael Harcourt
  • Laberge, Michel Georges

Abrégé

Examples of systems for forming cavity and a liquid liner are described. The system comprises a vessel and a rotating member positioned within the vessel and rotatable about an axis of rotation. The rotating member has an inner surface 5 curved with respect to the axis of rotation, an outer and plurality of fluid passages that each has an inboard opening at the inner surface and an outboard opening at the outer surface. The rotating member is filled with a liquid medium and a rotational driver rotates the rotating member such that when rotating the liquid medium at least partially fills the fluid passages forming liquid liner, defining the 10 cavity. The cavity formation system is used in a liquid liner implosion system with an implosion driver that causes the liquid liner to implode inwardly collapsing the cavity. The imploding liquid liner system can be used in plasma compression systems.

Classes IPC  ?

  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • B05C 7/00 - Appareillages spécialement agencés pour appliquer un liquide ou autre matériau fluide à l'intérieur d'une pièce creuse
  • H05H 1/24 - Production du plasma
  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails

29.

METHODS AND SYSTEMS FOR IMPLODING A LIQUID LINER

      
Numéro d'application CA2018050456
Numéro de publication 2018/201226
Statut Délivré - en vigueur
Date de dépôt 2018-04-16
Date de publication 2018-11-08
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Zimmermann, Joerg
  • Plant, David Franklin
  • Bouchal, Robert Vlastimil
  • Tyler, Troy Nickolas
  • Suponitsky, Victoria
  • Delage, Michael Harcourt
  • Laberge, Michel Georges
  • Williams, Malcolm Newton

Abrégé

Examples of systems for imploding liquid liner are described. The imploding system comprises a vessel and a rotating member positioned within the vessel. The rotating member has a plurality of shaped blades that form a plurality of curved passages that have an inboard opening at an inner surface and an outboard end at an outer surface. The rotating member is at least partially filled with liquid medium. A driver is used to rotate the rotating member such that when the rotating member rotates the liquid medium is forced into the passages forming a liquid liner with an interface curved with respect to an axis of rotation and defining a cavity. The system further comprises an implosion driver that changes the rotational speed of the rotating member such that the liquid liner is imploded inwardly collapsing the cavity. The imploding liquid liner can be used in plasma compression systems.

Classes IPC  ?

  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails
  • H05H 1/24 - Production du plasma

30.

METHODS AND SYSTEMS FOR FORMING A LIQUID LINER OF A CAVITY

      
Numéro d'application CA2018050457
Numéro de publication 2018/201227
Statut Délivré - en vigueur
Date de dépôt 2018-04-16
Date de publication 2018-11-08
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Zimmermann, Joerg
  • Plant, David Franklin
  • Bouchal, Robert Vlastimil
  • Tyler, Troy Nickolas
  • Suponitsky, Victoria
  • Delage, Michael Harcourt
  • Laberge, Michel Georges

Abrégé

Examples of systems for forming cavity and a liquid liner are described. The system comprises a vessel and a rotating member positioned within the vessel and rotatable about an axis of rotation. The rotating member has an inner surface 5 curved with respect to the axis of rotation, an outer and plurality of fluid passages that each has an inboard opening at the inner surface and an outboard opening at the outer surface. The rotating member is filled with a liquid medium and a rotational driver rotates the rotating member such that when rotating the liquid medium at least partially fills the fluid passages forming liquid liner, defining the 10 cavity. The cavity formation system is used in a liquid liner implosion system with an implosion driver that causes the liquid liner to implode inwardly collapsing the cavity. The imploding liquid liner system can be used in plasma compression systems.

Classes IPC  ?

  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • B05C 7/00 - Appareillages spécialement agencés pour appliquer un liquide ou autre matériau fluide à l'intérieur d'une pièce creuse
  • H05H 1/24 - Production du plasma
  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails

31.

Apparatus and method for generating a vortex cavity in a rotating fluid

      
Numéro d'application 15545646
Numéro de brevet 10546660
Statut Délivré - en vigueur
Date de dépôt 2016-01-14
Date de la première publication 2018-10-04
Date d'octroi 2020-01-28
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Plant, David Franklin
  • Suponitsky, Victoria
  • Kuatsjah, Eunice

Abrégé

Examples of system for generating vortex cavity are disclosed. The system comprises a vessel into which a fluid is injected through one or more inlet ports and a fluid circulating system configured to circulate the fluid through the vessel such that the fluid is removed from the vessel through an outlet port and is returned back into the vessel through the one and more inlet ports. A first spinner is mounted at one wall of the vessel while a second spinner is mounted at the opposite wall of the vessel such that the second spinner is at some distance away from the first spinner and it faces the first spinner. When the fluid circulating system starts circulating the fluid within the vessel a vortex cavity is formed that extends between the first and the second spinners so that one end of the vortex cavity sits on the first spinner while the opposite end of the vortex cavity sits on the second spinner.

Classes IPC  ?

  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • F15D 1/00 - Action sur l'écoulement des fluides
  • F15B 21/12 - Oscillateurs de fluide ou générateurs d'impulsion de fluide
  • B01F 5/00 - Mélangeurs à écoulement; Mélangeurs pour matériaux tombants, p.ex. particules solides

32.

Systems and methods for compressing plasma

      
Numéro d'application 15872585
Numéro de brevet 10984917
Statut Délivré - en vigueur
Date de dépôt 2018-01-16
Date de la première publication 2018-07-05
Date d'octroi 2021-04-20
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Richardson, Douglas H.

Abrégé

Embodiments of systems and methods for compressing plasma are described in which plasma pressures above the breaking point of solid material can be achieved by injecting a plasma into a funnel of liquid metal in which the plasma is compressed and/or heated.

Classes IPC  ?

  • H05H 1/12 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant uniquement des champs magnétiques appliqués dans lesquels l'enceinte forme une boucle fermée
  • G21B 1/05 - Réacteurs de fusion thermonucléaire avec confinement magnétique ou électrique du plasma
  • H05H 1/16 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant des champs électriques et magnétiques
  • H05H 3/06 - Production de faisceaux de neutrons
  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • H05H 1/54 - Accélérateurs de plasma

33.

Modular compression chamber

      
Numéro d'application 15556181
Numéro de brevet 10115486
Statut Délivré - en vigueur
Date de dépôt 2016-03-03
Date de la première publication 2018-02-22
Date d'octroi 2018-10-30
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Mcilwraith, Lon William
  • Laberge, Michel Georges
  • Richardson, Douglas H.

Abrégé

Examples of a modular compression chamber for use in a compression system are disclosed. The modular compression chamber comprises a plurality of individual modules and a plurality of fasteners to attach the plurality of modules in an interlocking fashion to form the chamber. The modules have a pre-determined geometry and size to form a compression chamber with a desired geometry and size. The plurality of fasteners keeps each of the individual modules in compression with neighboring modules so that the formed chamber maintains its integrity during operation. The modules can comprise a plurality of pressure wave generators to generate a pressure wave within the chamber. In one embodiment, the pressure wave generators have a pre-determined geometry and size and are configured to interlock with the neighboring generators forming the individual modules. The fasteners are configured to maintain intimate contact between side walls of the adjacent pressure wave generators.

Classes IPC  ?

  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • F15B 21/12 - Oscillateurs de fluide ou générateurs d'impulsion de fluide

34.

