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Development of a quadrupole magnet for a mechanical-part-free rotational magnetic field
Applied Physics Express ( IF 2.3 ) Pub Date : 2021-04-23 , DOI: 10.35848/1882-0786/abf62a
Yuka Takeuchi 1 , Hideki Kawaguchi 1 , Mizushi Matsuda 1 , Atom Hamasaki 2
Affiliation  

If the properties or morphologies of a material are optimized, magnetic orientation occurs even at the electromagnet level. To apply a rotational magnetic field, we used finite-integration technique to design a quadrupole electromagnet based on estimated magnetic field-strength distributions and magnetic flux vectors. The generation of a seamless 0.33 T rotating magnetic field without moving parts is demonstrated. It will be possible to adopt it for targets, such as material preparations or body parts, that cannot be examined with the conventional turntable method.



中文翻译:

用于无机械部件旋转磁场的四极磁铁的开发

如果材料的特性或形态得到优化,即使在电磁体水平上也会发生磁取向。为了应用旋转磁场,我们使用有限积分技术根据估计的磁场强度分布和磁通量矢量设计四极电磁铁。演示了无移动部件的无缝 0.33 T 旋转磁场的生成。可以将其用于传统转台方法无法检查的目标,例如材料准备或身体部位。

更新日期:2021-04-23
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