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首页> 外文期刊>Journal of vibration and control: JVC >Nonlinear vibration analysis of piezo-actuated flat thin membrane
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Nonlinear vibration analysis of piezo-actuated flat thin membrane

机译:压电驱动扁平薄膜的非线性振动分析

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摘要

Minimal mass (ultra lightweight) and high packaging efficiency (stowage volume) are the most important factors associated with space technology and hence they become more attractive traits for getting larger bandwidth satellites on-orbit. Nowadays, maintaining the surface shape of pre-tension membranes to instrument precision has become a more challenging problem. Hence, membrane reflectors are receiving increasing attention for mission architectures that need extremely large in-space deployable antennas. This paper presents the finite-element investigation of a rectangular, flat thin membrane using polyvinylidene fluoride (PVDF) piezo-actuated material as an actuator/sensor. The passive effect of PVDF on the dynamics of an inflatable space-based rectangular shaped structure has been studied and trends in natural frequencies for various patch areas and thickness have been explored. Investigation shows that rather than using the various numbers of patches to the practical system for controlling their vibration behavior, the single patch with the appropriate thickness can easily control the desired vibration behavior. It can therefore be concluded that the discrete sensor/actuators devices are to be preferred to realize lower weight and effective control authority for the modest values of actuator voltages for active vibration control of practical structures.
机译:最小的质量(超轻量级)和高的包装效率(装载体积)是与空间技术相关的最重要因素,因此,它们对于在轨道上获得更大带宽的卫星变得更具吸引力。如今,保持预张力膜的表面形状达到仪器精度已成为一个更具挑战性的问题。因此,对于需要非常大的空间可部署天线的任务架构,膜反射器越来越受到关注。本文介绍了使用聚偏二氟乙烯(PVDF)压电驱动材料作为驱动器/传感器的矩形扁平薄膜的有限元研究。研究了PVDF对充气式天基矩形结构动力学的被动影响,并探索了各种补丁区域和厚度的自然频率趋势。研究表明,与其在实际系统中使用各种数量的贴片来控制其振动行为,不如使用具有适当厚度的单个贴片,可以轻松地控制所需的振动行为。因此可以得出结论,对于实际结构的主动振动控制而言,对于致动器电压的适中值,为实现较低的重量和有效的控制权限,离散传感器/致动器装置是优选的。

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