首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Investigation of in-house superconducting radio-frequency 9-cell cavity made of large grain niobium at KEK
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Investigation of in-house superconducting radio-frequency 9-cell cavity made of large grain niobium at KEK

机译:在KEK内部研究大颗粒铌制成的超导射频9腔腔

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摘要

The first in-house, 9-cell, superconducting radio-frequency cavity made of large grain Nb was fabricated at KEK. Some characteristic techniques were employed for the fabrication that were not used for fine grain (FG) Nb. Even though a penetrated hole was created during electron beam welding, it was successfully repaired and did not affect the cavity performance. The completed cavity then underwent vertical tests (VTs) via several surface treatment processes. A defect that caused quenches was found after a VT at 25 mm from the equator where the typical local grinding machine developed at KEK could not be utilized. A new local grinding machine using a 3D printer was thus developed for the first time, and it completely removed this defect. Finally, the cavity achieved a maximum Q_0 value of 3.8×10~(10) and accelerating gradient of 38 MV/m. The obtained Q_0 value is about 1.5 times higher than that for the KEK in-house FG cavity.
机译:在KEK制造了第一个由大晶粒Nb制成的内部9单元超导射频腔。一些特征技术被用于制造,而这些技术并未用于细晶粒(FG)Nb。即使在电子束焊接过程中产生了穿孔,也可以成功修复它,并且不影响型腔性能。然后,通过多个表面处理工艺对完成的型腔进行垂直测试(VT)。在距赤道25 mm处进行VT后,发现了导致淬火的缺陷,无法利用在KEK开发的典型本地磨床。因此,首次开发了使用3D打印机的新型本地磨床,它彻底消除了这一缺陷。最终,腔体的最大Q_0值为3.8×10〜(10),加速梯度为38 MV / m。获得的Q_0值大约是KEK内部FG腔的Q_0值的1.5倍。

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