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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Nitric acid passivation of Ti6Al4V reduces thickness of surface oxide layer and increases trace element release.
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Nitric acid passivation of Ti6Al4V reduces thickness of surface oxide layer and increases trace element release.

机译:Ti6Al4V的硝酸钝化可降低表面氧化物层的厚度并增加痕量元素的释放。

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Passivation of Ti6Al4V and cpTi implants using methods based on the ASTM-F86 nitric acid protocol are used with the intention of reducing their surface reactivity, and consequently the corrosion potential, in the highly corrosive biologic milieu. The ASTM-F86 passivation protocol was originally developed for surgical implants made of stainless steel and chrome cobalt alloy. Using X-ray photoelectron spectroscopy (XPS) to examine the effect of nitric acid passivation on the surface oxide layer of mill-annealed Ti6Al4V and cpTi, we have found that such treatment actually reduced the oxide thickness on the alloy while having no significant effect on the pure metal. These results correlated with observations obtained using graphite furnace atomic absorption spectrophotometry (GFAAS) to detect trace element release from solid, mill-annealed, Ti6Al4V and cpTi into serum-containing culture medium. We detected significantly greater levels of Ti, Al, and V in the presence of passivated compared to nonpassivatedTi6Al4V. In contrast, nitric acid passivation did not influence Ti release from mill-annealed cpTi. These results, derived from two mill-annealed Ti-based metals, would indicate that re-examination of ASTM-F86-based passivation protocols with respect to Ti6Al4V should be considered in view of the widespread use of this alloy for biomedical devices.
机译:使用Ti6Al4V和cpTi植入物使用基于ASTM-F86硝酸协议的方法进行钝化,目的是降低其在高腐蚀性生物环境中的表面反应性,从而降低其腐蚀潜能。 ASTM-F86钝化协议最初是为不锈钢和铬钴合金制成的外科植入物开发的。使用X射线光电子能谱(XPS)来检查硝酸钝化对铣削退火的Ti6Al4V和cpTi的表面氧化物层的影响,我们发现这种处理实际上减少了合金上的氧化物厚度,而对纯金属。这些结果与使用石墨炉原子吸收分光光度法(GFAAS)来检测痕量元素从固体,研磨退火,Ti6Al4V和cpTi释放到含血清培养基中获得的观察结果相关。与未钝化的Ti6Al4V相比,在钝化的情况下我们检测到Ti,Al和V的含量明显更高。相反,硝酸钝化不影响从研磨退火的cpTi中释放出Ti。从两种退火退火的Ti基金属获得的这些结果表明,鉴于该合金在生物医学设备中的广泛使用,应考虑对Ti6Al4V进行基于ASTM-F86的钝化协议的重新检查。

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