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国家重点基础研究发展计划(2004CCA04000)

作品数:2 被引量:8H指数:2
相关作者:肖军徐峰刘新才潘晶郭鹏举更多>>
相关机构:宁波大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划浙江省自然科学基金更多>>
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Sm(CoFeCuZr)_(12)快淬薄带的晶体织构与磁性能各向异性被引量:2
2008年
在辊表面速度为15~35 m/s的条件下制备Sm(Co0.68Fe0.20Cu0.08Zr0.04)12合金快淬薄带,对薄带的微观组织、晶体织构和磁性能各向异进行研究。结果表明:薄带的微观组织由成束的Th2Ni17型结构的2-17相取向柱晶在薄带平面内交织排列而成,每一束柱晶内各个柱晶之间互相平行,而各束柱晶的取向随机分布;随着辊速从15 m/s增加到35 m/s,柱晶宽度显著细化,在35 m/s时达到285 nm;当辊表面速度分别为15、25和35 m/s时,薄带自由面的衍射谱中衍射峰强度比(I(200)/I(111))分别为3.0、3.6和4.5,表明快淬薄带自由面存在(200)晶体织构并且随着辊速的增大而增强,2-17相柱状晶的易磁化方向[001]晶向则处于薄带平面内;平行于薄带平面方向的饱和磁化强度和剩磁比垂直于薄带平面方向的分别高出0.21~0.37 T和0.04~0.10 T;随着辊速从15 m/s增大到35 m/s,薄带的饱和磁化强度、剩余磁化强度和矫顽力都相应提高。
潘晶刘新才郭鹏举肖军徐峰
关键词:快淬薄带磁各向异性
Magnetization arrangement of hard magnetic phases and mechanism of magnetization and reversal magnetization of nano-composite magnets被引量:6
2009年
During the process of directional solidification,laser remelting/solidification in the layer on sintered magnets, die-upsetting of cast magnets,or die-upsetting of nano-composites,the arrangements of the easy-magnetization-axes of the hard magnetic phases(Nd2Fe14B,SmCo5 or Sm2Co17 type)in their designed directions have been studied.In Fe-Pt nano-composite magnets,attempts have been taken to promote phase transformation from disordered,soft magnetic A1 to ordered,hard magnetic L10 FePt phase at reduced temperatures.The dependence of the magnetization and reversal magnetization processes on the microstructures,involving the morphology and three critical sizes of particles of the FePt nano-composite magnets,are summarized. With the decrease of the nominal thickness of the anisotropic FePt film epitaxially grown on the single crystal MgO(001)substrate, the reversal magnetization process firstly changes from full domain wall displacement to partial magnetic wall pinning related to the morphology change,where the coercive force increases abruptly.The reversal magnetization process secondly changes from magnetic wall pinning to incoherent magnetization rotation associated with the particles being below the first critical size at which multi-domain particles turn into single domain ones,where the coercive force is still increased.And the reversal magnetization mode thirdly changes from incoherent to coherent rotation referred to the second critical size,where the increase of the coercive force keeps on.However,when the particle size decreases to approach the third critical size where the particles turn into the supperparamagnetic state,the coercive force begins to decrease due to the interplay of the size effect and the incomplete ordering induced by the size effect.Meanwhile,due to the size effect,Curie temperature of the ultra-small FePt particles reduces.
刘新才谢忍潘晶
关键词:纳米复合磁体硬磁
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