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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >In situ synthesis of CNTs in Mg powder at low temperature for fabricating reinforced Mg composites
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In situ synthesis of CNTs in Mg powder at low temperature for fabricating reinforced Mg composites

机译:低温原位合成镁粉中的碳纳米管用于制备增强镁复合材料。

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摘要

Carbon nanotube (CNT)/Mg composite powders were synthesized by in situ chemical vapor deposition of acetylene in Co/Mg catalyst powder at 480 °C. The factors influencing the morphology and yield of CNTs, including the compositions of the Co catalyst and the ratio of carbon source to carrier gas, were investigated. For the first time, CNT/Mg composites were fabricated by a powder metallurgy technique using in situ synthesized CNT/Mg powders. The results show that as-obtained CNTs had a mean size of 15 nm and were highly graphitizing and homogeneously dispersed on the Mg powder. Ball milling of CNT/Mg composite powders for short times enabled embedding of CNTs into Mg, resulting in grain refinement. The tensile strength of CNT/Mg composites reached an average of 285 MPa, which is an increase of 45% compared to that of commercial pure Mg.
机译:通过在480°C下在Co / Mg催化剂粉末中原位化学气相沉积乙炔来合成碳纳米管(CNT)/ Mg复合粉末。研究了影响碳纳米管形貌和产率的因素,包括钴催化剂的组成以及碳源与载气的比例。首次使用原位合成的CNT / Mg粉末通过粉末冶金技术制造CNT / Mg复合材料。结果表明,所获得的CNT具有15nm的平均尺寸,并且高度石墨化并且均匀地分散在Mg粉末上。短时间球磨CNT / Mg复合粉末可将CNT嵌入Mg中,从而细化晶粒。 CNT / Mg复合材料的抗张强度平均达到285 MPa,比市售纯Mg的抗张强度提高了45%。

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