首页> 外文期刊>The Physics of Metals and Metallography >Comparison of bio-mineralization behavior of Ti-6Al-4V-1Nb and Zr-1Nb nano-tubes formed by anodization
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Comparison of bio-mineralization behavior of Ti-6Al-4V-1Nb and Zr-1Nb nano-tubes formed by anodization

机译:阳极氧化形成的Ti-6Al-4V-1Nb和Zr-1Nb纳米管的生物矿化行为比较

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摘要

Nano-tubes of titanium and zirconium alloys like Ti-6Al-4V-1Nb and Zr-1Nb were prepared by anodization followed by coating with hydroxylapatite (HA) and their bio-mineralization behaviors were compared to develop a bio-compatible material for implants in orthopedics, dentistry and cardiology. Ti-6Al-4V-1Nb weight gain in a simulated body solution increased gradually. The bigger tube diameter was, the heavier HA was deposited. Surface roughness of both alloys increased highly with the increasing diameter of nano-tube. Their surface roughness decreased by HA deposition due to the removal of the empty space of the nano-tubes. Zr-1Nb alloy had faster growth of nano-tubes layers more than Ti-6Al-4V-1Nb alloy.
机译:通过阳极氧化制备钛和锆合金的纳米管,如Ti-6Al-4V-1Nb和Zr-1Nb,然后涂覆羟基磷灰石(HA),并比较它们的生物矿化行为,从而开发出生物相容性的植入材料。骨科,牙科和心脏病学。模拟体溶液中Ti-6Al-4V-1Nb的重量增加逐渐增加。管直径越大,HA沉积越重。两种合金的表面粗糙度都随着纳米管直径的增加而大大增加。由于去除了纳米管的空余空间,HA沉积降低了它们的表面粗糙度。 Zr-1Nb合金比Ti-6Al-4V-1Nb合金具有更快的纳米管层生长速度。

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