System and method for controlling plasma magnetic field

      
Numéro d'application 15502902
Numéro de brevet 09967963
Statut Délivré - en vigueur
Date de dépôt 2015-08-18
Date de la première publication 2017-10-19
Date d'octroi 2018-05-08
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Zindler, Ryan Walter
  • Fraser, Jonathan Damian

Abrégé

Examples of a system for generating and confining a compact toroid are disclosed. The system comprises a plasma generator for generating magnetized plasma, a flux conserver for receiving the compact toroid, a power source for providing current pulse and a controller for actively controlling a current profile of the pulse to keep plasma's q-profile within pre-determined range. Examples of methods of controlling a magnetic lifetime of a magnetized plasma by controlling a current profile of the current pulse are disclosed.

Classes IPC  ?

  • H05H 1/04 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant des champs magnétiques essentiellement engendrés par la décharge dans le plasma
  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • G01R 19/00 - Dispositions pour procéder aux mesures de courant ou de tension ou pour en indiquer l'existence ou le signe
  • G01R 33/028 - Magnétomètres électrodynamiques

35.

Jet control devices and methods

      
Numéro d'application 15247740
Numéro de brevet 10092914
Statut Délivré - en vigueur
Date de dépôt 2016-08-25
Date de la première publication 2016-12-15
Date d'octroi 2018-10-09
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Suponitsky, Victoria
  • Barsky, Sandra Justine
  • Laberge, J. Michel G.
  • Richardson, Douglas Harvey
  • Kostka, Peter Leszek

Abrégé

Examples of a jet control device are described. The jet control device can comprise a jet deflecting member that is configured to intercept and/or collide with a high speed jet emerging from a jet formation location. The interaction of the jet deflecting member and the jet can cause the high speed jet to be dispersed into a plurality of jets with a number of flow directions which may be sideways to an initial direction of the high speed jet. In one embodiment the deflecting member can include a liquid guide formed by injecting a fluid out of an outlet nozzle so that the liquid guide extends longitudinally away from the outlet nozzle. In another embodiment the deflecting member can include an array of solid pellets injected through an outlet in a direction of the emerging high speed jet and configured to collide with the emerging jet thereby deflecting its initial direction.

Classes IPC  ?

  • B05B 1/26 - Buses, têtes de pulvérisation ou autres dispositifs de sortie, avec ou sans dispositifs auxiliaires tels que valves, moyens de chauffage avec des moyens pour briser ou dévier mécaniquement le jet à sa sortie, p. ex. des déflecteurs fixesDispersion du liquide ou d'autre matériau fluide sortant à l'aide de jets d'impact
  • F15D 1/08 - Action sur l'écoulement des fluides des jets sortant d'un orifice
  • F15D 1/00 - Action sur l'écoulement des fluides
  • F17D 1/00 - Systèmes de canalisation
  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • H05H 1/24 - Production du plasma

36.

Pressure wave generator with a sabot launched piston

      
Numéro d'application 15211476
Numéro de brevet 10391520
Statut Délivré - en vigueur
Date de dépôt 2016-07-15
Date de la première publication 2016-11-03
Date d'octroi 2019-08-27
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Mcilwraith, Lon William
  • Laberge, Michel G

Abrégé

Examples of a pressure wave generator configured to generate high energy pressure waves in a medium are disclosed. The pressure wave generator can include a sabot carrying a piston. The sabot can further comprise a locking means to lock the piston in a fixed position when the locking means are activated. When the locking means are in a deactivated position, the piston can be released and can move at least partially away from the sabot. The sabot carrying the piston can be disposed within an inner bore of a housing of the pressure wave generator and can move within the inner bore of the housing from its first end toward its second end along a longitudinal axis of the bore. A transducer can be accommodated in the second end of the housing. The transducer can be coupled to the medium and can convert a portion of the kinetic energy of the piston into a pressure wave in the medium upon impact of the piston with the transducer. The sabot carrying the piston can be accelerated by applying a motive force to the sabot. Once accelerated within the inner bore of the housing the sabot can be decelerated by applying a restraining force to the sabot while the piston can be released at least partially from the sabot to continue to move toward the transducer until it impacts the transducer. Examples of methods of operating the pressure wave generator are disclosed.

Classes IPC  ?

  • B06B 1/18 - Procédés ou appareils pour produire des vibrations mécaniques de fréquence infrasonore, sonore ou ultrasonore dans lesquels le vibrateur est déclenché par pression de fluide
  • F04D 35/00 - Pompes produisant des vagues dans les liquides, c.-à-d. générateurs de vagues
  • F42D 3/06 - Applications particulières de techniques de sautage à des fins sismologiques
  • G01V 1/135 - Production d'énergie sismique en utilisant des fluides comme moyens d'entraînement hydrauliques, p. ex. en utilisant des fluides à haute pression déformant ou déplaçant des surfaces d'enceintes

37.

Systems and methods for compressing plasma

      
Numéro d'application 15200919
Numéro de brevet 09875816
Statut Délivré - en vigueur
Date de dépôt 2016-07-01
Date de la première publication 2016-10-27
Date d'octroi 2018-01-23
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Richardson, Douglas H.

Abrégé

Embodiments of systems and methods for compressing plasma are described in which plasma pressures above the breaking point of solid material can be achieved by injecting a plasma into a funnel of liquid metal in which the plasma is compressed and/or heated.

Classes IPC  ?

  • G21B 1/05 - Réacteurs de fusion thermonucléaire avec confinement magnétique ou électrique du plasma
  • H05H 1/16 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant des champs électriques et magnétiques
  • H05H 3/06 - Production de faisceaux de neutrons
  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • H05H 1/54 - Accélérateurs de plasma

38.

MODULAR COMPRESSION CHAMBER

      
Numéro d'application CA2016050230
Numéro de publication 2016/141464
Statut Délivré - en vigueur
Date de dépôt 2016-03-03
Date de publication 2016-09-15
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Mcilwraith, Lon William
  • Laberge, Michel Georges
  • Richardson, Douglas H.

Abrégé

Examples of a modular compression chamber for use in a compression system are disclosed. The modular compression chamber comprises a plurality of individual modules and a plurality of fasteners to attach the plurality of modules in an interlocking fashion to form the chamber. The modules have a pre-determined geometry and size to form a compression chamber with a desired geometry and size. The plurality of fasteners keeps each of the individual modules in compression with neighboring modules so that the formed chamber maintains its integrity during operation. The modules can comprise a plurality of pressure wave generators to generate a pressure wave within the chamber. In one embodiment, the pressure wave generators have a pre-determined geometry and size and are configured to interlock with the neighboring generators forming the individual modules. The fasteners are configured to maintain intimate contact between side walls of the adjacent pressure wave generators.

Classes IPC  ?

  • F15B 21/12 - Oscillateurs de fluide ou générateurs d'impulsion de fluide
  • B01J 3/08 - Application d'ondes de choc à des réactions chimiques ou pour modifier la structure cristalline des substances

39.

MODULAR COMPRESSION CHAMBER

      
Numéro de document 02978030
Statut Délivré - en vigueur
Date de dépôt 2016-03-03
Date de disponibilité au public 2016-09-15
Date d'octroi 2018-03-27
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Mcilwraith, Lon William
  • Laberge, Michel Georges
  • Richardson, Douglas H.

