基于永久磁铁的电机的未来:稀土将如何影响电气化?
Benjamin Podmiljšak1, Boris Saje1,2, Petra Jenuš1
1Department for Nanostructural Materials, Jožef Stefan Institute, Jamova cesta 39, 1000 Ljubljana, Slovenia.
Materials (Basel, Switzerland)
|February 24, 2024
概括
本综述探讨了永久磁铁和电机之间的关键联系,强调了它们对电气化的联合重要性. 它检查了当前的设计,未来的创新,以及稀土供应链的挑战.
科学领域:
- 电气工程 电气工程
- 材料科学 材料科学 材料科学
- 可持续能源 可持续能源
背景情况:
- 电气化的努力往往忽视了永久磁铁在电机性能中的重要作用.
- 现有的审查将电机工程和磁性材料科学分为部分,错过了关键的相互依赖.
研究的目的:
- 弥合电机设计与磁性材料科学之间的差距.
- 提供对永久磁铁电机最新技术的全面审查.
- 探索优化电机和解决材料供应挑战的未来方向.
主要方法:
- 文献审查侧重于永久磁铁和电机技术之间的协同作用.
- 分析磁铁和电机设计的历史发展和当前趋势.
- 探索新兴技术,如增材制造和人工智能等.
主要成果:
- 目前的电机和磁铁设计审查是孤立的,忽视了它们的综合影响.
- 来自先进制造和人工智能的新设计自由度未得到充分利用.
- 稀土供应链对未来的电气化目标构成风险.
结论:
- 整体的方法整合磁力和汽车工程对于推进电气运输至关重要.
- 需要创新的,非传统的设计来利用新技术.
- 通过回收开发稀土磁铁的循环经济对于供应链的稳定性至关重要.
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