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Novel Flexible Nanocrystalline Flake Ribbons for High-Frequency Transformer Design

机译:用于高频变压器设计的新型柔性纳米晶体薄片丝带

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The eddy current loss for nanocrystalline alloys is detrimental at high frequencies due to the low material resistivity. Novel flexible nanocrystalline flake ribbons fabricated from Fe-based nanocrystalline alloys are introduced to solve the problem. In this paper, the manufacturing process of a novel material and the mechanism of reducing eddy current loss are described. The material characterisation and magnetic measurement of nanocrystalline flake ribbons are given. The core losses of nanocrystalline flake ribbons and conventional nanocrystalline ribbons are compared. The experimental results show that the core losses of nanocrystalline flake ribbons decrease by 30% compared to the corresponding nanocrystalline ribbons. Following an optimal design procedure, high frequency (HF) transformers built by the flake ribbons and ferrites are tested in a 1.2 kW DAB converter, and the core losses are reduced by over 50% compared with ferrite transformers.
机译:由于低材料电阻率,纳米晶合金的涡流损失是对高频的有害性。 引入了由Fe基纳米晶合金制造的新型柔性纳米晶体薄片丝带来解决问题。 本文描述了一种新材料的制造过程和降低涡流损耗的机制。 给出了纳米晶片状带的材料表征和磁力测量。 比较纳米晶片状带和常规纳米晶体丝带的芯损失。 实验结果表明,与相应的纳米晶色带相比,纳米晶片剥落带的芯损失降低了30%。 在最佳设计过程之后,由鳞片带和铁氧体构建的高频(HF)变压器在1.2 kW DAB转换器中测试,与铁氧体变压器相比,核心损耗减少了50%以上。

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