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粘结Sm_2TM_(17)高性能稀土永磁体工艺及稳定性的研究 被引量:2
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作者 黄付贵 李东 吕其春 《中国稀土学报》 CAS CSCD 北大核心 1990年第1期47-51,共5页
环氧树脂粘结Sm_2TM_(17)稀土永磁体与烧结磁体不同的是,将熔炼后的铸锭直接固溶处理,时效,粉碎,然后与环氧树脂粘结剂混匀并于磁场下压制成型,加热固化。当采用Fe含量为23%的SmCo_(4.9)Fe_(27)Cu_(0.55)Zro_(0.12)合金,进行适当的热... 环氧树脂粘结Sm_2TM_(17)稀土永磁体与烧结磁体不同的是,将熔炼后的铸锭直接固溶处理,时效,粉碎,然后与环氧树脂粘结剂混匀并于磁场下压制成型,加热固化。当采用Fe含量为23%的SmCo_(4.9)Fe_(27)Cu_(0.55)Zro_(0.12)合金,进行适当的热处理及选用一定成型工艺参数时,获得磁体的最佳性能为:Br=8250G,_i H_c=13000Oe,(BH)_m=16MGOe。对磁体稳定性的研究表明:磁体在25~150℃范围内不可逆损失小于4%,25~70℃范围内的平均可逆温度系数α=-0.03%/℃,最高长期使用温度为130℃,以及具有良好的耐酸、碱和盐的化学腐蚀能力。 展开更多
关键词 sm2tm17 稀土永磁体 粘结
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STUDIES ON PROCESS AND STABILITY OF BONDED Sm_2TM_(17)MAGNETS WITH HIGH COERCIVITY AND HIGH ENERGY PRODUCT
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作者 黄付贵 李东 吕其春 《Journal of Rare Earths》 SCIE EI CAS CSCD 1990年第3期194-199,共6页
The process of the epoxy-bonded Sm_2TM_(17) magnets includes:(1)after melting,the ingots are treated by solid soluiion,and then aged and pulverized;(2)the obtained alloy powder is mixed with epoxy resin bind- er;(3)th... The process of the epoxy-bonded Sm_2TM_(17) magnets includes:(1)after melting,the ingots are treated by solid soluiion,and then aged and pulverized;(2)the obtained alloy powder is mixed with epoxy resin bind- er;(3)the mixture is pressed in a magnetic field;(4)the compacts are cured.When the SmCo_(4.9)Fe_(2.7)Cu_(0.54)Zr_(0.13) alloy is heat treated and pressed with optimum pressing parameters,the high quality bonded magnets with B_r=8250 G,_iH_c=13000 Oe,and(BH)_(max)=16MGOe can be obtained.The stability of the magnets is studied also.The irreversible loss of O.C.(open circuit)remanence B_r in the temperature range between 25 and 150℃,is less than 4%.The average temperature coefficient at temperatures between 25 and 70℃ is-0.03%/℃.The magnets obtained have heat resistance up to 130℃ even in long-term service, and have good corrosion resistance in acid,alkali and salt solutions. 展开更多
关键词 MAGNETS WITH HIGH COERCIVITY AND HIGH ENERGY PRODUCT STUDIES ON PROCESS AND STABILITY OF BONDED sm2tm SM
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Improved Electrical Insulation of Rare Earth Permanent Magnetic Materials With High Magnetic Properties 被引量:4
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作者 CHANG Ying WANG Da-peng +3 位作者 LI Wei PAN Wei YU Xiao-jun QI Min 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2009年第2期84-88,共5页
Rare earth permanent magnetic materials are typical electrical conductor, and their magnetic properties will decrease because of the eddy current effect, so it is difficult to keep them stable for a long enough time u... Rare earth permanent magnetic materials are typical electrical conductor, and their magnetic properties will decrease because of the eddy current effect, so it is difficult to keep them stable for a long enough time under a high frequency AC field. In the present study, as far as rare earth permanent magnets are concerned, for the first time, rare earth permanent magnets with strong electrical insulation and high magnetic performance have been obtained through experiments, and their properties are as follows: (i) Sm1 TM17 : Br=0. 62 T, jHc=803.7 kA/m, (BH)m= 58.97 kJ/m^3, p=7 Ω· m; (2) NdFeB: Br=0.485 T, jHc=766.33 kA/m, (BH)m=37.96 kJ/m^3, ρ=Ω · m. The magnetic properties of Sm2TM17 and NdFeB are obviously higher than those of ferrite permanent magnet, and the electric insulating characteristics of Sm2TM17 and NdFeB applied have in fact been approximately the same as those of ferrite. Therefore, Sm2TM17 and NdFeB will possess the ability to take the place of ferrite under a certain high frequency AC electric field. 展开更多
关键词 Sm2 TM17 NDFEB electrical insulation eddy current
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