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Improvement of corrosion resistance and bio compatibility of medical Nickel-Titanium alloys through forming TiO_2 thin film

机译:通过形成TiO_2薄膜改善医用镍 - 钛合金的耐腐蚀性和生物相容性

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Nickel-Titanium alloys have been investigated for applying to various surgical procedures. However, little is known about the toxicity of Ni-elements and the actual conditions of surface modification of Ni-Ti alloy for preventing the toxicity of Ni. In this study, the corrosion resistance of Ni-Ti alloys was improved through making TiO_2 thin film by conducting in air oxidation and reactive sputtering. These thin films were characterized using FE-SEM, XRD, XPS and AFM. And judging from the polarization curves obtained by electro-chemical measurement in a quasi-living body environment, corrosion resistance of Ni-Ti super elastic alloy was evaluated. In addition, the effect of air oxidized Ni-Ti alloy specimen upon cell multiplication and morphological change of cell were investigated by culturing cell 72 hrs on Ni-Ti alloy specimen surface with TiO_2 thin film. From these considerations, some trials for establishing a method for TiO_2 thin film formation on the surface of Ni-Ti alloy were conducted from the view point of improving biocompatibility.
机译:已经研究了镍 - 钛合金来施加各种外科手术。然而,对于Ni-元素的毒性很少,以及Ni-Ti合金的实际表面改性的实际条件,用于防止Ni的毒性。在这项研究中,通过在空气氧化和反应溅射中进行TiO_2薄膜来改善Ni-Ti合金的耐腐蚀性。使用Fe-SEM,XRD,XPS和AFM表征这些薄膜。并从通过电化学测量在准生物体环境中获得的极化曲线判断,评估Ni-Ti超弹性合金的耐腐蚀性。此外,通过TiO_2薄膜培养细胞72小时,研究了空气氧化Ni-Ti合金标本对细胞倍增和细胞形态变化的影响。从这些考虑中,从改善生物相容性的观点来看,用于在Ni-Ti合金表面上建立TiO_2薄膜形成方法的一些试验。

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