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首页> 外文期刊>Acta biomaterialia >Thin films with chemically graded functionality based on fluorine polymers and stainless steel.
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Thin films with chemically graded functionality based on fluorine polymers and stainless steel.

机译:具有基于氟聚合物和不锈钢的化学分级功能的薄膜。

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摘要

Thin films of stainless steel and poly(tetrafluoroethylene) were co-deposited, by radiofrequency magnetron sputtering, in an inert atmosphere in order to produce a functionally graded material as a coating on a traditional biomaterial, where non-ferromagnetic characteristics and improved wettability must be ensured. These thin films are intended to modify the surface of SS316L used in stents, where the bulk/thin film couple should be regarded as a single material. This requires excellent adhesion of the coating to the substrate. All coatings were deposited with an average thickness of 500nm. The chemical and phase characterization of the surface revealed that, with the increase in F content, the thin film evolves from a ferritic phase (alpha) to an amorphous phase with dispersion of a new crystalline ceramic phase (FeF(2)). For intermediate F content values, an austenitic (111) phase (gamma) was present. Bearing in mind the envisaged application, the best results were attained for thin films with a fluorine content between 10 and 20at.%.
机译:在惰性气氛中,通过射频磁控溅射将不锈钢和聚四氟乙烯薄膜共沉积,以生产功能梯度材料作为传统生物材料上的涂层,其中必须具有非铁磁特性和改善的润湿性确保。这些薄膜用于修饰支架中使用的SS316L的表面,在这种情况下,体/薄膜对应视为单一材料。这要求涂层与基底具有极好的粘合性。所有涂层的平均厚度为500nm。表面的化学和相特征表明,随着F含量的增加,薄膜从铁素体相(α)演变为具有新的结晶陶瓷相(FeF(2))分散的非晶相。对于中等的F含量值,存在奥氏体(111)相(γ)。牢记所设想的应用,对于氟含量在10和20原子%之间的薄膜获得了最好的结果。

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