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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Soft magnetic Fe-Co-based amorphous alloys with extremely high saturation magnetization exceeding 1.9 T and low coercivity of 2 A/m
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Soft magnetic Fe-Co-based amorphous alloys with extremely high saturation magnetization exceeding 1.9 T and low coercivity of 2 A/m

机译:软磁性Fe-Co-Co-Co-Co系合合金具有极高的饱和磁化强度超过1.9吨,低矫顽力为2 A / m

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Extremely high saturated magnetization (B-s) of 1.92 T in conjunction with low coercivity (H-c) of 2 A/m was found to be achieved for (Fe0.8Co0.2)(85)B14Si1 amorphous alloy. The high B-s above 1.9 T was the first evidence for amorphous alloys. The slight increase of B to 15% B reduces B-s to 1.88 T. The high B-s of 1.92 T is much higher than that (1.63 T) for the new commercial Fe-B-Si-C amorphous alloy and comparable to commercial Fe-Si steels. The excellent soft magnetic properties, which cannot be obtained for all soft magnetic alloys including amorphous, nanocrystalline and crystalline alloys reported to date, were obtained by annealing the as-spun amorphous alloy ribbon for 600 s at 593 K in a magnetic field of 15.9 kA/m. The high B-s above 1.9 T was obtained in a rather wide annealing conditions of 543-603 K and 300-1200 s, indicating the ease of achieving the excellent soft magnetic properties. No appreciable crystalline phase is recognized in the annealed ribbon even by HRTEM and electron diffraction pattern. The effective permeability at 1 kHz also exhibits high values above 20000 and the Curie temperature also shows high values above the onset temperature of crystallization corresponding to high thermal stability of soft magnetic properties. Besides, the (Fe0.8Co0.2)(84)B15Si1 and (Fe0.8Co0.2)(85)B14Si1 amorphous alloys exhibit good bending ductility even in the optimal annealed state. The corrosion resistance in 3.5 mass% NaCl aqueous solution is better than that for the commercial Fe-Si-B-C amorphous alloy. The first synthesis of the Fe-based amorphous alloy having simultaneously high B-s above 1.9 T, low H-c of about 2 A/m, high effective permeability, high T-c and good bending ductility is promising for future extension of amorphous alloys as engineering soft magnetic materials. (C) 2017 Elsevier B.V. All rights reserved.
机译:对于(Fe0.8COO.2)(85)B14Si1非晶合金,发现了极其高渗透率(H-C)的1.92 T的磁化强度(B-S),例如2A / m的低矫顽力(H-C)。高于1.9 T的高B-S是无定形合金的第一种证据。 B至15%B的轻微增加将BS减少至1.88T。1.92 T的高BS远高于新的商业Fe-B-Si-C非晶合金的(1.63 T),并与商业Fe-Si相当钢。通过在15.9ka的磁场中以593k退火,通过在15.9ka的磁场下退火为600秒来获得迄今为止包括无定形,纳米晶和结晶合金的所有软磁合金的优异软磁性能。 / m。在543-603k和300-1200秒的相当宽的退火条件下获得高于1.9吨,表明易于实现优异的软磁特性。甚至通过HRTEM和电子衍射图案,在退火带中没有明显的结晶相。在1 kHz的有效渗透性也表现出高于20000以上的高值,并且居里温度还显示出对应于软磁特性的高热稳定性的结晶的起始温度的高值。此外,(Fe0.8Co0.2)(84)B15SI1和(Fe0.8CO0.2)(85)B14Si1非晶合金即使在最佳退火状态下也表现出良好的弯曲延展性。 3.5质量%NaCl水溶液中的耐腐蚀性优于商业Fe-Si-B-C非晶合金的耐腐蚀性。具有高于1.9吨的Fe基非晶合金的第一次合成,低HC为约2 A / m,高有效渗透性,高Tc和良好的弯曲延展性是对工程软磁材料的未来延伸的未来延伸。 。 (c)2017年Elsevier B.V.保留所有权利。

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