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Mechanical modeling of the ITER toroidal field coils shear keys behavior. Design and choice of key mock-up for electrical insulation testing on the basis of numerical models

机译:ITER环形磁场线圈的机械建模剪切键行为。基于数值模型的电气绝缘测试关键模型的设计与选择

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The ITER shear key system is designed to interconnect neighboring toroidal field coils at their inner portions. Due to these keys the coils inner portions resist the torque as a whole structure. On the other hand, the ITER magnet system design provides supporting of the centering load on the TFC by a bucking cylinder. Hence, the keys should not produce any significant wedging during the radial movement of the coils. Numerical modeling of the so called scissors' action keys that satisfy above requirements has been performed with assembly gaps being taking into account. Cooldown, TFC energizing and poloidal fields coils pulse regimes have been studied. Since the TFC torsion produces high cyclic compression on the key ground insulation, the electrical insulation testing is required. Two mock-up systems for this testing have been proposed and modeled. One system models an effect of the TFC radial movement resulting in higher peak compression on the insulation.
机译:ITER剪切键系统设计为在其内部将相邻的环形场线圈互连。由于这些键,线圈内部整体上抵抗扭矩。另一方面,ITER磁铁系统的设计通过屈曲缸来支撑TFC上的定心载荷。因此,键在线圈的径向运动期间不应产生任何明显的楔入。考虑到装配间隙,对满足上述要求的所谓剪刀动作键进行了数值建模。已经研究了冷却,TFC激励和极向场线圈脉冲方式。由于TFC扭转会在关键的接地绝缘层上产生较高的循环压缩,因此需要进行电气绝缘测试。已经提出并建模了用于该测试的两个模型系统。一种系统模拟了TFC径向运动的影响,从而导致绝缘上的峰值压缩更高。

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