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Critical Current Densities of Sn-Doped PbMo6S8 Wires
Abstract PbMo6S8 wires were made using a cold powder metallurgy process. The initial powder was a mixture of PbS, Mo, MoS2 and Sn, so that the stoichiometry was Pb:Mo:S:Sn = 1.05: 6.2: 8:x, where x varied from 0 to 0.6. We optimized the heat treatment conditions of small coils and measured their transport critical current densities as a function of x and the applied magnetic field B. The best result was 1.5 × 108 A/m2 at 20 T and 5.5 × 107 A/m2 at 27 T, achieved on a 1000 mm long wound wire.
Critical Current Densities of Sn-Doped PbMo6S8 Wires
Abstract PbMo6S8 wires were made using a cold powder metallurgy process. The initial powder was a mixture of PbS, Mo, MoS2 and Sn, so that the stoichiometry was Pb:Mo:S:Sn = 1.05: 6.2: 8:x, where x varied from 0 to 0.6. We optimized the heat treatment conditions of small coils and measured their transport critical current densities as a function of x and the applied magnetic field B. The best result was 1.5 × 108 A/m2 at 20 T and 5.5 × 107 A/m2 at 27 T, achieved on a 1000 mm long wound wire.
Critical Current Densities of Sn-Doped PbMo6S8 Wires
Lay, Luc (Autor:in) / Rabiller, Philippe (Autor:in) / Chevrel, Roger (Autor:in) / Sergent, Marcel (Autor:in) / Verhaege, Thierry (Autor:in) / Vallier, Jean-Claude (Autor:in) / Genevey, Pierre (Autor:in)
01.01.1990
6 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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