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Impact of DC components in transport current and external magnetic field on hysteresis losses in an HTS tape

机译:传输电流和外部磁场中的直流分量对高温超导带中磁滞损耗的影响

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The high-temperature superconductor (HTS) development is presently intensive, and one can expect that HTSs will be used in different electric devices in the future. In some of these devices, e.g., a magnetostrictive actuator, the conductor will be exposed to both ac and dc transport currents and external magnetic fields. One of the most important parameters in the design of electric devices is the power loss. It is, therefore, of importance to develop models that are able to predict the power loss in devices based on HTSs. In this paper, we present an experimental characterization of the hysteresis losses in an HTS tape exposed to ac or dc transport currents in combination with external magnetic fields. The experimental results are compared to some existing models based on the critical state model. The power loss was measured on a multifilamentary Bi-2223 tape at constant temperature (70 K) and frequency (50 Hz).
机译:高温超导体(HTS)的开发工作目前十分艰巨,可以预料,将来高温超导体将用于不同的电气设备中。在某些这样的设备中,例如磁致伸缩致动器,导体将暴露于交流和直流传输电流和外部磁场中。电气设备设计中最重要的参数之一是功耗。因此,重要的是要开发能够预测基于HTS的设备中的功率损耗的模型。在本文中,我们对暴露于交流或直流传输电流以及外部磁场的高温超导带中的磁滞损耗进行了实验表征。将实验结果与基于临界状态模型的一些现有模型进行比较。功率损耗是在恒定温度(70 K)和频率(50 Hz)的复丝Bi-2223胶带上测量的。

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