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Tolerance analysis for the outer-box of ITER feeder Coil Terminal Box S-Bend Box

机译:磨损器线圈接线箱和S弯箱外箱的公差分析

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The ITER feeder systems connect the ITER magnet systems to the cryo-plant, power-supply and control system interfaces outside the cryostat. The main purpose of the feeders is to convey the cryogenic supply and electrical power to the coils as well as house the instrumentation wiring. The Feeder carries superconducting busbars, supercritical cryo-pipes and instrumental pipes from the CTB&SBB (Coil Terminal Box and S-Bend Box) to the coil. As one of the key components, the CTB&SBB houses the interconnection of the magnet systems with the cryo-plant, the power supplies, the data acquisition system and the local cryogenic components. So it is very important to keep enough installation accuracy for CTB&SBB key components. This paper presents the tolerance analysis of CTB&SBB box in three-dimensional model. The main objective of this analysis is to find out the critical dimension for the assembly requirements, evaluate the effect of design tolerance and limits of tolerance values for the key dimension of CTB&SBB box. The model and method do not only consider the assembly sequence as well as the assembly reference, also the sensitivity caused by different tolerance. Based on the results, the assembly performance of CTB&SBB box has been studied and tolerance values of detail design confirmed.
机译:迭代馈线系统将迭代磁铁系统连接到低温厂,电源和控制系统界面在低温恒温器外部。进料器的主要目的是向线圈的低温供应和电力传达,以及仪表布线。进料器从CTB&SBB(线圈接线盒和S弯曲盒)带有超导母线,超临界光盘和仪器管道到线圈。作为关键成分之一,CTB&SBB容纳与冷冻厂,电源,数据采集系统和本地低温部件的磁体系统的相互连接。因此,为CTB和SBB关键组件保持足够的安装精度是非常重要的。本文介绍了三维模型中CTB&SBB框的公差分析。该分析的主要目的是找出组装要求的关键维度,评估CTB&SBB框的关键维度的设计公差和公差值的影响。该模型和方法不仅考虑组装顺序以及装配参考,而且还具有不同公差引起的灵敏度。基于结果,研究了CTB&SBB框的组装性能,并确认了详细设计的公差值。

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