日本AEM学会誌
Online ISSN : 2187-9257
Print ISSN : 0919-4452
ISSN-L : 0919-4452
最新号
選択された号の論文の10件中1~10を表示しています
特集 永久磁石の最先端技術動向
第32 回「MAGDA コンファレンス2023」in 金沢[学術論文]
  • (一端のみに電磁石を配置するシステムの浮上特性に関する検討)
    糸山 凜太朗, 遠藤 文人, 黒田 純平, 内野 大悟, 小川 和輝, 池田 圭吾, 加藤 太朗, 成田 正敬, 加藤 英晃
    2024 年 32 巻 3 号 p. 546-551
    発行日: 2024年
    公開日: 2024/10/23
    ジャーナル フリー
     In recent years, studies on magnetic levitation have attracted much attention. One of them is a study on magnetic levitation systems for thin steel plates. The background of the research is that conveyance using rollers is mainly used in the manufacturing process. In this process, contact between the rollers and the thin steel plate may cause scratches on the steel plates surface. Non-contact gripping and conveyance using magnetic levitation technology has been proposed to prevent surface quality deterioration of thin steel plates. The magnetic levitation system for thin steel plates proposed by the authors was able to suppress deflection of thin steel plates compared to conventional systems. However, the number of electromagnets used is reduced. This may affect the levitation stability. In this report, changes in the levitation characteristics of the proposed magnetic levitation system for thin steel plates are considered.
  • 竹田 昂平, 野崎 優香, 山本 隆彦
    2024 年 32 巻 3 号 p. 552-556
    発行日: 2024年
    公開日: 2024/10/23
    ジャーナル フリー

     Hyperthermia is used in combination with medication in the treatment of cancer. Hyperthermia has less effect on the human body than other therapies, and further improvement is required. When developing hyperthermia, it is necessary to demonstrate the effects of hyperthermia on the human body. However, since experiments using the human body or animals are often avoided due to ethical issues, the use of a phantom that simulates the electrical properties (relative permittivity and conductivity) of the human body is useful as a solution. Therefore, the purpose of this study was to develop a phantom equivalent to a heated liver at 8 MHz, which is currently widely used in hyperthermia. The electrical properties were simulated within 10% error at each temperature.

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