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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Distribution and stability of carbon nanotubes during multi-pass friction stir processing of carbon nanotube/aluminum composites
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Distribution and stability of carbon nanotubes during multi-pass friction stir processing of carbon nanotube/aluminum composites

机译:碳纳米管/铝复合材料多道次摩擦搅拌过程中碳纳米管的分布和稳定性

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Multi-pass friction stir processing was used to fabricate multiwalled carbon nanotube/alu-minum composites with a high volume fraction (>50%) of reinforcing material homogeneously dispersed in the matrix. The microhardness of the produced composites were two times higher than the original aluminum alloy. SEM and TEM analyses of the microstructures indicated that the reinforcing phase was uniformly distributed after three friction stir passes but the thermo-mechanical cycles destroyed the tubular structure of the carbon nanotubes. TEM micrographs revealed that carbon nanotubes were mostly transformed to polyaromatic and turbostratic carbon structures along with AI_4C_3 after 3 passes.
机译:多程摩擦搅拌工艺用于制造多壁碳纳米管/铝复合材料,其中高比例(> 50%)的增强材料均匀分散在基体中。制成的复合材料的显微硬度是原始铝合金的两倍。微观结构的SEM和TEM分析表明,经过三次摩擦搅拌后,强化相均匀分布,但热机械循环破坏了碳纳米管的管状结构。 TEM显微照片显示,碳纳米管经过3次通过后,大部分与AI_4C_3一起转变为多芳族和涡轮层碳结构。

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