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Mechanical behavior of bioactive TiC nanocomposite thin films

机译:生物活性TiC纳米复合薄膜的力学行为

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Carbon-based nanocomposite thin films have large application potential because they possess unique mechanical properties, especially high hardness, high elasticity, and a low widely adjustable friction coefficient. In this work, relatively easy preparation of the nanocomposite Ti and C system with good mechanical properties and bioactivity was showed. Formation of physical and mechanical processes, relationship between the evolving structure and other properties of TiC films were studied. The films were deposited on oxidized silicon substrates by dc magnetron sputtering of Ti and C targets in argon and nitrogen at different temperatures between 25°C and 800°C. The composite films consisted of metallic nanocrystalls embedded in a carbon matrix. Highest hardness ~18 Gpa and reduced modulus of elasticity ~205 Gpa were obtained when the crystalline nanoparticles were separated by 2-3 nm thin carbon matrix consisting of amorphous and graphitelike carbon phases. In these films the H/E ratio in the both cases is ~ 0,1. Bioactivity studies were carried out on human osteoblast-like cell line MG-63. The number of initially adhering cells on day 7 after seeding was significantly higher on the TiC surface than on the control culture dishes. Good biocompatibility and bioadhesion of these surfaces are attained by a favourable combination of surface roughness and chemistry.
机译:碳基纳米复合薄膜具有巨大的应用潜力,因为它们具有独特的机械性能,特别是高硬度,高弹性和低的可广泛调节的摩擦系数。在这项工作中,显示了具有良好的机械性能和生物活性的纳米复合Ti和C体系的相对容易的制备方法。研究了物理和机械过程的形成,TiC薄膜的演化结构与其他性能之间的关系。通过在25°C和800°C之间的不同温度下在氩气和氮气中进行Ti和C靶材的直流磁控溅射,将膜沉积在氧化硅基板上。复合膜由嵌入碳基质中的金属纳米晶体组成。当晶体纳米颗粒被2-3 nm的由无定形和石墨状碳相组成的薄碳基质分离时,可获得最高的硬度〜18 Gpa和降低的弹性模量〜205 Gpa。在这两种薄膜中,两种情况下的H / E比均约为0.1。对人成骨样细胞系MG-63进行了生物活性研究。接种后第7天在TiC表面上的初始粘附细胞数量明显高于对照培养皿。这些表面的良好生物相容性和生物粘附性是通过表面粗糙度和化学性质的良好结合而实现的。

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