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Noncontact guide system for traveling elastic steel plates (Vibration control performance for different of guideway shapes)

机译:用于行驶弹性钢板的非接触式导向系统(不同导轨形状的振动控制性能)

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We have developed a noncontact guide system for a high-speed traveling elastic steel plate in which electromagnetic forces are applied by actuators at the edges of the plate to control its position. Recently, we have been examining a noncontact guide system, in which one of the loops of a belt-shaped thin steel plate is supported by a pulley, and another loop is guided without contact using electromagnets. It was confirmed experimentally that the loop shape of the thin steel plate changes with increasing traveling speed when no control is carried out. In this study, a basic examination of the technique for forming a guideway using electromagnets, in which the change in the uncontrolled loop shape is considered, was carried out. By comparing the results for guideways with several different shapes, the effect of the guideway shape on the vibration suppression performance of the steel plate was discussed experimentally. As a result, it was confirmed that the vibration suppression performance of the steel plate can be improved by adjusting the shape of the noncontact guide system that uses electromagnets to conform with that of the loop of the uncontrolled steel plate.
机译:我们开发了一种用于高速行驶弹性钢板的非接触导向系统,其中电磁力通过板边缘处的致动器施加以控制其位置。最近,我们已经检查了非接触导向系统,其中皮带状薄钢板的环的一个环由滑轮支撑,并且在使用电磁铁的情况下不接触地引导另一种环。实验证实,薄钢板的环形形状随着在没有控制时的增加时变化而变化。在该研究中,进行了使用电磁铁形成导轨的技术的基本检查,其中考虑了不受控制的环形形状的变化。通过用几种不同形状进行比较导轨的结果,实验讨论了导轨形状对钢板振动抑制性​​能的影响。结果,确认可以通过调节使用电磁铁的非接触式引导系统的形状来改善钢板的振动抑制性​​能,该钢板可以与不受控制的钢板的环的环形符合的形状。

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