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Effect of heating rate on densification and magnetic properties of MnZn ferrites sintered by multiphysical fields coupling methodology

机译:加热速率对多物理场耦合法烧结MnZn铁氧体致密化和磁性能的影响

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摘要

This work has provided a novel idea of fabricating MnZn bulk ferrite materials. MnZn ferrite powders with a composition of Zn0.8Mn0.2Fe2O4 (wt-%) were sintered under coupled multiphysical fields applied by Gleeble-1500D thermal simulation instrument. Cylindrical bulk ferrites with a diameter of 2.5 mm and a height of 2.5 mm were prepared, and the effect of heating rate on densification and magnetic properties of MnZn ferrites was studied. The results show that the densification and magnetic properties of MnZn ferrite were directly affected by the heating rates. A relative density of up to 98.5% was achieved when the heating rate of 100°C s-1 was used. Such magnetic properties as maximum energy product and remanence of MnZn ferrite sintered under coupled multiphysical fields are improved when compared to samples produced by conventional sintering. In particular, a 204.39% increase in maximum energy product is obtained. Finally, the densification mechanisms of multiphysical fields sintering method are discussed.
机译:这项工作为制造MnZn块状铁氧体材料提供了一个新颖的想法。在由Gleeble-1500D热模拟仪施加的多物理场耦合下,烧结组成为Zn0.8Mn0.2Fe2O4(wt%)的MnZn铁氧体粉末。制备了直径为2.5 mm,高度为2.5 mm的圆柱形块状铁氧体,并研究了加热速率对MnZn铁氧体的致密化和磁性能的影响。结果表明,加热速率直接影响锰锌铁氧体的致密化和磁性能。当使用100℃s -1的加热速率时,相对密度达到98.5%。与通过常规烧结生产的样品相比,在耦合多物理场下烧结的磁性能(例如最大能量乘积和MnZn铁氧体的剩磁)得到改善。特别地,最大能量积增加了204.39%。最后,讨论了多物理场烧结法的致密化机理。

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