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Field and temperature dependences of critical current indirect-heated Nb-tube processed Nb3Al wires

机译:临界电流间接加热的Nb管加工Nb3Al线的场和温度依赖性

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High-field performance of Nb-tube processed Nb3Al conductors is improved and allows these conductors for use above 20 T, when continuous direct-heating is applied before final annealing in the fabrication process. In the present study we prepared 0.74 mmφ Nb 3Al wires containing 121×121 7-core elementary Nb/Al-Mg composites by this modified method and measured their critical current, magnetization and susceptibility as a function of field and temperature. From these measurements, we have found that the volume pinning force, F p of these wires simply follows the Kramer's scaling law, i.e. Fp∝Bc22.5b0.5(1-b) 2 w here b=B/Bc2, for the entire range of temperature measured, 4.2~16 K. Since A15 phase grains formed are very fine, the most probable pinning source seems to be grain boundaries which are dense compared to other possible sources such as interfaces between Nb-Al alloy phase and Nb3Al filaments
机译:当在制造过程中进行最终退火之前进行连续直接加热时,经Nb管处理的Nb3Al导体的高场性能得到改善,并使这些导体可在20 T以上使用。在本研究中,我们通过这种改进方法制备了包含121×121 7芯基本Nb / Al-Mg复合材料的0.74mmφNb 3Al导线,并测量了其临界电流,磁化强度和磁化率随磁场和温度的变化。从这些测量中,我们发现这些导线的体积钉扎力F p完全遵循克莱默定标律,即Fp∝Bc22.5b0.5(1-b)2 w在这里b = B / Bc2测得的温度范围为4.2〜16K。由于形成的A15相晶粒非常细,与其他可能的来源(例如Nb-Al合金相和Nb3Al细丝之间的界面)相比,最可能的钉扎源似乎是致密的晶界

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