SM2CO17

作品数:39被引量:69H指数:5
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相关领域:一般工业技术电气工程金属学及工艺更多>>
相关作者:张明沈安国包生祥袁涛王敬东更多>>
相关机构:中国计量大学钢铁研究总院西南应用磁学研究所中南大学更多>>
相关期刊:《Journal of Rare Earths》《材料热处理学报》《金属材料研究》《磁性材料及器件》更多>>
相关基金:国家自然科学基金北京市自然科学基金湖南省自然科学基金中国博士后科学基金更多>>
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Effect of antioxidants on the efficiency of jet milling and the powder characteristics of Sm2Co17 permanent magnets
《Chinese Physics B》2024年第9期615-620,共6页Da-Shuai Xu Lei Liu Jian-Hui Yuan Bo Zhou Chuang-Hui Dong Feng-Qing Wang Yong Ding Ying-Li Sun A-Ru Yan 
the National Key R&D Program of China(Grant No.2021YFB3803003);the Youth Innova-tion Promotion Association of Chinese Academy of Sciences(Grant No.2023311);Zhejiang Public Welfare Technology Application Research Project(Grant No.LGG22E010013);Class III Peak Discipline of Shanghai-Materials Science and Engineering(High-Energy Beam Intelligent Processing and Green Manufacturing).
This study investigated the effect of antioxidants on the grinding efficiency,magnetic powder characteristics,microstructure,and magnetic properties of 2:17 type SmCo permanent magnet materials.The results show that a...
关键词:ANTIOXIDANT SmCo permanent magnet oxidation resistance grinding efficiency 
Experimental research on the residual magnetization of a rare-earth permanent magnet for a cryogenic undulator被引量:1
《Chinese Physics B》2013年第7期180-182,共3页何永周 
the Natural Science Foundation of Shanghai,China(Grant No.11ZR1445500);the National Natural Science Foundation of China(Grant No.11175238)
The magnetic properties of commercial polycrystalline Nd2Fe14B (N50M,N45H,N40SH,N35EH) and Sm2Co17(XG30/20,XG26/25,XG22/20) magnets at cryogenic temperatures were tested by using a comprehensive physical propertie...
关键词:Nd2Fe14B and Sm2Co17 spin reorientation residual magnetization intrinsic coercivity 
Relation between oxidation microstructure and the maximum energy product loss of a Sm_2Co_(17) magnet oxidized at 500℃被引量:1
《Chinese Physics B》2011年第12期416-420,共5页刘丽丽 蒋成保 
Project supported by the National High Technology Research and Development Program of China (Grant No. 2010AA03A401);the National Natural Science Foundation of China (Grant No. 51071010);the Aviation Foundation of China (AFC) (Grant No. 2009ZF51063);the Fundamental Research Funds for the Central Universities
The oxidation microstructure and maximum energy product (BH)max loss of a 8m(Co0.76, Fe0.1, Cu0.1, Zr0.04)7 magnet oxidized at 500 ℃ were systematically investigated. Three different oxidation regions were formed...
关键词:Sm2Co17 magnet maximum energy product loss internal reaction layer diffusion zone 
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