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Photostrictive actuators for photonic control of shallow spherical shells

机译:光致伸缩致动器,用于控制浅球形壳的光子

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Photostrictive materials, exhibiting light-induced strain, are of interest for the future generation of wireless remote control photo-actuators. Photostrictive actuators are expected to be used as the driving component in optically controlled flexible structures. In this paper, the photonic control of flexible spherical shells using discrete photostrictive actuators is investigated. This paper presents a coupled opto-piezothermoelastic shell theory that incorporates photovoltaic, pyroelectric and piezoelectric effects, and has the capability to predict the response of a spherical shell driven by the photostrictive actuators. In this study, the effects of actuator location as well as membrane and bending components on the control action have been analyzed. The results obtained indicate that the control forces are mode and location dependent. Analysis also shows that the membrane control action is much more significant than the bending control action.
机译:表现出光致应变的光致伸缩材料是下一代无线遥控光致动器所关注的。预计光致伸缩致动器将用作光控柔性结构中的驱动组件。本文研究了使用离散光致伸缩致动器对柔性球壳的光子控制。本文提出了一种耦合光-光-热-弹壳理论,该理论结合了光伏,热电和压电效应,并具有预测由光致伸缩驱动器驱动的球形壳的响应的能力。在这项研究中,分析了执行器位置以及膜片和弯曲组件对控制动作的影响。获得的结果表明,控制力取决于模式和位置​​。分析还表明,膜控制作用比弯曲控制作用重要得多。

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