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Novel Magnesium Elektron21-AlN Nanocomposites Produced by Ultrasound-Assisted Casting; Microstructure, Thermal and Electrical Conductivity

机译:超声波辅助铸造生产新型镁Elektron21-AlN纳米复合材料;微观结构,热导率和电导率

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摘要

In the current work, a novel magnesium alloy Elektron21 reinforced by ceramic AlN nanoparticles were produced by an ultrasound-assisted casting. The fabricated nanocomposites were investigated to evaluate their microstructure, hardness, physical, thermal and electrical conductivity. The microstructural evolutions show that a uniform dispersion of the ceramic particles within the matrix can be achieved by employing the ultrasound-assisted stirring. However, some nanoparticles were found to be pushed by the solidification front. According to the Vickers hardness results, the addition of AlN nanoparticles results in a slight improvement of the mechanical properties of the nanocomposites. What is surprising is that both electrical and thermal conductivity of the nanocomposite were improved significantly as a consequence of AlN addition. This improvement in the conductivity characteristics of the nanocomposite is mainly corresponding to the structural effect of nanoparticles within the matrix.
机译:在目前的工作中,通过超声辅助铸造生产了一种新型的由陶瓷AlN纳米颗粒增强的镁合金Elektron21。研究了制成的纳米复合材料,以评估其微观结构,硬度,物理,导热和导电性。微观结构演变表明,通过采用超声辅助搅拌,可以实现陶瓷颗粒在基体内的均匀分散。然而,发现一些纳米颗粒被固化前沿推动。根据维氏硬度结果,添加AlN纳米颗粒会稍微改善纳米复合材料的机械性能。令人惊讶的是,由于添加了AlN,纳米复合材料的电导率和导热率都得到了显着改善。纳米复合材料的电导特性的这种改善主要对应于基质内纳米颗粒的结构效果。

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