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Study of the Influence of the Interactions between Wax Particles and Surfaces on the Properties of Thin Lubricating Films in a High-Pressure Contact

机译:蜡颗粒与表面相互作用对高压接触薄润滑膜性能影响的研究

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Wax dispersions have been recently developed as lubricants because they combine good cooling and lubricating capabilities. To improve their effectiveness, the understanding of the lubrication mechanisms must be detailed. The rheological behavior of wax dispersions was studied and revealed the interactions between particles and their spatial organization within water. The effect of both the size and the concentration of particles was assessed. Moreover, the mechanisms of the thin-films formation in a brass contact have been investigated with an elastohydrodynamic tribometer. The simultaneous measurement of the friction coefficient and film thickness determines the growth kinetics of the boundary films and shows the role of the particles/surfaces interactions. Surface analyses were carried out to determine the nature of the interactions between the particles and the surfaces. The results indicate that particles with high affinity with metal surfaces form thin shear-resistant films.
机译:蜡分散体最近被开发为润滑剂,因为它们结合了良好的冷却和润滑能力。为了提高其有效性,必须详细了解润滑机理。研究了蜡分散体的流变行为,揭示了颗粒之间的相互作用及其在水中的空间组织。评估了颗粒大小和浓度的影响。此外,已经用弹性流体动力学摩擦计研究了黄铜接触中薄膜形成的机理。摩擦系数和膜厚度的同时测量决定了边界膜的生长动力学,并显示了颗粒/表面相互作用的作用。进行表面分析以确定颗粒和表面之间相互作用的性质。结果表明,与金属表面具有高亲和力的颗粒形成了薄的抗剪切膜。

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