Abrégé

Examples of a modular compression chamber for use in a compression system are disclosed. The modular compression chamber comprises a plurality of individual modules and a plurality of fasteners to attach the plurality of modules in an interlocking fashion to form the chamber. The modules have a pre-determined geometry and size to form a compression chamber with a desired geometry and size. The plurality of fasteners keeps each of the individual modules in compression with neighboring modules so that the formed chamber maintains its integrity during operation. The modules can comprise a plurality of pressure wave generators to generate a pressure wave within the chamber. In one embodiment, the pressure wave generators have a pre-determined geometry and size and are configured to interlock with the neighboring generators forming the individual modules. The fasteners are configured to maintain intimate contact between side walls of the adjacent pressure wave generators.

Classes IPC  ?

  • F15B 21/12 - Oscillateurs de fluide ou générateurs d'impulsion de fluide
  • B01J 3/08 - Application d'ondes de choc à des réactions chimiques ou pour modifier la structure cristalline des substances

40.

Clean energy. Everywhere. Forever

      
Numéro d'application 179652400
Statut Enregistrée
Date de dépôt 2016-08-18
Date d'enregistrement 2017-11-22
Propriétaire GENERAL FUSION INC. (Canada)
Classes de Nice  ?
  • 09 - Appareils et instruments scientifiques et électriques
  • 11 - Appareils de contrôle de l'environnement

Produits et services

(1) Nuclear fusion energy reactor and reactor subcomponents; Plasma generator for scientific, research and development purposes; Plasma injector for scientific, research and development purposes; Plasma accelerator for scientific, research and development purposes; Nuclear fusion reactor for scientific, research and development purposes; Plasma generator for plasma physics research; Nuclear fusion reactor for plasma physics research.

41.

APPARATUS AND METHOD FOR GENERATING A VORTEX CAVITY IN A ROTATING FLUID

      
Numéro de document 02969934
Statut Délivré - en vigueur
Date de dépôt 2016-01-14
Date de disponibilité au public 2016-07-21
Date d'octroi 2018-06-19
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Plant, David Franklin
  • Suponitsky, Victoria
  • Kuatsjah, Eunice

Abrégé

Examples of system for generating vortex cavity are disclosed. The system comprises a vessel into which a fluid is injected through one or more inlet ports and a fluid circulating system configured to circulate the fluid through the vessel such that the fluid is removed from the vessel through an outlet port and is returned back into the vessel through the one and more inlet ports. A first spinner is mounted at one wall of the vessel while a second spinner is mounted at the opposite wall of the vessel such that the second spinner is at some distance away from the first spinner and it faces the first spinner. When the fluid circulating system starts circulating the fluid within the vessel a vortex cavity is formed that extends between the first and the second spinners so that one end of the vortex cavity sits on the first spinner while the opposite end of the vortex cavity sits on the second spinner.

Classes IPC  ?

  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails
  • F15D 1/00 - Action sur l'écoulement des fluides
  • H05H 1/00 - Production du plasmaMise en œuvre du plasma

42.

APPARATUS AND METHOD FOR GENERATING A VORTEX CAVITY IN A ROTATING FLUID

      
Numéro d'application CA2016050032
Numéro de publication 2016/112464
Statut Délivré - en vigueur
Date de dépôt 2016-01-14
Date de publication 2016-07-21
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Plant, David Franklin
  • Suponitsky, Victoria
  • Kuatsjah, Eunice

Abrégé

Examples of system for generating vortex cavity are disclosed. The system comprises a vessel into which a fluid is injected through one or more inlet ports and a fluid circulating system configured to circulate the fluid through the vessel such that the fluid is removed from the vessel through an outlet port and is returned back into the vessel through the one and more inlet ports. A first spinner is mounted at one wall of the vessel while a second spinner is mounted at the opposite wall of the vessel such that the second spinner is at some distance away from the first spinner and it faces the first spinner. When the fluid circulating system starts circulating the fluid within the vessel a vortex cavity is formed that extends between the first and the second spinners so that one end of the vortex cavity sits on the first spinner while the opposite end of the vortex cavity sits on the second spinner.

Classes IPC  ?

  • G21B 1/11 - Réacteurs de fusion thermonucléaire Détails
  • F15D 1/00 - Action sur l'écoulement des fluides
  • H05H 1/00 - Production du plasmaMise en œuvre du plasma

43.

SYSTEM AND METHOD FOR EVAPORATING A METAL

      
Numéro d'application CA2015051121
Numéro de publication 2016/070267
Statut Délivré - en vigueur
Date de dépôt 2015-11-02
Date de publication 2016-05-12
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Mossman, Alexander Douglas
  • Plant, David Franklin

Abrégé

Examples of a device for gettering and surface conditioning are disclosed. The device comprises an elongated tube with a closed first end, a second end and a body extending between the first end and the second end. The body defines an inner cavity of the tube in which a heating device is inserted. The tube is inserted into a vessel so that the first end is positioned within the vessel. A solid metal is mounted closely to the tube in a region surrounding the heating device and a meshed screen is mounted over the solid metal and secured to the tube. When the heating device is on, the heat transfers through the tube's wall into the solid metal melting and vaporizing it, so that the metal vapors travel and coat onto vessel's surfaces. The device can also be used in producing metal alloys such as lead lithium alloys.

Classes IPC  ?

  • C23C 14/24 - Évaporation sous vide
  • B01D 1/00 - Évaporation
  • B01J 3/03 - Récipients sous pression, ou récipients sous vide, comportant des organes de fermeture ou des joints d'étanchéité spécialement adaptés à cet effet

44.

Jet control devices and methods

      
Numéro d'application 14963868
Numéro de brevet 09463478
Statut Délivré - en vigueur
Date de dépôt 2015-12-09
Date de la première publication 2016-04-21
Date d'octroi 2016-10-11
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Suponitsky, Victoria
  • Barsky, Sandra Justine
  • Laberge, J. Michel G.
  • Richardson, Douglas Harvey
  • Kostka, Peter Leszek

Abrégé

Examples of a jet control device are described. The jet control device can comprise a jet deflecting member that is configured to intercept and/or collide with a high speed jet emerging from a jet formation location. The interaction of the jet deflecting member and the jet can cause the high speed jet to be dispersed into a plurality of jets with a number of flow directions which may be sideways to an initial direction of the high speed jet. In one embodiment the deflecting member can include a liquid guide formed by injecting a fluid out of an outlet nozzle so that the liquid guide extends longitudinally away from the outlet nozzle. In another embodiment the deflecting member can include an array of solid pellets injected through an outlet in a direction of the emerging high speed jet and configured to collide with the emerging jet thereby deflecting its initial direction.

Classes IPC  ?

  • F15D 1/00 - Action sur l'écoulement des fluides
  • B05B 1/26 - Buses, têtes de pulvérisation ou autres dispositifs de sortie, avec ou sans dispositifs auxiliaires tels que valves, moyens de chauffage avec des moyens pour briser ou dévier mécaniquement le jet à sa sortie, p. ex. des déflecteurs fixesDispersion du liquide ou d'autre matériau fluide sortant à l'aide de jets d'impact
  • F15D 1/08 - Action sur l'écoulement des fluides des jets sortant d'un orifice
  • F17D 1/00 - Systèmes de canalisation
  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • H05H 1/24 - Production du plasma

45.

SYSTEM AND METHOD FOR CONTROLLING PLASMA MAGNETIC FIELD

      
Numéro de document 02958399
Statut Délivré - en vigueur
Date de dépôt 2015-08-18
Date de disponibilité au public 2016-02-25
Date d'octroi 2017-07-04
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Zindler, Ryan Walter
  • Fraser, Jonathan Damian

Abrégé

Examples of a system for generating and confining a compact toroid are disclosed. The system comprises a plasma generator for generating magnetized plasma, a flux conserver for receiving the compact toroid, a power source for providing current pulse and a controller for actively controlling a current profile of the pulse to keep plasma's q-profile within pre- determined range. Examples of methods of controlling a magnetic lifetime of a magnetized plasma by controlling a current profile of the current pulse are disclosed.

