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Recycled Nd-Fe-B sintered magnets prepared from sludges by calcium reduction-diffusion process 被引量:9
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作者 Xiaowen Yin Min Liu +5 位作者 Baicen Wan Yu Zhang Weiqiang Liu Yufeng Wu Dongtao Zhang Ming Yue 《Journal of Rare Earths》 SCIE EI CAS CSCD 2018年第12期1284-1291,共8页
Environmental friendly recycling process for Nd-Fe-B sintered magnet sludges generated in the manufacturing process, which contain large amount of rare earth, including Nd, Pr and Dy, is badly needed so far. In presen... Environmental friendly recycling process for Nd-Fe-B sintered magnet sludges generated in the manufacturing process, which contain large amount of rare earth, including Nd, Pr and Dy, is badly needed so far. In present study, we have developed an effective route to obtain recycled sintered magnets from Nd-Fe-B sintered magnet sludges by calcium reduction-diffusion(RD) process. Compared to conventional recycling process, our research is focused on recovering most of the useful elements, including Nd, Pr, Dy, Co, and Fe together instead of just rare earth elements. To improve the recycling efficiency and reduce pollution, the co-precipitating parameters were simulated and calculated using MATLAB software. Most of useful elements were recovered by a co-precipitation method, and the obtained composite powders were then directly fabricated as recycled Nd-Fe-B powders by a calcium reduction-diffusion(RD) method. The recovery rates are 98%, 99%, 99%, 93%, and 99%, for Nd, Pr, Dy, Co, and Fe, respectively. The amount of useful elements contained in the recovered composite powders is greater than99.71 wt%. The process of RD for synthesizing NdFeB and subsequently removing CaO was thoroughly investigated. Furthermore, the recycled Nd-Fe-B magnet exhibits a remanence of 1.1 T, a coercivity of1053 kA/m, and an energy product of 235.6 kJ/m~3, respectively, indicating that recycled Nd-Fe-B sintered magnet was successfully recovered from the severely contaminated sludges via an effective recycling route. 展开更多
关键词 Nd-Fe-B sintered magnet sludges Reduction-diffusion Removing CaO recycled magnet Rare earths
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废旧烧结Nd-Fe-B磁体添加Ce再制造技术研究 被引量:1
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作者 梅莉萍 《粉末冶金工业》 CAS 北大核心 2018年第4期77-81,共5页
烧结Nd-Fe-B磁体再生过程中会引起稀土元素的氧化和损失,因此重新烧结时无法致密化。添加Ce金属,有助于再生磁体的致密化,并优化磁体的显微组织结构。通过低成本Ce金属的添加,成功实现再生磁体的综合性能优化。并研究了废旧烧结Nd-Fe-B... 烧结Nd-Fe-B磁体再生过程中会引起稀土元素的氧化和损失,因此重新烧结时无法致密化。添加Ce金属,有助于再生磁体的致密化,并优化磁体的显微组织结构。通过低成本Ce金属的添加,成功实现再生磁体的综合性能优化。并研究了废旧烧结Nd-Fe-B磁体的吸氢过程,用BH测试仪测试了再生磁体的磁性能;采用扫描电镜观察了再生磁体的微观结构。添加4%Ce(质量分数)时,在1 350 K烧结、773 K热处理条件下,再生磁体的剩磁达到了原磁体的98%以上,内禀矫顽力超过了原磁体。 展开更多
关键词 烧结Nd-Fe-B块状废料 Ce金属 氢处理 再生磁体
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