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Improving the Tribological Properties of Spark-Anodized Titanium by Magnetron Sputtered Diamond-Like Carbon

机译:磁控溅射类金刚石碳改善火花阳极氧化钛的摩擦学性能

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Spark-anodization of titanium can produce adherent and wear-resistant TiO2 film on the surface, but the spark-anodized titanium has lots of surface micro-pores, resulting in an unstable and high friction coefficient against many counterparts. In this study, the diamond-like carbon (DLC) was introduced into the micro-pores of spark-anodized titanium by the magnetron sputtering technique and a TiO2/DLC composite coating was fabricated. The microstructure and tribological properties of TiO2/DLC composite coating were investigated and compared with the anodic TiO2 mono-film and DLC mono-film. Results show that the DLC deposition significantly decreased the surface roughness and porosity of spark-anodized titanium. The fabricated TiO2/DLC composite coating exhibited a more stable and much lower friction coefficient than anodic TiO2 mono-film. Although the friction coefficient of the composite coating and the DLC mono-film was similar under both light load and heavy load conditions, the wear life of the composite coating was about 43% longer than that of DLC mono-film under heavy load condition. The wear rate of titanium with protective composite coating was much lower than that of titanium with DLC mono-film. The superior low friction coefficient and wear rate of the TiO2/DLC composite coating make it a good candidate as protective coating on titanium alloys.
机译:钛的火花阳极氧化可在表面产生附着且耐磨的TiO2膜,但火花阳极氧化的钛具有许多表面微孔,从而导致与许多对应物的不稳定和高摩擦系数。在这项研究中,通过磁控溅射技术将类金刚石碳(DLC)引入火花阳极氧化的钛的微孔中,并制备了TiO2 / DLC复合涂层。研究了TiO2 / DLC复合涂层的微观结构和摩擦学性能,并与阳极TiO2单层膜和DLC单层膜进行了比较。结果表明,DLC沉积显着降低了火花阳极氧化钛的表面粗糙度和孔隙率。制成的TiO2 / DLC复合涂层比阳极TiO2单层膜具有更稳定的摩擦系数。尽管在轻载和重载条件下复合涂层和DLC单层膜的摩擦系数相似,但在重载条件下,复合涂层的磨损寿命比DLC单层膜长约43%。具有保护性复合涂层的钛的磨损率远低于具有DLC单膜的钛的磨损率。 TiO2 / DLC复合涂层优异的低摩擦系数和磨损率使其成为钛合金保护涂层的理想选择。

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