首页> 外文会议>International workshop on rare-earth magnets and their applications;International symposium on magnetic anisotropy and coercivity in rare-earth transition metal alloys >Magnetic Properties and TEM Studies of Boron Enriched (Nd_0.95La_0.05)_9.5-11.5Fe_bal.Ti_2B_10.5 and (Nd_0.95La_0.05)_11Fe_bal.Ti_2Co0-15B_10.5 Ribbons
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Magnetic Properties and TEM Studies of Boron Enriched (Nd_0.95La_0.05)_9.5-11.5Fe_bal.Ti_2B_10.5 and (Nd_0.95La_0.05)_11Fe_bal.Ti_2Co0-15B_10.5 Ribbons

机译:富硼(Nd_0.95La_0.05)_9.5-11.5Fe_bal.Ti_2B_10.5和(Nd_0.95La_0.05)_11Fe_bal.Ti_2Co0-15B_10.5碳带的磁性和TEM研究

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The magnetic properties and microstructures of rare earth lean and boron enriched (Nd_0.95La_0.05)_9.5-11.5Fe_bal.Ti_2B_10.5 and (Nd_0.95La_0.05)_11Fe_bal.Ti_2Co0-12.5B_10.5 melt spun ribbons have been investigated. Two magnetic phases, namely alpha-Fe and R_2Fe_14B, were found, by thermal magnetic analysis (TMA), in all the ribbons studied. High intrinsic coercivity (iHc) and maximum energy product ((BH)max) values in the range of 10 to 20 kOe and 14.3 to 16.8 MGOe respectively, have been achieved in (Nd_0.95La_0.05)_9.5-11.5Fe_bal.Ti_2B_10.5 nanocomposites, while the ribbons of (Nd_0.95La_0.05)_11Fe_76.5Ti_2B_10.5 exhibited the best combination of high iHc and (BH)max. Among (Nd_0.95La_0.05)_11Fe_bal.Ti_2Co0-12.5B_10.5 compositions studied, suitable Co-substitutions were found to be effective in increasing the Br and (BH)max, while keeping high vlaue of iHc. It was evidenced from transmission electron microscopy that the homogenity and fine grain size and high volume fraction of the R_2Fe_14B phase led to an increase in the iHc and maximum energy product of nanocomposites studied. The optimum magnetic properties of Br=9.4 kG, iHc=16.1 kOe and (BH)max=18.3 MGOe have been obtained on (Nd_0.95La_0.05)_11Fe_66.5Co_10Ti_2B_10.5 ribbons after an optimum treatment.
机译:稀稀土和硼富集的(Nd_0.95La_0.05)_9.5-11.5Fe_bal.Ti_2B_10.5和(Nd_0.95La_0.05)_11Fe_bal.Ti_2Co0-12.5B_10.5熔融纺丝带的磁性和微观结构调查。通过热磁分析(TMA),在所有研究的带中发现了两个磁相,即α-Fe和R_2Fe_14B。在(Nd_0.95La_0.05)_9.5-11.5Fe_bal中已实现了分别在10至20 kOe和14.3至16.8 MGOe范围内的高固有矫顽力(iHc)和最大能量乘积((BH)max)值。 Ti_2B_10.5纳米复合材料,而(Nd_0.95La_0.05)_11Fe_76.5Ti_2B_10.5的碳带表现出高iHc和(BH)max的最佳组合。在研究的(Nd_0.95La_0.05)_11Fe_bal.Ti_2Co0-12.5B_10.5组成中,发现合适的共取代有效提高Br和(BH)max,同时保持iHc的高副值。透射电子显微镜证明,R_2Fe_14B相的均质性,细晶粒度和高体积分数导致所研究的纳米复合材料的iHc和最大能量积增加。经过优化处理后,在(Nd_0.95La_0.05)_11Fe_66.5Co_10Ti_2B_10.5碳带上获得了Br = 9.4 kG,iHc = 16.1 kOe和(BH)max = 18.3 MGOe的最佳磁性能。

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