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燃烧合成C_f/TiC-TiB_2复合材料过程中碳纤维的损断机理 被引量:4
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作者 汪建利 朱云广 邓启超 《高科技纤维与应用》 CAS 2007年第2期11-14,25,共5页
采用燃烧合成结合准热等静压的方法制备了Cf/TiC-TiB2复合材料,详细分析了材料制备过程中碳纤维的损断机理。研究结果表明,在剪短、湿混以及加压过程中会造成纤维的物理损伤和断裂;Ti和O原子与碳纤维表面C原子反应会造成纤维的化学损伤... 采用燃烧合成结合准热等静压的方法制备了Cf/TiC-TiB2复合材料,详细分析了材料制备过程中碳纤维的损断机理。研究结果表明,在剪短、湿混以及加压过程中会造成纤维的物理损伤和断裂;Ti和O原子与碳纤维表面C原子反应会造成纤维的化学损伤;残余应力导致纤维的高温损伤和断裂。 展开更多
关键词 燃烧合成:纤维 Cf/TiC-TiB2 复合材料 损伤和断裂机理
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Synthesis of carbon nanofibers by ethanol catalytic combustion technique 被引量:1
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作者 李飞 邹小平 +4 位作者 程进 张红丹 任鹏飞 王茂发 朱光 《Journal of Central South University of Technology》 EI 2008年第1期15-19,共5页
A general, simple and economic synthetic method for synthesizing carbon nanofibers was presented. In the method, ethanol was employed as carbon source; metal salts such as nickel nitrate, ferric nitrate and ferric chl... A general, simple and economic synthetic method for synthesizing carbon nanofibers was presented. In the method, ethanol was employed as carbon source; metal salts such as nickel nitrate, ferric nitrate and ferric chloride were used as catalyst precursor respectively; copper plate was employed as the support material. A lot of products were obtained by catalytic combustion deposition of ethanol vapor. Then the as-prepared carbon nanofibers were characterized by field-emission scanning electron microscopy, transmission electron microscopy, Raman spectroscopy, energy dispersion X-ray spectroscopy and selected-area electron diffractometry. By analyzing the results of characterization, the conclusions are as follows: 1) the large catalyst particles tend to form large-diameter CNFs, small catalyst particles are inclinable to form small-diameter CNFs; 2) the morphology of the catalyst can affect the final morphology of the CNFs. Moreover, the possible growth mechanisms were proposed and the degree of graphitization of samples was estimated by Raman spectroscopy characterization. 展开更多
关键词 SYNTHESIS ethanol catalytic combustion carbon nanofibers growth mechanism degree of graphitization
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