首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >A comparative study of the morphology and wetting characteristics of microanostructured Cu surfaces for phase change heat transfer applications
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A comparative study of the morphology and wetting characteristics of microanostructured Cu surfaces for phase change heat transfer applications

机译:相变传热应用中微/纳米结构铜表面形貌和润湿特性的比较研究

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摘要

A comparative study of oxidation methods to create Cu surfaces with controlled wettability is reported. Microanostructures of Cu oxides are formed on Cu substrates using different chemical and thermal oxidation methods. The morphology and wetting characteristics of the resulting surfaces are characterized using atomic force microscopy, scanning electron microscopy, X-ray diffraction, and contact angle measurements. Chemical oxidation in alkali solutions can form uniform copper oxide layers with high roughness factors without causing thermal stress problems that often hamper thermal oxidation. By combining chemical oxidation with a hydrophobic coating, a wide range of wettability control is demonstrated from superhydrophilic (θ_a<10°) to superhydrophobic (θ_a>170°). Superhydrophilic CuO layers uniformly formed on Cu powder and Cu micropost wick surfaces lead to significant improvement in the capillary and heat transfer performance compared with comparable unoxidized Cu wicks. The present work motivates further studies to exploit the benefits of nanostructured Cu surfaces in various phase change heat transfer applications.
机译:据报道,对用氧化方法制造具有可控润湿性的铜表面的方法进行了比较研究。使用不同的化学和热氧化方法在铜基板上形成铜氧化物的微观/纳米结构。使用原子力显微镜,扫描电子显微镜,X射线衍射和接触角测量来表征所得表面的形貌和润湿特性。碱溶液中的化学氧化可形成具有高粗糙度因子的均匀氧化铜层,而不会引起经常妨碍热氧化的热应力问题。通过将化学氧化与疏水涂层相结合,证明了从超亲水性(θ_a<10°)到超疏水性(θ_a> 170°)的广泛润湿性控制。与相当的未氧化的铜芯相比,均匀地形成在铜粉和铜微柱芯表面上的超亲水性CuO层可显着改善毛细管和传热性能。本工作激发了进一步的研究,以利用纳米结构的铜表面在各种相变传热应用中的优势。

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