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The magnetic and mechanical properties of NdFeB type permanent magnets and the effect of quenching

机译:NdFeB型永磁体的磁性和机械性能以及淬火的影响

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The fracture strength of Nd/sub 15/Fe/sub 77/B/sub 8/ and Nd/sub 14.5/Dy/sub 1.5/Nb/sub 1/Fe/sub 76/B/sub 7/ sintered magnets has been measured to be 285(40) MPa and 240(48) MPa, respectively. The fracture mechanism appears to be controlled by a critical level of tensile stress. In all the cases considered, Nd-Fe-B-type permanent magnets have been shown to fracture in a brittle manner along the grain boundaries. This is consistent with poor adhesion between Nd/sub 2/Fe/sub 14/B grains and could be due to the lack of the neodymium-rich phase along certain interfaces even in the fully sintered condition. The addition of dysprosium and niobium to the Nd-Fe-B alloy did not alter the fracture behavior of the material, whereas these additions have a marked effect on the magnetic properties. Quenching from 1370 K was found to greatly affect the fracture stress. This is possibly due to rapid cooling through the melting point of the neodymium-rich phase, which prevents sufficient wetting of the grains. Indeed, when the quench rate was increased the effect was so severe that some samples were prone to fail on pulse magnetization. However, where this did not occur, the effect was reversible on annealing at 903 K for 1 h. The intrinsic coercivity decreased progressively with increasing quench temperature above 900 K. This could be due to progressively less wetting with increasing quench temperature.
机译:测量了Nd / sub 15 / Fe / sub 77 / B / sub 8 /和Nd / sub 14.5 / Dy / sub 1.5 / Nb / sub 1 / Fe / sub 76 / B / sub 7 /烧结磁体的断裂强度分别为285(40)MPa和240(48)MPa。断裂机制似乎受拉伸应力的临界水平控制。在所有考虑的情况下,Nd-Fe-B型永磁体已显示出沿晶界脆性断裂。这与Nd / sub 2 / Fe / sub 14 / B晶粒之间的附着力差相一致,这可能是由于即使在完全烧结的条件下,沿某些界面也缺乏富钕相。向Nd-Fe-B合金中添加和铌不会改变材料的断裂行为,而这些添加对磁性能有显着影响。发现从1370 K淬火对断裂应力有很大影响。这可能是由于快速冷却至富钕相的熔点而造成的,这阻碍了晶粒的充分润湿。确实,当增加淬灭速率时,效果是如此严重,以至于某些样品在脉冲磁化时容易失效。但是,在没有发生这种情况的情况下,在903 K退火1小时后,效果可逆。固有矫顽力随着淬火温度超过900 K的升高而逐渐降低。这可能是由于随着淬火温度的升高逐渐降低了润湿性。

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