PDF

Study of Glycerol as an Additive in Ni-Mo Electrodeposition

Javan Grisente dos Reis da Costa, Cláudia Lisiane Fanezi da Rocha

2022ptglycerolcorrosionelectroplatingnickelmolybdenum

Abstract

Language:

This paper evaluates the effect of adding glycerol to the electrodeposition bath on the deposition efficiency and characteristics of Ni-Mo coating in concentrations ranging from 0.07 to 0.82 mol.L-1. Evaluation of the corrosion resistance was performed by means of weight loss tests in four different periods of immersion. Electrochemical techniques, such as obtaining polarization curves, linear polarization resistance, corrosion current density, corrosion potential, and electrochemical impedance spectroscopy were applied. Corrosion measurements were obtained in 0.5 mol.L-1 NaCl acid solution and 0.5 mol.L-1 NaOH alkaline solution. The morphology and microstructures of electrodeposited were analyzed using Scanning Electron Microscopy and Spectrometry X-Ray Diffraction. The effect of glycerol on Ni-Mo hardness was evaluated by Vickers microhardness measurements. The presence of glycerol in the electrodeposition bath increased the grain size and decreased the hardness of the coating. However, it promoted the formation of a more compact and less porous coating, increasing the corrosion resistance of the coating. Moreover, the addition of 0.82 mol.L-1 glycerol increases current efficiency, thereby reducing the amount of energy consumed during electroplating.

Download

Cite This Work

@article{41dbaf61-f19f-44c1-8632-bf43efe3c0cb,
  title={Study of Glycerol as an Additive in Ni-Mo Electrodeposition},
  author={Javan Grisente dos Reis da Costa and Cláudia Lisiane Fanezi da Rocha},
  year={2022},
  language={pt}
}
TY  - JOUR
TI  - Study of Glycerol as an Additive in Ni-Mo Electrodeposition
AU  - Javan Grisente dos Reis da Costa
AU  - Cláudia Lisiane Fanezi da Rocha
PY  - 2022
LA  - pt
ER  -

Similar Items

ACES20120300013 51735334

2026enPDF

TH2015PEST1106 archivage (1)

Mirjana Vemic

This study addresses the leaching and recovery of molybdenum, nickel, and cobalt from mineral sludges generated by metals recycling plants. The object

2026enPDF

175038371 Molybdenum

2026enPDF

kholmogorov et.al

2026enPDF

mcs 2016 molyb

2026enPDF

mount hope ni 43 101

2026enPDF