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Vacuum performance of a carbon fibre cryosorber for the LHC LSS beam screen

机译:LHC LSS束筛的碳纤维低温吸附器的真空性能

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摘要

A new carbon fibre material was developed at the Institute of Solid State Chemistry and Mechanochemistry at the Siberian Branch of the Russian Academy of Science (SB RAS) to meet the requirements of a cryosorber for the large hadron collider (LHC) vacuum chamber. The material must have a large sorbing capacity, a certain pumping speed, a working temperature range between 5 and 20 K, a low activation temperature (below room temperature), a certain size in order to fit into the limited space available and it should be easy to mount. The vacuum parameters of the LHC vacuum chamber prototype with a carbon fibre cryosorber mounted onto the beam screen were studied in the beam screen temperature range from 14 to 25 K at the Budker Institute of Nuclear Physics SB RAS. This carbon fibre material has shown sufficient sorption capacity for hydrogen at operational temperatures of the beam screen in the LHC long straight sections. It is also very important that this material does not crumble and makes a convenient fixation onto the beam screen in comparison to the widely used granulated charcoal. The problem of fluff and ways of reducing the quantity of fluff in the beam channel were studied. The results of these studies show that the carbon fibre material is a possible cryosorber-candidate for use in the LHC and other long vacuum system at cryogenic temperatures. The experimental set-up and results of measurements of the H-2 cryosorption capacity of this carbon fibre material are presented in this paper. (C) 2004 Elsevier Ltd. All rights reserved.
机译:俄罗斯科学院西伯利亚分校的固态化学和机械化学研究所(SB RAS)开发了一种新的碳纤维材料,以满足大型强子对撞机(LHC)真空室的低温吸收器的要求。该材料必须具有较大的吸附能力,一定的抽速,5至20 K的工作温度范围,较低的活化温度(低于室温),一定的尺寸才能适合有限的可用空间,因此,易于安装。在Budker核物理研究所SB RAS研究了在14至25 K的束屏温度范围内,将装有碳纤维低温吸收剂的LHC真空室原型的真空参数。这种碳纤维材料在LHC长直段的射束筛的工作温度下对氢显示出足够的吸附能力。与广泛使用的粒状木炭相比,这种材料不要破碎并且可以方便地固定在光束筛上,这一点也非常重要。研究了绒毛问题和减少束流通道绒毛数量的方法。这些研究的结果表明,碳纤维材料是在低温下用于LHC和其他长真空系统的一种可能的低温吸附剂候选材料。本文介绍了该碳纤维材料的H-2低温吸附能力的实验装置和测量结果。 (C)2004 Elsevier Ltd.保留所有权利。

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