首页> 外文期刊>Scientific reports. >Salt templated and graphene nanoplatelets draped copper (GNP-draped-Cu) composites for dramatic improvements in pool boiling heat transfer
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Salt templated and graphene nanoplatelets draped copper (GNP-draped-Cu) composites for dramatic improvements in pool boiling heat transfer

机译:盐模板和石墨烯纳米片覆盖铜(GNP-覆盖-Cu)复合材料,用于池沸腾热转移的剧烈改善

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摘要

We demonstrate a novel technique to achieve highly surface active, functional, and tunable hierarchical porous coated surfaces with high wickability using a combination of ball milling, salt-templating, and sintering techniques. Specifically, using ball-milling to obtain graphene nanoplatelets (GNP) draped copper particles followed by salt templated sintering to induce the strength and cohesiveness to the particles. The salt-templating method was specifically used to promote porosity on the coatings. A systematic study was conducted by varying size of the copper particles, ratio of GNP to copper particles, and process parameters to generate a variety of microporous coatings possessing interconnected pores and tunnels that were observed using electron microscopy. Pool boiling tests exhibited a very high critical heat flux of 289?W/cm2 at a wall superheat of just 2.2?°C for the salt templated 3 wt% GNP draped 20?μm diameter copper particles with exceedingly high wicking rates compared to non-salt-templated sintered coatings. The dramatic improvement in the pool boiling performance occurring at a very low surface temperature due to tunable surface properties is highly desirable in heat transfer and many other engineering applications.
机译:我们展示了一种新颖的技术,用于使用球磨,盐模板和烧结技术的组合实现具有高变质性的高表面活性,功能和可调谐的分层多孔涂覆表面。具体地,使用球磨用于获得石墨烯纳米片(GNP)覆盖的铜颗粒,然后是盐模板烧结,以诱导颗粒的强度和粘结性。盐模板方法专门用于促进涂层上的孔隙率。通过改变铜颗粒的大小,GNP与铜颗粒的比例进行系统研究,以及工艺参数,以产生具有使用电子显微镜观察到的相互连接的孔隙和隧道的多种微孔涂层。池沸点测试在壁过热的情况下表现出非常高的临界热通量,在289°C的壁上过热,仅为2.2Ω·℃,盐模板3wt%GNP悬垂的20?μm直径的铜颗粒,与非芯片相比具有极高的芯率。盐模板烧结涂料。由于可调谐表面特性而在非常低的表面温度下发生的池沸腾性能的显着改善是高望值的热传递和许多其他工程应用。

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