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Effects of High-Energy Ball Milling Time on the Sintering Process of FeSe Superconductors

机译:高能球研磨时间对FESE超导体烧结过程的影响

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FeSe superconducting bulks were prepared with high energy ball milling (HEBM) aided sintering process, within which process, tetragonal β-FeSe superconducting phase could be formed directly with one step sintering process, and the formation of hexagonal 8-FeSe non-superconducting phase was effectively avoided. The influences of HEBM time on the sintering process of FeSe bulks were systematically investigated. With different HEBM time, the phase composition and morphology of precursor powders changed correspondingly, which thus influenced the final phase composition and superconducting properties of FeSe superconducting bulks. Due to the formation of FeSe bulks with larger tetragonal phase content and higher superconducting transition temperature, HEBM time of 6.0 h was recognized as the optimal parameter. Shorter HEBM time could lead to the insufficient decrease of particle size and low density. While longer HEBM time caused the formation of amorphous hexagonal δ-FeSe, which crystallized during sintering process. Thus no more tetragonal FeSe could be obtained. The FeSe superconducting bulk with the critical temperature r_c(onset) of 8.0 K was obtained with the HEBM time of 6 h, and sintering temperature of 700 °C for 12 h.
机译:用高能球铣削(Hebm)辅助烧结过程制备FESE超导块,在该过程中,可以直接用一个步骤烧结过程形成四方β-FESE超导相,并且形成六边形8-Fese非超导相的形成有效避免。系统地研究了Hebm时间对遗产烧结过程的影响。具有不同的HEBM时间,前体粉末的相组成和形态相应地改变,从而影响了FESE超导块的最终相成分和超导特性。由于具有较大的四方相含量和更高的超导转变温度的FESE块的形成,6.0小时的HEBM时间被认为是最佳参数。较短的Hebm时间可能导致粒径和低密度的降低不足。虽然较长的HeBM时间导致形成无定形六方δ-FESE,但在烧结过程中结晶结晶。因此,不得获得更多的四方酵母。用临界温度R_C(发作)为8.0k的FESE超导体积为8.0 k,HEBM时间为6小时,烧结温度为700℃,12小时。

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