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Application of high-temperature permanent magnets Sm(Co, Fe, Cu, Zr)_Z in PPM focusing system

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【作者】 彭龙; 杨青慧; 刘颖力; 宋远强; 张怀武;

【Author】 PENG Long , YANG Qinghui , LIU Yingli , SONG Yuanqiang , ZHANG Huaiwu (State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu 610054, China)

【机构】 State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China;

【摘要】 Rare earth permanent magnets Sm(Co, Fe, Cu, Zr)Z with outstanding performance and high-temperature thermal stability were fabricated. Optimized by Fe content and process, Sm(Co0.72Fe0.15Cu0.1Zr0.03)7.5 magnet with Br>0.75 T and Hci>1300 kA/m at 300 °C can be obtained. According to the performance data of Sm(Co0.72Fe0.15Cu0.1Zr0.03)7.5, the magnetic field along central axis BZ in periodic permanent magnet (PPM) focusing system was simulated using electromagnetic field analysis software Maxwell 2D/3D. The BZ exhibited typical cosine curve along central axis, and the peak value of BZ was high enough to meet the demand of PPM focusing system at room temperature even at 200±20 °C. Additionally, a kind of simple cooling structure for PPM focusing system was designed by setting cooling pipe between polepieces. Simulated results showed that smooth cosine curve of BZ was successfully achieved with good control of the thickness of cooling pipe.

【Abstract】 Rare earth permanent magnets Sm(Co, Fe, Cu, Zr)Z with outstanding performance and high-temperature thermal stability were fabricated. Optimized by Fe content and process, Sm(Co0.72Fe0.15Cu0.1Zr0.03)7.5 magnet with Br>0.75 T and Hci>1300 kA/m at 300 °C can be obtained. According to the performance data of Sm(Co0.72Fe0.15Cu0.1Zr0.03)7.5, the magnetic field along central axis BZ in periodic permanent magnet (PPM) focusing system was simulated using electromagnetic field analysis software Maxwell 2D/3D. The BZ exhibited typical cosine curve along central axis, and the peak value of BZ was high enough to meet the demand of PPM focusing system at room temperature even at 200±20 °C. Additionally, a kind of simple cooling structure for PPM focusing system was designed by setting cooling pipe between polepieces. Simulated results showed that smooth cosine curve of BZ was successfully achieved with good control of the thickness of cooling pipe.

【基金】 the National Basic Research Program (973) (2007CB31407);the International S&T Cooperation Program of China (2006DFA53410)
  • 【文献出处】 Journal of Rare Earths ,稀土学报(英文版) , 编辑部邮箱 ,2008年05期
  • 【分类号】TG146.45
  • 【被引频次】4
  • 【下载频次】68
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