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논문 기본 정보

자료유형
학술저널
저자정보
Yue Weiming (Institute of Modern Physics, Chinese Academy of Sciences) Zhang Shengxue (Institute of Modern Physics, Chinese Academy of Sciences) Li Chunlong Jiang Tiancai (Institute of Modern Physics, Chinese Academy of Sciences) Liu Lubei (Institute of Modern Physics, Chinese Academy of Sciences) Wang Ruoxu (Institute of Modern Physics, Chinese Academy of Sciences) Huang Yulu (Institute of Modern Physics, Chinese Academy of Sciences) Tan Teng (Institute of Modern Physics, Chinese Academy of Sciences) Guo Hao (Institute of Modern Physics, Chinese Academy of Sciences) Zaplatin Evgeny (Institute of Modern Physics, Chinese Academy of Sciences) Xiong Pingran (Institute of Modern Physics, Chinese Academy of Sciences) Wu Andong (Institute of Modern Physics, Chinese Academy of Sciences) Wang Fengfeng (Institute of Modern Physics, Chinese Academy of Sciences) Zhang Shenghu (Institute of Modern Physics, Chinese Academy of Sciences) Huang Shichun (Institute of Modern Physics, Chinese Academy of Sciences) He Yuan (Institute of Modern Physics, Chinese Academy of Sciences) Yao Zeen (School of Nuclear Science and Technology, Lanzhou University, Lanzhou, 730000, China) Zhao Hongwei (Institute of Modern Physics, Chinese Academy of Sciences)
저널정보
한국원자력학회 Nuclear Engineering and Technology Nuclear Engineering and Technology 제52권 제8호
발행연도
2020.8
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1,777 - 1,783 (7page)

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As a part of R&D work for the high intensity proton linac of China Accelerator Driven Sub-critical System project, a superconducting half-wave cavity with a frequency of 162.5 MHz and an optimal beta of 0.15 (HWR015) has been developed at Institute of Modern Physics (IMP), Chinese Academy of Sciences. In this paper, the design and test results will be described in detail. We introduced a new stiffening strategy for the HWR cavity, the simulation results show that the cavity has much lower frequency sensitivity coefficient (df/dp), Lorentz force detuning coefficient (KL), and can achieve more stable mechanical properties. The performance of the HWR cavity operated in cryostat will be also reported.

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