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Effect of Fe substitution on magnetocaloric effects and glass-forming ability in Gd-based metallic glasses

机译:Fe取代对基于GD基金属眼镜的磁热效应和玻璃形成能力的影响

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AbstractIn this work, we report on the systematic variation of the glass-forming ability (GFA) and magnetocaloric effect (MCE) in Gd55Co20-xAl24Si1Fex(x?=?0, 1, 2, 3, 4 and 5?at%) metallic glasses (MGs), which are potential candidates for magnetocaloric cooling applications. The addition of Fe broadens the full width of half maximum of magnetic entropy change (δTFWHM), thereby greatly increases the refrigeration capacity (RC). Accordingly, theδTFWHMas large as 118?K, magnetic entropy change |ΔSM| of 7.26?J?kg?1K?1?at 130?K, and corresponding large RC of 857?J?kg?1under applied field of 5?T are obtained for the composition with 5?at% Fe substitution. By increasing the atomic fraction of Fe dopants, the Curie temperatureTCincreases systematically at the same time. Such high GFA of novel Gd-based MGs with large MCE makes them attractive candidates for magnetic refrigeration applications in the future.Highlights?Systematic variation of the GFA and MCE in Gd-based BMGs were investigated.?Gd-based MGs with large MCE and high Curie temperature were synthesized.?Gd-based BMGs with large GFA were fabricated.]]>
机译:<![CDATA [ 抽象 在这项工作中,我们报告了玻璃形成能力(GFA)和磁热效应的系统变化( MCE)在GD 55 CO 20-X AL 24 SI 1 FE X (x?=? 0,1,2,3,4和5?在%)金属玻璃(Mgs),这是磁热冷却应用的潜在候选。加入Fe扩大了磁熵变化的全部宽度(Δt fwhm ),从而大大增加制冷能力(RC)。因此,ΔT fwhm 大约118 k,磁熵变化|Δ s m | 7.26?j?kg ?1 k ?1 ?在130?k,和相应的大rc为857?j?kg α1在施加5μl的施用场下获得,用于组合物,其中5μm含量为5μm。通过增加Fe掺杂剂的原子分数,居里温度 t c 系统地同时增加。这种具有大型MCE的新型GD基MGS的高GFA使其成为未来磁制冷应用的吸引力。 突出显示 GFA和MCE的系统变化,基于GD的BMGS中的GFA和MCE。 基于GD的MCE和高居里温度的MGS合成。 基于GD的BMG,具有大GFA初步。 ]]>

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