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Development of 5-sector, 360° compression magnet for electron Linac

机译:Electron Linac的5个扇区360°压缩磁铁的开发

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A 30MeV RF electron linac based neutron source will be set up by APPD, BARC at IGCAR, Kalpakkam. This facility will include neutron activation of sodium by photo neutrons for FBR shielding studies and Neutron Time of Flight (n-TOF) facility for various research applications. In n-TOF facility, 10 ns, 10A electron beam having 40% energy spread (18-30 MeV) will be generated by S-band linac. A compression magnet will compress 10 ns, 10A electron pulse to 1 ns, 100 A. It will be a 360°, 5-sector, zero gradient magnet having rectangular yoke of dimensions 3.2m × 2.7m × 0.4m and weight ~ 24 Ton. The pulse compression ratio of 10:1 will be achieved at a magnetic field of 0.1 T. A scale down model of the magnet is designed, fabricated and tested. This magnet produces 0.1 T field at 4200 A-turns. It can compress the 6 MeV electron pulse with 3:1 ratio. The present paper describes the compression magnet design, simulation results, fabrication details and the experimental results.
机译:基于30mev的RF电子LINAC的中子源将由Appd,Kalpakkam Igcar的Appd,Barc设置。 该设施将包括通过照片中子对钠的中子激活,用于FBR屏蔽研究和用于各种研究应用的飞行时间(N-TOF)设施。 在N-TOF设施中,10 ns,10A电子束具有40%的能量扩散(18-30 MeV),将由S波段Linac生成。 压缩磁铁将压缩10 ns,10a电子脉冲至1 ns,100A。它将是360°,5个扇区,零梯度磁铁,尺寸为3.2m×2.4m×0.4m且重量〜24吨 。 脉冲压缩比在0.1 T的磁场上达到10:1。设计,制造和测试了磁铁模型的刻度模型。 该磁铁在4200 A-Turns下产生0.1 T场。 它可以以3:1的比例压缩6 MeV电子脉冲。 本文描述了压缩磁铁设计,仿真结果,制造细节和实验结果。

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