熔体织构y0.6 Er 0.4 Ba 2cu3oy超导体的临界电流密度和磁通钉扎特性

Feng Yong, Z. Lian, Shi Lei, Yang Wan-min, Zhang Cui-ping, Wan Jingrong, Du Ze-hua, Yu Ze-min, Wu Xiaozu, Zhang Yuheng
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摘要

在相同条件下,采用粉末熔融法制备了高织构的YBa2Cu3Oy和Y0.6Er0.4Ba2Cu3Oy本体样品,并对其磁性能和磁通钉扎特性进行了研究。发现Bean模型估计的Jc值随磁场的变化呈幂律Jc∞B-n (n < 0.55)减小,表明这些材料的Jc值受磁钉钉而非弱环节控制。此外,掺铒还能提高合金的Jc和助焊剂的钉接性能。添加Er引起的Y2BaCuO5颗粒尺寸减小、磁钉钉和应力场钉钉可能是增强Jc和磁钉钉的主要原因。
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Critical current density and flux pinning characteristics in melt-textured Y 0.6 Er 0.4 Ba 2 Cu 3 O y superconductor
We prepared highly textured YBa2Cu3Oy and Y0.6Er0.4Ba2Cu3Oy bulk samples by a powder melting process method under the same conditions and studied the magnetic properties and flux pinning characteristics. It is found that the Jc estimated by the Bean's model decreases with the magnetic field according to a power law Jc ∞ B-n (n < 0.55), suggesting that Jc values of these materials are controlled by the flux pinning rather than weak links. Also, Jc and flux pinning are improved by the Er addition. The reduction of the size of Y2BaCuO5 particles, magnetic pinning and stress-field pinning caused by the Er addition may be responsible for the enhancement of Jc and flux pinning.
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