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Isotropic thermal expansion in anisotropic thermal management composites filled with carbon fibres and graphite

机译:各向异性热管理复合材料中的各向同性热膨胀,填充有碳纤维和石墨

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摘要

Light materials with high thermal conductivity and low thermal expansion have a wide application potential for the thermal management of high-performance electronics, in particular in mobile and aerospace applications. We present here metal matrix composites with a mixture of graphite flakes and pitch-based carbon fibres as filler. The production by spark plasma sintering orients the filler particles on to a plane perpendicular to the pressing axis. The obtained materials have lower density than aluminium combined with a thermal conductivity significantly outperforming the used metal matrix. Depending on the ratio of the filler components, a low thermal expansion along the pressing direction (high graphite flakes content) or across the pressing direction (high carbon fibre content) is achieved. For a 1:3 ratio of carbon fibres to graphite, we measured an isotropic reduction of the thermal expansion of the matrix by up to 55%. We present a detailed characterisation of composites with two aluminium alloys as matrix and an overview of the properties for six different metal matrices including magnesium and copper. With the goal of a technical application, we show that the described properties are intrinsic to the material compositions and are achieved with a wide spectrum of production methods.
机译:具有高导热率和低热膨胀的轻型材料具有广泛的应用潜力,适用于高性能电子设备的热管理,特别是在移动和航空航天应用中。我们在此提供金属基质复合材料,其具有石墨片和沥青基碳纤维的混合物作为填料。通过火花等离子体烧结或者将填料颗粒的生产置于垂直于压制轴的平面上。所得材料的密度低于铝,与热导率显着优于使用过的金属基质。取决于填料组分的比率,实现沿着按压方向(高石墨薄片含量)或跨越按压方向(高碳纤维含量)的低热膨胀。对于1:3的碳纤维与石墨的比例,我们测量了基质的热膨胀的各向同性降低至多55%。我们介绍了具有两个铝合金作为矩阵的复合材料的详细表征,以及六种不同金属基质的性质的概述,包括镁和铜。通过技术应用的目的,我们表明所描述的性质是材料组合物的内在,并且通过广泛的生产方法实现。

著录项

  • 来源
    《Journal of Materials Science》 |2018年第15期|共10页
  • 作者单位

    Free Univ Berlin Dept Phys Arnimallee 14 D-14195 Berlin Germany;

    Vienna Univ Technol Inst Chem Technol &

    Analyt Getreidemarkt 9-164-CT A-1060 Vienna Austria;

    CNRS Inst Solid State Chem Bordeaux 87 Ave Docteur Albert Schweitzer F-33608 Pessac France;

    Free Univ Berlin Dept Phys Arnimallee 14 D-14195 Berlin Germany;

    CNRS Inst Solid State Chem Bordeaux 87 Ave Docteur Albert Schweitzer F-33608 Pessac France;

    Vienna Univ Technol Inst Chem Technol &

    Analyt Getreidemarkt 9-164-CT A-1060 Vienna Austria;

    Free Univ Berlin Dept Phys Arnimallee 14 D-14195 Berlin Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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