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The development of end-window Geiger-M????????ller counter tubes

机译:端窗盖革-穆勒计数管的发展

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The paper gives an account of the various stages in the development of end-window self-quenching Geiger-M????????ller counter tubes for the detection of ????????-particles. Commencing as a tube using the feather-edge type of copper-to-glass seal, one inch in diameter, with a copper-foil end window, the design was later modified to one more suitable for production on a larger scale, employing a standard Kovar/glass eyelet seal, the assembly of all metallic joints being effected by means of soft solder. To permit the detection of slower ????????-particles, a similar tube was developed having a Duralumin window of thickness 1 mil, which was soldered to an electroplated copper layer. The assembly process was subsequently simplified by use of a thermosetting plastic adhesive wax called ????????Araldite????????. For the detection of very slow ????????-particles it was necessary to use a mica window of about 0.25-mil thickness, and a suitable seal, using Araldite, was devised for windows of this material. It was found during the course of development that extreme purity of the filling gas and quenching vapour was unnecessary, and less rigorous pumping than that associated with most electronic tubes was also permissible, the most important factors in obtaining good tubes being cleanliness and freedom from loose particles and lint.
机译:本文介绍了端窗自淬火Geiger-M ller计数管的发展各个阶段,以检测?????????颗粒。开始使用直径为一英寸的羽缘型铜-玻璃密封件和铜箔端窗作为管子,后来将该设计修改为更适合大规模生产的设计,采用了标准Kovar /玻璃孔眼密封,所有金属接头的组装均通过软焊料实现。为了检测较慢的α-颗粒,研制了一种类似的管,该管的硬铝窗厚度为1密耳,将其焊接到电镀铜层上。随后使用称为“ Araldite”的热固性塑料粘合剂蜡简化了组装过程。为了检测非常慢的Δε-颗粒,必须使用厚度约为0.25密耳的云母窗,并为这种材料的窗设计了使用爱牢达的合适密封剂。在开发过程中发现,不需要极高纯度的填充气体和淬火蒸气,而且与大多数电子管相比,抽真空的要求也要低一些,获得优质管子的最重要因素是清洁度和无松动性。颗粒和皮棉。

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