首页> 外文会议>Fusion Engineering 2005, Twenty-First IEEE/NPS Symposium on >Non-linear structural analysis of cold mass support structure of the Steady state Superconducting Tokamak SST-1
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Non-linear structural analysis of cold mass support structure of the Steady state Superconducting Tokamak SST-1

机译:稳态超导托卡马克SST-1冷态支撑结构的非线性结构分析

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The SST-1 is a steady state super conducting tokamak, which is in the final phase of commissioning tests. It has a major radius of 1.1 m with plasma minor radius of 0.2 m, with maximum toroidal magnetic field of 3 Tesla at the plasma center. The mission of the SST-1 project is to address physics and engineering issues related to steady state tokamak operation. The superconducting magnet system of SST-1 comprises of Toroidal field (TF) and Poloidal field (PF) coils. The 16 TF coils are nosed and clamped towards the in-board side and are supported toroidally with inter-coil structure at the out-board side, forming a rigid body system. The 9 PF coils are clamped on the TF coils structure. The integrated system of TF coils & PF coils forms the cold mass of @ 50 Ton weight. This cold mass is accommodated inside the cryostat and freely supported on the 16 cantilevers welded to the toroidal rigid support ring at 16 locations and support ring in-turn supported on 8 columns of machine support structure. During the operation this cold mass attains a cryogenic temperature of 4.2K in the hostile environment of high vacuum 1times10-5 mbar. The thermal excursion of cold mass and its supporting structure during this cool down results into severe frictional forces at the supporting surfaces. In this paper, we discuss the effect of coefficient of friction (mu) on von-Mises stresses in cold mass support structure of SST-1 machine and need for lubrication, by performing non-linear (contact) structural analysis, using Finite Element Analysis code ANSYS. We estimate the maximum stresses in the structure for various coefficients of friction and compare them with analytical values. Analysis results shows that there is a design requirement of introducing a thin layer of solid lubricant film of MoS2 having co-efficient of friction 0.05 between the sliding surfaces to control the stress contribution due to the friction
机译:SST-1是稳态超级导电托卡马克,其在调试测试的最后阶段。它的主要半径为1.1米,等离子体小半径为0.2米,等离子体中心的最大环形磁场为3个特斯拉。 SST-1项目的使命是解决与稳态Tokamak操作相关的物理和工程问题。 SST-1的超导磁体系统包括环形磁场(TF)和粒子磁场(PF)线圈。 16 TF线圈被朝向内部侧夹持并夹紧,并且在外壳侧被带有线圈间结构的环形,形成刚体系统。在TF线圈结构上夹紧9PF线圈。 TF线圈和PF线圈的集成系统形成50吨重量的冷质量。这种冷酷质量容纳在低温恒温器内,并在16个位置焊接到环形刚性支撑环的16个悬臂上,支撑环绕机支撑结构支撑。在操作期间,这种冷质量在高真空的敌对环境中达到4.2K的低温温度,高真空1箱10 -5 mbar。在这种冷却期间冷质的热偏移及其支撑结构导致支撑表面处的严重摩擦力。在本文中,我们讨论了摩擦系数(mu)对SST-1机器冷质量载体结构的von-mis rugince的影响,并且需要使用有限元分析进行非线性(接触)结构分析来润滑代码ANSYS。我们估计各种摩擦系数的结构中的最大应力,并将它们与分析值进行比较。分析结果表明,在滑动表面之间引入MOS 2 的薄膜固体润滑膜的薄层的设计要求,以控制由于摩擦引起的应力贡献

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