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Development of F82H composite materials with a high thermal conductivity

机译:开发具有高导热性的F82H复合材料

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Composites of F82H and Fe added with W or Cu wires were sintered by spark plasma sintering in order to improve the thermal conductivity of F82H and pure Fe. W and Cu wires were two-dimensionally distributed on the plane perpendicular to pressure direction during sintering. The composites added with 10vol%Cu and 10vol%W were successfully sintered at 40?MPa at 800?°C and 1000?°C, respectively. The thermal diffusivity of the composites were improved compared to base materials, however, many pores were observed especially in the composites with 10vol%Cu. In order to improve the relative density of the composite of F82H added with 10vol%Cu, the use of smaller powder of both F82H and Cu would be needed. On the other hand, W-based compounds were observed in the composite of F82H added with 10vol%W. This would lead to not only less thermal conductivity but also mechanical property of the composite.
机译:为了提高F82H和纯Fe的导热性,通过火花等离子烧结法烧结了添加了W或Cu线的F82H和Fe的复合材料。 W和Cu线在烧结过程中在垂直于压力方向的平面上二维分布。添加了10vol%Cu和10vol%W的复合材料分别在40?MPa的800?C和1000?C下成功烧结。与基础材料相比,复合材料的热扩散率得到了改善,但是,尤其是在含10vol%Cu的复合材料中,观察到许多孔。为了提高添加了10vol%Cu的F82H复合材料的相对密度,将需要使用较小的F82H和Cu粉末。另一方面,在添加了10vol%W的F82H的复合物中观察到基于W的化合物。这不仅会导致导热率降低,还会导致复合材料的机械性能降低。

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