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Effect of heating rates on superconducting properties of pure MgB2, carbon nanotube- and nano-SiC-doped in situ MgB2/Fe wires

机译:加热速率对纯MgB2,碳纳米管和纳米SiC掺杂原位MgB2 / Fe导线超导性能的影响

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摘要

The influence of heating rates and annealing temperatures on the transition temperatures (Tc) and critical current densities (Jc) of pure MgB2, carbon nanotube- and nano-SiC-doped in situ monofilamentary MgB2/Fe wires was investigated. It was found that higher Jc was obtained for pure MgB2 samples when heat treated with slower heating rates. SiC-doped samples also have higher Jc with slower heating rates, but the Jc is less sensitive to annealing temperatures. However, the Jc of the carbon nanotube-doped wire was found to be insensitive to heating rates. The variation in Tc and Jc with heating rate, and the different behaviors of differently doped MgB2/Fe wires, make it essential to carefully select the optimum heating rates for heat treatment.
机译:研究了加热速率和退火温度对纯MgB2,碳纳米管和纳米SiC掺杂原位单丝MgB2 / Fe导线的转变温度(Tc)和临界电流密度(Jc)的影响。发现以较低的加热速率进行热处理时,纯MgB2样品可获得较高的Jc。掺杂SiC的样品的Jc也较高,且加热速率较慢,但Jc对退火温度较不敏感。然而,发现掺杂碳纳米管的线的Jc对加热速率不敏感。 Tc和Jc随加热速率的变化以及不同掺杂的MgB2 / Fe焊丝的行为不同,因此必须仔细选择热处理的最佳加热速率。

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