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High Thermal Conductive Composite Containing a Network of Vapor Grown Carbon Fiber and Carbon Nanotube in Aluminum Matrix

机译:铝基体中包含气相生长碳纤维和碳纳米管网络的高导热复合材料。

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In this paper, high thermal conductive composites are developed for the cooling device of Insulated Gate Bipolar Transistors (IGBT) for aerospace. The composite is fabricated by Spark Plasma Sintering (SPS) from aluminum powder and vapor grown carbon fiber (VGCF). The 10wt% of aluminum-silicon alloy is added to the aluminum powder for the improvement of the interface adherence between VGCF and aluminum. Carbon nanotube (CNT) is also dispersed on VGCF fillers for further improvement of the thermal conductivity of the composite. As a result, the composites fabricated have about three times higher thermal conductivity than the pure aluminum. Especially, a small amount dispersion of CNT into VGCF leads to the large improvement of the thermal conductivity. Analyses of finite element method (FEM) are conducted to understand mechanisms of the improvement of thermal conductivity by the dispersion of CNT. The FEM analysis shows that VGCF-CNT networks play important roles for the improvement of the thermal conductivity.
机译:本文为航空航天用绝缘栅双极晶体管(IGBT)的冷却装置开发了高导热复合材料。该复合材料是通过火花等离子体烧结(SPS)由铝粉和气相生长碳纤维(VGCF)制成的。将10wt%的铝-硅合金添加到铝粉中以改善VGCF与铝之间的界面粘附性。碳纳米管(CNT)也分散在VGCF填料上,以进一步提高复合材料的导热性。结果,所制造的复合材料的导热率是纯铝的约三倍。特别地,CNT少量分散到VGCF中导致热导率的大大提高。进行了有限元方法(FEM)的分析,以了解通过CNT的分散来提高导热性的机理。有限元分析表明,VGCF-CNT网络在提高热导率方面起着重要作用。

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