Classes IPC  ?

  • H05H 1/00 - Production du plasmaMise en œuvre du plasma

46.

SYSTEM AND METHOD FOR CONTROLLING PLASMA MAGNETIC FIELD

      
Numéro d'application CA2015050784
Numéro de publication 2016/026040
Statut Délivré - en vigueur
Date de dépôt 2015-08-18
Date de publication 2016-02-25
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Zindler, Ryan Walter
  • Fraser, Jonathan Damian

Abrégé

Examples of a system for generating and confining a compact toroid are disclosed. The system comprises a plasma generator for generating magnetized plasma, a flux conserver for receiving the compact toroid, a power source for providing current pulse and a controller for actively controlling a current profile of the pulse to keep plasma's q-profile within pre- determined range. Examples of methods of controlling a magnetic lifetime of a magnetized plasma by controlling a current profile of the current pulse are disclosed.

Classes IPC  ?

  • H05H 1/00 - Production du plasmaMise en œuvre du plasma

47.

Pressure wave generator with a sabot launched piston

      
Numéro d'application 14655639
Numéro de brevet 09403191
Statut Délivré - en vigueur
Date de dépôt 2014-02-07
Date de la première publication 2015-11-12
Date d'octroi 2016-08-02
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Mcilwraith, Lon William
  • Laberge, Michel G.

Abrégé

Examples of a pressure wave generator configured to generate high energy pressure waves in a medium are disclosed. The pressure wave generator can include a sabot carrying a piston. The sabot can further comprise a locking means to lock the piston in a fixed position when the locking means are activated. When the locking means are in a deactivated position, the piston can be released and can move at least partially away from the sabot. The sabot carrying the piston can be disposed within an inner bore of a housing of the pressure wave generator and can move within the inner bore of the housing from its first end toward its second end along a longitudinal axis of the bore. A transducer can be accommodated in the second end of the housing. The transducer can be coupled to the medium and can convert a portion of the kinetic energy of the piston into a pressure wave in the medium upon impact of the piston with the transducer. The sabot carrying the piston can be accelerated by applying a motive force to the sabot. Once accelerated within the inner bore of the housing the sabot can be decelerated by applying a restraining force to the sabot while the piston can be released at least partially from the sabot to continue to move toward the transducer until it impacts the transducer. Examples of methods of operating the pressure wave generator are disclosed.

Classes IPC  ?

  • B06B 1/18 - Procédés ou appareils pour produire des vibrations mécaniques de fréquence infrasonore, sonore ou ultrasonore dans lesquels le vibrateur est déclenché par pression de fluide
  • F04D 35/00 - Pompes produisant des vagues dans les liquides, c.-à-d. générateurs de vagues
  • F42D 3/06 - Applications particulières de techniques de sautage à des fins sismologiques

48.

Apparatus for accelerating and compressing plasma

      
Numéro d'application 14422675
Numéro de brevet 09596745
Statut Délivré - en vigueur
Date de dépôt 2013-08-29
Date de la première publication 2015-07-30
Date d'octroi 2017-03-14
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Laberge, Michel G.
  • Reynolds, Meritt

Abrégé

Examples of a plasma acceleration and compression device are described. The device includes a plasma accelerator with a high compression funnel section extending from an inlet of the accelerator and an elongated section connected to the high compression funnel section that can extend from the end of the funnel section to an accelerator's outlet. The funnel section can be a cone with a steep tapering while the elongated section can have a mild, gentle, tapering along its length toward the outlet. The device further includes a power source for providing a current pulse to the accelerator to generate a pushing flux to accelerate and compress a plasma torus throughout the accelerator. The current pulse can be so shaped so that the current pulse behind the plasma torus at the outlet of the elongated section is significantly smaller than the current pulse at the first end of the elongated section while the pressure of the plasma torus at the outlet of the elongated section is greater than the pressure of the plasma torus at the beginning of the elongated section.

Classes IPC  ?

  • H05B 31/26 - Action sur la forme de la décharge par des dispositifs de soufflage de gaz
  • H05H 1/54 - Accélérateurs de plasma
  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • H05H 1/16 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant des champs électriques et magnétiques
  • G21B 1/00 - Réacteurs de fusion thermonucléaire
  • H05H 1/10 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant uniquement des champs magnétiques appliqués

49.

SYSTEMS AND METHODS FOR GAS INJECTION AND CONTROL

      
Numéro d'application CA2014051243
Numéro de publication 2015/100492
Statut Délivré - en vigueur
Date de dépôt 2014-12-19
Date de publication 2015-07-09
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Gutjahr, Curtis James
  • Bunce, Mark Alan
  • Wong, Adrian Hin-Fung
  • Epp, Kelly Bernard

Abrégé

Examples of systems and methods for gas injection and control are described. In some examples, an electromagnetically actuatable valve can be triggered by applying a voltage to a valve?s coil. The gas can be injected uniformly through an injection system that comprises one or more valves designed to simultaneously inject a quantity of gas. Temperature at the one or more valves can be maintained at a pre-determined reference value. In some cases, two or more sequential gas injection pulses can be used. The uniform gas density is injected within a chamber configured to receive the gas. The injection through the one or more valves is controlled by a valve control system.

Classes IPC  ?

  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • H05H 1/24 - Production du plasma
  • H05H 1/42 - Torches à plasma utilisant un arc avec des dispositions pour l'introduction de matériaux dans le plasma, p. ex. de la poudre ou du liquide

50.

Pressure wave generator with movable control rod for generating a pressure wave in a medium

      
Numéro d'application 14532793
Numéro de brevet 09746008
Statut Délivré - en vigueur
Date de dépôt 2014-11-04
Date de la première publication 2015-06-04
Date d'octroi 2017-08-29
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Mcilwraith, Lon
  • Senger, John
  • Montgomery, Darcy
  • Richardson, Douglas H.
  • Kostka, Peter
  • Bell, Kristin
  • Zindler, Ryan
  • Laberge, Michel Georges

Abrégé

Examples of a pressure wave generator configured to generate high energy pressure waves in a medium are disclosed. The pressure wave generator can include a movable piston with a guide through which a piston control rod can move or slide. The pressure wave generator can include a transducer coupled to a medium. During an impact of the piston on the transducer, the control rod can slide in the guide, which can reduce stress on the rod. The pressure wave generator can include a damper to decelerate the control rod, independently of the piston. Impact of the piston on the transducer transfers a portion of the piston's kinetic energy into the medium thereby generating pressure waves in the medium. A piston driving system may be used to provide precise and controlled launching or movement of the piston. Examples of methods of operating the pressure wave generator are disclosed.

Classes IPC  ?

  • F15B 15/14 - Dispositifs actionnés par fluides pour déplacer un organe d'une position à une autreTransmission associée à ces dispositifs caractérisés par la structure de l'ensemble moteur le moteur étant du type à cylindre droit
  • F15B 21/12 - Oscillateurs de fluide ou générateurs d'impulsion de fluide
  • G10K 15/04 - Dispositifs de production de sons
  • F03G 7/00 - Mécanismes produisant une puissance mécanique, non prévus ailleurs ou utilisant une source d'énergie non prévue ailleurs

51.

