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Microstructure and Wettability on the Elytral Surface of Aquatic Beetle

机译:水生甲虫鞘翅表面上的微观结构和润湿性

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The microstructures on elytral surface of aquatic beetles belonging to Hydrophilidae and Dytiscidae were observed under an environment scanning microscope, and the wettabilities were determined with an optical contact angle meter. The results show the elytral surfaces are relatively smooth compared to the structures of other insects such as the butterfly wing scales or cicada wing protrusions. They exhibit a polygonal structuring with grooves and pores being the main constituent units. The contact angles (CAs) range from 47.1° to 82.1°. The advancing and receding angles were measured by injecting into and withdrawing a small amount of water on the most hydrophilic (with a contact angle of 47.1°) and hydrophobic (with a contact angle of 82.1°) elytral surfaces, which illustrates the vital role of three-phase contact line (TCL) in the wetting mechanism of aquatic beetle elytral surfaces.
机译:在环境扫描显微镜下观察到属于疏水性和Dytiscidae的水生甲虫的鞘翅目表面的微观结构,并用光学接触角计确定湿润。结果表明,与其他昆虫的结构相比,Elytral表面相对平滑,例如蝴蝶翼鳞片或蝉翼翼突起。它们表现出具有凹槽和孔的多边形结构是主要的构成单元。接触角(CAS)范围为47.1°至82.1°。通过在最亲水的(接触角为47.1°的接触角)和疏水(具有82.1°的接触角)的植物表面上来测量推进和后退角度来测量并取出少量水,这表示了表现出至关重要的作用水生甲虫植物表面的润湿机制中的三相接触线(TCL)。

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