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Development of an internally reinforced superconductor for a high-field pulsed magnet

K. Arai, H. Tateishi, K. Agatsuma, T. Onishi1993年Fusion Engineering and DesignIF 1.7出版社

AbstractWe are developing a Nb3Sn superconductor internally reinforced with a high elastic modulus fiber for the application of high-field pulsed superconducting magnets. Short lengths of monofilamentary conductors are prepared by rf-magnetron sputtering. Critical current measurement up to 10T and a bending test of the conductor have been carried out for the purpose of proof of principle.Critical current density of about 1 × 109 A/m2/niobium at 4.2 K under 10 T has been obtained up to now, which is about a half of a commercial bronze-processed conductor. Results of the bending test showed that the superconductor suffers no damage up to 0.5% of bending strain at room temperature. SEM pictures of the conductor after the bending test suggested good adhesion between the core fiber and the Nb3Sn layer.

日本語訳

我々は、高磁場パルス超伝導マグネットへの応用を目的として、高弾性率繊維で内部補強したNb₃Sn超伝導体を開発している。rfマグネトロンスパッタリングにより、短尺の単芯超伝導線を作製した。原理実証のため、10Tまでの臨界電流測定と曲げ試験を実施した。現在までに、10T、4.2Kにおいて約1×10⁹A/m²の臨界電流密度が得られており、これは市販のブロンズ法による超伝導線の約半分の値である。曲げ試験の結果、室温での曲げひずみ0.5%まで超伝導体に損傷は生じなかった。曲げ試験後の超伝導体のSEM観察により、コア繊維とNb₃Sn層の間の良好な密着性が示された。

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