首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Fabrication of ultrafine and high-purity tungsten carbide powders via a carbothermic reduction-carburization process
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Fabrication of ultrafine and high-purity tungsten carbide powders via a carbothermic reduction-carburization process

机译:通过碳热还原碳化过程制备超细和高纯度碳化钨粉末的制备

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摘要

In the current study, ultrafine and high-purity tungsten carbide (WC) powders are successfully prepared by a two-step process: carbothermic reduction of WO3 followed by carbonization reaction. The effects of the C/WO3 molar ratio, reaction temperature and reaction time on the phase transition and morphology evolution of the products are investigated. During the carbothermic reduction process, all the oxygen in yellow tungsten trioxide (WO3) is removed by carbon to generate a mixture of W, W2C and WC at 1100 degrees C; and then the as-prepared powder is mixed with an appropriate content of carbon black and carbonized at 1200 degrees C. The carbon content in the finally obtained WC powders is almost equal to the theoretical value. Furthermore, it is found that a high C/WO3 molar ratio at the first stage is beneficial for decreasing the particle size of the WC powders. When the C/WO3 molar ratio is 3.5, the single phase WC with a particle size of about 200 nm can be obtained. Therefore, this carbothermic reduction -carburization process may provide a simple, low-cost, and high efficiency route to prepare the WC powders in a large-scale. (C) 2019 Elsevier B.V. All rights reserved.
机译:在目前的研究中,通过两步方法成功制备超细和高纯度碳化钨(WC)粉末:WO3的碳热还原,然后进行碳化反应。研究了C / WO3摩尔比的影响,反应温度和反应时间对产物的相转变和形态演化。在碳热还原过程中,通过碳除去黄色钨(WO3)中的所有氧气,以在1100℃下产生W,W2C和WC的混合物;然后将AS制备的粉末与适当的炭黑混合,并在1200℃下碳化。最后获得的WC粉末中的碳含量几乎等于理论值。此外,发现第一阶段的高C / WO3摩尔比有利于降低WC粉末的粒度。当C / WO3摩尔比为3.5时,可以获得粒径为约200nm的单相WC。因此,这种碳水化合物还原 - 碳碳化过程可以提供简单,低成本和高效率的路线,以大规模制备WC粉末。 (c)2019 Elsevier B.v.保留所有权利。

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