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Formation of amorphous Fe62Co6Zr6Nb4Cr2B20 alloy with a remarkable supercooled liquid region before crystallization

机译:结晶前形成具有明显过冷液相区的非晶态Fe62Co6Zr6Nb4Cr2B20合金

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An amorphous phase can be formed in Fe62Co6Zr6Nb4Cr2B20 alloy by melt spinning. The Fe-based metallic glass shows a remarkable supercooled liquid region of about 84.8 K, which indicates high thermal stability and large glass-forming ability. The crystallization takes place through a single exothermic reaction, accompanying the precipitation of more than three kinds of crystallization phases such as alpha-Fe, Fe2Zr and ZrB2. The long-range atomic rearrangement necessary for the simultaneous precipitation of the multiple crystalline phases seems to cause the appearance of the large supercooled liquid region through the retardation of the crystallization reaction. The Fe-based glassy alloy exhibits soft ferromagnetic properties. There is no distinct change in saturation magnetization (sigma(s)) and coercive force (H-c) with annealing temperature below the crystallization temperature. The devitrification leads to a considerable enhancement in both sigma(s) and H-c The saturated magnetostriction of the Fe-based glass exhibits a relatively low value of 28 x 10(-6). (C) 2002 Elsevier Science B.V. All rights reserved. [References: 17]
机译:可以通过熔融纺丝在Fe62Co6Zr6Nb4Cr2B20合金中形成非晶相。铁基金属玻璃显示出约84.8 K的显着过冷液体区域,这表明高热稳定性和大的玻璃形成能力。结晶是通过单个放热反应进行的,伴随有三种以上结晶相的沉淀,例如α-Fe,Fe2Zr和ZrB2。同时析出多个结晶相所需的长距离原子重排似乎通过延迟结晶反应而导致出现大的过冷液体区域。铁基玻璃态合金表现出软的铁磁性能。在低于结晶温度的退火温度下,饱和磁化强度(s)和矫顽力(H-c)没有明显变化。失透导致σ和H-c的显着提高。Fe基玻璃的饱和磁致伸缩呈现出相对较低的值28 x 10(-6)。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:17]

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