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首页> 外文期刊>International Journal of Adhesion & Adhesives >Development and characterization of a multilayer silver/silver-tantalum oxide thin film coating on stainless steel for biomedical applications
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Development and characterization of a multilayer silver/silver-tantalum oxide thin film coating on stainless steel for biomedical applications

机译:用于生物医学应用不锈钢的多层银/银氧化物薄膜涂层的开发与表征

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摘要

Stainless steel 316L (SS 316L) is widely used in biomedical applications, particularly in surgical tools. Although this class of material has good wear and mechanical properties, it still lacks in antibacterial properties. Therefore, various surface modifications such as antibacterial coatings have been developed to enhance its properties. In this study, the surface of SS 316L was engineered with a thin multi-layer of tantalum oxide (TaO) and silver (Ag) with thickness of 4.7-6.4 mu m. The thin film multilayered coatings were deposited using physical vapor deposition (PVD) magnetron sputtering. In this study, Ag/AgTa2O5 nanocomposite thin film is developed to avoid or limit bacterial adhesion on surgical tool surfaces. The as-deposited Ag/AgTa2O5 nanocomposite film were thermally treated to enhance the mechanical properties of the film. The thermal annealing of the as-sputtered thin film at 400 degrees C induced segregated Ag microstructure, increased the crystallinity and adhesion strength by about 152% (2916 +/- 147 mN). The 400 degrees C annealed thin film exhibited hydrophobicity (102.5 degrees) and thermal stability properties. The superior adhesion strength of the thermally treated film reduces and slows down delamination while in use at the rugged surgical environment.
机译:不锈钢316L(SS 316L)广泛用于生物医学应用,特别是在外科手术工具中。虽然这类材料具有良好的磨损和机械性能,但仍然缺乏抗菌性能。因此,已经开发出各种表面改性,例如抗菌涂层以增强其性质。在该研究中,SS 316L的表面具有薄的多层钽氧化物(TAO)和银(Ag),厚度为4.7-6.4μm。使用物理气相沉积(PVD)磁控溅射沉积薄膜多层涂层。在该研究中,开发了Ag / AgTa2O5纳米复合薄膜以避免或限制手术工具表面上的细菌粘附。热处理沉积的Ag / AgTa2O5纳米复合膜以增强膜的机械性能。在400摄氏度诱导的分离Ag微观结构下的溅射薄膜的热退火,将结晶度和粘合强度增加约152%(2916 +/-147mN)。 400摄氏退火薄膜显示出疏水性(102.5度)和热稳定性。热处理膜的卓越粘附强度降低,在崎岖的手术环境中使用时减少分层。

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