首页> 外文期刊>Journal of magnetism and magnetic materials >Surface tension measurement of Nd - Fe - B - X melts (X = O, Cu, Ga, In) as simulated substances of Nd-rich phase in Nd magnet
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Surface tension measurement of Nd - Fe - B - X melts (X = O, Cu, Ga, In) as simulated substances of Nd-rich phase in Nd magnet

机译:ND - Fe - B - X熔融(X = O,Cu,Ga,In)的表面张力测量作为Nd磁铁中Nd-Rich相的模拟物质

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摘要

The microstructure of a neodymium (Nd)- iron (Fe)- boron (B) sintered magnet must be appropriately controlled in the sintering and annealing processes to improve the performance of the Nd magnet. In this study, the surface tension of molten Nd alloys containing copper (Cu), gallium (Ga), or indium (In) as a simulated substance of the Nd-rich phase was measured to investigate the formation mechanism of the microstructure from the perspective of physicochemical properties of the Nd-rich phase. The surface tension of the molten Nd-Fe alloy at the liquidus gradually decreased with an increase in Nd concentration, accompanied by a decrease in temperature. This indicates that lower temperatures are advantageous for the wetting-infiltration of the liquid Nd-rich phase into the interspace between the Nd_2Fe_(14)B grains in the magnet. While considering the dependence of the surface tension of the Nd-Fe-B ternary eutectic on the oxygen (O) concentration, no significant difference in the surface tension was determined in the investigated range of O concentrations (600-3000 mass ppm O). The surface tension of the ternary eutectic alloy did not significantly change with the substitution by Cu, which implies that the change in surface characteristics due to the addition of Cu is not the primary reason for the improvement in wetting of the Nd-rich phase. The surface tension of the ternary eutectic alloy increased with the substitution by Ga, but decreased with the substitution by In.
机译:必须在烧结和退火过程中适当地控制钕(Nd) - 铁(Fe) - 铁(Fe) - 硼(B)烧结磁体的微观结构,以改善Nd磁体的性能。在该研究中,测量含有铜(Cu),镓(Ga)或铟(In)作为富含Nd相的模拟物质的熔融Nd合金的表面张力,以研究微观结构的形成机制富含Nd的阶段的物理化学性质。液体熔融Nd-Fe合金的表面张力随着Nd浓度的增加而逐渐降低,伴随着温度的降低。这表明较低的温度有利于富含液体ND的相位润湿液体ND的相位到磁体中的ND_2FE_(14)B颗粒之间的间隙中。虽然考虑到ND-Fe-B三元共晶对氧气(O)浓度的表面张力的依赖性,但在调查的O浓度(600-3000质量ppm O)中没有确定表面张力的显着差异。三元共晶合金的表面张力随着Cu的取代而没有显着变化,这意味着由于添加Cu的添加而导致的表面特性的变化不是改善富含Nd的相润湿的主要原因。三元共晶合金的表面张力随着GA的取代而增加,但随着替代而替代。

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