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Ultrafine nanocrystalline NdFeB prepared by cryomilling with HDDR process

机译:通过HDDR工艺冷冻量制备超细纳米晶体NdFeB

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In this work, the NdFeB ribbons (Nd13.5Fe73Co7.5B6) were first subjected to the hydrogenation disproportionation (HD) to prepare disproportionation Nd-Fe-B precursor and subsequently cryomilled for different times. The submicron NdFeB particles with ultrafine nanocrystalline were finally obtained after desorption recombination (DR) process. The results indicated that with the increase of the cryomilling time, Nd2Fe14B grains were refined to nanoscale, but the coercivity decreased due to the strong exchange coupling between the nano-grains. The optimized nanocrystalline NdFeB particles have a size of 40 nm or less and present a coercivity of 6.63 kOe after cryomilling for 10 h followed by DR treatment at 800 degrees C for 10 min. To further improve the magnetic properties, Ca was added into HD powders in the course of cryomilling process to protect the powders from oxidation and a noticeable coercivity of 9.49 kOe was obtained. Finally, the mechanism of magnetic interactions and coercivity enhancement were discussed. (C) 2018 Elsevier B.V. All rights reserved.
机译:在这项工作中,首先将NdFeB带(Nd13.5Fe73CO7.5b6)进行氢化歧化(HD)以制备歧化Nd-Fe-B前体,随后为不同的时间冷冻。最终在解吸重组(DR)过程之后最终获得具有超细纳米晶体的亚微米NdFeB颗粒。结果表明,随着低温时间的增加,将ND2FE14B晶粒精制到纳米级,但由于纳米颗粒之间的强交换耦合,矫顽力降低。优化的纳米晶体NdFeB颗粒的尺寸为40nm或更小,并且在冷冻10小时后呈现6.63koe的矫顽力,然后在800℃下处理10分钟。为了进一步改善磁性,将Ca加入HD粉末中,在冷冻胶质过程中以保护粉末免受氧化,得到9.49ko的明显矫顽力。最后,讨论了磁相互作用和矫顽力增强的机制。 (c)2018年elestvier b.v.保留所有权利。

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