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The correlation between substrate and deposited biocompatible layer microstructures on different substrates

机译:基板与不同基板上沉积的生物相容层微结构之间的相关性

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The biocompatibility is essential for the so called biomaterials used for medical devices (e.g. artificial implants, implants). It is determined mainly by the surface chemical composition and the environment in which the implant is used. The implant materials used fill the date have limited biocompatibility. On the other hand newly developed biocompatible materials are usually more expensive. The biocompatibility of currently used materials can be improved via deposition of thin biocompatible layer on the substrate. This layer may be further improved (or used as interlayer) introducing hydroxyapatite, BaTiO3 or other surface treatments. The microstructure of deposited layers has to be known in such cases as it can influence properties of the surface. Various substrates (pure titanium, Ti6A14V alloy and Ti-39Nb alloy) were used for biocompatible Ti-39Nb layer sputtering deposition in current paper. The microstructure of substrates has been characterized using electron microscopy techniques. The correlation between substrate and layer microstructures could have been revealed, because both microstructures were studied at the same area of the substrate. Significant differences in grain size have been observed on various substrates. Also the microstructure of deposited layer can be distinguished into two types. These are pure beta-Ti phase probably on the grains where the surface diffusivity is high enough (locally observed on Ti-39Nb and pure Ti substrates) and mixture of alpha '' martensitic and beta-Ti phase columns.
机译:生物相容性对于用于医疗器械(例如人造植入物,植入物)的所谓生物材料是必不可少的。它主要取决于表面化学成分和植入物的使用环境。截止日期使用的植入物材料的生物相容性有限。另一方面,新开发的生物相容性材料通常更昂贵。通过在基板上沉积生物相容性薄层,可以改善当前使用材料的生物相容性。可以通过引入羟基磷灰石,BaTiO3或其他表面处理进一步改善(或用作中间层)该层。在这种情况下,必须知道沉积层的微观结构,因为它会影响表面的性能。各种基材(纯钛,Ti6A14V合金和Ti-39Nb合金)已用于当前纸张中的生物相容性Ti-39Nb层溅射沉积。基材的微观结构已使用电子显微镜技术进行了表征。可能已经揭示了基材和层微结构之间的相关性,因为这两个微结构都在基材的相同区域进行了研究。在各种基材上均观察到晶粒尺寸的显着差异。沉积层的微观结构也可以分为两种类型。这些是纯的β-Ti相,可能在表面扩散率足够高的晶粒上(在Ti-39Nb和纯Ti基底上局部观察到)以及α''马氏体相和β-Ti相柱的混合物。

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