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Influence of quenching rate and composition on optimal annealing temperature of Nd-Fe-B based nanocrystalline hard magnetic alloys

机译:淬火速率和组成对Nd-Fe-B基纳米晶硬磁合金最佳退火温度的影响

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摘要

A number of Nd-Fe-B based nanocrystalline hard magnetic alloys such as Nd(4_x)Pr_xFe_(78)B_(18) (x=0,2 and 4), (Nd_(0.5)Pr_(0.5))_xNb_(1.5)Fe_(88.5)-xB_(10) (x=6, 8, 10 and 12), Nd_(10.5-x)CO_xNb_3Fe_(80.5)B_6 (x=0, 2, 4 and 6), Nd_(10.5)Nb_xFe_(83.5_x)B_6 (x=1.5 and 3) were prepared by melt spinning and subsequently annealing. The relationships between quenching rate, composition and the annealing temperature of the alloys were investigated systematically to obtain optimal fabrication conditions. For each quenching rate and each composition, an optimal annealing temperature could be found in a range from 650 to 750°C so that the nanocrystalline magnetic phases are formed optimally leading to an enhancement of the coercivity and maximum energy product of the alloys. The variation trend of influence of quenching rate and composition on the optimal annealing temperature of the alloys is presented and discussed.
机译:多种Nd-Fe-B基纳米晶硬磁合金,例如Nd(4_x)Pr_xFe_(78)B_(18)(x = 0,2和4),(Nd_(0.5)Pr_(0.5))_ xNb_(1.5 Fe_(88.5)-xB_(10)(x = 6、8、10和12),Nd_(10.5-x)CO_xNb_3Fe_(80.5)B_6(x = 0、2、4和6),Nd_(10.5)Nb_xFe_通过熔融纺丝并随后退火来制备(83.5_x)B_6(x = 1.5和3)。系统地研究了合金的淬火速率,组成和退火温度之间的关系,以获得最佳制造条件。对于每种淬火速率和每种组成,可以发现最佳退火温度在650至750℃的范围内,从而最优地形成了纳米晶磁性相,从而导致合金的矫顽力和最大能量积的提高。给出并讨论了淬火速度和成分对合金最佳退火温度的影响变化趋势。

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