首页> 外文会议>IEEE Holm Conference on Electrical Contacts >Multi-physics modeling and Au-Ni/Rh coating assessment for ITER ion cyclotron resonance heating radio-frequency sliding contacts
【24h】

Multi-physics modeling and Au-Ni/Rh coating assessment for ITER ion cyclotron resonance heating radio-frequency sliding contacts

机译:ITER离子回旋共振加热射频滑动触点的多物理场建模和Au-Ni / Rh涂层评估

获取原文

摘要

ITER is a large scale fusion experimental device under construction in Cadarache (France) intended to prove the viability of fusion as an energy source. Ion Cyclotron Resonance Heating (ICRH) system is one of the three heating systems which will supply total heating power of 20 MW (40-55 MHz) up to one hour of operation. Radio-Frequency (RF) contacts are integrated within the antennas for assembly and operation considerations, which will face extremely harsh service conditions, including neutron irradiation, heavy electrical loads (RF current reaches up to 2 kA with a linear current density of 4.8 kA/m) and high thermal loads. Based on the thermal analysis, the contact resistance is expected to be lower than 7 mΩ to keep the maximum temperature on the louvers lower than 250°C. Few weeks of vacuum (~10-5 Pa) baking at 250°C for outgassing is expected before each plasma experimental campaign, under which the RF contact materials' mechanical properties change and diffusion phenomena between different materials are inevitable. CuCrZr and 316L are proper base materials for ITER RF contact louvers and conductors respectively. In order to improve the RF contact's wear and corrosion resistivity as well as to reduce the contact resistance, Au-Ni and Rh functional layers could be electroplated on CuCrZr and 316L accordingly. The application of the Au-Ni/Rh coating pairs is assessed through the thermal ageing and diffusion tests. Wear and electrical contact performances of the Au-Ni/Rh pairs are deeply studied on a dedicated tribometer operated at ITER relevant conditions.
机译:ITER是法国Cadarache正在建设的大型聚变实验设备,旨在证明聚变作为能源的可行性。离子回旋共振加热(IC​​RH)系统是三个加热系统之一,它将在运行一小时的时间内提供20 MW(40-55 MHz)的总加热功率。天线中集成了射频(RF)触点,以进行组装和操作,这将面临极其恶劣的服务条件,包括中子辐照,重载(RF电流高达2 kA,线性电流密度为4.8 kA / m)和高热负荷。根据热分析,接触电阻应低于7mΩ,以将百叶窗上的最高温度保持在250°C以下。在每次等离子实验之前,预期在250°C的真空下烘烤几周(〜10 -5 Pa)进行除气,在这种情况下,RF接触材料的机械性能发生变化,并且在不同材料之间产生扩散现象。不可避免的。 CuCrZr和316L分别是ITER RF接触百叶窗和导体的合适基础材料。为了改善RF触点的耐磨性和耐蚀性并降低接触电阻,可以在CuCrZr和316L上电镀Au-Ni和Rh功能层。通过热老化和扩散测试可以评估Au-Ni / Rh镀层对的应用。在专用于ITER相关条件的摩擦计上对Au-Ni / Rh对的磨损和电接触性能进行了深入研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号