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采用PIT工艺,以分步法粉末为装管前驱粉,选用中心铜铌复合棒增强的导体结构制备了TiC掺杂MgB2多芯线材,研究了不同热处理温度对于粉末相组成、线材的微观结构以及超导电性的影响,结果表明分步法粉末能够有效提高C原子的取代水平,同时芯丝中MgB2晶粒尺寸达到亚微米级,MgB2晶粒连结性较好,制备多芯线材在4.2 K,5T时,其Jc仍高达3×104 A/cm2.

参考文献

[1] Nagamatsu J;Nakagawa N;Muranaka T;Zenitani Y;Akimitsu J .Superconductivity at 39 K in magnesium diboride[J].Nature,2001(6824):63-64.
[2] Liu A Y;Mazin I I;Kortus J et al.[J].Physical Review Letters,2001,87(08):087005.
[3] Bellomo G.;Musenich R.;Sorbi M.;Volpini G. .<tex>$rm MgB_2$</tex>Coils for Particle Accelerators[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,2006(2):1439-1441.
[4] 王庆阳,闫果,A Sulpic,刘国庆,焦高峰,熊晓梅,冯勇,张平祥.Nb芯增强MgB2多芯超导线材的制备及性能研究[J].低温物理学报,2011(03):199-202.
[5] Pachla W;Presz A;Diduszko R et al.[J].Superconductor Science and Technology,2002,15:1281.
[6] Sumption M D;Bhatia M;Wu X et al.[J].Superconductor Science and Technology,2005,18:730.
[7] Stenvall A;Korpela A;Mikkonen R et al.[J].Superconductor Science and Technology,2006,19:184.
[8] Fujita Y;Arai K;Nishikawa M et al.[J].Physica C,2008,468:15.
[9] Song KJ.;Lee NJ.;Jang HM.;Ha HS.;Ha DW.;Oh SS.;Sohn MH.;Ko RK. Park C.;Kwon YK.;Ryu KS. .Single-filament composite MgB2/stainless-steel ribbons by powder-in-tube process[J].Physica, C. Superconductivity and its applications,2002(1):21-26.
[10] Yamamoto Akiyasu;Shimoyama Junichi;Ueda Shinya et al.[J].IEEE Transactions on Applied Superconductivity,2006,16(02):1411.
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