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首页> 外文期刊>Surface & Coatings Technology >Effect of silicate doping on the structure and mechanical properties of thin nanostructured RF magnetron sputter-deposited hydroxyapatite films
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Effect of silicate doping on the structure and mechanical properties of thin nanostructured RF magnetron sputter-deposited hydroxyapatite films

机译:硅酸盐掺杂对纳米结构射频磁控溅射沉积羟基磷灰石薄膜结构和力学性能的影响

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Silicon-doped hydroxyapatite-based (Si-HA) coatings were deposited via radio frequency (RF) magnetron sputtering on the surface of titanium that was treated with a pulsed electron beam. This study aimed to evaluate the effect of Si doping on the structure and mechanical properties of thin HA films. The content of the silicon was 1.2 and 4.6 at.% for the coatings prepared using the Si-HA precursor powders with a chemical formula Ca-10(PO4)(6) (-) (x)(SiO4)(x)(OF)(2) (-) (x) where, x = 0.5 and 1.72. Pure HA (Ca-10(PO4)(6)(OH)(2)) coatings were deposited for comparison. The as-deposited films were analysed with respect to their composition, state of chemical binding and microstructure using XPS, FTIR, XRD, and SEM. We hypothesized that the addition of Si would affect the mechanical features of the coatings due to microstructure changes. The effect of the introduction of Si on the nanohardness and the Young's modulus as well as the adhesion strength and scratch resistance of the HA coating was investigated using nanohardness testing and a scratch test, respectively. Examination of the coating microstructure using SEM and AFM revealed that Si doping influenced the surface morphology and led to a smaller grain size. The tendency to form an amorphous structure also increased with an increase in the Si content. A monotonous decrease in both the nanohardness and the elastic modulus was observed with an increase in the Si content A maximum nanohardness of similar to 7 GPa was obtained for the Si-free HA coating, whereas the hardness decreased to similar to 4.3 GPa for the films with a Si content of 1.2 at.%. The addition of 4.6 at.% Si to the HA coating resulted in a reduction in the elastic modulus, whereas the nanohardness was very similar to that of the uncoated substrate. The adhesion behaviour of the coatings demonstrated different responses. In the case of pure HA coatings, failure occurred due to the low cohesion of the coating, whereas the crystalline Si-HA coatings with a Si content of 1.2 at.% deformed plastically without crack formation and without detaching from the titanium substrate, which resulted in a greater coating stability. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过射频(RF)磁控管溅射将掺杂硅的羟基磷灰石基(Si-HA)涂层沉积在用脉冲电子束处理过的钛表面上。这项研究旨在评估Si掺杂对薄HA膜的结构和力学性能的影响。使用化学式为Ca-10(PO4)(6)(-)(x)(SiO4)(x)(OF)的Si-HA前体粉末制备的涂层的硅含量为1.2和4.6 at。% )(2)(-)(x)其中,x = 0.5和1.72。纯HA(Ca-10(PO4)(6)(OH)(2))涂层沉积用于比较。使用XPS,FTIR,XRD和SEM分析了沉积后的薄膜的组成,化学结合状态和微观结构。我们假设由于微结构的改变,添加硅会影响涂层的机械性能。分别使用纳米硬度试验和刮擦试验研究了Si的引入对HA涂层的纳米硬度和杨氏模量以及粘附强度和耐划伤性的影响。使用SEM和AFM检查涂层的微观结构表明,Si掺杂影响表面形貌并导致较小的晶粒尺寸。随着Si含量的增加,形成非晶结构的趋势也增加。随着硅含量的增加,纳米硬度和弹性模量均单调下降。无硅HA涂层的最大纳米硬度达到7 GPa,而薄膜的硬度下降至4.3 GPa。 Si含量为1.2at。%。向HA涂层中添加4.6 at。%的Si导致弹性模量降低,而纳米硬度与未涂层的基材非常相似。涂料的粘附行为表现出不同的响应。在纯HA涂层的情况下,由于涂层的内聚力低而导致失效,而Si含量为1.2 at。%的结晶Si-HA涂层塑性变形而没有裂纹形成,也没有从钛基底上脱落,这导致具有更大的涂层稳定性。 (C)2015 Elsevier B.V.保留所有权利。

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