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High-temperature ultrasonic characterization of Ag-clad superconductor tapes

机译:包银超导带的高温超声表征

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An ultrasonic nondestructive evaluation technique was developed to monitor liquid-phase evolution during heat treatment of high-T/sub c/ superconductors. The liquid phase is essential for microstructural and phase development of superconductors and is important in fabricating conductors with high critical current density, J/sub c/. Tapes were fabricated by a powder-in-tube process and then placed in a controlled-atmosphere furnace. During heat treatment, a magnetostrictive transducer launches a 140-kHz wave into the sample, and the relative change in acoustic velocity is then measured. A significant decrease in velocity was seen at the incongruent melting temperatures of Bi-based superconductors. In addition, Ag-clad tapes with Al/sub 2/O/sub 3/ and NaCl cores were used to validate the measurement technique. Advantages of this approach over other thermal analysis methods include in-situ analysis of final tape form, monitoring of isothermal liquid evolution, control of volatile species such as Tl and Pb.
机译:开发了一种超声波无损评估技术,以监测高T / sub c /超导体热处理过程中的液相演化。液相对于超导体的微结构和相发展至关重要,并且在制造具有高临界电流密度J / sub c /的导体时很重要。通过管中粉末工艺制造带子,然后将其放入可控气氛炉中。在热处理过程中,磁致伸缩换能器向样品中发射一个140 kHz的波,然后测量声速的相对变化。在Bi基超导体的熔融温度不一致的情况下,速度显着下降。另外,使用具有Al / sub 2 / O / sub 3 /和NaCl芯的包银带来验证测量技术。与其他热分析方法相比,此方法的优势包括对最终条带形式的原位分析,监测等温液体的逸出,控制挥发性物质(例如Tl和Pb)。

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