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首页> 外文期刊>CERAMICS INTERNATIONAL >Influence of Ti, Zr or Nb carbide adhesion layers on the adhesion, corrosion resistance and cell proliferation of titania doped hydroxyapatite to the Ti6Al4V alloy substrate, utilizable for orthopaedic implants
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Influence of Ti, Zr or Nb carbide adhesion layers on the adhesion, corrosion resistance and cell proliferation of titania doped hydroxyapatite to the Ti6Al4V alloy substrate, utilizable for orthopaedic implants

机译:Ti,Zr或Nb碳化物粘附层对Ti6Al4V合金基质的二氧化钛掺杂羟基磷灰石的粘附,耐腐蚀和细胞增殖的影响,可利用整形外科植入物

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摘要

In the present paper, we study the enhancement of the adhesion between the titania doped hydroxyapatite coating and the Ti6Al4V alloy substrate by the addition of three different biocompatible carbides. The coatings were prepared by the magnetron sputtering technique. The addition of interlayer preserved the crystalline structure of hydroxyapatite. The morphology of the coating is influenced by the interlayer composition. The adhesion of the coatings was significantly improved by the interlayer, independent of it's composition. The best adhesion was found for the coatings with NbC interlayer, which also showed the best corrosion resistance in simulated body fluid at 37 degrees C, due to its flat surface grown without any distinct features. As expected, the results of the in vitro biological tests were almost similar for all coatings comprising an adhesion layer, as the same titania doped hydroxyapatite layer was on top. The experimental results revealed that the adhesion between Ti6Al4V and titania doped hydroxyapatite was improved by a hard metal carbide interlayer, without affecting the required biomedical properties such as good corrosion resistance, high proliferation level of osteoblast cells, and good gene expression levels.
机译:在本文中,我们通过添加三种不同的生物相容性碳化物来研究二氧化钛掺杂羟基磷灰石涂层和Ti6Al4V合金基底之间的粘附性的增强。通过磁控溅射技术制备涂层。中间层的添加保留了羟基磷灰石的结晶结构。涂层的形态受夹层组合物的影响。中间层,涂层的粘附性显着改善,与其组成无关。对于具有Nbc中间层的涂层,发现最佳粘附性,其在37℃下也显示出模拟体液中的最佳耐腐蚀性,这是由于其平坦表面生长而没有任何明显的特征。如预期的,对于包含粘合层的所有涂层的体外生物试验的结果几乎相似,因为相同的二氧化钛掺杂的羟基磷灰石层在顶部。实验结果表明,通过硬质金属碳化物中间晶层改善了Ti6Al4V和二氧化钛掺杂羟基磷灰石之间的粘附性,而不影响所需的生物医学性质,例如耐腐蚀性良好,高增殖水平的成骨细胞和良好的基因表达水平。

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