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In-situ and ex-situ PIT fabrication of FeSe superconducting tapes

机译:FeSe超导带的原位和异位PIT制造

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摘要

FeSe Superconducting tapes were fabricated with powder in tube (PIT) process. Both in-situ and ex-situ PIT processes were performed with Se and sintered Fe-Se powders as precursor powders, respectively. The influences of different fabrication techniques on the phase evolution mechanism, morphology and superconducting properties of these tapes were systematically investigated. It was noticed that during the in-situ PIT process, large content of tetragonal P-FeSe phase could be formed under low temperature. However, the obtained P-FeSe phase was not stable with increasing temperature and decomposed into 6-FeSe and Fe. Although with increasing temperatures, P-FeSe phase content increased again, the final P-FeSe phase content could not reach 100%, with relatively large content of 5-FeSe particles distributed uniformly in P-FeSe matrix. On the other hand, during the ex-situ PIT process, higher temperature was necessary for the formation of higher ratio of P-FeSe phase from 8-FeSe phase. With the increasing temperature, P-FeSe phase content increased monotonously, and the P-FeSe content of nearly 100% was obtained under the sintering temperature of 1000 ℃. Due to the different Fe/Se ratio in the obtained p-FeSe phase, a superconducting transition at 8.3 K was obtained on the exsitu FeSe tape. Further optimization of this PIT process for larger superconducting phase content is on the way.
机译:FeSe超导带材是采用管内粉末(PIT)工艺制造的。原位和异位PIT工艺都分别使用Se和Fe-Se烧结粉末作为前体粉末进行。系统地研究了不同制造工艺对这些带的相演化机理,形貌和超导性能的影响。注意到在原位PIT过程中,在低温下可形成大量的四方P-FeSe相。但是,所得的P-FeSe相随着温度的升高而不稳定,并分解为6-FeSe和Fe。尽管随着温度的升高,P-FeSe相含量再次增加,但最终的P-FeSe相含量无法达到100%,相对较大的5-FeSe颗粒含量均匀地分布在P-FeSe基体中。另一方面,在异位PIT工艺中,从8-FeSe相形成更高比例的P-FeSe相需要更高的温度。随着温度的升高,P-FeSe的相含量单调增加,在1000℃的烧结温度下可获得近100%的P-FeSe含量。由于所获得的p-FeSe相中的Fe / Se比不同,因此在现有的FeSe带上获得了8.3 K的超导转变。对于更大的超导相含量,此PIT工艺的进一步优化正在进行中。

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  • 来源
    《Journal of materials science 》 |2017年第12期| 8366-8371| 共6页
  • 作者单位

    Superconducting Materials Research Center, Northwest Institute for Non-Ferrous Metal Research, Xi'an 710016, China;

    Superconducting Materials Research Center, Northwest Institute for Non-Ferrous Metal Research, Xi'an 710016, China;

    Superconducting Materials Research Center, Northwest Institute for Non-Ferrous Metal Research, Xi'an 710016, China;

    Superconducting Materials Research Center, Northwest Institute for Non-Ferrous Metal Research, Xi'an 710016, China,Materials Science and Engineering, Northeastern University, Shenyang 110016, China;

    Superconducting Materials Research Center, Northwest Institute for Non-Ferrous Metal Research, Xi'an 710016, China,Materials Science and Engineering, Northeastern University, Shenyang 110016, China;

    Superconducting Materials Research Center, Northwest Institute for Non-Ferrous Metal Research, Xi'an 710016, China,Materials Science and Engineering, Northeastern University, Shenyang 110016, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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