Magnetically induced codeposition of Ni-Cd alloy coatings for better corrosion protection
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Date
2014
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Publisher
American Chemical Society service@acs.org
Abstract
The effects of applied magnetic field, B (both parallel and perpendicular) during process of electrodeposition of Ni-Cd alloy coating on mild steel from a newly proposed electrolytic bath have been studied by using X-ray diffraction (XRD), energy-dispersive X-ray (EDX), and scanning electron microscopy (SEM) analysis. Both parallel and perpendicular B reduced the corrosion rates (CRs); however, the effect is more pronounced in case of perpendicular B. Progressive decrease of CR with increase in the intensity of B showed that corrosion protection efficacy bears close relation with changed composition and crystallographic orientation of the coatings. Under optimal condition, Ni-Cd coating deposited at 0.8 T (perpendicular) was found to be 35 times less corrosive than the conventional Ni-Cd coating (B = 0 T) deposited from the same bath for same time. The effect of B on thickness, microhardness, surface morphology, composition, and crystallographic orientation, and hence, the corrosion resistance of the coatings were analyzed in the light of magnetohydrodynamic (MHD) effect. © 2014 American Chemical Society.
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Keywords
Cadmium alloys, Carbon steel, Corrosion protection, Corrosion resistance, Electrolytic analysis, Magnetohydrodynamics, Metal cladding, Nickel, Scanning electron microscopy, X ray diffraction, Alloy coatings, Applied magnetic fields, Crystallographic orientations, Electrolytic baths, Energy dispersive x-ray, Induced co depositions, Magnetohydrodynamic effects, Optimal conditions, Coatings
Citation
Industrial and Engineering Chemistry Research, 2014, 53, 13, pp. 5490-5497
