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Effect of Artificial Graphite and Nickel Nitrate on the Microstructure and Properties of Carbon Blocks for Blast Furnace

机译:人造石墨和硝酸镍对高炉碳砌块微观结构和性能的影响

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Improving thermal conductivity of carbon blocks is one of the most important developing trends for carbon blocks. In this work, artificial graphite and nickel nitrate catalyst were introduced into carbon blocks with an attempt to improve thermal conductivity of carbon blocks and their effect on microstructure and properties of carbon blocks were systematically studied by means of X ray diffraction (XRD), scanning electron microscopy (SEM) and laser thermal conductivity meter. The results revealed that artificial graphite possessed lower oxidation activation energy than electrically calcined anthracite, and thus higher reactivity, which could accelerate the formation of SiC whiskers in carbon blocks and have a positive effect on thermal conductivity of carbon blocks. Moreover, it was interestingly noted that one dimensional nano-carbon was catalytically formed at 1000 癈 and lots of Sialon phases were formed at 1400 癈 when nickel nitrate catalyst was further added in carbon blocks containing artificial graphite. These in-situ ceramic phases formed in carbon blocks constructed high thermal conductive network and reduced the interface thermal resistance, thus improving the thermal conductivity of carbon blocks significantly.
机译:提高碳块的导热系数是碳块最重要的发展趋势之一。在这项工作中,将人造石墨和硝酸镍催化剂引入碳嵌段中,试图改善碳嵌段的导热率,并通过X射线衍射(XRD),系统地研究了对碳嵌段微观结构和性质的影响,扫描电子显微镜(SEM)和激光导热仪。结果表明,人造石墨具有比电煅烧的无烟煤更低的氧化活化能,从而具有更高的反应性,这可以加速碳块中的SiC晶须的形成,并对碳块的导热率具有积极影响。此外,有趣的是,当镍硝酸镍催化剂进一步加入含有人造石墨的碳嵌段时,有趣的是,在1000℃下催化形成在1000℃,并且在1400℃下形成一维纳米碳。这些原位陶瓷相在碳块中构造了高导热网络并降低了界面热阻,从而显着提高了碳块的导热率。

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