METHOD FOR REGENERATION OF CYLINDRICAL METAL-GLASS INPUT OF MICROWAVE ENERGY Russian patent published in 2017 - IPC H01R13/00 

Abstract RU 2622900 C1

FIELD: electricity.

SUBSTANCE: method of regenerating metal-glass input of microwave energy includes a disconnection with welded hull and glass rod, and their subsequent soldering with a new glass preform. The housing of regenerated input is fixed in the mandrel, whereupon it is introduced into a punch with a cylindrical working part, the outer diameter of which is 0.03-0.2 mm smaller than the internal diameter of the housing of regenerated input and in which the end face provided with a central axial hole, which diameter is 0.03-0.1 mm greater than diameter rod. The depth of the central axial hole is larger than the length of the protruding part of the rod, then the force applied to the punch to remove the rod from the enclosure with welded glass with it, and then removethe housing from the mandrel for subsequent soldering.

EFFECT: simplification and acceleration of the regeneration process of energy input, increase its quality and better working conditions.

7 cl, 1 dwg

Similar patents RU2622900C1

Title Year Author Number
METHOD OF SOLDERED JOINT MANUFACTURING 2019
  • Konaicheva Nataliya Vladimirovna
  • Mamaev Ivan Vladimirovich
  • Bulatov Aleksej Nikolaevich
  • Shults Eduard Evgenevich
  • Sergodeev Vitalij Vladimirovich
  • Stepanov Aleksandr Sergeevich
RU2730959C1
METAL-GLASS ARTICLES MANUFACTURING METHOD 2019
  • Gurevich Lev Evseevich
RU2737451C1
METHOD FOR MANUFACTURING TIGHT METAL-GLASS ELECTRICAL CONNECTORS 2020
  • Konaicheva Nataliya Vladimirovna
  • Mamaev Ivan Vladimirovich
  • Shults Eduard Evgenevich
  • Osintsev Kirill Alekseevich
RU2738636C1
METHOD OF PRODUCING SHF ENERGY OUTPUT WINDOW 2019
  • Arion Olga Aleksandrovna
  • Gurevich Lev Evseevich
  • Kolomijtseva Natalya Mikhajlovna
  • Malyarenko Dmitrij Mikhajlovich
  • Meshkov Valerij Alekseevich
  • Frolov Aleksej Vladimirovich
RU2725698C1
METHOD OF PRODUCING COAXIAL HIGH-FREQUENCY SEALED LEAD-IN 2024
  • Konaicheva Nataliia Vladimirovna
  • Bulatov Aleksei Nikolaevich
  • Osipov Kirill Anatolevich
  • Sultanov Aleksandr Viktorovich
  • Sergodeev Vitalii Vladimirovich
RU2826694C1
METHOD OF MULTILEAD SOLDERED JOINT OBTAINMENT 2008
  • Razuvaev Aleksandr Aleksandrovich
  • Gusev Aleksandr Jur'Evich
  • Ishkov Viktor Mitrofanovich
  • Fedorkin Oleg Olegovich
RU2392240C1
METHOD FOR PRODUCING HIGH-VOLTAGE BRAZED JOINT 2022
  • Konaicheva Nataliya Vladimirovna
  • Safina Yuliya Nikolaevna
  • Mamaev Ivan Vladimirovich
  • Astakhov Andrej Viktorovich
  • Sergodeev Vitalij Vladimirovich
  • Kozitsyn Ilya Sergeevich
RU2778223C1
METHOD OF MAKING CONNECTION OF CURRENT LEADS WITH HOUSING OF VACUUM-TUBE DEVICE 2010
  • Petrov Sergej Nikolaevich
  • Volkov Sergej Valer'Evich
RU2457189C1
CERMET DEVICET (MODIFICATIONS) 0
  • Eroshev Viktor Kuzmich
  • Pavlova Valentina Dmitrievna
SU1031955A1
TECHNOLOGICAL MANDREL FOR MANUFACTURE OF NODES OF GLASS AND METAL AND METHOD FOR MANUFACTURE OF NODES OF GLASS AND METAL 2021
  • Arkhipenko Vladimir Aleksandrovich
  • Brueva Vera Mikhajlovna
RU2789268C2

RU 2 622 900 C1

Authors

Gurevich Lev Evseevich

Dates

2017-06-21Published

2015-12-28Filed