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Effects of Strain and Stain Rate on Microstructure and Magnetic Properties of Nd–Fe–B Magnets During Die-Upsetting Process

机译:应变和染色速率对N锻过程中钕铁硼磁体的组织和磁性能的影响

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摘要

The effect of strain and stain rate on microstructure and the magnetic properties of Nd–Fe–B magnets during hot-deformation process have been studied with commercial melt-spun flakes with a composition of NdFeCoGaB. The compacts produced by hot pressing at 700 °C under 100 MPa in vacuum were subjected to die upsetting at 700 °C with different deformation conditions of strain rate 0.1–0.001 and height reduction 40%–75%. The remanence and coercivity tended to increase and decrease with increasing strain, respectively. At below the strain of 0.5, the remanence increased more quickly with decreasing the strain rate, but the tendency was gradually reversed with increasing the strain. This was because the prolonged deformation induced the squeeze-out of Nd-rich phase from grain boundaries and the formation of coarse Nd-rich phase. In addition, the sample subjected to the prolonged deformation had quite thin and discontinuous grain boundary phase, which resulted in the decrease of the coercivity.
机译:已经使用具有NdFeCoGaB成分的商业熔纺薄片研究了应变和污渍率对Nd-Fe-B磁体在热变形过程中的微观结构和磁性的影响。在700°C和100 MPa的真空条件下通过热压生产的压坯在700°C的模锻中经受变形速率为0.1-0.001和高度降低40%-75%的不同变形条件。剩磁和矫顽力分别随应变的增加而增加和减少。在低于0.5的应变下,剩磁随着应变速率的降低而更快地增加,但是随着应变的增加,这种趋势逐渐逆转。这是因为长时间的变形导致富Nd相从晶界被挤出,并形成了富Nd粗相。另外,经受长时间变形的样品具有相当薄且不连续的晶界相,这导致矫顽力降低。

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