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The thin-wall tube drift chamber operating in vacuum (prototype)

机译:薄壁管漂移室在真空中运行(原型)

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摘要

The goal of this work was to design drift tubes and a chamber operating in vacuum, and to develop technologies for tubes independent assembly and mounting in the chamber. These design and technology were tested on the prototype. The main features of the chamber are the following: the drift tubes are made of flexible mylar film (wall thickness 36 μm, diameter 9.80 mm, length 2160 mm) using ultrasonic welding along the generatrix; the welding device and methods were developed at JINR. Drift tubes with end plugs, anode wires and spacers were completely assembled outside the chamber. "Self-centering" spacers and bushes were used for precise setting of the anode wires and tubes. The assembled tubes were sealed with O-rings in their seats in the chamber which simplified the chamber assembling. Moreover the tube assembly and the chamber manufacture can be performed independently and in parallel; this sufficiently reduces the total time of chamber manufacture and assembling, its cost and allows tubes to be tested outside the chamber. The technology of independent tube assembling is suitable for a chamber of any shape but a round chamber is preferable for operation in vacuum. Single channel amplifier-discriminator boards which are more stable against cross talks were used for testing the tubes. Independently assembled tubes were mounted into the chamber prototype and its performance characteristic measured under the vacuum conditions. The results showed that both the structure and the tubes themselves normally operate. They are suitable for making a full-scale drift chamber for vacuum.
机译:这项工作的目的是设计漂移管和在真空中运行的腔室,并开发用于独立于腔室组装和安装管的技术。这些设计和技术已在原型上进行了测试。腔室的主要特征如下:漂移管由柔性聚酯薄膜制成(壁厚36μm,直径9.80 mm,长度2160 mm),沿母线进行超声波焊接; JINR开发了焊接设备和方法。带有端塞,阳极线和垫片的漂移管已完全安装在腔室外部。使用“自定心”的垫片和衬套精确设置阳极丝和阳极管。组装好的管子在其位于腔室的座中用O形圈密封,从而简化了腔室的组装。而且,管组件和腔室的制造可以独立地和并行地进行。这充分减少了腔室制造和组装的总时间,降低了成本,并允许在腔室外部对管进行测试。独立的管组装技术适用于任何形状的腔室,但圆形腔室更适合在真空中操作。抗串扰更稳定的单通道放大器-鉴别器板用于测试电子管。将独立组装的管安装到腔室原型中,并在真空条件下测量其性能特征。结果表明,结构和管本身都正常工作。它们适合于制造用于真空的全尺寸漂移室。

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