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Impact of water on the lubricating properties of hexadecane at the nanoscale

机译:水的润滑性能的影响十六烷在纳米尺度上

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摘要

Fluid lubricants are routinely used to reduce friction in a wide range of applications, from car engines to machinery and hard-disk drives. However, their efficiency can be significantly influenced by the ambient conditions they are exposed to, in particular humidity. Our understanding of the molecular mechanisms responsible for the well-documented impact of water on lubrication remains limited, hindering the improvement of tribological formulations. Here, we use Atomic Force Microscopy (AFM) and shear force spectroscopy to investigate the structural and dynamical behaviour of a model lubricant, hexadecane, confined between an AFM probe and a hydrophilic mica surface at different temperatures and humidities. We show that both the nanoscale structure and the tribological behaviour of the system are dominated by the nucleation of water nanodroplets at the interface. The process is favoured at higher temperature and can be explained with classical nucleation theory whereby the droplets become stable when larger than 20 nm to 50 nm size, depending on the ambient conditions. Below this threshold, a molecularly thin film of water molecules coats the surface uniformly. Highly localised shear measurements demonstrate a detrimental impact of the nanodroplets on shear with a twofold increase in the lubricated friction force. However, this can be mitigated by the adjunction of an amphiphilic additive, here oleic acid.
机译:液体润滑剂是经常用来减少摩擦在范围广泛的应用程序中,汽车发动机机械和硬盘驱动器。然而,他们的效率可以显著受到环境条件的影响接触,特别是湿度。对分子机制的理解负责记录的影响水润滑仍然有限,阻碍摩擦学的配方的改进。在这里,我们使用原子力显微镜(AFM)和剪切力光谱学调查一个模型的结构和动力学行为之间的润滑剂,十六烷,在AFM探测器和一个亲水云母表面在不同温度和湿度。纳米结构和摩擦学的系统的行为是主导的水液滴成核接口。温度与古典可以解释成核理论,水滴稳定当大于20到50 nm大小,这取决于环境条件。阈值,一个分子薄膜的水分子层表面均匀。局部剪切测量证明液滴的剪切产生不利影响增加两倍润滑摩擦力。两亲性添加剂的添加油酸。

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