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Adhesion study of pulsed laser deposited hydroxyapatite coating on laser surface nitrided titanium

机译:脉冲激光沉积羟基磷灰石涂层在激光表面氮化钛上的附着力研究

摘要

Hydroxyapatite (HA) coatings were fabricated by pulsed laser deposition (PLD) on commercially pure titanium which had been subjected to different types of pre-treatment. These include: (i) 60-grit SiC grinding, (ii) 320-grit SiC grinding, (iii) 1-μm diamond paste mirror-finishing, (iv) etching with Knoll solution, and (v) laser surface nitriding followed by selective etching. The HA coatings were pulsed laser deposited at different water-vapor pressures to determine the optimal processing conditions. The nitrided-etched specimen exhibits a three dimensional TiN dendritic network which promotes the adhesion between HA coating and titanium substrate. Among the specimens with different pre-treatments, the adhesion strength of HA is the highest for the nitrided-etched specimen, reaching about twice that for the mirror-finished specimen. Thin-film X-ray diffraction shows a high degree of crystallinity for the PLD deposited HA. According to energy-dispersive X-ray analysis, the Ca/P ratio of the deposited HA reaches an approximate value of 1.7, similar to that of the HA target. Scanning-electron microscopy reveals that the deposited HA is about 4 μm in thickness. Growth of apatite was rapidly induced on the HA coated specimens when immersed in Hanks' solution for 4 days, indicating that the PLD HA coating is highly bone bioactive. This could be partly due to the high wettability of the PLD HA surface.
机译:羟基磷灰石(HA)涂层是通过脉冲激光沉积(PLD)在已经过不同类型预处理的商业纯钛上制成的。其中包括:(i)60粒度SiC研磨,(ii)320粒度SiC研磨,(iii)1-μm金刚石糊镜面精加工,(iv)用Knoll溶液蚀刻,(v)激光表面氮化选择性蚀刻。 HA涂层在不同的水蒸气压力下被脉冲激光沉积,以确定最佳加工条件。经氮化蚀刻的样品具有三维TiN树枝状网络,可促进HA涂层与钛基底之间的粘附。在经过不同预处理的样品中,HA的附着强度对于氮化蚀刻后的样品最高,约为镜面抛光样品的两倍。薄膜X射线衍射显示PLD沉积的HA具有高度的结晶度。根据能量色散X射线分析,沉积的HA的Ca / P比达到大约1.7的值,类似于HA目标。扫描电子显微镜显示沉积的HA的厚度约为4μm。将其浸入Hanks溶液中4天后,可在HA涂层标本上迅速诱导磷灰石生长,这表明PLD HA涂层具有很高的骨生物活性。这可能部分是由于PLD HA表面的高润湿性。

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