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Nano-textured surfaces using hybrid micro- and nano-materials for efficient water cooling

机译:纳米纹理表面使用混合的微米和纳米材料进行有效的水冷

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Water cooling heat transfer was enhanced by texturing the heated surface with various micro- and nano-materials. The increased surface area by texturing facilitated not only enhanced convection, but also turbulent mixing, which increased the effective heat-transfer coefficient. A heated copper substrate was textured with electroplated copper oxide, sprayed silver nanowire, or sprayed copper micro-particles. Sprayed micro-particles were subsequently nano-textured by sand blasting with kanthal (Mo2Si) nanoparticles. Because of the extremely high hardness of kanthal, sand blasting dimpled the surface to increase the total surface area. Optimal texturing was identified for each material. Hybrid cases combining two different texturing materials were also investigated. All cases were quantitatively compared and that with the highest effective heat transfer was identified. Texturing materials were characterized by scanning electron microscopy and X-ray diffraction. The coating methods are simple, rapid, and scalable and may be cost-effective texturing schemes for various electronics cooling applications. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过使用各种微米和纳米材料对受热表面进行纹理化处理,可以增强水冷换热。通过纹理化增加的表面积不仅有助于增强对流,还有助于湍流混合,从而增加了有效的热传递系数。用电镀的氧化铜,喷涂的银纳米线或喷涂的铜微粒对加热的铜基板进行纹理处理。随后将喷洒的微粒与kanthal(Mo2Si)纳米粒子进行喷砂处理,制成纳米纹理。由于kanthal的极高硬度,喷砂处理会使表面凹陷,从而增加了总表面积。确定每种材料的最佳纹理。还研究了结合两种不同纹理材料的混合案例。对所有情况进行了定量比较,并确定了有效传热最高的情况。通过扫描电子显微镜和X射线衍射表征织构材料。涂覆方法简单,快速且可扩展,并且对于各种电子设备冷却应用而言,可能是经济高效的纹理化方案。 (C)2018 Elsevier Ltd.保留所有权利。

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