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Melt-growth bulk superconductors and application to an axial-gap-type rotating machine

机译:熔体生长体超导体及其在轴向间隙型旋转机中的应用

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摘要

The present manuscript addresses key issues in the course of our study of materials processing of bulk high-temperature superconductors, trapped flux and its application to a prototype axial-gaptype rotating machine. The TUMSAT group has conducted a series of studies since 2003 on the growth of GdBa2Cu3O7-delta bulk material and its application in a compact low-speed high-torque rotating machine. In the stage of material growth, gaining the advantage of a large motive torque density requires large integrated flux in the motor/generators. A large grain surface might be required with sophisticated techniques for the melt-growth texture in the bulk with optimal flux pinning. In the second stage, the in situ magnetization procedure for bulk superconductors in the applied machine is a crucial part of the technology. Pulsed current excitation by using an armature copper winding has magnetized field pole bulks on the rotor. The axial-gap flux synchronous machine studied in the past decade is a condensed technology and indicates that further scientific development is required for a future compact machine to be superior to conventional ones in accordance with the cryogenic periphery and flux stabilization.
机译:本手稿解决了我们在研究高温高温超导体的材料加工,截留通量及其在原型轴向间隙型旋转机械中的应用过程中的关键问题。自2003年以来,TUMSAT小组就GdBa2Cu3O7-δ块状材料的生长及其在紧凑型低速高扭矩旋转机中的应用进行了一系列研究。在材料生长阶段,要获得大的驱动转矩密度,需要在电动机/发电机中集成较大的通量。复杂的技术可能需要大的晶粒表面,以使散装中的熔体生长结构具有最佳的磁通钉扎。在第二阶段,所应用机器中的块状超导体的原位磁化程序是该技术的关键部分。使用电枢铜绕组的脉冲电流激励在转子上具有磁化的磁场极块。过去十年来研究的轴向间隙磁通同步电机是一种浓缩技术,表明根据低温外围和磁通稳定性,未来的紧凑型电机要优于常规电机,还需要进一步的科学发展。

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