Full profile fitting of radio frequency suspension plasma sprayed ultra-fine hydroxyapatite powders

R. Kumar*, P. Cheang, K. A. Khor, T. White

*Corresponding author for this work

Research output: Chapter in Book/Report/Conference proceedingConference contribution

1 Citation (Scopus)

Abstract

Ultra-fine hydroxyapatite (HA) powders were produced with radio frequency (RF) suspension plasma spraying (SPS). This novel technique utilizes the inherent properties of the RF plasma enabling axial feeding of the suspension into the plasma producing spherical ultra-fine HA powders. These powders were examined by XRD and Rietveld analysis using the Rietquan 2.3 Quantitative Analysis software package. The aim of the analysis was to determine the various amounts of decomposed phases and amorphous content after SPS of HA. Results showed that the amount of decomposed phases rose up to a plate power of 15 kW there after decreasing at higher plate powers. The amorphous phase however kept increasing with plate power reaching about 35 wt.% in the powders sprayed at 21 kW. These trends have led to the belief that the phase content and hence, the characteristics of the powders are controlled mainly by the competitive processes of decomposition and melting and evaporation within the plasma. The morphology of the powders was also observed through TEM and changes in molecular structure were investigated by FTIR. DSC was carried out to observe the crystallisation of amorphous calcium phosphate into HA.

Original languageEnglish
Title of host publicationProceedings of the International Thermal Spray Conference
Pages53-60
Number of pages8
Publication statusPublished - 2004
Externally publishedYes
EventProceedings of the International Thermal Spray Conference - Osaka, Japan
Duration: May 10 2004May 12 2004

Publication series

NameProceedings of the International Thermal Spray Conference

Conference

ConferenceProceedings of the International Thermal Spray Conference
Country/TerritoryJapan
CityOsaka
Period5/10/045/12/04

ASJC Scopus Subject Areas

  • Surfaces and Interfaces
  • Surfaces, Coatings and Films
  • Materials Chemistry

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