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β-SiC production by reacting silica gel with hydrocarbon gas

机译:硅胶与烃类气体反应制得β-SiC

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摘要

A novel synthesis process, developed for producing high purity, submicron, non-agglomerated and low cost β-SiC powders. The process is based on carbothermal reduction reaction of a novel coated precursor. The precursor is derived from a silica gel and a hydrocarbon gas and provides high contact area between reactants. This yields a better distribution of carbon within the silica gel and results in a more complete reaction and a purer product. The powders produced in this process have a low oxygen content (less than 0.8 wt.%), very fine particle size (0.1–0.3 μm), narrow particle size distribution, non-agglomerated and are low cost. The sintering tests demonstrated that these powders can be pressureless-sintered to near theoretical density at about 2100°C in an inert atmosphere. No decarburization and no acid purification process was required before sintering.
机译:已开发出一种新颖的合成方法,用于生产高纯度,亚微米,无团聚且低成本的β-SiC粉末。该方法基于新型涂覆前体的碳热还原反应。前体衍生自硅胶和烃类气体,并在反应物之间提供高接触面积。这样可在硅胶内产生更好的碳分布,并导致更完全的反应和更纯净的产物。用这种方法生产的粉末含氧量低(小于0.8 wt。%),非常细的颗粒尺寸(0.1–0.3μm),狭窄的颗粒尺寸分布,不结块且成本低。烧结试验表明,这些粉末可在惰性气氛中于约2100℃下无压力烧结至接近理论密度。烧结前不需要脱碳,也不需要酸纯化过程。

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  • 来源
    《Journal of Materials Science》 |2001年第4期|995-999|共5页
  • 作者单位

    Southern Illinois University at Carbondale Department of Mechanical Engineering and Energy Processes;

    National Renewable Energy Laboratory;

    TDA Research Inc.;

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  • 正文语种 eng
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