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Interaction of bulk superconductors with flywheel rings made of multiple permanent magnets

机译:大块超导体与由多个永磁体制成的飞轮环的相互作用

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Compared to conventional mechanical bearings, superconducting bearings have the advantage that there is no friction loss. Thus the superconducting bearings are employed for a flywheel energy storage device, and thereby one can construct the system that stores the energy for a long duration. Hence, superconducting flywheel energy storage system has attracted worldwide attention. For practical applications of the Superconducting energy storage system. the stored energy must be maximized that can be achieved by either increasing the diameter of the levitated flywheel or the rotational velocity. Since the suspended flywheel in the superconducting flywheel energy storage system is made of permanent magnets, its size is limited by the size of permanent magnets. In addition, when the rotational speed is increased, there is possibility for the magnet ring to fracture due to a large centrifugal force. We therefore proposed the construction of the magnetic flywheel ring by simply arranging small permanent magnets pasted into machined grooves in Al disk 650 mm in diameter. Then we measured the force interaction between superconductor sample and a invented flywheel design. We have found that the field is almost uniform when the distance from the flywheel surface exceeded 15 mm, showing that frictionless rotation is possible at the gap larger than 15 mm. Furthermore, the repulsive force density was 0.48 N/cm(2) at 15 mm, which demonstrates that the mass of 161.32 kg can be levitated.
机译:与常规机械轴承相比,超导轴承具有无摩擦损失的优点。因此,超导轴承被用于飞轮能量存储装置,从而可以构造一种长时间存储能量的系统。因此,超导飞轮储能系统引起了全世界的关注。用于超导储能系统的实际应用。存储的能量必须最大化,这可以通过增加悬浮飞轮的直径或旋转速度来实现。由于超导飞轮储能系统中的悬浮飞轮由永磁体制成,因此其尺寸受到永磁体尺寸的限制。另外,当转速增加时,由于大的离心力,磁环可能断裂。因此,我们提出了通过简单地将小的永久磁铁粘贴到直径为650 mm的Al圆盘中的机加工凹槽中的方式来构造磁性飞轮环。然后,我们测量了超导体样品和发明的飞轮设计之间的力相互作用。我们发现,与飞轮表面的距离超过15毫米时,磁场几乎是均匀的,这表明在大于15毫米的间隙处可以进行无摩擦旋转。此外,在15毫米处的排斥力密度为0.48 N / cm(2),这表明可以悬浮质量161.32千克。

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