采用PIT法制备银包套Bi-2223多芯超导薄带,研究了不同厚度带材的制备工艺和性能特点.采用不同的轧制变形量,将Bi-2223/Ag多芯线轧制为0.4mm~0.07mm不同厚度的带材.试验结果表明,厚度越薄的带材热处理温度较低,相变速度更快.由于组织均匀性和超导相的相对含量及织构的影响,不同厚度带材的临界电流密度有很大差异,厚度为0.1mm左右带材的临界电流密度最高,用这样的薄带可以绕制内径更小的线圈.
参考文献
[1] | H Maeda;Y Fukutomi;T Asano 等.[J].Journal of Applied Physiology,1988(27):L209. |
[2] | S X Dou;H K Liu .[J].Superconductor Science and Technology,1993,6(06):297. |
[3] | G Grasso;A Jeremie;R Flükiger .[J].Superconductor Science and Technology,1995,8(08):827. |
[4] | Z. Han;P. Bodin;W. G. Wang;M. D. Bentzon;P. Skov-Hansen;J. Goul;P. Vase .Fabrication and characterisation of superconducting Bi-2223/Ag tapes with high critical current densities in km lengths[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,1999(2 Pt.2):2537-2540. |
[5] | D C Larbalestier;A Gurevich;D M Feldmann;A Polyanskii .[J].Nature,2001,414:368. |
[6] | P Vase;R Flükiger;M Leghissa .[J].Superconductor Science and Technology,2000(13):71. |
[7] | Q Y Hu;H K Liu;S X Dou .[J].PHYSICA C,1995,250:7. |
[8] | J W Anderson;J A Parrell;P V P S S Sastry;D C Larbalestier .[J].IEEE Transactions on Applied Superconductivity,1997,7(07):1422. |
[9] | Z Han;P Skov-Hansen;T Freltoft .[J].Superconductor Science and Technology,1997(10):371. |
[10] | D W A Willén;W Zhu;R Nadi;A Paquette and J R Cave .[J].IEEE Transactions on Applied Superconductivity,1997,7(07):2079. |
[11] | Z Han;P Skov-Hansen;P Vase.MT-15,Beijing,October(1997)[C]. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%