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Composites of aluminum alloy and magnesium alloy with graphite showing low thermal expansion and high specific thermal conductivity

机译:具有低热膨胀性和高比热导率的铝合金和镁合金与石墨的复合材料

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摘要

High thermal conductivity, low thermal expansion and low density are three important features in novel materials for high performance electronics, mobile applications and aerospace. Spark plasma sintering was used to produce light metal–graphite composites with an excellent combination of these three properties. By adding up to 50 vol.% of macroscopic graphite flakes, the thermal expansion coefficient of magnesium and aluminum alloys was tuned down to zero or negative values, while the specific thermal conductivity was over four times higher than in copper. No degradation of the samples was observed after thermal stress tests and thermal cycling. Tensile strength and hardness measurements proved sufficient mechanical stability for most thermal management applications. For the production of the alloys, both prealloyed powders and elemental mixtures were used; the addition of trace elements to cope with the oxidation of the powders was studied.
机译:高导热率,低热膨胀性和低密度是用于高性能电子,移动应用和航空航天的新型材料的三个重要特征。火花等离子体烧结被用于生产具有这三种性能的完美结合的轻金属-石墨复合材料。通过添加多达50%(体积)的宏观石墨薄片,镁和铝合金的热膨胀系数可调节至零或负值,而比热导率则比铜高四倍以上。在热应力测试和热循环后,未观察到样品的降解。拉伸强度和硬度测量结果证明了对于大多数热管理应用而言足够的机械稳定性。为了生产合金,既使用了预合金粉末也使用了元素混合物。研究了添加微量元素以应对粉末的氧化。

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