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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Stress and Strain Measurements on a 5 T Superconducting Magnet During Coil Excitation
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Stress and Strain Measurements on a 5 T Superconducting Magnet During Coil Excitation

机译:线圈励磁过程中5 T超导磁体的应力和应变测量

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摘要

A 5 T superconducting magnet with a warm bore has been successfully fabricated and tested at the Institute of Modern Physics of Chinese Academy of Science (IMPCAS). The strains of the superconducting magnet under cryogenic temperature and intense magnetic field were measured by using low-temperature resistance strain gauges where the compensation methods were introduced for eliminating noise effects of both temperature and magnetic field on the strain measurement. A slow ramp rate of the magnetic field was applied during coil excitation of the superconducting magnet to avoid the temperature risen by eddy current. A wireless strain acquisition system was used for the hoop and axial strain measurements of the magnet. It is clarified that the strains measured in the superconducting magnet give much valuable information characterizing the deformation and the stress state at cryogenic temperature and intense magnetic fields. For the purpose of comparison, the steady-state strains and central magnetic field of the superconducting magnet was valuated by means of a coupled FEM. The simulation predictions and the experimental data show good agreements.
机译:具有热膛孔的5 T超导磁体已经在中国科学院现代物理研究所(IMPCAS)上成功制造和测试。使用低温电阻应变仪测量了超导磁体在低温和强磁场下的应变,其中引入了补偿方法以消除温度和磁场对应变测量的噪声影响。在超导磁体的线圈励磁过程中施加了缓慢的磁场倾斜速率,以避免温度由于涡流而升高。无线应变采集系统用于磁体的环向和轴向应变测量。可以看出,在超导磁体中测得的应变给出了许多有价值的信息,这些信息表征了低温和强磁场下的变形和应力状态。为了进行比较,通过耦合有限元法对超导磁体的稳态应变和中心磁场进行了评估。仿真预测和实验数据显示出良好的一致性。

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