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Exploring an alternative aqueous lubrication concept for biomedical applications: Hydration lubrication based on O/W emulsions combined with graphene oxide

机译:探索生物医学应用的替代性水润滑概念:基于O / W乳液和氧化石墨烯的水合润滑

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摘要

Water-based lubrication concepts are of high interest for applications that require friction and wear control in a bio-medical environment. In this work, a concept of aqueous lubrication is presented based on hydration of surface active polymers combined with graphene oxide. Three different kinds of surface-active polymers with or without graphene oxide were coated on a CoCrMo alloy surface, and the samples were characterized by ATR and XPS. Hydration lubrication was created from a tailored oil-in-water (O/W) emulsion. Enhanced friction reducing capability was found for the polymeric coatings in combination with graphene oxide. The tribological behaviour of a PEG-lactide coating in emulsion was better than that of PEG coating, indicating the advantage of using hydrophilic and lipophilic group containing surface-active polymers for emulsion lubrication. The overall maximum reduction in friction that was achieved for a sliding contact of coated engineering surfaces from CoCrMo at low sliding velocity and moderate contact pressure was of about 63% compared to uncoated CoCrMo sliding in water at the same operational conditions.
机译:对于需要在生物医学环境中进行摩擦和磨损控制的应用,水基润滑概念倍受关注。在这项工作中,提出了一种基于表面活性聚合物与氧化石墨烯的水合作用的水润滑概念。将三种不同类型的带有或不带有氧化石墨烯的表面活性聚合物涂在CoCrMo合金表面上,并通过ATR和XPS对样品进行表征。水合润滑是由量身定制的水包油(O / W)乳液产生的。发现与氧化石墨烯组合的聚合物涂层增强的降低摩擦的能力。乳液中PEG-丙交酯涂层的摩擦学性能优于PEG涂层,这表明使用含有亲水性和亲脂性基团的表面活性聚合物进行乳液润滑的优势。与在相同工作条件下在水中滑动的未涂层CoCrMo相比,在低滑动速度和适度的接触压力下与CoCrMo进行涂层工程表面的滑动接触所实现的总摩擦最大降低量约为63%。

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