Jet control devices and methods

      
Numéro d'application 14385898
Numéro de brevet 09267515
Statut Délivré - en vigueur
Date de dépôt 2013-04-04
Date de la première publication 2015-02-05
Date d'octroi 2016-02-23
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Suponitsky, Victoria
  • Barsky, Sandra Justine
  • Laberge, J. Michel G.
  • Richardson, Douglas Harvey
  • Kostka, Peter Leszek

Abrégé

Examples of a jet control device are described. The jet control device can comprise a jet deflecting member that is configured to intercept and/or collide with a high speed jet emerging from a jet formation location. The interaction of the jet deflecting member and the jet can cause the high speed jet to be dispersed into a plurality of jets with a number of flow directions which may be sideways to an initial direction of the high speed jet. In one embodiment the deflecting member can include a liquid guide formed by injecting a fluid out of an outlet nozzle so that the liquid guide extends longitudinally away from the outlet nozzle. In another embodiment the deflecting member can include an array of solid pellets injected through an outlet in a direction of the emerging high speed jet and configured to collide with the emerging jet thereby deflecting its initial direction.

Classes IPC  ?

  • H01J 13/28 - Emploi de substances spécifiées comme atmosphère gazeuseMoyens pour obtenir ou conserver la pression désirée dans le tube
  • F15D 1/00 - Action sur l'écoulement des fluides
  • F15D 1/08 - Action sur l'écoulement des fluides des jets sortant d'un orifice
  • F17D 1/00 - Systèmes de canalisation

52.

Systems and methods for plasma compression with recycling of projectiles

      
Numéro d'application 14518965
Numéro de brevet 09271383
Statut Délivré - en vigueur
Date de dépôt 2014-10-20
Date de la première publication 2015-02-05
Date d'octroi 2016-02-23
Propriétaire General Fusion, Inc. (Canada)
Inventeur(s)
  • Howard, Stephen James
  • Laberge, Michel Georges
  • Mcilwraith, Lon
  • Richardson, Douglas Harvey
  • Gregson, James

Abrégé

Embodiments of systems and methods for compressing plasma are disclosed in which plasma can be compressed by impact of a projectile on a magnetized plasma in a liquid metal cavity. The projectile can melt in the liquid metal cavity, and liquid metal may be recycled to form new projectiles.

Classes IPC  ?

  • G21B 1/03 - Réacteurs de fusion thermonucléaire avec confinement inertiel du plasma
  • G21B 1/19 - Cibles pour la production de réactions de fusion thermonucléaire
  • H05H 1/02 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma
  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • H05H 1/54 - Accélérateurs de plasma
  • H05H 1/24 - Production du plasma

53.

Systems and methods for compressing plasma

      
Numéro d'application 13935281
Numéro de brevet 09424955
Statut Délivré - en vigueur
Date de dépôt 2013-07-03
Date de la première publication 2014-09-04
Date d'octroi 2016-08-23
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Richardson, Douglas H.

Abrégé

Embodiments of systems and methods for compressing plasma are described in which plasma pressures above the breaking point of solid material can be achieved by injecting a plasma into a funnel of liquid metal in which the plasma is compressed and/or heated.

Classes IPC  ?

  • H05H 1/12 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant uniquement des champs magnétiques appliqués dans lesquels l'enceinte forme une boucle fermée
  • G21B 1/05 - Réacteurs de fusion thermonucléaire avec confinement magnétique ou électrique du plasma
  • H05H 1/16 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant des champs électriques et magnétiques
  • H05H 3/06 - Production de faisceaux de neutrons
  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • H05H 1/54 - Accélérateurs de plasma

54.

PRESSURE WAVE GENERATOR WITH A SABOT LAUNCHED PISTON

      
Numéro de document 02896668
Statut Délivré - en vigueur
Date de dépôt 2014-02-07
Date de disponibilité au public 2014-08-14
Date d'octroi 2016-03-29
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Mcilwraith, Lon William
  • Laberge, Michel G.

Abrégé

Examples of a pressure wave generator configured to generate high energy pressure waves in a medium are disclosed. The pressure wave generator can include a sabot carrying a piston. The sabot can further comprise a locking means to lock the piston in a fixed position when the locking means are activated. When the locking means are in a deactivated position, the piston can be released and can move at least partially away from the sabot. The sabot carrying the piston can be disposed within an inner bore of a housing of the pressure wave generator and can move within the inner bore of the housing from its first end toward its second end along a longitudinal axis of the bore. A transducer can be accommodated in the second end of the housing. The transducer can be coupled to the medium and can convert a portion of the kinetic energy of the piston into a pressure wave in the medium upon impact of the piston with the transducer. The sabot carrying the piston can be accelerated by applying a motive force to the sabot. Once accelerated within the inner bore of the housing the sabot can be decelerated by applying a restraining force to the sabot while the piston can be released at least partially from the sabot to continue to move toward the transducer until it impacts the transducer. Examples of methods of operating the pressure wave generator are disclosed.

Classes IPC  ?

  • B06B 1/00 - Procédés ou appareils pour produire des vibrations mécaniques de fréquence infrasonore, sonore ou ultrasonore
  • B06B 1/18 - Procédés ou appareils pour produire des vibrations mécaniques de fréquence infrasonore, sonore ou ultrasonore dans lesquels le vibrateur est déclenché par pression de fluide
  • B30B 1/32 - Presses, utilisant un élément pilonnant, caractérisées par le mode d'entraînement du pilon, la pression étant transmise au pilon ou à la platine de presse directement ou uniquement par l'intermédiaire d'organes travaillant en simple poussée ou traction par des plongeurs sous pression de fluide
  • F04D 35/00 - Pompes produisant des vagues dans les liquides, c.-à-d. générateurs de vagues
  • F16J 1/00 - PistonsPistons à fourreauPlongeurs

55.

PRESSURE WAVE GENERATOR WITH A SABOT LAUNCHED PISTON

      
Numéro d'application CA2014050085
Numéro de publication 2014/121401
Statut Délivré - en vigueur
Date de dépôt 2014-02-07
Date de publication 2014-08-14
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Mcilwraith, Lon William
  • Laberge, Michel G.

Abrégé

Examples of a pressure wave generator configured to generate high energy pressure waves in a medium are disclosed. The pressure wave generator can include a sabot carrying a piston. The sabot can further comprise a locking means to lock the piston in a fixed position when the locking means are activated. When the locking means are in a deactivated position, the piston can be released and can move at least partially away from the sabot. The sabot carrying the piston can be disposed within an inner bore of a housing of the pressure wave generator and can move within the inner bore of the housing from its first end toward its second end along a longitudinal axis of the bore. A transducer can be accommodated in the second end of the housing. The transducer can be coupled to the medium and can convert a portion of the kinetic energy of the piston into a pressure wave in the medium upon impact of the piston with the transducer. The sabot carrying the piston can be accelerated by applying a motive force to the sabot. Once accelerated within the inner bore of the housing the sabot can be decelerated by applying a restraining force to the sabot while the piston can be released at least partially from the sabot to continue to move toward the transducer until it impacts the transducer. Examples of methods of operating the pressure wave generator are disclosed.

Classes IPC  ?

