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Evaluating the Radiation Tolerance of a Robotic Finger

机译:评估机械手指的耐辐射性

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In 2024, The Large Hadron Collider (LHC) at CERN will be upgraded to increase its luminosity by a factor of 10 (HL-LHC). The ATLAS inner detector (ITk) will be upgraded at the same time. It has suffered the most radiation damage, as it is the section closest to the beamline, and the particle collisions. Due to the risk of excessive radiation doses, human intervention to decommission the inner detector will be restricted. Robotic systems are being developed to carry out the decommissioning and limit radiation exposure to personnel. In this paper, we present a study of the radiation tolerance of a robotic finger assessed in the Birmingham Cyclotron facility. The finger was part of the Shadow Grasper from Shadow Robot Company, which uses a set of Maxon DC motors.
机译:2024年,欧洲核子研究中心的大型强子对撞机(LHC)将进行升级,将其光度提高10倍(HL-LHC)。 ATLAS内部探测器(ITk)将同时升级。它遭受了最大的辐射伤害,因为它是最靠近光束线的部分,并且发生了粒子碰撞。由于存在过多辐射剂量的风险,将限制人为使内部检测器退役的干预。正在开发机器人系统,以进行退役并限制对人员的辐射暴露。在本文中,我们介绍了一项在伯明翰回旋加速器设施中评估的机械手指的辐射耐受性的研究。手指是Shadow Robot Company的Shadow Grasper的一部分,Shadow Grasper使用了一套Maxon DC电动机。

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