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Deposition of zinc-zinc phosphate composite coatings on steel by cathodic electrochemical treatment

IR@NML: CSIR-National Metallurgical Laboratory, Jamshedpur

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Field Value
 
Title Deposition of zinc-zinc phosphate composite coatings on steel by cathodic electrochemical treatment
 
Creator Kavitha, C
Sankara Narayanan, T S N
Ravichandran, K
Park, I S
Lee, Min Ho
 
Subject Materials Science
 
Description The present work aims at the development of an energy-efficient and eco-friendly approach for the deposition of zinc phosphate coatings on steel. The study describes the possibility of preparing zinc-zinc phosphate composite coatings by cathodic electrochemical treatment using dilute phosphoric acid as an electrolyte and zinc as an anode. The methodology enables the preparation of coatings with different proportions of zinc and zinc phosphate by suitably varying the applied current density, pH, and treatment time. Adhesion of the coating on mild steel and adhesion of paint film on the phosphate coating were found to be good. The surface morphology of the coatings exhibited platelet-type features and small white crystals (agglomerated at some places) which represented zinc and zinc phosphate, respectively. An increase in current density (from 20 to 50 mA/cm(2)) increased the size of the zinc crystals, and coatings prepared at 40 and 50 mA/cm(2) resembled that of electrodeposited zinc. Since the proportions of zinc and zinc phosphate could be varied with applied current density, pH, and treatment time, it would be possible to use this methodology to prepare coatings that would offer different degrees of corrosion protection
 
Publisher Springer USA
 
Date 2014-05
 
Type Article
PeerReviewed
 
Format application/pdf
 
Identifier http://eprints.nmlindia.org/6941/1/_Kavitha-JCTR-2014_pp-431-442.pdf
Kavitha, C and Sankara Narayanan, T S N and Ravichandran, K and Park, I S and Lee, Min Ho (2014) Deposition of zinc-zinc phosphate composite coatings on steel by cathodic electrochemical treatment. Journal of Coatings Technology and Research, 11(3) (IF- 1.280). pp. 431-442.
 
Relation http://link.springer.com/article/10.1007%2Fs11998-013-9533-z
http://eprints.nmlindia.org/6941/