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Anisotropic thermal conductivity of three-layer laminated carbon-graphite composites from carbonized wood

机译:碳化木三层层压石墨复合材料的各向异性导热系数

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摘要

Composites with characteristics of anisotropic thermal conductivity for thermal management in Solar Power Satellite (SPS), to discharge the heat that was generated when solar energy was not converted to electricity, were developed by alternating layers of laminated graphite and carbonized wood. The effects of the weight fraction of carbonized wood, particle size, interlayer interfaces, and environment temperature on the thermal conductivity and the ratio of thermal conductivity between horizontal and vertical directions (H/V ratio) to the plain surface of samples were discussed. The thermal conductivities of carbon–graphite (C/G) composites were measured using the laser flash method. Laminated C/G composites improved the anisotropic thermal conductivity. The highest H/V ratio of 10.17 was obtained at 10 wt% of carbonized wood. Particle size and interlayer interfaces were found to affect the anisotropic thermal conductivity. The thermal conductivity of C/G composites increased with increasing temperature from 25 °C to 150 °C.
机译:通过交替层压石墨和碳化木层,开发出了具有各向异性导热系数特性的复合材料,以用于太阳能卫星(SPS)的热管理,以释放未将太阳能转换为电能时产生的热量。讨论了碳化木的重量分数,粒度,中间层界面和环境温度对样品的热导率以及水平和垂直方向的热导率之比(H / V比)的影响。碳-石墨(C / G)复合材料的热导率使用激光闪光法测量。层压的C / G复合材料改善了各向异性的导热性。在碳化木材的10 wt%时,最高的H / V比为10.17。发现粒径和层间界面会影响各向异性的导热率。 C / G复合材料的导热系数随着温度从25°C到150°C的增加而增加。

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