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Effects of Fe3P Addition on Sintering Behaviors and Magnetic Properties of Fe-P Alloys Sintered at Low Temperatures

机译:Fe3P添加对低温烧结Fe-P合金烧结行为和磁性的影响

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摘要

In this paper, we demonstrate that trace amounts of P addition can activate the sintering of carbonyl powder and influence the magnetic properties of the sintered materials. Fe-x P (x = 0, 0.6, 0.8, 1.0, 1.2, 1.4, and 1.6 wt.%) samples were fabricated by doping carbonyl powder with different amounts of Fe3P. They were sintered at 1000 °C in argon for 2 h. The sintering of the Fe-0 wt.% P sample was interrupted by the ferrite-austenite transformation at 912 °C due to the low diffusion rate of the austenite. The addition of P can stabilize the ferrite, and suppress the ferrite-austenite transformation. Therefore, all the P-containing samples shrank continuously throughout the whole sintering process, which showed improved sintering densities compared to the P-free sample. However, the sintering density did not increase monotonously with increasing P content. The Fe-1.4 wt.% P and Fe-1.6wt.% P samples easily got oxidized during sintering, and the densification process was thus influenced by the P-containing oxide particles. As a result, the Fe-1.2 wt.% P sample exhibited the highest sintering density (7.664 g/cm3) and the best magnetic properties (coercive force 172 A/m).
机译:在本文中,我们证明了痕量的P加入可以激活羰基粉末的烧结并影响烧结材料的磁性。 Fe-X P(x = 0,0.6,0.8,1.0,1.2,1.4和1.6重量%)通过掺杂具有不同量的Fe3P的羰基粉末来制造样品。它们在1000℃下烧结2小时。由于奥氏体的低扩散速率,在912℃下,Fe-0wt.%P样品的烧结是由912℃下断的。添加P可以稳定铁氧体,抑制铁氧体 - 奥氏体转化。因此,含P的样品在整个烧结过程中连续地缩短,这与与非无版样品相比显示出改善的烧结密度。然而,烧结密度随着P含量的增加而没有单调增加。 Fe-1.4重量%p和Fe-1.6wt。%p样品在烧结期间容易被氧化,因此致密化方法受到含p氧化物颗粒的影响。结果,Fe-1.2重量%。%P样本表现出最高的烧结密度(7.664g / cm 3)和最佳磁性(矫顽力172a / m)。

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