  • B06B 1/00 - Procédés ou appareils pour produire des vibrations mécaniques de fréquence infrasonore, sonore ou ultrasonore
  • B06B 1/18 - Procédés ou appareils pour produire des vibrations mécaniques de fréquence infrasonore, sonore ou ultrasonore dans lesquels le vibrateur est déclenché par pression de fluide
  • B30B 1/32 - Presses, utilisant un élément pilonnant, caractérisées par le mode d'entraînement du pilon, la pression étant transmise au pilon ou à la platine de presse directement ou uniquement par l'intermédiaire d'organes travaillant en simple poussée ou traction par des plongeurs sous pression de fluide
  • F04D 35/00 - Pompes produisant des vagues dans les liquides, c.-à-d. générateurs de vagues
  • F16J 1/00 - PistonsPistons à fourreauPlongeurs

56.

Pressure wave generator with movable control rod for generating a pressure wave in a medium

      
Numéro d'application 14000725
Numéro de brevet 08887618
Statut Délivré - en vigueur
Date de dépôt 2012-02-08
Date de la première publication 2014-06-19
Date d'octroi 2014-11-18
Propriétaire General Fusion, Inc. (Canada)
Inventeur(s)
  • Mcilwraith, Lon
  • Senger, John
  • Montgomery, Darcy
  • Richardson, Douglas H.
  • Kostka, Peter
  • Bell, Kristin
  • Zindler, Ryan
  • Laberge, Michel Georges

Abrégé

Examples of a pressure wave generator configured to generate high energy pressure waves in a medium are disclosed. The pressure wave generator can include a movable piston with a guide through which a piston control rod can move or slide. The pressure wave generator can include a transducer coupled to a medium. During an impact of the piston on the transducer, the control rod can slide in the guide, which can reduce stress on the rod. The pressure wave generator can include a damper to decelerate the control rod, independently of the piston. Impact of the piston on the transducer transfers a portion of the piston's kinetic energy into the medium thereby generating pressure waves in the medium. A piston driving system may be used to provide precise and controlled launching or movement of the piston. Examples of methods of operating the pressure wave generator are disclosed.

Classes IPC  ?

  • B01J 3/08 - Application d'ondes de choc à des réactions chimiques ou pour modifier la structure cristalline des substances
  • F16J 1/20 - Liaison avec les organes d'entraînement avec les bielles, c.-à-d. liaisons articulées à pivotement avec contacts roulants, les roulements à billes ou à rouleaux exceptés
  • F15B 21/12 - Oscillateurs de fluide ou générateurs d'impulsion de fluide
  • G10K 15/04 - Dispositifs de production de sons
  • F03G 7/00 - Mécanismes produisant une puissance mécanique, non prévus ailleurs ou utilisant une source d'énergie non prévue ailleurs

57.

APPARATUS FOR ACCELERATING AND COMPRESSING PLASMA

      
Numéro de document 02883710
Statut Délivré - en vigueur
Date de dépôt 2013-08-29
Date de disponibilité au public 2014-03-06
Date d'octroi 2017-07-18
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel G.
  • Reynolds, Meritt

Abrégé

Examples of a plasma acceleration and compression device are described. The device includes a plasma accelerator with a high compression funnel section extending from an inlet of the accelerator and an elongated section connected to the high compression funnel section that can extend from the end of the funnel section to an accelerator's outlet. The funnel section can be a cone with a steep tapering while the elongated section can have a mild, gentle, tapering along its length toward the outlet. The device further includes a power source for providing a current pulse to the accelerator to generate a pushing flux to accelerate and compress a plasma torus throughout the accelerator. The current pulse can be so shaped so that the current pulse behind the plasma torus at the outlet of the elongated section is significantly smaller than the current pulse at the first end of the elongated section while the pressure of the plasma torus at the outlet of the elongated section is greater than the pressure of the plasma torus at the beginning of the elongated section.

Classes IPC  ?

58.

APPARATUS FOR ACCELERATING AND COMPRESSING PLASMA

      
Numéro d'application CA2013050670
Numéro de publication 2014/032186
Statut Délivré - en vigueur
Date de dépôt 2013-08-29
Date de publication 2014-03-06
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Laberge, Michel G.
  • Reynolds, Meritt

Abrégé

Examples of a plasma acceleration and compression device are described. The device includes a plasma accelerator with a high compression funnel section extending from an inlet of the accelerator and an elongated section connected to the high compression funnel section that can extend from the end of the funnel section to an accelerator's outlet. The funnel section can be a cone with a steep tapering while the elongated section can have a mild, gentle, tapering along its length toward the outlet. The device further includes a power source for providing a current pulse to the accelerator to generate a pushing flux to accelerate and compress a plasma torus throughout the accelerator. The current pulse can be so shaped so that the current pulse behind the plasma torus at the outlet of the elongated section is significantly smaller than the current pulse at the first end of the elongated section while the pressure of the plasma torus at the outlet of the elongated section is greater than the pressure of the plasma torus at the beginning of the elongated section.

Classes IPC  ?

59.

FAST RESPONSE VALVE AND METHOD

      
Numéro d'application CA2013050426
Numéro de publication 2013/185222
Statut Délivré - en vigueur
Date de dépôt 2013-06-04
Date de publication 2013-12-19
Propriétaire GENERAL FUSION, INC. (Canada)
Inventeur(s) Laberge, Michel G.

Abrégé

A valve for fast release of a fluid comprising a housing defining an inner bore, a body movably mounted within the inner bore of the housing, and a driver for moving the body relative to the housing. The body includes a cavity extending into at least a portion of the body for receiving a fluid. The housing has a fluid inlet and a fluid outlet and the cavity aligns with the fluid inlet for transfer of fluid from the fluid inlet to the cavity and aligns with the fluid outlet for transfer of the fluid from the cavity to the fluid outlet. The driver moves the body from a closed position whereby the cavity is remote from the fluid outlet to an open position whereby the cavity is at least partially aligned with the fluid outlet. Fluid is transferred through the valve from the fluid inlet to the fluid outlet via the cavity in a fast and predictable manner.

Classes IPC  ?

  • F16K 3/26 - Robinets-vannes ou tiroirs, c.-à-d. dispositifs obturateurs dont l'élément de fermeture glisse le long d'un siège pour l'ouverture ou la fermeture à faces d'obturation en forme de surfaces de solides de révolution avec corps de tiroir cylindrique le passage du fluide se faisant par le corps du tiroir
  • F16K 3/314 - Formes ou structures de la partie coulissanteSa fixation sur sa tige
  • F16K 31/06 - Moyens de fonctionnementDispositifs de retour à la position de repos électriquesMoyens de fonctionnementDispositifs de retour à la position de repos magnétiques utilisant un aimant
  • F16K 31/72 - Moyens de fonctionnement ou dispositifs de déclenchement particulièrement adaptés pour augmenter la vitesse de réponse de la soupape
  • F16K 51/00 - Autres détails non particuliers aux types de soupapes ou clapets ou autres appareils d'obturation

60.

GENERAL FUSION

      
Numéro d'application 165721100
Statut Enregistrée
Date de dépôt 2013-12-19
Date d'enregistrement 2015-06-04
Propriétaire GENERAL FUSION INC. (Canada)
Classes de Nice  ?
  • 09 - Appareils et instruments scientifiques et électriques
  • 11 - Appareils de contrôle de l'environnement

Produits et services

(1) Nuclear fusion energy reactor and reactor subcomponents; Plasma generator for scientific, research and development purposes; Plasma injector for scientific, research and development purposes; Plasma accelerator for scientific, research and development purposes; Nuclear fusion reactor for scientific, research and development purposes; Plasma generator for plasma physics research; Nuclear fusion reactor for plasma physics research.

