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Sm–Co high-temperature permanent magnet materials

机译:m钴高温永磁材料

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摘要

Permanent magnets capable of reliably operating at high temperatures up to ~ 450 ℃ are required in advanced power systems for future aircrafts, vehicles, and ships. Those operating temperatures are far beyond the capability of Nd–Fe–B magnets. Possessing high Curie temperature, Sm–Co based magnets are still very important because of their high-temperature capability, excellent thermal stability, and better corrosion resistance. The extensive research performed around the year 2000 resulted in a new class of Sm2(Co, Fe, Cu, Zr)17-type magnets capable of operating at high temperatures up to 550 ℃. This paper gives a systematic review of the development of Sm–Co permanent magnets, from the crystal structures and phase diagrams to the intrinsic magnetic properties. An emphasis is placed on Sm2(Co, Fe, Cu, Zr)17-type magnets for operation at temperatures from 300 ℃ to 550 ℃. The thermal stability issues, including instantaneous temperature coefficients of magnetic properties, are discussed in detail. The significance of nanograin structure, nanocrystalline, and nanocomposite Sm–Co magnet materials, and prospects of future rare-earth permanent magnets are also given.
机译:在未来的飞机,车辆和轮船的高级动力系统中,需要能够在高达450℃的高温下可靠运行的永磁体。这些工作温度远远超出了Nd-Fe-B磁体的能力。 Sm-Co基磁体具有很高的居里温度,因为它们具有高温能力,出色的热稳定性和更好的耐腐蚀性,仍然非常重要。大约在2000年左右进行了广泛的研究,从而产生了一种新的Sm2(Co,Fe,Cu,Zr)17型磁体,能够在高达550℃的高温下工作。本文对Sm-Co永磁体的发展进行了系统的综述,从晶体结构和相图到固有磁性能。重点放在可在300℃至550℃的温度下工作的Sm2(Co,Fe,Cu,Zr)17型磁体。详细讨论了热稳定性问题,包括磁性能的瞬时温度系数。还给出了纳米晶粒结构,纳米晶体和纳米复合Sm-Co磁体材料的重要性,以及未来稀土永磁体的前景。

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  • 来源
    《中国物理:英文版》 |2019年第1期|1-21|共21页
  • 作者

    Shiqiang Liu;

  • 作者单位

    40 Jackson Ave., Braselton, GA 30517, USA;

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  • 原文格式 PDF
  • 正文语种 eng
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