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Development of Mineral insulation Cable

Development of Mineral insulation Cable
矿物绝缘电缆的开发
批准号:
06554006
负责人:
TAKASAKI Minoru
金额:
$5.95万
依托单位国家:
日本
项目类别:
Grant-in-Aid for Developmental Scientific Research (B)
财政年份:
1994
资助国家:
日本
项目状态:
已结题
起止时间:
1994 至 1995

项目摘要

项目成果

TAKASAKI Minoru的其他基金

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中文摘要
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英文摘要
A new type of the Mineral Insulation Cable (MIC) of 2500A-class has been successfully manufactured. Though the initial design work was performed as 3000A-class MIC at the first year of the project, the final design was modified to be 2500A-class MIC because of worse processibility to the coil and of limited yield rate of the drawing stage. However it took relatively short time to fix the 2500A MIC design and the mass production was started immediately after the completion of the design work.A pair of electromagnet coils was wound by using the new 2500A MIC and was assembled as an electromagnet with an existing iron yoke. Test operation of the electromagnet was continued more than one year without any serious trouble. Results of this project have been reported at MT15 conference held at Beijing in 1997 and published in IEEE Transactions on Magnetics.
期刊论文(12)
专著(0)
科研奖励(0)
会议论文
K.H.Tanaka and M.Takasaki: "Design Principles of the Electrmagnets" KEK Internal 97-17, "Guidelines in Safety Design of Accelerator Components and Facilities at High Radiation Fields". 49-59 (1997)
K.H.Tanaka 和 M.Takasaki:“电磁体的设计原理”KEK Internal 97-17,“高辐射场加速器组件和设施的安全设计指南”。
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Y.Yamanoi et al.: "Development of Radiation Resistant Magnet Coils for High Intensity Beam Lines : Part II-Completely Inorganic Insulated Coils" IEEE Transactions on Magnetics. Vol32. 2147-2150 (1996)
Y.Yamanoi 等人:“用于高强度束线的抗辐射磁体线圈的开发:第二部分 - 完全无机绝缘线圈”IEEE 磁学汇刊。
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田中 万博: "KEK-PS新実験室における経験" 理化学研究所報文集『RIビームファクトリーの放射線防護』. 71-91 (1995)
Expo Tanaka:“新 KEK-PS 实验室的经验”RIKEN 公告集“RI 束工厂的辐射防护”71-91 (1995)。
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12
    Design Study of High Intensity Beam lines using Radiation Resistant Magnets
    Completion of Radiation resistant Magnet
    DEVELOPMENT OF RADIATION RESISTANT MAGNET COIL WITH NEW INDIRECT COOLING METHOD.
    DESIGN OF MULTI-PURPOSE BEAM LINES