首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >EXPERIMENTAL STUDY OF DRAG REDUCTION ON SUPERHYDROPHOBIC SURFACES USING QUARTZ CRYSTAL MICROBALANCE (QCM)
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EXPERIMENTAL STUDY OF DRAG REDUCTION ON SUPERHYDROPHOBIC SURFACES USING QUARTZ CRYSTAL MICROBALANCE (QCM)

机译:石英晶体微稳压(QCM)对超疏水表面减少减阻的实验研究

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A durable superhydrophobic coating formulation with epoxy binder thermoset was used to coat on surfaces, which provide high quality for corrosion protection, reduced biofouling and improved hydrodynamic behavior. The single and double layers coating of these nanostructured epoxy were fabricated and coated on a novel quartz crystal microbalance (QCM) technique to investigate their hydrophobic properties. Different static and dynamic wettability were obtained and characterized by evaluating the electrical impedance of QCM coated with nanostructured epoxy in air and DI water. It was found that QCM is able to quantitatively characterize the hydrophobicity of these nanostructured polymer surfaces. For double layer coating, the frequency shift in DI water was smaller in comparison to the single layer one. The reduction in mechanical impedance of QCM clearly demonstrates the effect of enhanced hydrophobicity for both single and double layers. The experimental results show that the hydrophobic surface resulted in smaller mechanical impedance loading, while the hydrophilic surface exerted much larger mechanical impedance. The outcome of this research will build a solid foundation for the further improvement of vehicles coated with superhydrophobic surfaces operating in water and increased equipment life.
机译:使用环氧粘合剂热固性件的耐用的超疏水涂料配方在表面上涂上表面,为腐蚀保护提供高质量,减少生物污垢和改善的流体动力学行为。制造这些纳米结构环氧树脂的单层和双层涂层并涂覆在新型石英晶体微稳定(QCM)技术上,以研究其疏水性质。通过在空气和二水中评价涂覆纳米结构环氧树脂的QCM的电阻抗来获得不同的静态和动态润湿性。发现QCM能够定量表征这些纳米结构聚合物表面的疏水性。对于双层涂层,与单层1相比,DI水的频移较小。 QCM机械阻抗的降低清楚地证明了单层和双层的增强疏水性的影响。实验结果表明,疏水表面导致机械阻抗负荷较小,而亲水表面施加了更大的机械阻抗。该研究的结果将为进一步改善涂有水中的超疏水表面和增加设备寿命的载体的进一步改善奠定了坚实的基础。

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