專案詳細資料
說明
A porous structural oxide film was formed on titanium-niobium alloys (TiNb) by anodic oxidation after cathodic pretreatment.
The effects of titanium hydride compounds on the formation of an oxide film and the structural properties of a TiNb matrix were
investigated by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and nanoindentation.
The XRD spectra showed that composite films containing TiH1.924 were formed by cathodic pretreatment and directly
dissolved after anodic oxidation. Consequently, a thick and porous oxide surface was formed on a TiNb matrix, thereby increasing the
bioactivity of TiNb. Nano-indentation showed that the elastic modulus of TiNb was reduced until it was close to that of bone tissue.
These results showed that TiNb subjected to anodic oxidation after cathodic pretreatment had the potential to promote sufficient load
sharing between the bone and the TiNb implant
The effects of titanium hydride compounds on the formation of an oxide film and the structural properties of a TiNb matrix were
investigated by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), and nanoindentation.
The XRD spectra showed that composite films containing TiH1.924 were formed by cathodic pretreatment and directly
dissolved after anodic oxidation. Consequently, a thick and porous oxide surface was formed on a TiNb matrix, thereby increasing the
bioactivity of TiNb. Nano-indentation showed that the elastic modulus of TiNb was reduced until it was close to that of bone tissue.
These results showed that TiNb subjected to anodic oxidation after cathodic pretreatment had the potential to promote sufficient load
sharing between the bone and the TiNb implant
狀態 | 已完成 |
---|---|
有效的開始/結束日期 | 10/1/10 → 9/30/11 |
指紋
探索此專案觸及的研究主題。這些標籤是根據基礎獎勵/補助款而產生。共同形成了獨特的指紋。