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Magnetic Electrical and Mechanical Behavior of Fe-Al-MWCNT and Fe-Co-Al-MWCNT Magnetic Hybrid Nanocomposites Fabricated by Spark Plasma Sintering

机译:放电等离子体烧结制备的Fe-Al-MWCNT和Fe-Co-Al-MWCNT磁性杂化纳米复合材料的磁电和机械行为

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摘要

This paper aims to investigate different properties of the Fe-Al matrix reinforced with multi-walled carbon nanotube (MWCNT) nanocomposites with the Al volume content up to 65%, according to the Fe-Al combination. In addition, the effect of adding Co content on the improvement of the soft magnetic properties of the nanocomposites was carried out. The nanocomposites were fabricated using the powder metallurgy process. The iron-aluminum metal matrix reinforced multi-walled carbon nanotube (Fe-Al-MWCNT) nanocomposites showed a continuous increase of saturation magnetization from 90.70 A·m /kg to 167.22 A·m /kg and microhardness, whereas the electrical resistivity dropped as the Al content increased. The incorporation of Co nanoparticles in Fe-Al-MWCNT up to 35 vol% of Co considerably improved the soft magnetic properties of the nanocomposites by reducing the coercivity and retentivity up to 42% and 47%, respectively. The results showed that Al-based magnetic nanocomposites with a high Al volume content can be tailored using ferromagnetic particles. The composites with a volume content of magnetic particles (Fe+Co) greater than 60 vol% exhibited higher saturation magnetization, higher coercivity, and higher retentivity than the standard Sendust core. Moreover, the produced composites can be used for the lightweight magnetic core in electromagnetic devices due to their low density and good magnetic and mechanical properties.
机译:本文旨在研究多壁碳纳米管(MWCNT)纳米复合材料增强的Fe-Al基体的不同性能,根据Fe-Al的组合,Al含量高达65%。另外,进行了添加Co量对提高纳米复合材料的软磁特性的效果。纳米复合材料是使用粉末冶金工艺制造的。铁铝金属基增强多壁碳纳米管(Fe-Al-MWCNT)纳米复合材料的饱和磁化强度和连续硬度从90.70 A·m / kg连续增加至167.22 A·m / kg,而显微硬度却不断降低。铝含量增加。通过在Fe-Al-MWCNT中掺入多达35%(体积)的Co纳米颗粒,可将矫顽力和保持力分别降低至42%和47%,从而大大改善了纳米复合材料的软磁性能。结果表明,可以使用铁磁颗粒定制具有高Al含量的Al基磁性纳米复合材料。磁性颗粒(Fe + Co)的体积含量大于60 vol%的复合材料比标准Sendust磁芯表现出更高的饱和磁化强度,更高的矫顽力和更高的保持性。而且,由于它们的低密度以及良好的磁和机械性能,所生产的复合材料可用于电磁装置中的轻质磁芯。

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