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Hardness of porous nanocrystalline Co-Ni electrodeposits
Authors
A Ibañez
A Kelly
+23 more
A W Burton
B R Jennings
C J Bray
C. Ma
D H Jeong
F. C. Walsh
G C Hadjipanayis
H Conrad
H S Kim
J Schiøtz
J. Zekonyte
L Wang
L Wang
M A Meyers
M Schlesinger
P G Sanders
Q Luo
Q. Luo
R Mishra
R. J. K. Wood
S C Wang
S. C. Wang
U Erb
Publication date
1 November 2013
Publisher
'Springer Science and Business Media LLC'
Doi
Abstract
The Hall-Petch relationship can fail when the grain size is below a critical value of tens of nanometres. This occurs particularly for coatings having porous surfaces. In this study, electrodeposited nanostructured Co-Ni coatings from four different nickel electroplating baths having grain sizes in the range of 11-23 nm have been investigated. The finest grain size, approximately 11 nm, was obtained from a coating developed from the nickel sulphate bath. The Co-Ni coatings have a mixed face centred cubic and hexagonal close-packed structures with varying surface morphologies and different porosities. A cluster-pore mixture model has been proposed by considering no contribution from pores to the hardness. As the porosity effect was taken into consideration, the calculated pore-free hardness is in agreement with the ordinary Hall-Petch relationship even when the grain size is reduced to 11 nm for the Co-Ni coatings with 77±2 at% cobalt. The present model was applied to other porous nanocrystalline coatings, and the Hall-Petch relationship was maintained. © 2013 The Korean Institute of Metals and Materials and Springer Science+Business Media Dordrecht. © KIM and Springer
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