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Thermophysical properties and microstructure of short carbon fibre reinforced Cu-matrix composites made by electroless copper coating or powder metallurgical route respectively

机译:通过化学铜涂层或粉末冶金途径制造的短碳纤维增强Cu - 基质复合材料的热理性质和微观结构

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C fibre reinforced Cu matrix composites have the interesting properties of Cu, i.e. thermal and electrical conductivities, but the properties of the C fibre, i.e. small CTE, dominate mechanical behaviour. As desired composite properties can be obtained by selecting the amount and type of C fibres, it is suitable for electronic applications such as special heat sinks. Cu matrix composites with high conducting short fibres are a promising research field. Short C fibre reinforced Cu composites were made by hot-pressing of Cu coated C fibres chopped into different lengths (60 /spl mu/m-2 mm). By using electroless Cu coating-based production, a good fibre distribution in the matrix and good interfacial contact were obtained. The fibre length distribution strongly influences composite properties. During hot pressing, the C fibres take on a preferred orientation in a plane perpendicular to the hot pressing direction. Within this plane, fibre orientation is random. C fibre volume content was varied in a 38-64 vol.% range. The composite microstructures were studied by SEM and optical microscopy. Measured thermal conductivity and CTE were compared with microstructural results and results from mathematical models. The composites have thermal conductivity of about 250-300 W/mK in two dimensions and about 140 W/mK in the third dimension. The CTE can be tailored in a range of 4-10 ppm/K by changing the C fibre content. The relatively low density of 4-6 g/cm/sup 3/ is also important where weight reduction is desired. The results are compared with composites produced by powder metallurgical methods and those made with low conducting short C fibres.
机译:C纤维增强Cu基质复合材料具有Cu,即热和电导率的有趣性质,但是C光纤的性质,即小型CTE,主导机械行为。作为所需的复合性能,可以通过选择C纤维的量和类型来获得,适用于特殊散热器的电子应用。具有高导电短纤维的Cu基质复合材料是一个有前途的研究领域。通过切碎成不同长度的Cu涂覆的C纤维(60 / SPL mu / m-2mm),通过热压Cu涂覆的C纤维进行短C纤维增强Cu复合材料。通过使用基于化学型Cu涂层的生产,获得了基质和良好的界面接触中的良好纤维分布。纤维长度分布强烈影响复合性能。在热压期间,C纤维在垂直于热压方向的平面中取出优选取向。在该平面内,纤维方向是随机的。 C纤维体积含量在38-64体积%中变化。%范围。通过SEM和光学显微镜研究复合微结构。将测量的导热率和CTE与微结构结果进行比较,以及数学模型的结果。复合材料具有约250-300W / mk的导热率,在两个维度下和在第三尺寸中具有约140W / mk。通过改变C纤维含量,CTE可以在4-10ppm / k的范围内定制。相对低的密度为4-6g / cm / sup 3 /也是重要的,其中需要重量减轻。将结果与由粉末冶金方法和用低导电短C纤维制成的复合材料进行比较。

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