Two different oxide-based bioactive materials, namely tricalcium phosphate (TCP) and K2O\u2013CaO\u2013P2O5\u2013SiO2 bioactive glass (\u201cBio-K\u201d), were processed by the High Velocity Suspension Flame Spraying (HVSFS) technique. Single splats were deposited onto polished cold glass plates using a custom-built experimental set up. In addition, complete coatings were deposited onto pre-heated Ti plates. Deposited splats and coatings were examined by scanning and transmission electron microscope (SEM, TEM) techniques and their phase composition was investigated by micro-Raman spectroscopy. The 3-D profiles of single splats were also reconstructed through atomic force microscopy (AFM). Based on the experimental results, explanations of...
Bioactive glasses are emerging as a substitute of hydroxyapatite in the development of bioactive co...
The high-velocity suspension flame spraying technique (HVSFS) was employed in order to deposit 45S5 ...
Titanium plates were coated by high-velocity suspension flame spraying (HVSFS) technique using a nove...
Two different oxide-based bioactive materials, namely tricalcium phosphate (TCP) and K2O–CaO–P2O5–Si...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
This paper assesses the diverse potentialities of two different suspension spraying processes, namel...
This paper assesses the diverse potentialities of two different suspension spraying processes, namel...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
The paper reports the first attempt at employing the innovative High-Velocity Suspension Flame Spray...
The paper reports the first attempt at employing the innovative High-Velocity Suspension Flame Spray...
Bioactive glass coatings based on a novel SiO2-P2O5-CaO-K2O system (\u201cBio-K\u201d) were deposite...
Bioactive glass coatings based on a novel SiO2-P2O5-CaO-K2O system (“Bio-K”) were deposited by the H...
Bioactive glasses are emerging as a substitute of hydroxyapatite in the development of bioactive co...
The high-velocity suspension flame spraying technique (HVSFS) was employed in order to deposit 45S5 ...
Titanium plates were coated by high-velocity suspension flame spraying (HVSFS) technique using a nove...
Two different oxide-based bioactive materials, namely tricalcium phosphate (TCP) and K2O–CaO–P2O5–Si...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
This paper assesses the diverse potentialities of two different suspension spraying processes, namel...
This paper assesses the diverse potentialities of two different suspension spraying processes, namel...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
The High-Velocity Suspension Flame Spraying (HVSFS) technique was employed in order to deposit bioac...
The paper reports the first attempt at employing the innovative High-Velocity Suspension Flame Spray...
The paper reports the first attempt at employing the innovative High-Velocity Suspension Flame Spray...
Bioactive glass coatings based on a novel SiO2-P2O5-CaO-K2O system (\u201cBio-K\u201d) were deposite...
Bioactive glass coatings based on a novel SiO2-P2O5-CaO-K2O system (“Bio-K”) were deposited by the H...
Bioactive glasses are emerging as a substitute of hydroxyapatite in the development of bioactive co...
The high-velocity suspension flame spraying technique (HVSFS) was employed in order to deposit 45S5 ...
Titanium plates were coated by high-velocity suspension flame spraying (HVSFS) technique using a nove...