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Evolution of the Design of Cold Mass Support for the ITER Magnet Feeder System

Evolution of the Design of Cold Mass Support for the ITER Magnet Feeder System
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摘要 This paper presents the evolution of the design of cold mass support for the ITER magnet feeder system. The glass fibers in the cylinder and the flanges of the normal G10 support are discontinuous in the preliminary design. The heat load of this support from the analysis is only 4.86 W. However, the mechanical test of the prototype showed that it can only endure 9 kN lateral force, which is significantly less than the required 20 kN. So, the configuration of the glass fibers in the cylinders and flanges of this G10 support are modified by changing it to a continuous and knitted type to reinforce the support, and then a new improved prototype is manufactured and tested. It could endure 15'kN lateral forces this time, but still not meet the required 20 kN. Finally, the SS316LN material is chosen for the cold mass supports. The analysis results show that it is safe under 20 kN lateral forces with the heat load increased to 14.8 W. Considering the practical application, the requirements of strength is of primary importance. So, this SS316LN cold mass support is acceptable for the ITER magnet feeder system. On the other hand, the design idea of using continuous and knitted glass fibers to reinforce the strength of a G10 support is a good reference for the case with a lower heat load and not too high Lorentz force. This paper presents the evolution of the design of cold mass support for the ITER magnet feeder system. The glass fibers in the cylinder and the flanges of the normal G10 support are discontinuous in the preliminary design. The heat load of this support from the analysis is only 4.86 W. However, the mechanical test of the prototype showed that it can only endure 9 kN lateral force, which is significantly less than the required 20 kN. So, the configuration of the glass fibers in the cylinders and flanges of this G10 support are modified by changing it to a continuous and knitted type to reinforce the support, and then a new improved prototype is manufactured and tested. It could endure 15'kN lateral forces this time, but still not meet the required 20 kN. Finally, the SS316LN material is chosen for the cold mass supports. The analysis results show that it is safe under 20 kN lateral forces with the heat load increased to 14.8 W. Considering the practical application, the requirements of strength is of primary importance. So, this SS316LN cold mass support is acceptable for the ITER magnet feeder system. On the other hand, the design idea of using continuous and knitted glass fibers to reinforce the strength of a G10 support is a good reference for the case with a lower heat load and not too high Lorentz force.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2013年第2期196-200,共5页 等离子体科学和技术(英文版)
基金 supported by ITER IO, the National Basic Research Program of China (973 Program, No. 2008CB717906) the National Special Support for R&D on Science and Technology for ITER (No. 2008GB102000)
关键词 cold mass support ITER magnet feeder heat load cold mass support, ITER, magnet feeder, heat load
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参考文献6

  • 1Song Y, Bauer P, Sahu A K, et al. 2009, Design of ITER TF Magnet Feeders System. Presented in MT21 conference held on 19th to 24th Oct., 2009, Hefei, China.
  • 2Zhou Tingzhi, Fan Zeng, et al. 2009, The Detail De- sign of The Cryostat Feed-Through for the ITER TF Coil Feeders. in ITER_ IDM_ 2NQYSA, 2009.
  • 3Bauer P, Sahu A K, Sato N. 2009, The ITER Magnet Feeder Systems Functional Specification and Interface Document. in ITER_ IDM_ 2EH9YM, 2009.
  • 4Wang Z, Fu L, Cheng Y, et al. 2011, Analy- sis of the TF Feeder SBB-CFT-ICF system, in ITER_IDM_2VUVSG v2.0, June, 2011.
  • 5Lorrire P, Bauer P, Jong C T J, et al. 2009, Analysis in Support of the ITER Feeder Design Local Mod- els of the CFT Internal and External Supports. in ITER_ IDM_ 2WABF6, 2009.
  • 6Lorrihre P, Bauer P. 2011, Mechanical Analysis of the Cold Mass Supports. in ITER IDM_46CY4P, 2011.

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