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首页> 外文期刊>Journal of Materials Engineering and Performance >Effects of Carbon Allotropic Forms on Microstructure and Thermal Properties of Cu-C Composites Produced by SPS
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Effects of Carbon Allotropic Forms on Microstructure and Thermal Properties of Cu-C Composites Produced by SPS

机译:碳同素异形形式对SPS生产的Cu-C复合材料微观结构和热性能的影响

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摘要

Combination of extreme service conditions and complex thermomechanical loadings, e.g., in electronics or power industry, requires using advanced materials with unique properties. Dissipation of heat generated during the operation of high-power electronic elements is crucial from the point of view of their efficiency. Good cooling conditions can be guaranteed, for instance, with materials of very high thermal conductivity and low thermal expansion coefficient, and by designing the heat dissipation system in an accurate manner. Conventional materials such as silver, copper, or their alloys, often fail to meet such severe requirements. This paper discusses the results of investigations connected with Cu-C (multiwall carbon nanotubes (MWNTs), graphene nanopowder (GNP), or thermally reduced graphene oxide (RGO)) composites, produced using the spark plasma sintering technique. The obtained composites are characterized by uniform distribution of a carbon phase and high relative density. Compared with pure copper, developed materials are characterized by similar thermal conductivity and much lower values of thermal expansion coefficient. The most promising materials to use as heat dissipation elements seems to be copper-based composites reinforced by carbon nanotubes (CNTs) and GNP.
机译:极端服务条件和复杂的热机械载荷的结合,例如在电子或电力工业中,需要使用具有独特性能的先进材料。从高效率电子元件的效率的观点来看,其散热至关重要。例如,可以使用导热系数非常高且热膨胀系数很低的材料,以及通过精确设计散热系统,来确保良好的冷却条件。诸如银,铜或它们的合金之类的常规材料经常不能满足如此严格的要求。本文讨论了与使用火花等离子体烧结技术生产的Cu-C(多壁碳纳米管(MWNTs),石墨烯纳米粉(GNP)或热还原氧化石墨烯(RGO))复合材料相关的研究结果。所获得的复合材料的特征在于碳相的均匀分布和较高的相对密度。与纯铜相比,已开发的材料具有相似的导热率和低得多的热膨胀系数值。用作散热元件的最有前途的材料似乎是由碳纳米管(CNT)和GNP增强的铜基复合材料。

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