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Tailoring the Bioactivity of Titanium by Plasma Sprayed Hydroxyapatite-Bioglass Composite Coating

机译:等离子喷涂羟基磷灰石-生物玻璃复合涂层调控钛的生物活性

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摘要

Titanium and its alloys are widely used as a potential implant material due to their excellent mechanical and corrosion resistant properties. However, the bioinertness of titanium results in poor osseointegration of the implant which may result in failure. To improve osseointegration on titanium, several surface modification techniques using plasma spraying, chemical vapour deposition, etc have been carried out. Hydroxyapatite and bioglass coating has been proved to be one of the best coatings to improve surface bioactivity. Bonding strength of hydroxyapatite is more as compared to bioglass while bioactivity of bioglass is higher than hydroxyapatite. To improve the implant stability and bioactivity, composite of hydroxyapatite and bioglass containing SiO2–Na2O–CaO–P2O5 system was used as coating material. Micro plasma spray technique was used for coating different composition of the composite on commercially pure titanium substrate. The processing parameters were maintained at 2kW power, 7.3 g/min of feed rate and the current parameter was varied at 35A and 40A respectively. The coated specimens were characterized using optical microscopy, scanning electron microscopy (SEM) and X-ray diffraction (XRD) techniques. It was observed that there was no phase contamination on the coated specimens. The SEM micrographs revealed that the coated specimens exhibited microporoes on its surface. The in-vitro bioactivity study was performed by immersing the specimen in simulated body fluid (SBF) for 7 and 14 days. The immersed specimens were characterized using SEM and XRD to confirm apatite formation. It was evident that the results showed dense apatite formation on the coated specimens indicating enhanced bioactivity. From this study it is evident that composite (HAp+BG) coating showed more bioactivity than hydroxyapatite coating.
机译:钛及其合金由于其优异的机械和耐腐蚀性能而被广泛用作潜在的植入材料。然而,钛的生物惰性导致植入物的骨整合不良,这可能导致失败。为了改善在钛上的骨结合,已经进行了几种使用等离子喷涂,化学气相沉积等的表面改性技术。羟基磷灰石和生物玻璃涂层已被证明是改善表面生物活性的最佳涂层之一。与生物玻璃相比,羟基磷灰石的结合强度更高,而生物玻璃的生物活性高于羟基磷灰石。为了提高植入物的稳定性和生物活性,羟基磷灰石和含SiO2-Na2O-CaO-P2O5的生物玻璃复合材料被用作涂层材料。使用微等离子体喷涂技术将不同组成的复合材料涂覆在商业纯钛基材上。加工参数保持在2kW功率,7.3 g / min的进给速度下,电流参数分别在35A和40A下变化。使用光学显微镜,扫描电子显微镜(SEM)和X射线衍射(XRD)技术对涂层样品进行表征。观察到在涂覆的样品上没有相污染。 SEM显微照片表明,涂覆的样品在其表面上显示出微孔。通过将标本浸入模拟体液(SBF)中7天和14天来进行体外生物活性研究。使用SEM和XRD对浸没的样品进行表征以确认磷灰石的形成。显然,结果表明在涂覆的样品上形成密集的磷灰石,表明生物活性增强。从这项研究可以看出,复合材料(HAp + BG)涂层比羟基磷灰石涂层具有更高的生物活性。

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    Patel Sandeep Sureshbhai;

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  • 年度 2013
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