COAXIAL MAGNETOPLASMA ACCELERATOR Russian patent published in 2011 - IPC H05H11/00 F41B6/00 

Abstract RU 2431947 C1

FIELD: information technology.

SUBSTANCE: coaxial magnetoplasma accelerator consists of a cylindrical electrically conducting rod made from two electrically conducting cylinders, an inner graphite cylinder and an outer metallic cylinder, and a centre electrode consisting of a graphite tip and a metallic tail, electrically connected by fuse link made from carbon powder. The centre electrode is separated from the cylindrical electrically conducting rod by an insulator. The housing is made from magnetic material, matched with the outer metallic cylinder and overlaps the zone where the fuse link is located by 40-50 mm. The solenoid is tied up by powerful current-conducting pins between a flange and a glass-fibre support ring. The terminal of an external power supply circuit is connected to the current-conducting pins. A second power supply circuit is connected to the metallic tail.

EFFECT: obtaining hyper-speed jets of carbon electric-discharge plasma with discharge energy higher than 10 kJ without impurities.

1 dwg, 1 tbl

Similar patents RU2431947C1

Title Year Author Number
METHOD FOR DYNAMIC SYNTHESIS OF ULTRAFINE CRYSTALLINE COVALENT CARBON NITRIDE CN AND APPARATUS FOR REALISING SAID METHOD 2011
  • Sivkov Aleksandr Anatol'Evich
  • Pak Aleksandr Jakovlevich
  • Rakhmatullin Il'Jas Aminovich
RU2475449C2
METHOD OF SYNTHESISING NANOCRYSTALLINE SILICON CARBIDE 2014
  • Sivkov Aleksandr Anatol'Evich
  • Nikitin Dmitrij Sergeevich
  • Pak Aleksandr Jakovlevich
  • Rakhmatullin Il'Jas Aminovich
RU2559510C1
DEVICE FOR FORMING COATING FROM CUBIC TUNGSTEN CARBIDE 2019
  • Sivkov Aleksandr Anatolevich
  • Nikitin Dmitrii Sergeevich
  • Shanenkov Ivan Igorevich
  • Rakhmatullin Ilias Aminovich
RU2707688C1
METHOD OF PRODUCING NANOCRYSTALLINE CUBIC TUNGSTEN CARBIDE 2020
  • Sivkov Aleksandr Anatolevich
  • Shanenkov Ivan Igorevich
  • Shanenkova Iuliia Leonidovna
  • Nikitin Dmitrii Sergeevich
  • Ivashutenko Aleksandr Sergeevich
RU2730461C1
METHOD FOR PRODUCING POWDER CONTAINING NANOCRYSTALLINE CUBIC TUNGSTEN CARBIDE 2020
  • Sivkov Aleksandr Anatolevich
  • Nasyrbaev Artur Renatovich
  • Nikitin Dmitrii Sergeevich
  • Shanenkov Ivan Igorevich
RU2747329C1
METHOD OF PRODUCING NANODISPERSED POWDER CONTAINING SILICON CARBIDE 2023
  • Nikitin Dmitrii Sergeevich
  • Shanenkov Ivan Igorevich
  • Tabakaev Roman Borisovich
  • Nasyrbaev Artur Rinatovich
  • Shanenkova Iuliia Leonidovna
  • Ryskulov Dastan Nurbekovich
  • Tsimmerman Aleksandr Igorevich
  • Sivkov Aleksandr Anatolevich
RU2822915C1
METHOD FOR PRODUCING HIGH ENTROPY CARBIDE TiNbZrHfTaC 2022
  • Nikitin Dmitrii Sergeevich
  • Nasyrbaev Artur Rinatovich
  • Shanenkov Ivan Igorevich
  • Sivkov Aleksandr Anatolevich
RU2806562C1
METHOD FOR PRODUCING NANOCRYSTALLINE CUBIC MOLYBDENUM CARBIDE 2020
  • Sivkov Aleksandr Anatolevich
  • Shanenkov Ivan Igorevich
  • Nikitin Dmitrii Sergeevich
RU2748929C1
METHOD OF FORMING COATING FROM CUBIC TUNGSTEN CARBIDE 2019
  • Sivkov Aleksandr Anatolevich
  • Shanenkov Ivan Igorevich
  • Nikitin Dmitrii Sergeevich
  • Ivashutenko Aleksandr Sergeevich
RU2707673C1
METHOD OF PRODUCING CATALYST CONTAINING SILICON CARBIDE AND PLATINUM 2023
  • Shanenkov Ivan Igorevich
  • Nikitin Dmitrii Sergeevich
  • Tabakaev Roman Borisovich
  • Nasyrbaev Artur Rinatovich
  • Shanenkova Iuliia Leonidovna
  • Ryskulov Dastan Nurbekovich
  • Tsimmerman Aleksandr Igorevich
  • Sivkov Aleksandr Anatolevich
RU2818019C1

RU 2 431 947 C1

Authors

Sivkov Aleksandr Anatol'Evich

Pak Aleksandr Jakovlevich

Dates

2011-10-20Published

2010-04-30Filed