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Grain refinement mechanism of soft-magnetic alloys with nanocrystals embedded in amorphous matrix

机译:无定形基质中纳米晶体的软磁合金晶粒细化机理

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To obtain uniform and stable nanostructure with fine α-Fe grains is very important for the wide applications of Fe-based nanocrystalline soft-magnetic alloys. In this study, the nanostructure evolution of the Fe84.75Si2B9P3C0.5Cu0.75(at.%) alloy after annealing under different conditions was characterized in detail. It is found that the alloy exhibits excellent structural stability, which can maintain small α-Fe grains for a prolonged annealing time at low temperature. The increase of annealing temperature and/or annealing time will lead to the precipitation of compound phases in the intergranular amorphous interphase, which affects the α-Fe grains size greatly and determines the structural stability. The elemental mappings of the nanostructured alloys reveal that metalloid elements are enriched in the intergranular amorphous interphase, wrapping around α-Fe grains. The grain refinement and nanostructure stability of these alloys are derived from the shielding and soft-impingement effects of the core-shell like structure. The nanostructure stability is lost with the precipitation of compound phases in the intergranular amorphous interphase, owing to the break-down of the shielding layer, which results in the rapid coarsening of α-Fe grains by coalescence.
机译:为了获得具有细α-Fe颗粒的均匀和稳定的纳米结构对于Fe基纳米晶体软磁合金的广泛应用非常重要。在本研究中,详细表征了在不同条件下退火后Fe84.75Si2b9p3c0.5cu0.75(attm)合金的纳米结构演化。结果发现,合金具有出色的结构稳定性,其可以在低温下维持延长的退火时间的小α-Fe颗粒。退火温度和退火时间的增加将导致晶间无定形间相互作用中复合相的沉淀,这大大影响α-Fe颗粒尺寸并确定结构稳定性。纳米结构合金的元素映射显示,在晶间非晶态间相互作用中富含金属元素,包裹在α-Fe颗粒周围。这些合金的晶粒细化和纳米结构稳定性来自芯壳的屏蔽和软撞击效果。由于屏蔽层的分解,纳米结构稳定性随着晶间非晶间相互作用的复合相的沉淀而损失,这导致通过聚结的α-Fe颗粒的快速粗化。

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