61.

GENERALFUSION

      
Numéro d'application 165721800
Statut Enregistrée
Date de dépôt 2013-12-19
Date d'enregistrement 2015-06-04
Propriétaire GENERAL FUSION INC. (Canada)
Classes de Nice  ?
  • 09 - Appareils et instruments scientifiques et électriques
  • 11 - Appareils de contrôle de l'environnement

Produits et services

(1) Nuclear fusion energy reactor and reactor subcomponents; Plasma generator for scientific, research and development purposes; Plasma injector for scientific, research and development purposes; Plasma accelerator for scientific, research and development purposes; Nuclear fusion reactor for scientific, research and development purposes; Plasma generator for plasma physics research; Nuclear fusion reactor for plasma physics research.

62.

JET CONTROL DEVICES AND METHODS

      
Numéro d'application CA2013050272
Numéro de publication 2013/149345
Statut Délivré - en vigueur
Date de dépôt 2013-04-04
Date de publication 2013-10-10
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Suponitsky, Victoria
  • Barsky, Sandra Justine
  • Laberge, J. Michel G.
  • Richardson, Douglas Harvey
  • Kostka, Peter Leszek

Abrégé

Examples of a jet control device are described. The jet control device can comprise a jet deflecting member that is configured to intercept and/or collide with a high speed jet emerging from a jet formation location. The interaction of the jet deflecting member and the jet can cause the high speed jet to be dispersed into a plurality of jets with a number of flow directions which may be sideways to an initial direction of the high speed jet. In one embodiment the deflecting member can include a liquid guide formed by injecting a fluid out of an outlet nozzle so that the liquid guide extends longitudinally away from the outlet nozzle. In another embodiment the deflecting member can include an array of solid pellets injected through an outlet in a direction of the emerging high speed jet and configured to collide with the emerging jet thereby deflecting its initial direction.

Classes IPC  ?

  • F15D 1/08 - Action sur l'écoulement des fluides des jets sortant d'un orifice
  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • H05H 1/24 - Production du plasma

63.

JET CONTROL DEVICES AND METHODS

      
Numéro de document 02867362
Statut Délivré - en vigueur
Date de dépôt 2013-04-04
Date de disponibilité au public 2013-10-10
Date d'octroi 2016-01-12
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Suponitsky, Victoria
  • Barsky, Sandra Justine
  • Laberge, J. Michel G.
  • Richardson, Douglas Harvey
  • Kostka, Peter Leszek

Abrégé

Examples of a jet control device are described. The jet control device can comprise a jet deflecting member that is configured to intercept and/or collide with a high speed jet emerging from a jet formation location. The interaction of the jet deflecting member and the jet can cause the high speed jet to be dispersed into a plurality of jets with a number of flow directions which may be sideways to an initial direction of the high speed jet. In one embodiment the deflecting member can include a liquid guide formed by injecting a fluid out of an outlet nozzle so that the liquid guide extends longitudinally away from the outlet nozzle. In another embodiment the deflecting member can include an array of solid pellets injected through an outlet in a direction of the emerging high speed jet and configured to collide with the emerging jet thereby deflecting its initial direction.

Classes IPC  ?

  • F15D 1/08 - Action sur l'écoulement des fluides des jets sortant d'un orifice
  • H05H 1/00 - Production du plasmaMise en œuvre du plasma
  • H05H 1/24 - Production du plasma

64.

JET CONTROL DEVICES AND METHODS

      
Numéro de document 02911123
Statut Délivré - en vigueur
Date de dépôt 2013-04-04
Date de disponibilité au public 2013-10-10
Date d'octroi 2016-10-18
Propriétaire GENERAL FUSION INC. (Canada)
Inventeur(s)
  • Suponitsky, Victoria
  • Barsky, Sandra Justine
  • Laberge, J. Michel G.
  • Richardson, Douglas Harvey
  • Kostka, Peter Leszek

Abrégé

Examples of a jet control device are described. The jet control device can comprise a jet deflecting member that is configured to intercept and/or collide with a high speed jet emerging from a jet formation location. The interaction of the jet deflecting member and the jet can cause the high speed jet to be dispersed into a plurality of jets with a number of flow directions which may be sideways to an initial direction of the high speed jet. In one embodiment the deflecting member can include a liquid guide formed by injecting a fluid out of an outlet nozzle so that the liquid guide extends longitudinally away from the outlet nozzle. In another embodiment the deflecting member can include an array of solid pellets injected through an outlet in a direction of the emerging high speed jet and configured to collide with the emerging jet thereby deflecting its initial direction.

Classes IPC  ?

  • F15D 1/08 - Action sur l'écoulement des fluides des jets sortant d'un orifice
  • H05H 1/00 - Production du plasmaMise en œuvre du plasma

65.

PRESSURE WAVE GENERATOR WITH MOVABLE CONTROL ROD FOR GENERATING A PRESSURE WAVE IN A MEDIUM

      
Numéro de document 02826664
Statut Délivré - en vigueur
Date de dépôt 2012-02-08
Date de disponibilité au public 2012-08-30
Date d'octroi 2014-09-23
Propriétaire GENERAL FUSION, INC. (Canada)
Inventeur(s)
  • Mcilwraith, Lon
  • Senger, John
  • Montgomery, Darcy
  • Richardson, Douglas H.
  • Kostka, Peter
  • Bell, Kristin
  • Zindler, Ryan
  • Laberge, Michel Georges

Abrégé

Examples of a pressure wave generator configured to generate high energy pressure waves in a medium are disclosed. The pressure wave generator can include a movable piston with a guide through which a piston control rod can move or slide. The pressure wave generator can include a transducer coupled to a medium. During an impact of the piston on the transducer, the control rod can slide in the guide, which can reduce stress on the rod. The pressure wave generator can include a damper to decelerate the control rod, independently of the piston. Impact of the piston on the transducer transfers a portion of the piston's kinetic energy into the medium thereby generating pressure waves in the medium. A piston driving system may be used to provide precise and controlled launching or movement of the piston. Examples of methods of operating the pressure wave generator are disclosed.

Classes IPC  ?

  • B01J 3/08 - Application d'ondes de choc à des réactions chimiques ou pour modifier la structure cristalline des substances
  • B01J 3/06 - Procédés utilisant des hyper-pressions, p. ex. pour la formation de diamantsAppareillage approprié, p. ex. moules ou matrices

66.

PRESSURE WAVE GENERATOR WITH MOVABLE CONTROL ROD FOR GENERATING A PRESSURE WAVE IN A MEDIUM

      
Numéro d'application CA2012000133
Numéro de publication 2012/113057
Statut Délivré - en vigueur
Date de dépôt 2012-02-08
Date de publication 2012-08-30
Propriétaire GENERAL FUSION, INC. (Canada)
Inventeur(s)
  • Mcilwraith, Lon
  • Senger, John
  • Montgomery, Darcy
  • Richardson, Douglas H.
  • Kostka, Peter
  • Bell, Kristin
  • Zindler, Ryan
  • Laberge, Michel Georges

Abrégé

Examples of a pressure wave generator configured to generate high energy pressure waves in a medium are disclosed. The pressure wave generator can include a movable piston with a guide through which a piston control rod can move or slide. The pressure wave generator can include a transducer coupled to a medium. During an impact of the piston on the transducer, the control rod can slide in the guide, which can reduce stress on the rod. The pressure wave generator can include a damper to decelerate the control rod, independently of the piston. Impact of the piston on the transducer transfers a portion of the piston's kinetic energy into the medium thereby generating pressure waves in the medium. A piston driving system may be used to provide precise and controlled launching or movement of the piston. Examples of methods of operating the pressure wave generator are disclosed.

