The influence of gluconate bath parameters on the rate of electrodeposition and mechanical properties of Co–W coatings
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BELEVSKII, Stanislav, BOBANOVA, Zh., BURAVETZ, Vladislav, GOTELYAK, A., DANILCHUK, V., SILKIN, Serghei, TSYNTSARU, Natalia, DIKUSAR, Aleksandr. The influence of gluconate bath parameters on the rate of electrodeposition and mechanical properties of Co–W coatings. In: BALTTRIB: 2017 - Dedicated to 100th Anniversary of Restitution of Lithuania , Ed. 9, 16-17 noiembrie 2017, Kaunas. Kaunas; Lithuania: Vytautas Magnus University, 2018, Ediția 9, pp. 7-12. ISBN 978-609-449-127-6. ISSN 2424-5089. DOI: https://doi.org/10.15544/balttrib.2017.03
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BALTTRIB
Ediția 9, 2018
Conferința "International Scientific Conference BALTTRIB 2017"
9, Kaunas, Lituania, 16-17 noiembrie 2017

The influence of gluconate bath parameters on the rate of electrodeposition and mechanical properties of Co–W coatings

DOI:https://doi.org/10.15544/balttrib.2017.03

Pag. 7-12

Belevskii Stanislav1, Bobanova Zh.12, Buravetz Vladislav1, Gotelyak A.2, Danilchuk V.2, Silkin Serghei23, Tsyntsaru Natalia14, Dikusar Aleksandr 1
 
1 Institute of Applied Physics,
2 T.G. Shevchenko State University of Pridnestrovie, Tiraspol,
3 Kostroma State University,
4 Vilnius University
 
 
Disponibil în IBN: 16 ianuarie 2022


Rezumat

The given study overview the results obtained for Co–W alloys electrodeposited from gluconate bath. Namely, the influence of different parameters (the concentration of the bath components, pH, temperature, cathodic current density, volume current density, hydrodynamic conditions, insoluble and soluble anodes) on the rate of electrodeposition and microhardness of the coatings has been investigated. The given research determine the conditions ensuring high deposition rate, microhardness and bath efficiency. It was shown, that the deposition rate, tungsten content and microhardness reach the maximum values at pH 6.5, regardless on the concentration of bath components. Also, it was detected the macroscopic size effect of microhardness, which is linked to the fact that for a fixed cathodic current density microhardness depends on volume current density. In addition, different anodes (Pt, graphite, W and Co–W) were investigated to reveal the anode influence on reaching the maximum values of the current efficiency and microhardness. 

Cuvinte-cheie
Co–W coatings, Electrodeposition, microhardness, rate of electrodeposition