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Exploiting air cushion effects to optimise a superhydrophobic/hydrophilic patterned liquid ring sealed air bearing

机译:利用气垫效应,优化超疏水/亲水图案化液环密封空气轴承

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摘要

A thrust bearing consisting of an air cushion formed within a liquid ring has been developed, which takes advantage of the Laplace pressure induced by the liquid/air surface tension. As forces induced by Laplace pressure and surface tension scales down much more slowly than gravity and inertial forces, such a bearing has great potential when scaled down to the micro-scale. The liquid ring between the rotor and the stator of the bearing is anchored there by alternating hydrophilic and superhydrophobic patterns. An important discovery is that the performance of this bearing is greatly enhanced by the sealed cushion of air within the ring. This air cushion and thin liquid ring arrangement mean that the solid/solid contact of the bearing is replaced by solid/air and solid/liquid contact which significantly reduces the friction and wear. The factors which affects the performance of the bearing have been studied both experimentally and numerically providing results that can be used to optimise the design of this new type of bearing.
机译:已经开发出由形成在液环内的气垫组成的推力轴承,其利用由液体/空气表面张力引起的拉普拉斯压力。随着拉普拉斯压力和表面张力引起的力比重力和惯性力更慢地缩小得分,这种轴承在缩小到微尺度时具有很大的潜力。转子和轴承的定子之间的液环通过交替亲水和超疏水模式锚固在那里。重要的发现是,通过戒指内的空气的密封垫极大地增强了这种轴承的性能。这种气垫和薄的液体环布置是指轴承的固体/固体接触由固体/空气和固体/液体接触代替,从而显着降低了摩擦和磨损。通过实验和数值提供了影响轴承性能的因素,可以使用可用于优化这种新型轴承的设计。

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