石墨
材料科学
复合材料
多孔性
碳纳米泡沫
热导率
碳化
中间相
惰性气体
发泡剂
碳纤维
扫描电子显微镜
聚氨酯
复合数
液晶
光电子学
作者
Walter W. Focke,Heinrich Badenhorst,Shatish Ramjee,Hermanus Joachim Kruger,Riaan Van Schalkwyk,B. Rand
出处
期刊:Carbon
[Elsevier BV]
日期:2014-02-19
卷期号:73: 41-50
被引量:45
标识
DOI:10.1016/j.carbon.2014.02.035
摘要
Graphite foams were prepared from a coal tar pitch that was partially converted into mesophase. Expandable graphite was used instead of an inert gas to “foam” the pitch. The resulting foam was subjected to a series of heat treatments with the objective of first crosslinking the pitch, and thereafter carbonizing and graphitizing the resulting foam. XRD confirmed that the graphitization at 2600 °C resulted in a highly graphitic material. The porosity of this foam derives from the loose packing of the vermicular exfoliated graphite particles together with their internal porosity. During the foaming process the pitch tends to coat the outside surface of the expanding graphite flakes. It also bonds them together. The graphite foam prepared with 5 wt.% expandable graphite had a bulk density of 0.249 g cm−3, a compressive strength of 0.46 MPa and a thermal conductivity of 21 W m−1 K−1. The specific thermal conductivity (thermal conductivity divided by the bulk density) of this low-density carbon foam was 0.084 W m2 kg−1 K−1 which is considerably higher than that of copper metal (0.045 W m2 kg−1 K−1) traditionally used in thermal management applications.
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