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Tribocorrosion Behavior of Anodic Titanium Oxide Films and Assessment of Cell-Materials Interactions

机译:阳极氧化钛薄膜的摩擦腐蚀行为及细胞间相互作用的评估

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In this work, porous anodic oxide films were produced on cp-Ti surfaces by PEO. The anodizing conditions significantly influenced the features of the anodic films produced on cp-Ti substrates. In addition, PEO treatments greatly improved the cp-Ti tribocorrosion performance. Furthermore, the electrolyte composition appears to play a crucial effect on wear/corrosion performance of anodized samples by decreasing the tendency to corrosion and mechanical damage. PEO_Cβ,25,10 surface features significantly improved the tribocorrosion and biological performances of cp-Ti, leading to the development of bio-multifunctional Ti surfaces. The major highlight of this study relies on the development of the Cβ-treated samples by PEO as very attractive candidates for implant applications.
机译:在这项工作中,通过PEO在cp-Ti表面上产生了多孔阳极氧化膜。阳极氧化条件极大地影响了在cp-Ti衬底上产生的阳极膜的特性。此外,PEO处理大大改善了cp-Ti摩擦腐蚀性能。此外,通过降低腐蚀和机械损坏的趋势,电解质组合物似乎对阳极氧化样品的磨损/腐蚀性能起关键作用。 PEO_Cβ,25,10表面特征显着改善了cp-Ti的摩擦腐蚀和生物学性能,从而导致了生物多功能Ti表面的发展。这项研究的主要亮点是依靠PEO对Cβ处理过的样品的开发,将其作为非常有吸引力的植入物候选物。

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