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Characterization of thermal conductivity and mechanical properties of Ag-alloy sheathed Bi(Pb)-Sr-Ca-Cu-O superconductor tape

机译:Ag合金包覆Bi(Pb)-Sr-Ca-Cu-O超导带的导热系数和力学性能表征

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摘要

We evaluated the effect of alloying additions to Ag on thermal conductivity and mechanical properties of Ag-alloy sheathed Bi-2223 (BSCCO) superconductor tape. The tapes were made with combinations of Ag alloys such as Ag-Mg, Ag-Sb, and Ag-Au for inner and outer sheath. Thermal conductivity of the tapes was evaluated by using thermal integral method at 10-120 K. It was observed that the addition of alloys reduced remarkably thermal conductivity and improved mechanical strength. The thermal conductivity for Ag-Mg, Ag-Sb, and Ag-Au at 40 K was measured to be 411.4, 142.3, and 109.7 W/(m/spl middot/K), respectively, which is approximately 2 to 9 times lower than that of Ag (1004.6 W/(m/spl middot/K)). In addition, the thermal conductivity of alloy-sheathed tape significantly depended on their thermal conductivity of sheath materials. For Ag-alloy sheathed tapes, the thermal conductivity was much lower (i.e., 5 -18 times lower) than that of the Ag sheathed tape The mechanical property of alloy-sheathed tape was also evaluated and correlated to the microstructural evolution.
机译:我们评估了合金化添加到银中对银合金护套Bi-2223(BSCCO)超导带的热导率和机械性能的影响。这些带由用于内部和外部护套的Ag合金如Ag-Mg,Ag-Sb和Ag-Au的组合制成。通过使用热积分法在10-120 K下评估带的热导率。观察到,合金的添加显着降低了热导率并提高了机械强度。 Ag-Mg,Ag-Sb和Ag-Au在40 K下的热导率分别为411.4、142.3和109.7 W /(m / spl middot / K),大约低2至9倍比Ag(1004.6 W /(m / spl middot / K))高。另外,合金护套带的导热率显着取决于其护套材料的导热率。对于银合金护套带,其导热率比银护套带低得多(即,低5 -18倍)。合金护套带的机械性能也得到了评估,并与微结构演变相关。

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