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Investigation and improvement of atomization efficiency based on SAW device coated with amorphous fluoropolymer film for olfactory display

机译:基于嗅觉显示的非晶态含氟聚合物薄膜表面声波器件雾化效率的研究与改进

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摘要

This paper reports on a method to realize the instant and high-efficiency atomization for liquid perfumes in an olfactory display system using surface acoustic wave device coated with amorphous fluoropolymer film. The liquid perfumes diluted with ethanol tend to spread into a thin film on LiNbO3substrate before atomization, which causes low atomization efficiency and serious smell persistence. The proposed method employs a layer of 400 nm thick amorphous fluoropolymer film Cytop on SAW substrate to maintain the droplet’s sphere-like shape due to the excellent hydrophobicity. Amino-based silane coupling agent was used to enhance the adhesion. The difference of atomization process between hydrophilic and hydrophobic surfaces was clearly revealed. With the finer and more stable mists being generated on coated surface, the significant improvement of atomization efficiency was demonstrated. Sensory test results on three liquid perfumes show that the smell persistence was greatly reduced after the coating.
机译:本文报道了一种使用涂有非晶态含氟聚合物薄膜的声表面波器件在嗅觉显示系统中实现液体香水即时高效雾化的方法。用乙醇稀释的液体香料在雾化前倾向于在LiNbO3基材上扩散成薄膜,这导致雾化效率低和严重的气味持久性。所提出的方法在SAW衬底上使用了400 nm厚的非晶态含氟聚合物薄膜Cytop层,由于其出色的疏水性,可保持液滴的球形形状。使用基于氨基的硅烷偶联剂来增强粘附力。清楚地揭示了亲水性表面和疏水性表面之间的雾化过程的差异。随着在涂层表面上产生更细,更稳定的雾气,雾化效率得到了显着提高。对三种液体香水的感官测试结果表明,包衣后气味持久性大大降低。

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