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Impact of Surface Potential on Apatite Formation in Ti Alloys Subjected to Acid and Heat Treatments

机译:表面电位对酸和热处理钛合金中磷灰石形成的影响

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摘要

Titanium metal (Ti) and its alloys are widely used in orthopedic and dental fields. We have previously shown that acid and heat treatment was effective to introduce bone bonding, osteoconduction and osteoinduction on pure Ti. In the present study, acid and heat treatment with or without initial NaOH treatment was performed on typical Ti-based alloys used in orthopedic and dental fields. Dynamic movements of alloying elements were developed, which depended on the kind of treatment and type of alloy. It was found that the simple acid and heat treatment enriched/remained the alloying elements on Ti–6Al–4V, Ti–15Mo–5Zr–3Al and Ti–15Zr–4Nb–4Ta, resulting in neutral surface charges. Thus, the treated alloys did not form apatite in a simulated body fluid (SBF) within 3 days. In contrast, when the alloys were subjected to a NaOH treatment prior to an acid and heat treatment, alloying elements were selectively removed from the alloy surfaces. As a result, the treated alloys became positively charged, and formed apatite in SBF within 3 days. Thus, the treated alloys would be useful in orthopedic and dental fields since they form apatite even in a living body and bond to bone.
机译:钛金属(Ti)及其合金广泛用于整形外科和牙科领域。先前我们已经证明,酸和热处理可以有效地在纯Ti上引入骨粘合,骨传导和骨诱导。在本研究中,对矫形和牙科领域中使用的典型Ti基合金进行了酸处理和有无NaOH初始处理。开发了合金元素的动态运动,这取决于处理的类型和合金的类型。结果发现,简单的酸和热处理会使Ti-6Al-4V,Ti-15Mo-5Zr-3Al和Ti-15Zr-4Nb-4Ta上的合金元素富集/保留,从而产生中性表面电荷。因此,处理后的合金在3天内未在模拟体液(SBF)中形成磷灰石。相反,当在酸和热处理之前对合金进行NaOH处理时,从合金表面选择性地除去合金元素。结果,处理后的合金带正电,并在3天内在SBF中形成磷灰石。因此,经处理的合金将在骨科和牙科领域中有用,因为它们甚至在生物体内也形成磷灰石并与骨骼结合。

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