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Electromagnetic Levitation System for Thin Steel Plate Using Electromagnets and Permanent Magnets (Fundamental Consideration on Optimal Placement to Suppress the Deflection of Steel Plate)

机译:薄钢板的电磁悬浮系统使用电磁铁和永磁体(关于抑制钢板偏转的最佳展示力的基本考虑)

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In thin steel plate production lines widely used for various industrial products, thin steel plates are contact-conveyed by rollers in the conveying process. Owing to this conveying method, the quality of the surface deteriorates, resulting in degradation such as scratches or peeling of the plating layer of the thin steel plate. As a solution to these problems, we studied a noncontact magnetic levitation system for a rectangular thin steel plate using electromagnets and permanent magnets. We determined the optimal placement of permanent magnets using a genetic algorithm (GA), which searches for placements using an evaluation function. However, although the evaluation function was defined by the GA, since only a basic examination was conducted, the weight coefficient used in the evaluation was insufficient. In this paper, we changed the weight coefficient of the evaluation function and compared and analyzed the results of the permanent magnet arrangement determined by the GA. It is possible to obtain an optimum permanent magnet arrangement in which the levitation stability is improved by experimentally verifying the effects of the maximum deflection and average deflection on levitation performance. The levitation experiment is carried out using each weight coefficient for permanent magnet arrangement. Then, the levitation stability is evaluated.
机译:在广泛用于各种工业产品的薄钢板生产线中,薄钢板在输送过程中通过辊子接触。由于该传送方法,表面的质量劣化,导致薄钢板的镀层的划痕或剥离等劣化。作为对这些问题的解决方案,我们研究了使用电磁铁和永磁体的矩形薄钢板的非接触式磁悬浮系统。我们使用遗传算法(GA)确定永磁体的最佳放置,从而使用评估功能搜索放置。然而,尽管由GA定义评估功能,但由于仅进行了基本检查,但评估中使用的重量系数不足。在本文中,我们改变了评价功能的权重系数,并进行了比较并分析了由Ga确定的永磁体布置的结果。通过通过通过实验验证最大偏转和悬浮性能的平均偏转的效果,可以获得最佳的永磁装置,其中通过实验验证最大偏转和平均偏转的效果来提高悬浮稳定性。使用每个重量磁体布置的每个重量系数进行悬浮实验。然后,评估悬浮稳定性。

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