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Design Optimization for Shear Key on the TF Coil Structure of the KSTAR Tokamak

机译:KSTAR Tokamak TF线圈结构上的剪切键设计优化

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摘要

The KSTAR tokamak is comprised of a magnet system, vacuum vessel, and cryostat, thereby facilitating vacuum conditions for plasma gas at high temperatures, along with low-temperature helium gas for cooling. The TF coil structure, a part of the magnet system, is constructed and jointed with 16 pieces at 22.5-degree intervals using a conical bolt and shear key. The main function of the shear key in the inner and outer inter-coil structures is to resist in-plane and out-of-plane forces and to increase the shear stiffness for the inter coil structures. However, since the shape of the shear key is difficult to produce and can incur high costs, the shear key needs to be dimensionally optimized to regularize the stress between the key and the structure. Accordingly, shape optimization of the shear key was carried out using the Taguchi method and the stresses analyzed by ANSYS.
机译:KSTAR托卡马克由磁体系统,真空容器和低温恒温器组成,从而促进了高温下等离子气体以及用于冷却的低温氦气的真空条件。 TF线圈结构是磁体系统的一部分,使用锥形螺栓和剪切键以22.5度的间隔构造和连接16片。内部和外部线圈间结构的剪切键的主要功能是抵抗平面内和平面外的力,并增加线圈间结构的剪切刚度。但是,由于剪切键的形状难以制造并且会产生高成本,因此需要对剪切键进行尺寸优化以使键和结构之间的应力均匀化。因此,使用Taguchi方法对剪切键的形状进行了优化,并通过ANSYS对应力进行了分析。

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