A third harmonic superconducting niobium cavity has been proposed for installation in the Shang-hai Synchrotron Radiation Facility (SSRF) storage ring to improve the Touschek lifetime. In order to investigate the feasibility of the superconducting cavity fabrication indigenously and the possibility to master the fabrica-tion techniques, cavities were fabricated from copper and niobium sheets by deep drawing and electron-beam welding, and a series of measurements, such as resonant frequency, shape dimensions and wall thickness, were carried out during this process. After analysis of various problems existing in the fabrication process, tech-nique improvements were proposed, and finally the precise shape as designed and resonant frequency within 1.2 MHz were achieved for the new completed cavities. In addition, full annealing was finally proved to be a good cure for niobium sheets' tearing up during deep drawing. By fabricating niobium cavities successfully, some problems to the next step were cleared. This paper introduces the process of cavity fabrication and its technique improvements towards forming, and the initial vertical test result of niobium cavity is also presented.
参考文献
[1] | ZHAO Z T .[J].Nucl Sci & Tech,2003,14(02):1. |
[2] | Byrd J M;Georgsson M .[J].Phys Rev Special Topics A&B,2001,4:030701. |
[3] | Byrd JM.;De Santis S.;Kosta S.;Lo CC.;Plate D.;Rimmer RA.;Franks M.;Baptiste K. .Design of a higher harmonic RF system for the Advanced Light Source[J].Nuclear Instruments and Methods in Physics Research, Section A. Accelerators, Spectrometers, Detectors and Associated Equipment,2000(1):15-25. |
[4] | Bosland P;Bredy Ph;Charrier J P.Super-3HC Cryomodule:Layout and First Tests[M].Paris,France:EPAC,2002:2217-2219. |
[5] | Kim E S;Sohn Y U;Chun M H.Design of a Third Harmonic Superconducting RF System at PLS[M].Lucerne,Switzerland.EPAC,2004:2125-2127. |
[6] | Georgsson M;Anders W;Kramer D et al.[J].Nucl Instrum Methods in Phys Res A,2001,469:373. |
[7] | Ohkuma H.TOP-UP Operation in Light Sources[M].Genoa,Italy.EPAC,2008:36-40. |
[8] | ZHAO Z T;XU H J;DING H.[M].Genoa,Italy.EPAC,2008:998-1000. |
[9] | MA G M;ZHAO Z T;LIU J F .[J].Chinese Physics C,2008,32:275. |
[10] | HAO Jian-Kui et al.[J].HEP & NP,2001,25(06):582. |
[11] | Padamsee H;Knoblocn J;Hays T.RF superconductivity for Accelerators[M].New York:John Wiley and Sons,Inc,1998:105-127. |
[12] | Palmieri V.Seamless Superconducting RF Cavities[M].New York,1999:541-544. |
[13] | Singer W et al.[J].AIP,2003,671:162. |
[14] | Hartwig K. T.;Wang J.;Baars D. C.;Bieler T. R.;Mathaudhu S. N.;Barber R. E. .Microstructural Refinement of Niobium for Superconducting RF Cavities[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,2007(2):1305-1309. |
[15] | Saito K.Half-Cell Die Designe for Right Cavity Geometry[A].Wolfsburg,Germany,2003:41. |
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