Classes IPC  ?

  • B01J 3/08 - Application d'ondes de choc à des réactions chimiques ou pour modifier la structure cristalline des substances

67.

SYSTEMS AND METHODS FOR PLASMA COMPRESSION WITH RECYCLING OF PROJECTILES

      
Numéro de document 02767904
Statut Délivré - en vigueur
Date de dépôt 2010-07-28
Date de disponibilité au public 2011-02-03
Date d'octroi 2014-10-14
Propriétaire GENERAL FUSION, INC. (Canada)
Inventeur(s)
  • Howard, Stephen James
  • Laberge, Michel Georges
  • Mcilwraith, Lon
  • Richardson, Douglas Harvey
  • Gregson, James

Abrégé

Embodiments of systems and methods for compressing plasma are disclosed in which plasma can be compressed by impact of a projectile on a magnetized plasma in a liquid metal cavity. The projectile can melt in the liquid metal cavity, and liquid metal may be recycled to form new projectiles.

Classes IPC  ?

  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • H05H 1/02 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma
  • H05H 1/54 - Accélérateurs de plasma

68.

Systems and methods for compressing plasma

      
Numéro d'application 12699725
Numéro de brevet 08537958
Statut Délivré - en vigueur
Date de dépôt 2010-02-03
Date de la première publication 2011-02-03
Date d'octroi 2013-09-17
Propriétaire General Fusion, Inc. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Richardson, Douglas H.

Abrégé

Embodiments of systems and methods for compressing plasma are described in which plasma pressures above the breaking point of solid material can be achieved by injecting a plasma into a funnel of liquid metal in which the plasma is compressed and/or heated.

Classes IPC  ?

  • H05H 1/12 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma utilisant uniquement des champs magnétiques appliqués dans lesquels l'enceinte forme une boucle fermée

69.

SYSTEMS AND METHODS FOR PLASMA COMPRESSION WITH RECYCLING OF PROJECTILES

      
Numéro d'application US2010043587
Numéro de publication 2011/014577
Statut Délivré - en vigueur
Date de dépôt 2010-07-28
Date de publication 2011-02-03
Propriétaire GENERAL FUSION, INC. (Canada)
Inventeur(s)
  • Howard, Stephen, James
  • Laberge, Michel, Georges
  • Mcilwraith, Lon
  • Richardson, Douglas, Harvey
  • Gregson, James

Abrégé

Embodiments of systems and methods for compressing plasma are disclosed in which plasma can be compressed by impact of a projectile on a magnetized plasma in a liquid metal cavity. The projectile can melt in the liquid metal cavity, and liquid metal may be recycled to form new projectiles.

Classes IPC  ?

  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • H05H 1/02 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma
  • H05H 1/54 - Accélérateurs de plasma

70.

Systems and methods for plasma compression with recycling of projectiles

      
Numéro d'application 12845071
Numéro de brevet 08891719
Statut Délivré - en vigueur
Date de dépôt 2010-07-28
Date de la première publication 2011-02-03
Date d'octroi 2014-11-18
Propriétaire General Fusion, Inc. (Canada)
Inventeur(s)
  • Howard, Stephen James
  • Laberge, Michel Georges
  • Mcilwraith, Lon
  • Richardson, Douglas Harvey
  • Gregson, James

Abrégé

Embodiments of systems and methods for compressing plasma are disclosed in which plasma can be compressed by impact of a projectile on a magnetized plasma in a liquid metal cavity. The projectile can melt in the liquid metal cavity, and liquid metal may be recycled to form new projectiles.

Classes IPC  ?

  • G21B 1/15 - Injecteurs de particules pour la génération de réactions de fusion thermonucléaire, p. ex. injecteurs de pastilles
  • G21B 1/13 - Première paroiParoi de couvertureDivertor
  • H05H 1/02 - Dispositions pour confiner le plasma au moyen de champs électriques ou magnétiquesDispositions pour chauffer le plasma
  • H05H 1/54 - Accélérateurs de plasma
  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide

71.

SYSTEMS AND METHODS FOR COMPRESSING PLASMA

      
Numéro de document 02750441
Statut Délivré - en vigueur
Date de dépôt 2010-02-03
Date de disponibilité au public 2010-08-12
Date d'octroi 2012-04-03
Propriétaire GENERAL FUSION, INC. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Richardson, Douglas Harvey

Abrégé

Embodiments of systems and methods for compressing plasma are described in which plasma pressures above the breaking point of solid material can be achieved by injecting a plasma into a funnel of liquid metal in which the plasma is compressed and/or heated.

Classes IPC  ?

72.

SYSTEMS AND METHODS FOR COMPRESSING PLASMA

      
Numéro d'application IB2010000368
Numéro de publication 2010/089670
Statut Délivré - en vigueur
Date de dépôt 2010-02-03
Date de publication 2010-08-12
Propriétaire GENERAL FUSION, INC. (Canada)
Inventeur(s)
  • Laberge, Michel, Georges
  • Richardson, Douglas, H.

Abrégé

Embodiments of systems and methods for compressing plasma are described in which plasma pressures above the breaking point of solid material can be achieved by injecting a plasma into a funnel of liquid metal in which the plasma is compressed and/or heated.

Classes IPC  ?

73.

Pressure wave generator and controller for generating a pressure wave in a liquid medium

      
Numéro d'application 12643792
Numéro de brevet 10002680
Statut Délivré - en vigueur
Date de dépôt 2009-12-21
Date de la première publication 2010-07-01
Date d'octroi 2018-06-19
Propriétaire General Fusion Inc. (Canada)
Inventeur(s)
  • Laberge, Michel Georges
  • Gelbart, Daniel
  • Hill, Ross Henry
  • Connor, Denis J.

Abrégé

An apparatus for generating a pressure wave in a liquid medium is disclosed. The apparatus includes a plurality of pressure wave generators having respective moveable pistons, the pistons having respective control rods connected thereto. The apparatus also includes a plurality of transducers coupled to the liquid medium and means for causing the pistons of respective ones of the plurality of the pressure wave generators to be accelerated toward respective ones of the plurality of transducers. The apparatus further includes means for causing restraining forces to be applied to respective control rods to cause respective pistons to impact respective transducers at respective desired times and with respective desired amounts of kinetic energy such that the respective desired amounts of kinetic energy are converted into a pressure wave in the liquid medium.

Classes IPC  ?

  • F16B 21/12 - Dispositifs sans filetage pour empêcher le mouvement relatif selon l'axe d'une broche, d'un ergot, d'un arbre ou d'une pièce analogue par rapport à l'organe qui l'entoureFixations à ergots et douilles largables sans filetage à parties séparées par goupilles d'arrêt ou goupilles fendues enfoncées dans des trous
  • G10K 15/04 - Dispositifs de production de sons
  • F03G 7/00 - Mécanismes produisant une puissance mécanique, non prévus ailleurs ou utilisant une source d'énergie non prévue ailleurs
  • G21B 3/00 - Réacteurs de fusion nucléaire à basse température, p. ex. réacteurs de fusion dite froide
  • F15B 21/12 - Oscillateurs de fluide ou générateurs d'impulsion de fluide
  • B01J 3/08 - Application d'ondes de choc à des réactions chimiques ou pour modifier la structure cristalline des substances