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Modeling and Experiment of an Active Pneumatic Vibration Isolator according to ISO 6358

机译:符合ISO 6358的主动式气动隔振器的建模和实验

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摘要

In some precision manufacturing processes, like the transportation of TFT-LCD or solar-energy panels, the vibration control of the transportation platform is the key technology to prevent the panels from being damaged. Nowadays, passive vibration isolator is still widely used in the design of the transportation platform because of its simple structure and easy maintenance. The disadvantage, however, is its limited performance become it has no means of adding extra energy to the system. Therefore, the advanced active vibration isolator becomes the effective solution to suppress the vibration of the transportation platform. In this paper, a brand new modeling methodology for an active pneumatic vibration isolator is developed. This mathematical model is based on the international standard ISO 6358. Finally, after comparing the results by experiment and simulation, it is proved that the mathematical model based on ISO 6358 can accurately simulate the dynamic response of the active pneumatic vibration isolator.
机译:在某些精密制造过程中,例如TFT-LCD或太阳能面板的运输,运输平台的振动控制是防止面板损坏的关键技术。如今,无源隔振器由于其结构简单,易于维护而在运输平台的设计中仍被广泛使用。但是,缺点是性能有限,因为它无法为系统增加额外的能量。因此,先进的主动隔振器成为抑制运输平台振动的有效解决方案。本文为主动式气动隔振器开发了一种全新的建模方法。该数学模型基于国际标准ISO6358。最后,通过实验和仿真比较结果,证明基于ISO 6358的数学模型可以准确模拟主动式气动隔振器的动力响应。

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