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首页> 外文期刊>Key Engineering Materials >In Vitro Apatite Formation on Surface-Modified Titanium Coatings Prepared by Reactive Plasma Spraying
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In Vitro Apatite Formation on Surface-Modified Titanium Coatings Prepared by Reactive Plasma Spraying

机译:反应等离子体喷涂制备的表面改性钛涂层上的体外磷灰石形成

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In vitro nucleation of apatite was studied over surface-modified Ti coatings prepared by reactive plasma spraying (RPS). An in-situ surface-modification of Ti particles is conducted by making use of plasma-enhanced reactions between the Ti particles and the reactive gaseous species in the plasma flame during plasma spraying. Surface-modified Ti coatings were deposited on Ti substrates by radio-frequency (rf)-RPS using a thermal plasma of Ar gas containing 1-6% N_2 and/or 1-6% O_2 at an input power of 16 kW. As a means of surface modification, Ti powders impregnated with 0.05-0.2 mol% Ca were also sprayed. Compositional changes in the coatings' surface after soaking in simulated body fluid (SBF) were examined by Fourier transform infrared spectroscopy (FT-IR) and thin film X-ray diffraction (TF-XRD). The Ti coatings prepared with Ar-O_2 and Ar-N_2-O_2 plasma formed apatite after 3 days of soaking in SBF. On the other hand, no compositional change was observed in the surface of the Ti coatings sprayed with Ar-N_2 plasma, even after 7 days of soaking in SBF. In SBF tests, we observed a retardation of apatite deposition for the Ca-added Ti coatings prepared with Ar-O_2 and Ar-N_2-O_2 plasmas. Analyses by X-ray photoelectron spectroscopy indicated that the Ca impregnated in the RPS-Ti coatings formed a Ca-O compound.
机译:研究了通过反应性等离子喷涂(RPS)制备的表面改性Ti涂层对磷灰石的体外成核作用。通过在等离子喷涂过程中利用Ti颗粒与等离子火焰中的反应性气体之间的等离子增强反应,对Ti颗粒进行原位表面改性。使用包含1-6%N_2和/或1-6%O_2的Ar气体的热等离子体以16 kW的输入功率通过射频(rf)-RPS在Ti基板上沉积表面改性的Ti涂层。作为表面改性的一种方法,还喷涂了浸渍有0.05-0.2 mol%Ca的Ti粉。通过傅里叶变换红外光谱(FT-IR)和薄膜X射线衍射(TF-XRD)检查了浸泡在模拟体液(SBF)中后涂层表面的成分变化。在SBF中浸泡3天后,用Ar-O_2和Ar-N_2-O_2等离子体制备的Ti涂层形成了磷灰石。另一方面,即使在SBF中浸泡7天,在喷涂有Ar-N_2等离子体的Ti涂层的表面也没有观察到组成变化。在SBF测试中,我们观察到了用Ar-O_2和Ar-N_2-O_2等离子体制备的添加Ca的Ti涂层中磷灰石沉积的延迟。 X射线光电子能谱分析表明,浸渍在RPS-Ti涂层中的Ca形成Ca-O化合物。

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