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Phase Evolution and Superconductivity of Bi-2212 Precursor Powder Prepared by Spray Pyrolysis
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1.Northwest Institute for Nonferrous Metal Research, Xi'an 710016, China;2.National Engineering Laboratory for Superconducting Materials, Western Superconducting Technologies Co., Ltd, Xi'an 710018, China

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Fund Project:

National Natural Science Foundation of China (51902267); Shaanxi Province Key Research and Development Program (2022GY-391, 2020ZDZX04-04-02); National Key Project of Magneto Constrained Fusion Energy Development Program (2017YFE0301402); Natural Science Foundation of Shaanxi Province (2020JM-648)

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    Abstract:

    The Bi2Sr2CaCu2Ox (Bi-2212) precursor powder was prepared by spray pyrolysis. The phase evolution during the heat treatment process and the superconductivity of wires were analyzed. Results show that the powder prepared by spray pyrolysis is spherical with the average particle size of 3.03 μm and the dispersion distribution. The phase evolution during the heat treatment process of powder includes four main reaction processes. The decomposition of nitrate and the pre-reaction process between components occur firstly at 527 °C. Then the Bi2Sr2CuOx (Bi-2201) phase is formed at 588 °C due to the high reactivity of spray powder. The Bi-2212 phase is generated at 780 °C, and the powder is completely melted at 834.2 °C. The heat treatment temperature window of the Bi-2212/Ag wire is very narrow. The critical current (Ic) is reduced by 31 A when the maximum heat treatment temperature (Tmax) is changed by ±2 °C. When the optimal Tmax of Bi-2212/Ag wire is 885 °C, the maximum Ic (4.2 K, 0 T) is 486 A. The critical current is increased to 712 A in the oxygen atmosphere during heat treatment.

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[Cui Lijun, Yang Fan, Hou Fanyou, Sun Xiaguang, Liu Jianwei, Yan Guo, Liu Xianghong, Feng Yong, Zhang Pingxiang, Hao Qingbin, Zhang Shengnan, Liu Guoqing. Phase Evolution and Superconductivity of Bi-2212 Precursor Powder Prepared by Spray Pyrolysis[J]. Rare Metal Materials and Engineering,2022,51(11):3998~4002.]
DOI:10.12442/j. issn.1002-185X.20220126

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History
  • Received:February 21,2022
  • Revised:May 16,2022
  • Adopted:May 26,2022
  • Online: December 07,2022
  • Published: November 30,2022