Electrochemical deposition and characterization of zinc-nickel alloys deposited by direct and pulse current

Chemical composition and phase structure of Zn-Ni alloys obtained by electrochemical deposition under various conditions were investigated. The alloys were deposited on a rotating disc electrode and steel panel from chloride solutions by direct and pulse current. The influence of the pulse plating v...

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Veröffentlicht in:Journal of the Serbian Chemical Society 2002, Vol.67 (8-9), p.625-634
Hauptverfasser: Bajat, Jelena, Maksimovic, Miodrag, Radovic, Goran
Format: Artikel
Sprache:eng
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Zusammenfassung:Chemical composition and phase structure of Zn-Ni alloys obtained by electrochemical deposition under various conditions were investigated. The alloys were deposited on a rotating disc electrode and steel panel from chloride solutions by direct and pulse current. The influence of the pulse plating variables (on-time, off-time, relation of off- and on-time) on the composition, phase structure and corrosion properties were investigated. The phase composition affects the anticorrosive properties of Zn-Ni alloys during exposure to a corrosive agent (3% NaCl solution). It was shown that a Zn-Ni alloy electrodeposited by pulse current with a pulse time of 1 ms and an off- and on-time ratio of 1 exhibits the best corrosion properties. Ispitivani su hemijski sastav i fazna struktura legura Zn-Ni dobijenih primenom razlicitih parametara elektrohemijskog talozenja. Legure su talozene iz hloridnog rastvora na rotirajucoj disk elektrodi i na celicnim plocicama konstantnom i pulsirajucom strujom. Ispitivani su parametri pulsirajuceg talozenja (katodnog vremena, vremena pauze i odnosa pauze i katodnog vremena) na sastav, faznu strukturu i korozione osobine legura. Pokazano je da fazni sastav utice na antikorozione osobine Zn-Ni legura tokom izlaganja dejstvu rastvora 3% NaCl. Legura Zn-Ni dobijena pulsirajucim talozenjem sa katodnim vremenom od 1 ms i odnosom pauze i pulsa od 1 ima najbolje korozione osobine.
ISSN:0352-5139
1820-7421
DOI:10.2298/JSC0209625B