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首页> 外文期刊>Materials Characterization >Interface structures in Al-Nb2O5 nanocomposites processed by high-pressure torsion at room temperature
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Interface structures in Al-Nb2O5 nanocomposites processed by high-pressure torsion at room temperature

机译:通过高压扭转在室温下加工的Al-NB2O5纳米复合材料中的界面结构

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摘要

Extremely thin Nb2O5 nanowires and Al powder were successfully consolidated at room temperature by using high-pressure torsion (HPT), producing a novel metal matrix nanocomposite with exceptional mechanical properties. It is shown that minor additions of Nb2O5 increase sharply the hardness of commercially pure Al. For instance, hardness of over 180 Hv was developed at the edge of samples with 10% nanowires and processed through 10 turns of HPT. This is markedly higher than any other value reported for pure aluminum matrix composites having this level of reinforcement phase. A detailed characterization of the interface structure using high-angle annular dark field scanning transmission electron microscopy (HAADF-STEM) revealed a pronounced grain refinement of the Al matrix at the nanoscale and the occurrence of the aluminothermic reduction of the part of Nb2O5. The latter led to: (i) the formation of Al2O3 nanolayer at the Al/Nb2O5 interface and (ii) the nanosegregation of metallic Nb (with few atomic layers) along grain boundaries and dislocations. The pronounced increase in hardness is attributed to the formation of this interface nanostructure.
机译:通过使用高压扭转(HPT)在室温下成功地固结了极薄的NB2O5纳米线和Al粉末,产生具有特殊机械性能的新型金属基质纳米复合材料。结果表明,Nb2O5的次要添加量急剧增加了商业纯的Al的硬度。例如,在具有10%纳米线的样品边缘开发了超过180HV的硬度,并通过10转的HPT处理。这明显高于具有该加固相水平的纯铝基质复合材料的任何其他值。使用大角度环形暗场扫描透射透视(HAADF-茎)的界面结构的详细表征在纳米级和NB2O5的一部分的铝热减少的铝热量减少的情况下显示了Al基质的明显晶粒细化。后者导致:(i)在Al / Nb 2 O 5界面中形成Al 2 O 3纳米层,(ii)沿晶界和脱位的金属Nb(用少数原子层)的纳米聚集。硬度的明显增加归因于形成该界面纳米结构。

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