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Synchronous-hysteresis superconducting machine with stacks of second generation tapes

机译:具有堆叠第二代带胶带的同步滞后超导机

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Superconducting Electric Machines (SEM) have some advantages compared to machines with conventional conductors, such as higher power density, weight reduction, increased efficiency, and higher overload capacity. Those properties make the SEM ideal for several applications where a lighter and smaller machine is necessary. The SEM can be constructed using high temperature superconductor (HTS) bulks with trapped field or with superconducting tapes arranged as coils. Recent works have been proposed to replace the HTS bulk by stacks of second generation (2G) tapes to trap the magnetic field. Electric machines using trapped field in stacks of 2G tapes were not deeply investigated in the literature. In this context, the purpose of the present work is to study a SEM constructed with 2G tape stacks spirally arranged on the rotor. A small-scale SEM prototype was constructed and tested at 77 K in a laboratory bench. The tape stacks can be used in the SEM to operate in the synchronous or hysteresis regime, depending on the torque demanded by the load. Results as quasi-static torque, torque at locked rotor and torque vs. speed are presented. These results can help us to project the next generation of SEM.
机译:与具有常规导体的机器相比,超导电机(SEM)具有一些优点,例如更高的功率密度,重量减轻,效率提高,过载容量更高。这些属性使SEM成为必要较轻和更小的机器的几种应用。 SEM可以使用具有捕获场的高温超导体(HTS)块或具有作为线圈的超导磁带来构造。最近的作品已经提出通过堆叠的第二代(2G)胶带来取代HTS散装来捕获磁场。在文献中没有深深地研究了使用堆叠的2G胶带中被捕获的场的电机。在这种情况下,本作工作的目的是研究用螺旋地布置在转子上的2G胶带堆叠的SEM。在实验室长凳上以77 k构建和测试小规模的SEM原型。磁带堆可以在SEM中使用,以在同步或滞后区域操作,这取决于负载所需的扭矩。提出了锁定转子和扭矩与扭矩的准静态扭矩。这些结果可以帮助我们投影下一代SEM。

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