Relation between the Mechanical Output of a Small Stepping Motor and the Intrinsic Coercivity of an Unsaturated α-Fe / R_2Fe_<14>B Nanocomposite Bonded Magnet (R=Pr and Nd)
スポンサーリンク
概要
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The miniaturization of electric motors such as small stepping motors has progressed rapidly, and has been accompanied by a drastic decrease in the mechanical output of the motors relative to the reduction in size. One of the causes of this decrease is insufficient magnetization in the magnets used in motors because of a decrease in the pole-pitch. Since so-called nanocomposite flakes are easily magnetized in comparison with conventional Nd_2Fe_<14>B melt-spun flakes, we used bonded-magnet rotors prepared from α-Fe/R_2Fe_<14>B nanocomposite melt-spun flakes with high remanence in small stepping motors, and studied the effects of the coercivity and remanence of the flakes on the magnetic stability of the magnets and the characteristics of the motors. As a result, when the nanocomposite flakes had a coercivity of 600-700 kA/m and a remancence higher than 950 mT, the motors exhibited adequate magnetic stability at operating temperature as well as a higher mechanical output than that obtained using a conventional Nd_2Fe_<14>B bonded magnet.
- 社団法人日本磁気学会の論文
- 2002-05-01
著者
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Yamashita F.
Motor Engineering Research Laboratory, Matsushita Electric Industrial Co.
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Fukunaga H.
Department Of Electrical And Electronic Engineering Nagasaki University
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Takasugi K.
School of Science and Technology, Meiji University
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Yamamoto H.
School of Science and Technology, Meiji University
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Takasugi K.
School Of Science And Technology Meiji University
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Fukunaga H.
Department Of Aeronautics And Space Engineering Tohoku University
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- Relation between the Mechanical Output of a Small Stepping Motor and the Intrinsic Coercivity of an Unsaturated α-Fe / R_2Fe_B Nanocomposite Bonded Magnet (R=Pr and Nd)
- Computer Simulation of Magnetic Properties of Nanocomposite Magnets