Impact of the vibrocathode on the patterns and properties of electrolytic copper powders

Methods for obtaining ultrafine copper powders from the etching waste of the printed circuit boards are described. Modes of obtaining copper powder in the anode-synthesized chloride-ammonium electrolyte using vibrocathode that allows intensifying the process as compared to the similar one at the sta...

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Main Authors: Marina V Korchagina, Alexander A. Naumenko, Valery M. Lipkin
Format: Article
Language:Russian
Published: Don State Technical University 2015-09-01
Series:Advanced Engineering Research
Subjects:
Online Access:https://www.vestnik-donstu.ru/jour/article/view/28
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spelling doaj-696ed2a1cc844dc8b743b3a8d05cabd62021-10-02T18:37:06ZrusDon State Technical UniversityAdvanced Engineering Research2687-16532015-09-01153414610.12737/1259728Impact of the vibrocathode on the patterns and properties of electrolytic copper powdersMarina V Korchagina0Alexander A. Naumenko1Valery M. Lipkin2Don State Technical UniversitySouth-Russian State Technical University (NPI)South-Russian State Technical University (NPI)Methods for obtaining ultrafine copper powders from the etching waste of the printed circuit boards are described. Modes of obtaining copper powder in the anode-synthesized chloride-ammonium electrolyte using vibrocathode that allows intensifying the process as compared to the similar one at the stationary cathode by reducing diffusion layer are described. The productivity of copper powder obtaining in the offered terms is 0.25 g/(cm2·h), mean particle size is 3-4 microns. High efficiency of the process compared with the use of sulphate electrolytes, and a positive effect of the shape and size of the obtained copper powder on the processes of alloying Fe-based materials are reported. Properties of the antifriction materials doped with the obtained cathode copper powder in comparison with the materials alloyed with the PMS-1copper powder are considered. The effect of the working properties improvement of the samples doped with copper powder obtained from a copper-ammonium solution is observed.https://www.vestnik-donstu.ru/jour/article/view/28ультрадисперсные порошкинаноразмерные порошкиэлектролизвиброкатодутилизация металлосодержащих отходовultrafine powdersnanosized powderselectrolysisvibrocathodemetallic waste reclamation
collection DOAJ
language Russian
format Article
sources DOAJ
author Marina V Korchagina
Alexander A. Naumenko
Valery M. Lipkin
spellingShingle Marina V Korchagina
Alexander A. Naumenko
Valery M. Lipkin
Impact of the vibrocathode on the patterns and properties of electrolytic copper powders
Advanced Engineering Research
ультрадисперсные порошки
наноразмерные порошки
электролиз
виброкатод
утилизация металлосодержащих отходов
ultrafine powders
nanosized powders
electrolysis
vibrocathode
metallic waste reclamation
author_facet Marina V Korchagina
Alexander A. Naumenko
Valery M. Lipkin
author_sort Marina V Korchagina
title Impact of the vibrocathode on the patterns and properties of electrolytic copper powders
title_short Impact of the vibrocathode on the patterns and properties of electrolytic copper powders
title_full Impact of the vibrocathode on the patterns and properties of electrolytic copper powders
title_fullStr Impact of the vibrocathode on the patterns and properties of electrolytic copper powders
title_full_unstemmed Impact of the vibrocathode on the patterns and properties of electrolytic copper powders
title_sort impact of the vibrocathode on the patterns and properties of electrolytic copper powders
publisher Don State Technical University
series Advanced Engineering Research
issn 2687-1653
publishDate 2015-09-01
description Methods for obtaining ultrafine copper powders from the etching waste of the printed circuit boards are described. Modes of obtaining copper powder in the anode-synthesized chloride-ammonium electrolyte using vibrocathode that allows intensifying the process as compared to the similar one at the stationary cathode by reducing diffusion layer are described. The productivity of copper powder obtaining in the offered terms is 0.25 g/(cm2·h), mean particle size is 3-4 microns. High efficiency of the process compared with the use of sulphate electrolytes, and a positive effect of the shape and size of the obtained copper powder on the processes of alloying Fe-based materials are reported. Properties of the antifriction materials doped with the obtained cathode copper powder in comparison with the materials alloyed with the PMS-1copper powder are considered. The effect of the working properties improvement of the samples doped with copper powder obtained from a copper-ammonium solution is observed.
topic ультрадисперсные порошки
наноразмерные порошки
электролиз
виброкатод
утилизация металлосодержащих отходов
ultrafine powders
nanosized powders
electrolysis
vibrocathode
metallic waste reclamation
url https://www.vestnik-donstu.ru/jour/article/view/28
work_keys_str_mv AT marinavkorchagina impactofthevibrocathodeonthepatternsandpropertiesofelectrolyticcopperpowders
AT alexanderanaumenko impactofthevibrocathodeonthepatternsandpropertiesofelectrolyticcopperpowders
AT valerymlipkin impactofthevibrocathodeonthepatternsandpropertiesofelectrolyticcopperpowders
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