Processing for long YBCO coated conductors by TFA-MOD process

The metal organic deposition (MOD) process of YBa 2Cu 3O 7− X (YBCO) using metal trifluoroacetate (TFA) precursors is considered to be a strong candidate as a low cost fabrication process in coated conductors since the TFA-MOD process is a non vacuum process and can provide high J c films. In order...

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Veröffentlicht in:Physica. C, Superconductivity Superconductivity, 2003-10, Vol.392, p.905-908
Hauptverfasser: Fuji, Hiroshi, Honjo, Tetsuji, Teranishi, Ryo, Tokunaga, Yoshitaka, Shibata, Junko, Izumi, Teruo, Shiohara, Yuh, Iijima, Yasuhiro, Saitoh, Takashi
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Sprache:eng
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Zusammenfassung:The metal organic deposition (MOD) process of YBa 2Cu 3O 7− X (YBCO) using metal trifluoroacetate (TFA) precursors is considered to be a strong candidate as a low cost fabrication process in coated conductors since the TFA-MOD process is a non vacuum process and can provide high J c films. In order to develop long tape conductors using this process, the influence of the gas flow direction in the heat treatment was investigated. The J c value decreases toward to leeward side in the case of the parallel gas flow condition. On the other hand, in the case of the perpendicular gas flow condition. The J c value reveals uniformity in all over the tape and the high J c level is maintained. In the case of long tape production, it was found that the perpendicular gas flow to the tape length is effective to fabricate the uniform films. It could minimize the influence of consumption of H 2O and generation of HF gas in the up-stream area to the leeward region. The J c and I c properties and these distribution of the YBCO tape fabricated by this method on CeO 2/IBAD-Gd 2Zr 2O 7/Hastelloy is presented. Furthermore, a large scale equipment for the continues long tape process was developed based on the above findings. Consequently we have fabricated a 1 m long Y123 tape conductor by a reel to reel system. Even in the first trial, the uniform reaction for the entire length was recognized.
ISSN:0921-4534
1873-2143
DOI:10.1016/S0921-4534(03)01149-3