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首页> 外文期刊>Archives of Metallurgy and Materials >COPPER-CARBON NANOFORMS COMPOSITES - PROCESSING, MICROSTRUCTURE AND THERMAL PROPERTIES
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COPPER-CARBON NANOFORMS COMPOSITES - PROCESSING, MICROSTRUCTURE AND THERMAL PROPERTIES

机译:铜 - 碳纳米染料复合材料 - 加工,微观结构和热性能

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The main current of publication is focused around the issues and problems associated with the formation of composite materials with Cu matrix and reinforcing phases in the various carbon nanoforms. The core of the research has been focused on thermal conductivity of these composites types. This parameter globally reflects the state of the structure, quality of raw materials and the technology used during the formation of composite materials. Vanishingly low affinity of copper for carbon, multilayered forms of graphene, the existence of critical values of graphene volume in the composite are not conducive to the classic procedures of composites designing. As a result, the expected, significant increase in thermal conductivity of composites is not greater than for pure copper matrix. Present paper especially includes: (i) data of obtaining procedure of copper/graphene mixtures, (ii) data of sintering process, (iii) the results of structure investigations and of thermal properties. Structural analysis revealed the homogenous distribution of graphene in copper matrix, the thermal analysis indicate the existence of carbon phase critical concentration, where improvement of thermal diffusivity to pure copper can occur.
机译:出版物的主要电流集中在与Cu基质形成复合材料和各种碳纳米型中的增强相相关的问题和问题。该研究的核心专注于这些复合材料类型的热导率。该参数全球反映了结构的结构,原材料质量和在形成复合材料期间使用的技术。对于碳,多层形式的石墨烯的铜存在较低,复合材料中石墨烯体积临界值的存在不利于复合材料设计的经典程序。结果,复合材料的热导率的预期显着增加不大于纯铜基质。本文特别包括:(i)获得铜/石墨烯混合物的程序的数据,(ii)烧结过程的数据,(iii)结构研究和热性能的结果。结构分析显示石墨烯在铜基中的均匀分布,热分析表明存在碳相临界浓度的存在,从而可以发生对纯铜的热扩散率的提高。

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