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Simulation and experiments of stacks of high temperature superconducting coated conductors magnetized by pulsed field magnetization with multi-pulse technique

机译:用多脉冲技术脉冲现场磁化磁化高温超导涂层导体堆叠的仿真与实验

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摘要

High temperature superconducting bulks or stacks of coated conductors (CCs) can be magnetized to become trapped field magnets (TFMs). The magnetic fields of such TFMs can break the limitation of conventional magnets (< 2 T), so they show potential for improving the performance of many electrical applications that use permanent magnets like rotating machines. Towards practical or commercial use of TFMs, effective in situ magnetization is one of the key issues. The pulsed field magnetization (PFM) is among the most promising magnetization methods in virtue of its compactness, mobility and low cost. However, due to the heat generation during the magnetization, the trapped field and flux acquired by PFM usually cannot achieve the full potential of a sample (acquired by the field cooling or zero field cooling method). The multipulse technique was found to effectively improve the trapped field by PFM in practice. In this work, a systematic study on the PFM with successive pulses is presented. A 2D electromagnetic-thermal coupled model with comprehensive temperature dependent parameters is used to simulate a stack of CCs magnetized by successive magnetic pulses. An overall picture is built to show how the trapped field and flux evolve with different pulse sequences and the evolution patterns are analyzed. Based on the discussion, an operable magnetization strategy of PFM with successive pulses is suggested to provide more trapped field and flux. Finally, experimental results of a stack of CCs magnetized by typical pulse sequences are presented for demonstration.
机译:高温超导小块或涂层的涂覆导体(CCS)可以被磁化成被捕获的现场磁体(TFM)。这种TFMS的磁场可以破坏传统磁铁(<2t)的限制,因此它们显示出改善许多电气应用的性能的潜力,这些应用使用旋转机器如旋转机器。实现TFM的实际或商业用途,有效地磁化是关键问题之一。脉冲场磁化(PFM)是其紧凑性,移动性和低成本的最有前途的磁化方法之一。然而,由于磁化期间的发热,PFM获取的被捕获的场和磁通通常不能达到样品的全部电位(由场冷却或零场冷却方法获取)。发现多级技术在实践中通过PFM有效地改善了被困领域。在这项工作中,提出了对连续脉冲的PFM的系统研究。具有综合温度相关参数的2D电磁热耦合模型用于模拟由连续磁脉冲磁化的一堆CCS。构建了整体图像以显示如何用不同的脉冲序列和进化模式进行捕获的字段和助焊剂的发展。基于讨论,建议具有连续脉冲的PFM可操作的磁化策略,以提供更加捕获的场和通量。最后,介绍了典型脉冲序列磁化的一堆CCS的实验结果进行了演示。

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