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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of Nb substitution on the temperature characteristics and microstructures of rapid-quenched NdFeB alloy
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Effect of Nb substitution on the temperature characteristics and microstructures of rapid-quenched NdFeB alloy

机译:铌替代对快淬NdFeB合金温度特性和组织的影响

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摘要

Effect of Nb substitution on the magnetic properties, temperature characteristics and microstructure of rapid-quenched Nd_(11)Dy_(0.5)Fe_(82.4-n)Nb_nB_(6.1) (n = 0, 0.5, 1, 1.5, 2) permanent magnets has been investigated. It is found that H_(cj) increases with increasing Nb content and the irreversible flux loss decreases with that. Nb substitution makes grains smaller and leads to the homogenization and regularization of grains. Also Nb substitution can enhance exchange coupling pining field and reduce inner dispersal magnetic field. As a result, the irreversible flux loss decreases notably and the magnets can be used at higher temperature. The maximum operating temperature of Nd_(11)Dy_(0.5)Fe_(81.4)Nb_1B_(6.1) alloy is higher than 150 deg C.
机译:Nb替代对快速淬火Nd_(11)Dy_(0.5)Fe_(82.4-n)Nb_nB_(6.1)(n = 0、0.5、1、1.5、2)永磁体的磁性能,温度特性和微观结构的影响已被调查。发现随着Nb含量的增加,H_(cj)增大,不可逆磁通损耗也随之减小。 Nb替代使晶粒更小,并导致晶粒均质化和规则化。 Nb替代也可以增强交换耦合钉扎场并减少内部扩散磁场。结果,不可逆磁通损耗显着降低,并且磁体可以在更高的温度下使用。 Nd_(11)Dy_(0.5)Fe_(81.4)Nb_1B_(6.1)合金的最高工作温度高于150摄氏度。

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