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MECHANICAL PERFORMANCES OF ITER IN-VESSEL COIL'S CONDUCTOR

机译:易于血管线圈导体的机械性能

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The design and R&D for ITER In-Vessel Coils (IVCs) is being deployed. The concerned issue of "Edge Localized Modes" (ELMs) and "Vertical Stabilization" (VS) of the ITER plasma can be addressed by the implemented IVCs. The ELM and VS coils will be installed in the vessel just behind the blanket shield modules to reach the requirement of keeping strong coupling with the plasma. The 59mm Stainless Steel Jacketed Mineral Insulated Conductor (SSMIC) using MgO as the insulation is being designed for the IVCs to resist the special challenges, including the nuclear radiation, high temperature, electromagnetic and thermal fatigue. It is necessary to take the mechanical performances of the SSMIC and the feasibility of fabrication techniques into consideration of the R&D program. The mechanical performances of the SSMIC close to the actual work conditions, including the three point bend modulus, three point bend cyclical performance and the cyclical performance with a U-bend sample of the SSMIC prototypes have been investigated and the results are presented in this paper.
机译:正在部署镜头内线圈(IVCS)的设计和研发。可以通过实施的IVC解决“边缘局部模式”(ELMS)和“垂直稳定”(VS)的相关问题。 ELM和VS线圈将安装在毯子屏蔽模块后面的容器中,以达到保持与等离子体的强耦合的要求。使用MgO作为绝缘的59mm不锈钢夹套矿物绝缘导体(SSMIC)为IVC设计,以抵抗特殊挑战,包括核辐射,高温,电磁和热疲劳。考虑到研发程序,需要采取SSMIC的机械性能和制造技术的可行性。已经研究了SSMIC的机械性能接近实际工作条件,包括三点弯曲模量,三点弯曲循环性能以及具有SSMIC原型的U-Bend样品的循环性能,并在本文中提出了结果。

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