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A generalized solidification model and microstructural verification for the Nd–Fe–B–Ti–C system processed by rapid solidification

机译:快速凝固加工ND-Fe-B-Ti-C系统的广义凝固模型和微观结构验证

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摘要

For the Nd2Fe14B (2-14-1) compound, the optimal grain size should be smaller than the size of the single domain size of 150 nm. Transition metal carbides (TMC) also reduce the quench rate necessary to achieve the optimal or overquenched condition. This allows inert gas atomization (IGA) to produce viable magnetic materials. In this article we will demonstrate that optimal microstructure for the 2-14-1 can be produced by IGA with the addition of TiC. Moreover, a solidification model will be presented to show (1) how recalescence is a critical feature to the evolution of the microstructure in rapidly solidified materials and (2) the role TMC and other solute phases have on inhibiting grain growth so that lower quench rates can be employed.
机译:对于ND2FE14B(2-14-1)化合物,最佳粒度应小于单结构域尺寸为150nm的尺寸。过渡金属碳化物(TMC)也降低了实现最佳或过度条件所需的淬火率。这允许惰性气体雾化(IgA)产生可行的磁性材料。在本文中,我们将证明2-14-1的最佳微观结构可以通过IgA加入TIC来生产。此外,将提出凝固模型以显示(1)如何复次凝固材料的微观结构的展现的关键特征,(2)作用TMC和其他溶质相对于抑制晶粒生长,使得较低的淬火率可以雇用。

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