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首页> 外文期刊>Nanoscale and microscale thermophysical engineering >MATERIALS, FABRICATION, AND MANUFACTURING OF MICRO/NANOSTRUCTURED SURFACES FOR PHASE-CHANGE HEAT TRANSFER ENHANCEMENT
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MATERIALS, FABRICATION, AND MANUFACTURING OF MICRO/NANOSTRUCTURED SURFACES FOR PHASE-CHANGE HEAT TRANSFER ENHANCEMENT

机译:用于相变传热的微/微结构化表面的材料,制造和制造

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摘要

This article describes the most prominent materials, fabrication methods, and manufacturing schemes for micro- and nanostructured surfaces that can be employed to enhance phase-change heat transfer phenomena. The numerous processes include traditional microfabrication techniques such as thin-film deposition, lithography, and etching, as well as template-assisted and template-free nanofabrication techniques. The creation of complex, hierarchical, and heterogeneous surface structures using advanced techniques is also reviewed. Additionally, research needs in the field and future directions necessary to translate these approaches from the laboratory to high-performance applications are identified. Particular focus is placed on the extension of these techniques to the design of microanostructures for increased performance, manufacturability, and reliability. The current research needs and goals are detailed, and potential pathways forward are suggested.
机译:本文介绍了可用于增强相变传热现象的微结构和纳米结构表面的最杰出的材料,制造方法和制造方案。众多工艺包括传统的微加工技术,例如薄膜沉积,光刻和蚀刻,以及模板辅助和无模板的纳米加工技术。还回顾了使用先进技术创建复杂,分层和异构表面结构的过程。此外,还确定了将这些方法从实验室转变为高性能应用所需的领域研究需求和未来方向。特别关注这些技术对微/纳米结构设计的扩展,以提高性能,可制造性和可靠性。详细说明了当前的研究需求和目标,并提出了潜在的发展途径。

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