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Ultra-High Vacuum characterization of Molybdenum-Carbide Graphite for HL-LHC collimators

机译:HL-LHC准直器的钼 - 硬质合金石墨的超高真空表征

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In view of the High-Luminosity upgrade of the Large Hadron Collider (LHC) collimation system, a family of novel molybdenum-carbide graphite (MoGr) composites was developed to meet the challenging requirements of HL-LHC beam-halo collimation, in particular the electrical conductivity and thermo-mechanical performances. The Ultra-High Vacuum (UHV) behaviour of this material was extensively characterized to assess its compatibility with the accelerator's specifications. The results presented in this paper correlate the outgassing behaviour with the microscopic features of MoGr compared to other graphite-based materials. Residual gas analysis (RGA) was exploited to optimize post-production treatments.
机译:鉴于大型强子撞机(LHC)准直系统的高亮度升级,开发了一种新型钼 - 硬质合金石墨(MOGR)复合材料,以满足HL-LHC束光束准直的具有挑战性要求,特别是 导电性和热机械性能。 这种材料的超高真空(UHV)行为被广泛地表征,评估其与加速器规格的兼容性。 本文提出的结果与其他基于石墨的材料相比,与MogR的显微特征相关联。 利用残留的气体分析(RGA)以优化产后治疗方法。

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