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The ITER toroidal field model coil (TFMC)

机译:ITER环形场模型线圈(TFMC)

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The TF coils for ITER (ITER, Final Design Report, December 1997) will use the concept of a circular thin walled Nb_3Sn cable in conduit superconductor completely enclosed in an insulated groove in steel plates to form the coil pancakes. These are then stacked together to form the winding pack supported by a steel case. The concept is being demonstrated by the fabrication of a TFMC (E. Salpietro et al., Construction of a Toroidal Field Model Coil (TFMC) for ITER, MT-15 Fifteenth international Conference on Magnet Technology, Oct 20-24, 1997, Beijing, China; R. Maix et al., Manufacture of the ITER TF model coil (TMFC), Poster P1-217) with a bore of 1.4 x 2.5 m, a peak field of 8.77 T and a total current of 7.8 MAT. The coil will be tested during 1999 in the TOSKA facility at FZK, Karlsruhe, using the EURATOM LCT coil to provide an external field system. The objectives of the TFMC are as follows: 1. to develop and verify the full scale TF coil manufacturing techniques, in particular the following features: #plate manufacturing (forming the grooves); #fitting the conductor in the groove after heat treatment and insulation (i.e. predictable geometry change); #closing the groove with a cover plate and plate insulation; #fitting the winding into the case, gap filling and case closure; 2. to establish realistic manufacturing tolerances; 3. to bench-mark methods for the ITER TF coil acceptance tests, including insulation and impregnation process; 4. to obtain information on the coil's mechanical behaviour, operating margins and in-service monitoring techniques, particularly for
机译:用于ITER的TF线圈(ITER,最终设计报告,1997年12月)将使用导管超导体中的圆形薄壁Nb_3Sn电缆的概念,该电缆完全封闭在钢板的绝缘槽中以形成线圈薄饼。然后将它们堆叠在一起以形成由钢壳支撑的绕组组。 TFMC的制造正证明了这一概念(E. Salpietro等人,为ITER建造环形场模型线圈(TFMC),MT-15第十五届国际磁体技术会议,1997年10月20日至24日,北京,中国; R。Maix等人,ITER TF模型线圈(TMFC)的制造,海报P1-217),内孔为1.4 x 2.5 m,峰值场为8.77 T,总电流为7.8 MAT。该线圈将在1999年期间在卡尔斯鲁厄FZK的TOSKA设施中使用EURATOM LCT线圈提供一个外部现场系统进行测试。 TFMC的目标如下:1.开发和验证全尺寸TF线圈制造技术,尤其是以下功能:#制版(形成凹槽); #在热处理和绝缘后(即可预测的几何形状变化)将导体插入凹槽中; #用盖板和绝缘板封闭凹槽; #将绕组装入壳体,填充间隙并封闭壳体; 2.建立现实的制造公差; 3.制定用于ITER TF线圈验收测试的基准方法,包括绝缘和浸渍工艺; 4.获得有关线圈的机械性能,运行裕度和运行中监控技术的信息,尤其是对于

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