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Electrically Conductive Olephobic Micro-patterned Surface for Reducing Shear Adhesion of Frozen Oils

机译:导电疏油微图案表面,可降低冷冻油的剪切粘附力

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In this work, we reported the fabrication of electrically conductive and superoleophobic micropillars and the way to use them to provide surface heating to reduce the frozen oil adhesion force. Results showed that the resistance was reduced with the increasing of Ag flakes because of Ag flakes covered the micropillars forming conductive path ways. As a result, the oleophobicity was weakened by the increased coating density of Ag flakes. The preliminary results showed that the frozen oil adhesion can be reduced remarkably on high resistance sample after applied 1 A current comparing with obtained knock-off forces on samples with smaller resistance. A rough correlation between resistance and knock-off forces was obtained that the knock-off forces increased with the decreasing resistance.
机译:在这项工作中,我们报道了导电和超疏油性微柱的制造以及使用它们提供表面加热以降低冷冻油的附着力的方法。结果表明,电阻率随着银片的增加而降低,因为银片覆盖了微柱,形成了导电路径。结果,由于Ag薄片的涂层密度增加,疏油性减弱。初步结果表明,与在较小电阻的样品上获得的敲除力相比,在施加1 A电流后,高电阻样品的冷冻油附着力可以显着降低。阻力与仿制力之间存在大致的相关关系,即仿制力随阻力的减小而增加。

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