首页> 外文期刊>IEEE Transactions on Applied Superconductivity >We developed a novel critical current and stability experimental setup utilizing a closed electric circuit with a multi-stand superconducting cable. The feature of this setup is transverse mechanical loading implied to the multi-strand cable in the trans
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We developed a novel critical current and stability experimental setup utilizing a closed electric circuit with a multi-stand superconducting cable. The feature of this setup is transverse mechanical loading implied to the multi-strand cable in the trans

机译:我们开发了一种新颖的临界电流和稳定性实验装置,该装置利用了带有多座超导电缆的闭合电路。这种设置的特点是横向机械负载隐含在变压器中的多股电缆上

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We developed a novel critical current and stability experimental setup utilizing a closed electric circuit with a multi-stand superconducting cable. The feature of this setup is transverse mechanical loading implied to the multi-strand cable in the transverse direction. It was reported that Lorentz force caused degradation of critical current in the ITER-TFMC conductor. Furthermore, these phenomena were only observed in the ITER full size conductors with large Lorentz forces under high magnetic field. The advantage of our setup is a critical current measurement with comparable mechanical stress under high magnetic field. Employing an inductive critical current measurement technique, we conducted the experiment with transport current of around 10 kA without any power supply nor current lead. As experimental results, we observed significant degradation due to compressive stress of around 30 MPa. This degradation was found irreversible, when it was unloaded.
机译:我们开发了一种新颖的临界电流和稳定性实验装置,该装置利用了带有多座超导电缆的闭合电路。这种设置的特征是在横向方向上隐含于多股电缆的横向机械负载。据报道,洛伦兹力导致ITER-TFMC导体中的临界电流降低。此外,这些现象仅在强磁场下在具有大洛伦兹力的ITER全尺寸导体中观察到。我们设置的优点是在高磁场下具有可比机械应力的临界电流测量。我们使用电感式临界电流测量技术,在没有任何电源和电流引线的情况下,以约10 kA的传输电流进行了实验。作为实验结果,我们观察到由于30 MPa左右的压缩应力而导致的显着退化。卸载后,发现这种降解是不可逆的。

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