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Cracking caused by cutting of plasma-sprayed hydroxyapatite coatings and its relation to the structural features of coatings deposited at different initial substrate temperatures

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2017
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Authors
Gligorijević, Bojan R.
Vilotijević, Miroljub N.
Šćepanović, Maja J.
Radovanović, Radovan
Radović, Nenad
Article (Published version)
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Abstract
The present study estimated the cracking phenomenon in as-plasma-sprayed hydroxylapatite coatings (HACs) after they were being subjected to the severe cutting conditions in the direction perpendicular to the coating/substrate interface. In order to evaluate the effects of substrate preheating on the occurrence of micro-cracks, the HACs were deposited at different initial substrate temperatures (T-S = 20, 100 and 200 degrees C). The changes in phase composition and HA splat morphology with T-S were observed and were correlated with the cracking occurrence. The results showed that severe cutting conditions introduced a localized cracking in the regions of HACs dominantly attributed to the brittle hydroxyl- deficient amorphous calcium phosphate (ACP) phase. This effect was particularly observable in the HACs deposited without preheating of substrate. On the other hand, the preheating of substrate reduced the presence of micro-cracks and caused insignificant changes in the average local ph...ase composition. In HACs deposited with preheating of substrate, the HA splats (of which HACs are composed) were thinner and recrystallized HA regions seemed smaller in size and more evenly distributed. These results implied potentially important roles of the HA splat formation mechanism on the distribution of ACP and recrystallized HA regions in the as-plasma-sprayed HACs and the cracking resistance of HACs.

Keywords:
plasma spraying / hydroxyapatite coatings / stress / cracking / substrate preheating
Source:
Hemijska industrija, 2017, 71, 3, 241-249
Publisher:
  • Association of Chemical Engineers of Serbia
Projects:
  • CVD Diamond films produced from hydrocarbons by use of the flat flame method (RS-34022)
  • Plasma Jet Co., Serbia

DOI: 10.2298/HEMIND160513034G

ISSN: 0367-598X

WoS: 000407025700007

Scopus: 2-s2.0-85027041947
[ Google Scholar ]
URI
http://jakov.kpu.edu.rs/handle/123456789/762
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Jakov

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