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Structure, Electrical Resistivity and Superconductivity of Lowalloyed γ-U Phase Retained to Low Temperatures by Means of Rapid Cooling
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作者 M.Krupska N.-T.H.Kim-Ngan +5 位作者 S.Sowa M.Paukov I.Tkach D.Drozdenko l.havela Z.Tarnawski 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2016年第4期388-398,共11页
The γ-U phase alloys can be retained down to low temperatures with less required alloying concentration by using the splat-cooling technique with a cooling rate better than 10^6 K/s. Doping with 15 at.% Mo, Pt, Pd, N... The γ-U phase alloys can be retained down to low temperatures with less required alloying concentration by using the splat-cooling technique with a cooling rate better than 10^6 K/s. Doping with 15 at.% Mo, Pt, Pd, Nb leads to a stabilization of the cubic γ-U phase, while it requires much higher Zr concentrations (≥30 at.% Zr). All U-T splats become superconducting with Tc in the range of 0.61-2.11 K. A good agreement of the experimentally observed specific-heat jump at Tc with that from BCS theory prediction was obtained for U-15 at.% Mo consisting of the γ-U phase with an ideal bcc A2 structure. 展开更多
关键词 Crystal structure Electrical resistivity Metallic system SUPERCONDUCTIVITY
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