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Heat transfer properties of Morpho butterfly wings and the dependence of these properties on the wing surface structure

机译:Morpho蝴蝶翅膀的传热性质及这些性质对机翼表面结构的依赖性

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摘要

The heat transfer properties of a material strongly rely on its surface structure. The wings of the Morpho butterfly have a unique surface structure with features of order and disorder. In this work, the surface temperature and radiative heat flux of Morpho butterfly wings with structural colour when a ceramic heater attached to the opposite surface of the wings was heated to 250 degrees C were evaluated in terms of their heat transfer properties. Morpho menelaus butterfly (MM) wings and Cithaerias (CE) wings with no periodic structure on their surface, were used as samples. The MM wings had higher surface temperature and radiative heat flux than the CE wings, which is the first report of heat transfer properties of the wings. The surface structure of the MM wings was changed by heat treatment in order to investigate the effect of the surface structural change on their heat transfer properties. The treatment changed the colour of the wings to red and brown, distorting the periodic structure. The radiative heat flux increased due to the change in the structure on their surface. XPS spectra revealed that the treatment leads to a slight change in the chemical structure of the wings. The spectral analyses results showed there was no obvious change in the mid-infrared absorbance. The heat radiative properties of the MM wings were strongly influenced by the surface structural changes due to the heat treatment.
机译:材料的热传递特性强烈依赖其表面结构。 Morpho Butterfly的翅膀具有独特的表面结构,具有订单和紊乱的特征。在这项工作中,根据其热传递性能评价当加热到翅膀的相对表面的陶瓷加热器时,Morpho蝶形翼的表面温度和辐射热通量用结构颜色被加热至250℃。 Morpho Menelaus蝴蝶(mm)翅膀和鞋面(Ce)表面上没有周期性结构的翅膀,用作样品。 MM翼的表面温度和辐射热通量高于CE翅膀,这是翼的传热特性的第一报告。通过热处理改变MM翼的表面结构,以研究表面结构变化对其传热性质的影响。治疗改变了翅膀的颜色,以红色和棕色,扭曲了周期性的结构。由于它们表面上结构的变化,辐射热通量增加。 XPS光谱显示,处理导致翅膀的化学结构略有变化。光谱分析结果显示中红外吸光度没有明显的变化。由于热处理,MM翼的热辐射性能受到表面结构变化的强烈影响。

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  • 来源
    《RSC Advances》 |2020年第5期|共5页
  • 作者单位

    Nagoya Inst Technol Dept Life Sci &

    Appl Chem Showa Ku Gokiso Cho Nagoya Aichi 4668555 Japan;

    Nagoya Inst Technol Dept Life Sci &

    Appl Chem Showa Ku Gokiso Cho Nagoya Aichi 4668555 Japan;

    Nagoya Inst Technol Dept Life Sci &

    Appl Chem Showa Ku Gokiso Cho Nagoya Aichi 4668555 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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