磁铁
电磁铁
电永磁体
矫顽力
材料科学
偶极磁铁
钕磁铁
磁场
磁铁之间的作用力
各向异性
核磁共振
极化(电化学)
凝聚态物理
极片
磁能
物理
机械工程
超导磁体
光学
永磁同步发电机
磁化
工程类
化学
物理化学
量子力学
标识
DOI:10.1016/s0304-8853(02)00335-9
摘要
Rare-earth permanent magnets are ideally suited to generate magnetic fields comparable to their spontaneous polarization JS. Near-square hysteresis loops and large values of the coercivity and anisotropy fields greatly simplify magnet design, as each magnet block is effectively transparent to the magnetic fields produced elsewhere in the magnet assembly. The fields generated by compact and efficient magnet structures requiring no continuous expenditure of energy can be static or variable, uniform or nonuniform. Permanent magnets are fully competitive with electromagnets for fields up to 2 T, and fields as high as to 5 T can be produced in a small volume. When a field with a rapid spatial variation is required, permanent magnets may offer the only practicable solution. Both permanent magnet structures and the uses to which they are put are reviewed, classifying the magnet applications in terms of the nature of the field, the effect on the magnet and the physical effect exploited.
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