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Improvements in performance and microstructure of doped graphites as plasma-facing materials by a new process

机译:通过新工艺改进作为面向等离子体的材料的掺杂石墨的性能和微观结构

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Multi-elemental (B, Si and Ti) doped graphite was prepared from fillers of petroleum coke, dopants and binder of coal tar pitch by a new liquid mixing method. Such composite has not only high thermal conductivity (233 W/m K) but also excellent mechanical strength compared with the material prepared by the conventional solid mixing method. Scanning electron microscopy (SEM) results show that such material has a fine-grained structure as well as little pore diameter. The effects of the manufacturing procedure of doped graphites on the performance and microstructure are investigated. In addition, correlations between properties and microstructure are also discussed in detail.
机译:采用新型液体混合法,由石油焦填料,掺杂剂和煤焦油沥青粘结剂制备了多元素(B,Si和Ti)掺杂石墨。与通过常规固体混合方法制备的材料相比,这种复合材料不仅具有高导热率(233 W / m K),而且具有优异的机械强度。扫描电子显微镜(SEM)结果表明,这种材料具有细粒度的结构以及很小的孔径。研究了掺杂石墨制造工艺对性能和微观结构的影响。此外,还详细讨论了性能与微观结构之间的相关性。

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