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首页> 外文期刊>Nuclear instruments and methods in physics research >Development and fabrication of the vacuum systems for an elliptically polarized undulator at Taiwan Photon Source
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Development and fabrication of the vacuum systems for an elliptically polarized undulator at Taiwan Photon Source

机译:台湾光子源公司用于椭圆偏振波荡器的真空系统的开发和制造

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摘要

Three sets of a vacuum system were developed and fabricated for elliptically polarized undulators (EPU) of a 3-GeV synchrotron facility. These chambers were shaped with low roughness extrusion and oil-free machining; the design combines aluminium and stainless steel. The use of a bimetallic material to connect the EPU to the vacuum system achieves the vacuum sealing and to resolve the leakage issue due to bake process induced thermal expansion difference. The interior of the EPU chamber consists of a non-evaporable-getter strip pump in a narrow space to absorb photon-stimulated desorption and to provide a RF bridge design to decrease impedance effect in the two ends of EPU chamber. To fabricate these chambers and to evaluate the related performance, we performed a computer simulation to optimize the structure. During the machining and welding, the least deformation was achieved, less than 0.1 mm near 4 m. In the installation, the linear slider can provide a stable and precision moved along parallel the electron beam direction smoothly for the EPU chamber to decrease the twist issue during baking process. The pressure of the EPU chamber attained less than 2×10~(-8) Pa through baking. These vacuum systems of the EPU magnet have been installed in the electron storage ring of Taiwan Photon Source in 2015 May and have normally operated at 300 mA continuously since, and to keep beam life time achieved over than 12 h.
机译:为3-GeV同步加速器设施的椭圆偏振波荡器(EPU)开发并制造了三套真空系统。这些腔室的成型采用低粗糙度挤压和无油机加工;设计结合了铝和不锈钢。使用双金属材料将EPU连接至真空系统可实现真空密封,并解决由于烘烤过程引起的热膨胀差异而引起的泄漏问题。 EPU腔室的内部由一个狭窄空间中的不可蒸发的吸气带状泵组成,以吸收光子激发的解吸并提供RF桥设计以减少EPU腔室两端的阻抗效应。为了制造这些腔室并评估相关性能,我们进行了计算机仿真以优化结构。在加工和焊接过程中,变形最小,在4 m附近小于0.1 mm。在安装过程中,线性滑块可为EPU腔提供稳定且精确的沿平行于电子束方向的平稳移动,以减少烘烤过程中的扭曲问题。通过烘烤,EPU室的压力达到小于2×10〜(-8)Pa。这些EPU磁体的真空系统已于2015年5月安装在台湾光子源的电子存储环中,此后通常在300 mA连续运行,并保持射束寿命超过12小时。

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