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Advances in amorphous and nanocrystalline material

机译:非晶和纳米晶材料的研究进展

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A new amorphous alloy has been recently introduced which shows a saturation magnetic induction B_5 of 1.64 T which is compared with B_5=1.57 T for a currently available Fe-based amorphous alloy and decreased magnetic losses. Such a combination is rare but can be explained in terms of induced magnetic anisotropy being reduced by the alloy's chemistry and its heat treatment. It has been found that the region of magnetization rotation in the new alloy is considerably narrowed, resulting in reduced exciting power in the magnetic devices utilizing the material. Efforts to increase B_5 also have been made for nanocrystalline alloys. For example, a nanocrystalline alloy having a composition of Fe_(80.5)Cu_(1.5)Si_4B_(14) shows B_5 exceeding 1.8 T. The iron loss at 50 Hz and at 1.6 T induction in a toroidal core of this material is 0.46 W/kg which is 2/3 that of a grain-oriented silicon steel. At 20 kHz/0.2 T excitation, the iron loss is about 60% of that in an Fe-based amorphous alloy which is widely used in power electronics. Another example is a Fe_(85)Si_2B_8P_4Cui nanocrystalline alloy with a B_5 of 1.8 T, which is reported to exhibit a magnetic core loss of about 0.2 W/kg at 50 Hz and at 1.5 T induction. This article is a review of these new developments and their impacts on energy efficient magnetic devices.
机译:最近已经引入了一种新的非晶态合金,该非晶态合金的饱和磁感应强度B_5为1.64 T,与目前可用的铁基非晶态合金的B_5 = 1.57 T相比,磁损耗降低了。这种组合很少见,但可以通过合金的化学性质及其热处理降低感应磁各向异性来解释。已经发现,新合金中的磁化旋转区域相当狭窄,导致利用该材料的磁性装置中的激励功率降低。对于纳米晶合金,也已经做出增加B_5的努力。例如,组成为Fe_(80.5)Cu_(1.5)Si_4B_(14)的纳米晶合金的B_5超过1.8T。该材料的环形磁芯在50 Hz和1.6 T感应下的铁损为0.46 W / kg是晶粒取向硅钢的2/3。在20 kHz / 0.2 T激励下,铁损约为在电力电子中广泛使用的铁基非晶态合金的铁损的60%。另一个例子是B_5为1.8 T的Fe_(85)Si_2B_8P_4Cui纳米晶合金,据报道在50 Hz和1.5 T的感应下,其磁芯损耗约为0.2 W / kg。本文是对这些新发展及其对节能磁设备的影响的综述。

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