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Influence of Precursor Powder Fabrication Methods on the Superconducting Properties of Bi-2223 Tapes

Influence of Precursor Powder Fabrication Methods on the Superconducting Properties of Bi-2223 Tapes
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摘要 Bi-2223 precursor powders are prepared by both oxalate co-precipitation(CP) and spray pyrolysis(SP) methods.The influence of fabrication methods on the superconducting properties of Bi-2223 tapes are systematically studied. Compared to the CP method, SP powder exhibits spherical particle before calcination and smaller particle size after calcinations with more uniform chemical composition, which leads to a lower reaction temperature during calcination process for Bi-2223 tapes. Meanwhile, the non-superconducting phases in SP powder are more uniformly distributed with smaller particle sizes. These features result in finer homogeneity of critical current in large-length of Bi-2223 tape, higher density of filaments and better texture after heat treatment. Therefore,the SP method could be considered as a better route to prepare precursor powder for large-length Bi-2223 tape fabrication. Bi-2223 precursor powders are prepared by both oxalate co-precipitation(CP) and spray pyrolysis(SP) methods.The influence of fabrication methods on the superconducting properties of Bi-2223 tapes are systematically studied. Compared to the CP method, SP powder exhibits spherical particle before calcination and smaller particle size after calcinations with more uniform chemical composition, which leads to a lower reaction temperature during calcination process for Bi-2223 tapes. Meanwhile, the non-superconducting phases in SP powder are more uniformly distributed with smaller particle sizes. These features result in finer homogeneity of critical current in large-length of Bi-2223 tape, higher density of filaments and better texture after heat treatment. Therefore,the SP method could be considered as a better route to prepare precursor powder for large-length Bi-2223 tape fabrication.
作者 Li-Jun Cui Ping-Xiang Zhang Guo Yan Yong Feng Xiang-Hong Liu Jian-Feng Li Xi-Feng Pan Sheng-Nan Zhang Xiao-Bo Ma Jin-Shan Li 崔利军;张平祥;闫果;冯勇;刘向宏;李建峰;潘熙锋;张胜楠;马小波;李金山(State Key Laboratory of Solidification Processing, Northwestern Polytechnical University;National Engineering Laboratory for Superconducting Materials, Western Superconducting Technologies Co.Ltd.;Superconducting Materials Center, Northwest Institute for Nonferrous Metal Research)
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2019年第2期59-63,共5页 中国物理快报(英文版)
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