The difference in purity, particle size, microstructure, and thermo-chemical stability of three commercially available hydroxyapatite powders are found to play an important role during their consolidation using spark plasma sintering (SPS) as well as strongly affect the characteristics of the resulting sintered bodies. A fully dense material without secondary phases was obtained by SPS at 900 degrees C, when using the relatively small sized, with refined grains and high purity powders. The sintered product, consisting of sub-micrometer sized hydroxyapatite grains, displayed optical transparency and good mechanical properties. In contrast, the higher temperature levels (up to 1200 degrees C) needed to sinter powders with larger particles...
In this work, the sintering behaviour of hydroxyapatite (HA) at different temperatures was studied. ...
Hydroxyapatite (HA) is a material widely used by the medical community due to its Ca/P ratio is comp...
Hydroxyapatite (HA) is among the leading ceramic materials for hard tissue replacement implants. Des...
The difference in purity, particle size, microstructure, and thermo-chemical stability of three comm...
The difference in purity, particle size, microstructure, and thermo-chemical stability of three comm...
A comparative investigation regarding the consolidation behavior displayed by three commercially ava...
The aim of this comparative study was to elucidate the characterization of spherical radio frequency...
The effect of sintering temperature on the sinterability of synthesized nanocrystalline hydroxyapati...
The influence of powder processing and sintering temperature on densification, microstructure and me...
The sinterability of hydroxyapatite (HA) powder synthesized through a novel wet chemical method (HAp...
The sintering behavior of three different types of hydroxyapatite (HA) i.e. a commercial powder, HA(...
The sintering behavior of three different types of hydroxyapatite (HA) i.e. a commercial powder, HA(...
The effects of particle sizes (<20 micrometers, 20-45 micrometers, 45-75 micrometers and 75-125 micr...
The effect of grain size and density of hydroxyapatite particles, which were prepared by different s...
On the sintering characteristic of hydroxyapatite (HA), the resulting microstructure and properties ...
In this work, the sintering behaviour of hydroxyapatite (HA) at different temperatures was studied. ...
Hydroxyapatite (HA) is a material widely used by the medical community due to its Ca/P ratio is comp...
Hydroxyapatite (HA) is among the leading ceramic materials for hard tissue replacement implants. Des...
The difference in purity, particle size, microstructure, and thermo-chemical stability of three comm...
The difference in purity, particle size, microstructure, and thermo-chemical stability of three comm...
A comparative investigation regarding the consolidation behavior displayed by three commercially ava...
The aim of this comparative study was to elucidate the characterization of spherical radio frequency...
The effect of sintering temperature on the sinterability of synthesized nanocrystalline hydroxyapati...
The influence of powder processing and sintering temperature on densification, microstructure and me...
The sinterability of hydroxyapatite (HA) powder synthesized through a novel wet chemical method (HAp...
The sintering behavior of three different types of hydroxyapatite (HA) i.e. a commercial powder, HA(...
The sintering behavior of three different types of hydroxyapatite (HA) i.e. a commercial powder, HA(...
The effects of particle sizes (<20 micrometers, 20-45 micrometers, 45-75 micrometers and 75-125 micr...
The effect of grain size and density of hydroxyapatite particles, which were prepared by different s...
On the sintering characteristic of hydroxyapatite (HA), the resulting microstructure and properties ...
In this work, the sintering behaviour of hydroxyapatite (HA) at different temperatures was studied. ...
Hydroxyapatite (HA) is a material widely used by the medical community due to its Ca/P ratio is comp...
Hydroxyapatite (HA) is among the leading ceramic materials for hard tissue replacement implants. Des...