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首页> 外文期刊>CERAMICS INTERNATIONAL >Magnetic properties and thermal stability of SrFe12O19/gamma-Fe4N composites with effective magnetic exchange coupling
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Magnetic properties and thermal stability of SrFe12O19/gamma-Fe4N composites with effective magnetic exchange coupling

机译:具有有效磁交换耦合的SRFE12O19 / GAMMA-FE4N复合材料的磁性和热稳定性

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The SrFe12O19/gamma-Fe4N composites were fabricated through physical mixing and the mass of gamma-Fe4N nanoparticles was controlled as 0, 5 wt%, 10 wt% and 15 wt% in four batches of experiments. The magnetic properties of the composites were investigated. It was found that when gamma-Fe4N nanoparticles were 5 wt%, and 10 wt%, effective exchange coupling between gamma-Fe4N and SrFe12O19 was observed, and the maximum energy product was increased by 13.5%, and 21.2%, respectively, over pure SrFe12O19. The existence of magnetic exchange coupling between SrFe12O19 and gamma-Fe4N was confirmed by both the shape of their hysteresis loops and Henkel plots. The thermal stability investigation indicated that the thermal treatment could slightly deteriorate the magnetic exchange coupling due to the sintering of gamma-Fe4N nanoparticles, but the maximum energy product was lithe impacted.
机译:通过物理混合制造SRFE12O19 /γ-Fe4N复合材料,在四批实验中,通过物理混合制造γ-Fe4N纳米粒子的质量,将0,5wt%,10wt%和15wt%控制。 研究了复合材料的磁性。 发现当γ-Fe4N纳米颗粒为5wt%时,观察到γ-Fe4N和SRFE12O19之间的有效交换偶联,并且最大能量产物分别增加13.5%和21.2%,纯度 srfe12o19。 通过其滞后环和Henkel图的形状证实了SRFE12O19和γ-FE4N之间的磁交换耦合的存在。 热稳定性研究表明,由于γ-FE4N纳米颗粒的烧结,热处理可能略微劣化磁交换耦合,但最大能量产物受到粘液。

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