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作 者:唐少龙[1] 吴昌衡[2] 金希梅[2] 王博文[2] 庄育智[2]
机构地区:[1]湘潭大学机械工程系 [2]中国科学院金属研究所
出 处:《材料科学与工艺》1999年第2期1-5,共5页Materials Science and Technology
基 金:国家自然科学基金
摘 要:采用X射线和磁性测量研究了退火机械合金化NdFe_(10.5+0.5x)V_(1.5(1-x))Ti_x合金相的形成和磁学性能.根据X射线和初始交流磁化的结果作出了ThMn_(12)结构1-12相的形成与钛的含量,退火温度的关系图.随钛含量增高,1-12相的形成温度升高,当钛含量x=1时,1-12相要在950℃以上温度退火才能形成.氮化后,1-12相的结构不变,居里温度提高的150~180℃,随钛含量增加氮化物的稳定变差.由于1-12相的形成温度随钛含量增加而升高,获得纳米尺度的1-12相变得困难,同时较高钛含量的氮化物·的稳定性较差,结果导致NdFe_(10.5+0.5x)V_(1.5(1-x))Ti_xN_y_磁体的矫顽力随钛含量增加明显下降.Phase formation in annealed mechanical alloying NdFe_(10.5+0.5x)V_(1.5(1-x)) alloys, and magnetic properties of the consequent phases and their nitrides were investigated by using x-ray diffraction. and magnetic measurement. From the x-ray diffractin patterns and ac initial susceptibility we have constructed a phase formation diagram as a function of Ti content x and annealing temperature. The temperature of l-12 phase formation increases with increasing Ti content. When x= I the ThMn_(12) structure l-12 phase is obtained by annealing the as-milled powder at the temperature is enhanced from 150 to 180 . The nitride with low Ti content is more stable than that with high Ti content. Since the increase of temperature of l-12 phase formation makes it more difficult to obtain nanometer sized grain of l-12 phase and the nitride is more unstable with increasing Ti content, the hard magnetic properties of NdFe_(l0.5+0.5x)V_(I.5(1-x))Ti_xN_y, magnets decreases with increasing Ti content.
分 类 号:TG132.27[一般工业技术—材料科学与工程] TG111.92[金属学及工艺—合金]
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