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The structure and in vitro apatite formation ability of porous titanium covered bioactive microarc oxidized TiO_2-based coatings containing Si, Na and Ca

机译:含Si,Na和Ca的多孔钛包覆生物活性微弧氧化TiO_2基涂层的结构和体外磷灰石形成能力

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摘要

The microarc oxidation (MAO) was used to prepare TiO_2 based coating containing Si, Ca and Na elements (SCN) on porous titanium sintered with different sizes of titanium beads. The chemical states of elements and apatite-forming ability of MAO coatings were investigated. The effect of titanium beads diameter on the chemical states of Ca and Si of MAO coatings on the surfaces of porous titanium is not obvious. However, the chemical states of Ti and O changed when the titanium beads diameter increased. The current results reveal that the MAO coatings containing SCN elements have good induction capability for the heterogeneous nucleation and growth of apatite in a simulated body fluid (SBF). The appropriate size of titanium beads could promote the apatite formation on porous titanium with MAO coatings. The reason for this is that the appropriate size of titanium beads can be helpful to introduce more amounts of SCN elements into MAO coatings on the porous titanium.
机译:微弧氧化(MAO)用于在烧结了不同尺寸的钛珠的多孔钛上制备含Si,Ca和Na元素(SCN)的TiO_2基涂层。研究了MAO涂层的元素化学状态和磷灰石形成能力。钛珠直径对多孔钛表面上MAO涂层的Ca和Si的化学状态的影响并不明显。然而,当钛珠直径增加时,Ti和O的化学状态发生变化。目前的结果表明,含有SCN元素的MAO涂层对于模拟体液(SBF)中的磷灰石异质形核和生长具有良好的诱导能力。适当大小的钛珠可促进带有MAO涂层的多孔钛上磷灰石的形成。这是因为适当大小的钛珠有助于将更多的SCN元素引入多孔钛的MAO涂层中。

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