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Increase Jc by Improving the Array of Nb3Sn strands for Fusion Application
[摘要] During Phase I, our efforts were focusing on improving the array of subelement in the tube type strands by hardening the Sn core and the subelement matrix to effectively increase the Jc of the strands. Below is a summary of the results. 1) We were unsuccessful in improving the array using a Cu-Sn matrix approach. 2) We slightly improved the array using Sn with 1.5at%Ti doped core, and a 217-subelement restacked strand was made and drawn down without any breakage. 3) We greatly improved the array using the Glidcop Al-15 to replace the pure Cu sheath in the subelement, and a 217-subelement restacked strand was made and drawn down. Both strands have very good drawability and the array showed good improvement. 4) We also improved the array using improved wire drawing techniques using Hyper Tech’s new caterpillar wire drawing machines to enable straight wire drawing for the entire wire drawing process. 5) The 919-subelement restack strand shows its non-Cu Jc over 2100 A/mm2 at 12 T/4.2 K and AC loss of 508 mJ/cm3.
[发布日期] 2012-12-17 [发布机构] Hyper Tech Research, Inc
[效力级别]  [学科分类] 
[关键词] 36 Materials Science Superconductor, Nb3Sn, Fusion, Magnet, A-15;Superconductor, Nb3Sn, Fusion, Magnet, A-15 [时效性] 
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