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首页> 外文期刊>Biomaterials >Formation of a bioactive graded surface structure on Ti-15Mo-5Zr-3Al alloy by chemical treatment.
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Formation of a bioactive graded surface structure on Ti-15Mo-5Zr-3Al alloy by chemical treatment.

机译:通过化学处理在Ti-15Mo-5Zr-3Al合金上形成生物活性梯度表面结构。

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摘要

Simple NaOH and heat treatments provided a Ti-15Mo-5Zr-3Al alloy with a bioactive graded surface structure of an amorphous sodium titanate, where the sodium titanate on the top surface gradually changed into the alloy substrate through titanium oxide. The sodium titanate was free of alloying species of Mo, Zr and Al, since almost all of them were released from the surface of alloy during the first NaOH treatment. The sodium titanate transformed into a hydrated titania via Na+ ion release to induce a bone-like apatite formation on the alloy substrate in a simulated body fluid (SBF). The alloying species neither were released into the SBF nor affected the apatite formation. In the process of apatite formation, the graded surface structure developed into one where the apatite on the top surface gradually changed into the alloy composition through hydrated titania and titanium oxide. It is expected that this graded structure will lead to a strong interfacial bonding strength between the apatite layer and the alloy substrate, thereby providing a tight integration of the alloy with living bone through the apatite layer.
机译:简单的NaOH和热处理提供了具有生物活性梯度无定形钛酸钠的Ti-15Mo-5Zr-3Al合金,其中上表面的钛酸钠通过氧化钛逐渐变成了合金基底。钛酸钠不含Mo,Zr和Al的合金物质,因为在第一次NaOH处理过程中几乎所有合金,钛和钠都从合金表面释放出来。钛酸钠通过释放Na +离子转变为水合二氧化钛,从而在模拟体液(SBF)中在合金基底上诱导形成骨状磷灰石。合金物质既没有释放到SBF中,也没有影响磷灰石的形成。在磷灰石形成的过程中,渐变的表面结构发展为一种结构,其中顶表面的磷灰石通过水合二氧化钛和氧化钛逐渐变为合金成分。期望这种梯度结构将导致磷灰石层和合金基底之间的强界面粘结强度,从而通过磷灰石层使合金与活骨紧密结合。

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