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The production of advanced fine-grained alumina by carbon nanotube addition

机译:碳纳米管的添加生产先进的细晶氧化铝。

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摘要

Alumina and alumina+1vol.% carbon nanotube (CNT) composites were fully densified by spark plasma sintering. Post-sintering heat treatments (1300–1500 ◦C) were performed to completely oxidize CNTs and then densify the remaining 1 vol.% to produce fine-grained ceramics. The grain size and Vickers hardness of the heat-treated composites were compared with the monolithic alumina sintered without CNT addition. Compared to the initial powder particle size of alumina (D50: 356±74 nm), minimal grain growth (∼450 nm) was observed for the fully dense heat-treated composites. A 25% improvement in Vickers hardness and 10 times finer average grain size were observed for alumina produced by the heat treatment (1300 ◦C) of alumina+1vol.% CNT composite, compared to alumina sintered without CNTs.
机译:氧化铝和氧化铝+ 1vol%的碳纳米管(CNT)复合材料通过火花等离子体烧结完全致密化。进行烧结后热处理(1300–1500℃)以完全氧化CNT,然后将剩余的1%(体积)致密化,以生产出细晶粒的陶瓷。将热处理后的复合材料的晶粒尺寸和维氏硬度与未添加CNT的整体烧结氧化铝进行了比较。与氧化铝的初始粉末粒径(D50:356±74 nm)相比,对于完全致密的热处理复合材料,观察到最小的晶粒长大(〜450 nm)。与没有碳纳米管烧结的氧化铝相比,通过热处理(1300℃)的氧化铝+ 1vol%CNT复合材料生产的氧化铝,维氏硬度提高了25%,平均晶粒尺寸提高了10倍。

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