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首页> 外文期刊>Journal of Materials Science >HIGH-T-C SUPERCONDUCTING BI(AL)-CA-SR-CU-O GLASS-CERAMIC FIBRES DRAWN FROM GLASS PREFORMS
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HIGH-T-C SUPERCONDUCTING BI(AL)-CA-SR-CU-O GLASS-CERAMIC FIBRES DRAWN FROM GLASS PREFORMS

机译:从玻璃瓶坯中拉出的高温T-C超导Bi(AL)-CA-SR-CU-O玻璃-陶瓷纤维

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Bi(Al)-Ca-Sr-Cu-O glass-ceramic fibres over 100 cm in length were successfully drawn from a glass preform above the crystallization temperature, T-x. The diameters of the uniformly drawn fibres with circular cross-section could be controlled in the range from 25-200 mu m and the drawing speed was as high as 200 cm min(-1). In this work Al2O3 was used to modify the properties of the glass. It increased the glass transition and crystallization temperatures but did not significantly increase the glass working range. Shrinkage and increase of density during heat treatment of the glass fibres were observed. The annealed (825 degrees C/12 h in air) Bi4Al0.1Ca3Sr3Cu4Oy glass-ceramic fibre showed a T-c(onset) of 82 K and a T-c(zero) of 71 K. [References: 17]
机译:在结晶温度T-x以上,成功地从玻璃预成型坯中拉出了长度超过100 cm的Bi(Al)-Ca-Sr-Cu-O玻璃陶瓷纤维。具有圆形横截面的均匀拉伸纤维的直径可以控制在25-200μm的范围内,并且拉伸速度高达200 cm min(-1)。在这项工作中,使用Al2O3来改变玻璃的性能。它增加了玻璃化转变温度和结晶温度,但并未显着增加玻璃的工作范围。观察到玻璃纤维热处理期间的收缩和密度的增加。退火(空气中825摄氏度/ 12小时)Bi4Al0.1Ca3Sr3Cu4Oy玻璃陶瓷纤维的T-c(起始值)为82 K,T-c(零值)为71K。[参考文献:17]

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