功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2014年
z2期
105-109
,共5页
球磨处理%相结构%永磁性能%居里温度
毬磨處理%相結構%永磁性能%居裏溫度
구마처리%상결구%영자성능%거리온도
ball milling%phase structure%permanent magnetic properties%Curie temperature
用电弧熔炼法制备 Sm2(Fex Co1-x )17(x=0,0.3和0.7)母合金锭,均匀化退火后采用球磨方法制备纳米晶合金粉末.研究了 Fe 掺杂及球磨处理对Sm2(Fex Co1-x )17合金结构、居里温度及永磁性能的影响.实验结果表明,随着Fe含量增多,合金中1∶5相逐渐减少,当x=0.7时,形成单相2∶17型化合物,同时居里温度从938℃(x=0)下降到590℃(x=0.7).球磨处理过程有利于形成单相2∶17纳米合金粉,饱和磁化强度随着球磨时间的增加逐渐增大,同时内禀矫顽力和磁能积与球磨时间的关系呈两头下降的趋势.球磨时间在0.5~1 h 时,纳米合金粉末的永磁磁性能达到最佳,Sm2 Co17的最佳磁性能为4πMs =0.65 T,iHc=246.8 kA/m,(BH)max=25.5 kJ/m3.
用電弧鎔煉法製備 Sm2(Fex Co1-x )17(x=0,0.3和0.7)母閤金錠,均勻化退火後採用毬磨方法製備納米晶閤金粉末.研究瞭 Fe 摻雜及毬磨處理對Sm2(Fex Co1-x )17閤金結構、居裏溫度及永磁性能的影響.實驗結果錶明,隨著Fe含量增多,閤金中1∶5相逐漸減少,噹x=0.7時,形成單相2∶17型化閤物,同時居裏溫度從938℃(x=0)下降到590℃(x=0.7).毬磨處理過程有利于形成單相2∶17納米閤金粉,飽和磁化彊度隨著毬磨時間的增加逐漸增大,同時內稟矯頑力和磁能積與毬磨時間的關繫呈兩頭下降的趨勢.毬磨時間在0.5~1 h 時,納米閤金粉末的永磁磁性能達到最佳,Sm2 Co17的最佳磁性能為4πMs =0.65 T,iHc=246.8 kA/m,(BH)max=25.5 kJ/m3.
용전호용련법제비 Sm2(Fex Co1-x )17(x=0,0.3화0.7)모합금정,균균화퇴화후채용구마방법제비납미정합금분말.연구료 Fe 참잡급구마처리대Sm2(Fex Co1-x )17합금결구、거리온도급영자성능적영향.실험결과표명,수착Fe함량증다,합금중1∶5상축점감소,당x=0.7시,형성단상2∶17형화합물,동시거리온도종938℃(x=0)하강도590℃(x=0.7).구마처리과정유리우형성단상2∶17납미합금분,포화자화강도수착구마시간적증가축점증대,동시내품교완력화자능적여구마시간적관계정량두하강적추세.구마시간재0.5~1 h 시,납미합금분말적영자자성능체도최가,Sm2 Co17적최가자성능위4πMs =0.65 T,iHc=246.8 kA/m,(BH)max=25.5 kJ/m3.
A series of Sm2(FexCo1-x)17(x=0,0.3,0.7)alloy ingots were made by arc-melting method,and then annealed for homogenization.The nanocrystalline Sm2 (Fex Co1-x )17 powders were prepared by ball milling the annealed sample.Effect of Fe-doping and ball milling on the phase structure,the Curie temperature and mag-netic properties of the alloys has been systematically investigated.The experimental results show that upon in-creasing the Fe content,1∶5 phase in the alloy gradually reduces,and for x=0.7 sample,1∶5 phase disap-pears,forming a single-phase 2∶17 type compound.Curie temperature decreases from 938 ℃ for the x=0 sample to 590 ℃ for x=0.7.Meanwhile ball milling process was beneficial for the formation of 2∶17 phase and after ball milling for 0.5 h,1∶5 phase in the alloy disappears,forming single-phase nanopowders.With an in-crease of milling periods of time,saturation magnetization gradually increases,while the intrinsic coercive force and magnetic energy product show a tendency of increase at first and then decrease.Samples milled for 0.5-1 h exhibit optimal magnetic properties with (BH)max=25.5 kJ/m3,iHc=246.8 kA/m and 4πMs=0.65 T for Sm2 Co17 nanopowder.