Protein adsorption, cell viability and corrosion properties of Ti6Al4V alloy treated by plasma oxidation and anodic oxidation
The hardness, wettability, and electrochemical properties of Ti6Al4V alloy surfaces treated
with anodic oxidation and plasma oxidation as well as the viabilities of the different cell lines
on the obtained surfaces were investigated. The anodic oxidation was performed for 10 min
under 100 V potential, and it resulted in a 0.95 µm thick nanoporous anatase-TiO 2 structure.
On the other hand, plasma oxidation was carried out at 650° C for 1 h and resulted in a
dense rutile-TiO 2 structure with a thickness of 1.2 µm. While a hardness of HV 0.025 823 …
with anodic oxidation and plasma oxidation as well as the viabilities of the different cell lines
on the obtained surfaces were investigated. The anodic oxidation was performed for 10 min
under 100 V potential, and it resulted in a 0.95 µm thick nanoporous anatase-TiO 2 structure.
On the other hand, plasma oxidation was carried out at 650° C for 1 h and resulted in a
dense rutile-TiO 2 structure with a thickness of 1.2 µm. While a hardness of HV 0.025 823 …
[PDF][PDF] Protein adsorption, cell viability and corrosion properties of Ti6Al4V alloy oxidized by plasma and anodic oxidation
The hardness, wettability and electrochemical properties of the anodic and plasma oxidation
surface treatments applied to the Ti6Al4V alloy as well as the viability of the different cell
lines on the obtained surfaces were investigated. Anodic oxidation was performed for 10
minutes under 100 V potential and resulted in a 0.95 µm thick nano-porous anatase-TiO2
structure. Plasma oxidation was carried out at 650 C for 1 hour and resulted in a dense rutile-
TiO2 structure with a thickness of 1.2 µm. While 823 HV0. 025 hardness and 220 nm …
surface treatments applied to the Ti6Al4V alloy as well as the viability of the different cell
lines on the obtained surfaces were investigated. Anodic oxidation was performed for 10
minutes under 100 V potential and resulted in a 0.95 µm thick nano-porous anatase-TiO2
structure. Plasma oxidation was carried out at 650 C for 1 hour and resulted in a dense rutile-
TiO2 structure with a thickness of 1.2 µm. While 823 HV0. 025 hardness and 220 nm …
以上显示的是最相近的搜索结果。 查看全部搜索结果