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Effect of flake powder metallurgy on thermal conductivity of graphite flakes reinforced aluminum matrix composites

机译:薄片粉末冶金对石墨薄膜铝基复合材料热导率的影响

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摘要

The optimization of metal-matrix composite material is linked firstly with the intrinsic properties of the matrix and the reinforcement used and secondly with the reinforcement-matrix interfacial zone and the distribution/orientation of the reinforcement inside the metal-matrix. Flake powder metallurgy was used to fabricate graphite flake reinforced aluminum matrix (Al/GF) composites fabricated by vacuum hot pressing. Two types of aluminum powders morphology were used: spherical (Al-S) and flake (Al-F) powders. A higher thermal conductivity in the in-plane direction of the graphite flakes was obtained for Al/GF composite materials fabricated with aluminum flake powder. In addition to a better orientation of the GF in the flake aluminum matrix, a 3D puckered surface and plane surface are formed at the Al/GF interface in, respectively, Al-S/GF and Al-F/GF composite materials. Due to the morphology incompatibility between the graphite flakes and the spherical powder, the damaged inner structure of GF contributes to a limited enhancement of thermal conductivity in Al-S/GF composite materials.
机译:金属 - 基质复合材料的优化首先与基质的固有性质和使用的增强件和加强矩阵界面和金属基质内部的加强件的分布/取向相连。薄片粉末冶金用于制造通过真空热压制造的石墨薄片增强铝基基质(Al / GF)复合材料。使用两种类型的铝粉形态:球形(AL-S)和薄片(Al-F)粉末。为用铝薄片粉末制造的Al / GF复合材料获得石墨薄片面内方向上的较高导热率。除了剥落铝基质中的GF的更好方向之外,在Al / GF界面中形成3D褶皱表面和平面表面,分别在Al-S / GF和Al-F / GF复合材料中形成。由于石墨薄片与球面粉末之间的形态不相容,GF的受损内部结构有助于在Al-S / GF复合材料中导热率的有限增强。

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