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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Synthesis of Nd2Fe14C compound by high-energy ball-milling Nd-Fe alloy in heptane and annealing under vacuum
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Synthesis of Nd2Fe14C compound by high-energy ball-milling Nd-Fe alloy in heptane and annealing under vacuum

机译:庚烷中高能球磨Nd-Fe合金合成Nd2Fe14C化合物并真空退火

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摘要

A simple synthesis route for the Nd2Fe14C compound with good permanent magnetic properties is presented. Being high-energy ball-milled in heptane (C7H16) for 8 h, the NdFe3.5 alloy consisting of Nd2Fe17 and Nd phases disproportionates into NdH2+delta d and alpha-Fe. Subsequently, NdH2+delta decomposes when annealed from room temperature to 900 degrees C under vacuum, and H-2 is released. Meanwhile Nd2Fe14C, NdC and little alpha-Fe phases are formed in the final product. H and C atoms come from the decomposition of heptane. Coercivity of 1.39 T and maximum magnetic energy product of 62.7 kJ m(-3) have been achieved. Too short a ball-milling time results in the insufficient disproportionation of NdFe3.5 alloy and the residue of Nd2Fe17 phase in the final product. Too long a ball-milling time results in the appearance of NdC2 and more alpha-Fe phases besides Nd2Fe14C and NdC phases. Hexane (C6H14), octane (C8H18) and nonane (C9H20) have been proved to have a similar effect to heptane.
机译:提出了具有良好永久磁性能的Nd2Fe14C化合物的简单合成路线。在庚烷(C7H16)中进行高能球磨8小时,由Nd2Fe17和Nd相组成的NdFe3.5合金歧化为NdH2 +δd和α-Fe。随后,当在真空下从室温退火至900摄氏度时,NdH2 +δ分解,并释放H-2。同时,在最终产品中形成了Nd2Fe14C,NdC和少量的α-Fe相。 H和C原子来自庚烷的分解。已实现1.39 T的矫顽力和62.7 kJ m(-3)的最大磁能积。球磨时间太短会导致NdFe3.5合金歧化不足,并在最终产品中残留Nd2Fe17相。球磨时间过长会导致NdC2的出现以及除Nd2Fe14C和NdC相之外的更多α-Fe相。已证明己烷(C6H14),辛烷(C8H18)和壬烷(C9H20)与庚烷具有相似的作用。

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