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Tribological performance of microstructured surfaces with different wettability from superhydrophilic to superhydrophobic

机译:超水分润湿性与超疏水的微结构化表面的摩擦学性能

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摘要

The anti-friction function of superwetting surfaces with superhydrophobicity has been demonstrated. However, the influence regularity of wettability to tribological performance, and the underlying mechanism are still unclear. Here, two kinds of microstructured surfaces with different wettability are fabricated on the substrate of steel by controlling surface chemical compositions. The water contact angles on these surfaces range from 0° to 151°. The ball-plate tribological tests are performed under water lubrication. The results show that the tribological performance is closely related to surface wettability. The friction coefficient increases with the increase of contact angles when the surfaces are hydrophilic rather than superhydrophilic. In contrast, the friction coefficient on the hydrophobic surfaces decreases with the increase of contact angles. Furthermore, the best anti-friction capability is obtained on the superhydrophobic surfaces, and the anti-friction mechanism is elucidated. The lowest friction coefficient was 0.12 under the load of 10 N. This work provides strong evidence of an association between tribological property and wettability, which may inspire the fabrication and application of special wetting surfaces in friction control.
机译:已经证明了具有超疏水性的​​过度雨刷表面的抗摩擦功能。然而,对摩擦学性能的润湿性的影响规律以及潜在机制仍然不清楚。这里,通过控制表面化学组合物在钢的基板上制造具有不同润湿性的两种微结构化表面。这些表面上的水接触角范围为0°至151°。球板摩擦试验在水润滑下进行。结果表明,摩擦学性能与表面润湿性密切相关。当表面亲水而不是过性的时,摩擦系数随着接触角的增加而增加。相反,疏水表面上的摩擦系数随着接触角的增加而降低。此外,在超疏水表面上获得最佳的抗摩擦能力,并阐明抗摩擦机制。在10 N的负荷下,最低摩擦系数为0.12.这项工作提供了有关摩擦学性质和润湿性之间的关联的强有力证据,这可能会激发特殊润湿表面在摩擦控制中的制造和应用。

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