Magnetic field reinforced high-temperature superconducting magnetic suspension system
A high-temperature superconducting and magnetic levitation technology, which is used in holding devices with magnetic attraction or thrust, electric traction, electric vehicles, etc. The capture field is not strong enough to achieve the effect of strengthening the magnetic field distribution, improving the suspension and guiding performance, and facilitating installation and unloading.
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Embodiment 2
[0020] The overall structure of the second embodiment of the present invention is basically the same as that of the first embodiment, such as figure 1 , 2 , 3, the only difference is that the high-temperature superconducting magnetization and magnetic field adjustment coils are composed of four YBCO high-temperature superconducting magnetization and magnetic field adjustment coils 2 (b). After cooling the high-temperature superconducting block array 1 to the superconducting state, the direct current of the magnetizing and magnetic field adjusting coil 2 (a) remains unchanged, and then when the system starts to work, the magnetizing and magnetic field adjustment can be adjusted according to the system requirements. The magnitude of the direct current applied to the coil 2 (a) is used to adjust the levitation force and guiding force of the high-temperature superconducting magnetic levitation system.
Embodiment 3
[0022] The overall structure of Embodiment 3 of the present invention is basically the same as that of Embodiment 1 or 2, such as figure 1 , 2 , 4, the only difference is that the upper and lower magnetic suspension tracks are double 2 magnets and 3 soft iron type permanent magnet tracks 5 (b1), 5 (b2).
[0023] 2 magnets on each side and 3 soft iron permanent magnet tracks are composed of soft iron on both sides and the middle, and permanent magnets between them. The magnetic poles of the permanent magnets face each other in the horizontal direction. The upper and lower permanent magnet tracks correspond to permanent magnets. The magnetic poles of the magnets are opposite.
Embodiment 4
[0025] The overall structure of Embodiment 4 of the present invention is basically the same as that of Embodiments 1, 2, and 3, such as figure 1 , 2 , 5, the only difference is that the upper and lower magnetic levitation tracks are double 3-magnet back iron type permanent magnet tracks 5 (c1), 5 (c2), the polarity is along the vertical direction, and along the cross-sectional direction It consists of magnets with alternating polarities and their back irons. The number of magnets can be any number greater than or equal to 3 along the cross-sectional direction. The magnetization directions of the permanent magnets corresponding to the upper and lower permanent magnet tracks 5 (c1) and 5 (c2) are the same. .
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