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Synthesis of Al_2O_3/WC powder by aluminothermic reduction and carbonization method 被引量:5

Synthesis of Al_2O_3/WC powder by aluminothermic reduction and carbonization method
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摘要 Al2O3/WC powder was synthesized by means of aluminothermic reduction-carbonization with metallic Al powder, yellow tungsten oxide and carbon black or graphite as raw materials under the protection of coke granules. The effects of Al2O3 content, temperature, C/WO3 molar ratio, and atmosphere on the synthesis of Al2O3/WC powder were studied. The results show that the relative content of WC and W2C is strongly influenced by the factors mentioned-above. Carbon black has higher reactivity than graphite. Al2O3-WC composite is easier to obtain under the protection of coke granules than under argon atmosphere. The CO in the coke layer can easily react with tungsten to form WC and to transfer from W2C to WC. Al_2O_3/WC powder was synthesized by means of aluminothermic reduction-carbonization with metallic Al powder, yellow tungsten oxide and carbon black or graphite as raw materials under the protection of coke granules. The effects of Al_2O_3 content, temperature, C/WO_3 molar ratio, and atmosphere on the synthesis of Al_2O_3/WC powder were studied. The results show that the relative content of WC and W_2C is strongly influenced by the factors mentioned-above. Carbon black has higher reactivity than graphite. Al_2O_3-WC composite is easier to obtain under the protection of coke granules than under argon atmosphere. The CO in the coke layer can easily react with tungsten to form WC and to transfer from W_2C to WC.
作者 韩兵强 李楠
出处 《中国有色金属学会会刊:英文版》 CSCD 2004年第2期246-250,共5页 Transactions of Nonferrous Metals Society of China
关键词 粉末冶金 铝粉 铝热还原 碳化 Al2O3/WC粉末 合成 相组成 aluminothermic reduction carbonization phase composition composite thermodynamics
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