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WEST regular in-vessel Inspections with the Articulated Inspection Arm robot

机译:WEST用铰接式检查臂机器人进行定期在车检查

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Currently on fusion devices, diagnostics are mainly aiming at plasma analysis and control. However, operational and programmatic needs have appeared for regular in-vessel components monitoring during plasma campaign. Light robotics systems could meet this requirement and may be a way as well to replace human interventions to fix damaged in vessel components. To minimize the impact on machine operation, the robotic system has to be mini-invasive and compatible with operating conditions (vacuum, temperature.).To fulfill this goal, CEA has developed a multipurpose carrier able to be operated inside WEST vessel between plasma pulses. A prototype of this robot, called Articulated Inspection Arm (AIA), was tested in 2008 in Tore Supra vacuum vessel. A major upgrade was performed in 2014-2015 with the aim of converting this prototype into a reliable tool in support to WEST operation. During the WEST components manufacturing and installation (2014-2016), the robot was integrated and tested in the EAST Tokamak.Since 2017, the AIA has been regularly used during the WEST plasma campaigns. Movies provided by the embedded camera allow to assess the evolution of Plasma Facing Components surface state and the effects of plasma loads, runaways and disruptions.The robot operation was also very helpful to assess the needs for maintenance, to assist mechanical assembly without man entry and to perform diagnostics calibration under relevant conditions.
机译:当前在融合设备上,诊断主要针对血浆分析和控制。但是,在等离子战役期间出现了定期对车载部件进行监控的操作和计划需求。轻型机器人系统可以满足这一要求,并且可能是替代人为干预以修复容器部件中损坏的一种方法。为了将对机器操作的影响降到最低,该机器人系统必须具有微创性并且与操作条件(真空,温度)兼容。为实现这一目标,CEA开发了一种多功能载物台,该载物台能够在等离子脉冲之间的WEST血管内操作。该机器人的原型称为铰接检查臂(AIA),于2008年在Tore Supra真空容器中进行了测试。 2014-2015年进行了重大升级,目的是将该原型转换为可支持WEST运营的可靠工具。在WEST零部件制造和安装期间(2014-2016年),该机器人已在EAST Tokamak中进行了集成和测试.2017年以来,AIA在WEST等离子战役中定期使用。嵌入式摄像机提供的电影可以评估等离子面对部件的表面状态演变以及等离子负载,失控和破坏的影响。机器人的操作还非常有助于评估维护需求,帮助机械组装而无需人工干预和干预。在相关条件下执行诊断校准。

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