[1]康佳,刘玉宝,于兵,等.熔盐电解法制备Sm合金的研究进展[J].中国材料进展,2022,41(02):160-166.
 Kang Jia,Liu Yu-bao,Yu Bing,et al.Research Progress on Preparation of Sm alloy by Molten Salt Electrolysis[J].MATERIALS CHINA,2022,41(02):160-166.
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熔盐电解法制备Sm合金的研究进展()
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中国材料进展[ISSN:1674-3962/CN:61-1473/TG]

卷:
41
期数:
2022年第02期
页码:
160-166
栏目:
出版日期:
2022-02-28

文章信息/Info

Title:
Research Progress on Preparation of Sm alloy by Molten Salt Electrolysis
作者:
康佳刘玉宝于兵黄海涛张全军闫奇操*
(包头稀土研究院白云鄂博稀土资源研究与综合利用国家重点实验室,内蒙古,包头,014030)
Author(s):
Kang Jia Liu Yu-bao Yu Bing Huang Hai-tao Zhang Quan-jun Yan Qi-cao*
(State Key Laboratory of Baiyunobo Rare Earth Resource Researches and Comprehensive Utilization, Baotou Research Institute of Rare Earths, Baotou, 014030, China)
关键词:
熔盐电解法Sm合金稀土电化学行为生成规律
Keywords:
Molten salt electrolysis Sm alloy Rare earth Electrochemical behavior Formation rule
文献标志码:
A
摘要:
稀土钐是变价稀土元素,所以Sm合金具有它自身所独有的特性,使其成为一种极具潜力的功能材料,常被应用于稀土永磁、储氢、发光以及航空航天等材料领域。本文系统的比较了现阶段制备Sm合金方法的优缺点,其中熔盐电解法制备Sm合金具有产物更加纯净、低成本、连续作业等优点,使该法成为近期学者的研究热点。然后,重点阐述了熔盐电解法制备Sm-Al、Sm-Cu、Sm-Co、Sm-Ni和Sm-Fe合金的最新研究进展及存在的问题,介绍了Sm离子在熔盐中的电化学行为及Sm合金在阴极上的生成规律,并提出了该方法进一步向产业化方面发展的方向。
Abstract:
Samarium alloy is considered to be a potential function material, which has its changeable electrovalence character, is widely used as permanent-magnetic, hydrogen-storage, luminescent and aerospace materials. In this paper, the advantages and disadvantages of method, which were used to prepared Sm alloy, were compared. In contrast, the molten salt electrolysis has the advantages of cleaner products, inexpensive, and continuous production, becomes a focus in current research. The research progress and existing problems of Sm-Al, Sm-Cu, Sm-Co, Sm-Ni and Sm-Fe alloys prepared by molten salt electrolysis were emphatically described, and the electrochemical behaviors of Sm3+ and deposition process of Sm alloy were introduced. The direction of industrialization development was also put forward.

备注/Memo

备注/Memo:
基金项目:内蒙古自治区应用技术研究与开发资金项目(201802009);北方稀土科技开发项目(2020H2179);白云鄂博稀土资源研究与综合利用国家重点实验室自主课题(2018Z2002,2019Z2055,2020Z2132)第一作者:康佳,工程师,硕士,E-Mail:852143704@qq.com 通讯作者:闫奇操,工程师,博士,E-Mail:yanqicaobrire@126.com.
更新日期/Last Update: 2022-02-25