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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >High-energy ball-milling synthesis and densification of Fe-Co alloy nanopowders by field-activated sintering (FAST)
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High-energy ball-milling synthesis and densification of Fe-Co alloy nanopowders by field-activated sintering (FAST)

机译:场活化烧结(FAST)高能球磨合成Fe-Co合金纳米粉并进行致密化

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摘要

Nanocrystalline Fe-Co soft magnetic alloy powders also containing approximately 4 percent Cr and 1 percent V were prepared by high-energy mechanical alloying in liquid media (hexane). Bulk nanostructured magnets of 40 mm diameter were obtained by field-assisted sintering (FAST) also known as spark-plasma sintering (SPS). We used a FAST furnace type HPD25-1 (FCT Systeme, Rauenstein, Germany). The FAST method was shown to successfully assist in decoupling densification from microstructural coarsening, mainly due to the limited exposure of the alloy nanopowders to high temperatures during their sintering into nanostructured bulk compacts. Results of chemical and microstructure analysis by SEM/EDX are presented to evidence the achievement of uniform microstructures and absence of composition gradients across sintered bulk specimens in spite of their large size.
机译:通过在液体介质(己烷)中进行高能机械合金化,制备了还含有约4%Cr和1%V的纳米晶Fe-Co软磁合金粉末。通过场辅助烧结(FAST)(也称为火花等离子体烧结(SPS))获得了直径为40 mm的块状纳米结构磁体。我们使用了HPD25-1型FAST炉(FCT Systeme,德国Rauenstein)。结果表明,FAST方法可以成功地将致密化与微观结构的粗化脱钩,这主要是由于合金纳米粉在烧结成纳米结构的块状体时在高温下的接触有限。给出了通过SEM / EDX进行化学和微观结构分析的结果,以证明尽管体积大,但在整个烧结块状试样上均具有均匀的微观结构,并且没有组成梯度。

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