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Challenges of using dielectric elastomer actuators to tune liquid lens

机译:使用介电弹性体致动器调整液体透镜的挑战

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Recently, dielectric elastomer actuators (DEAs) have been adopted to tune liquid membrane lens, just like ciliary muscles do to the lens in human eye. However, it faces some challenges, such as high stress, membrane puncture, high driving voltage requirement, and limited focus distance (not more than 707cm), that limit its practical use. The design problem gets more complex as the liquid lens shares the same elastomeric membrane as the DEA. To address these challenges, we separate DEA from the lens membrane. Instead, a liquid-immersed DEA, which is safe from terminal failure, is used as a diaphragm pump to inflate or deflate the liquid lens by hydraulic pressure. This opens up the possibility that the DEA can be thinned down and stacked up to reduce the driving voltage, independent of the lens membrane thickness. Preliminary study showed that our 8-mm-diameter tunable lens can focus objects in the range of 15cm to 50cm with a small driving voltage of 1.8kV. Further miniaturization of DEA could achieve a driving voltage less than 1kV.
机译:近来,已采用介电弹性体致动器(DEA)来调整液膜晶状体,就像睫状肌对人眼的晶状体一样。但是,它面临一些挑战,例如高应力,膜穿孔,高驱动电压要求以及有限的聚焦距离(不超过707cm),这限制了其实际使用。当液体透镜与DEA共享相同的弹性膜时,设计问题变得更加复杂。为了解决这些挑战,我们将DEA与晶状体膜分开。取而代之的是,可以防止终端故障的液浸DEA用作隔膜泵,以通过液压对液体透镜进行充气或放气。这提供了DEA可以变薄并堆叠以降低驱动电压的可能性,而与透镜膜的厚度无关。初步研究表明,我们的8毫米直径可调透镜可以在1.8kV的较小驱动电压下聚焦15cm至50cm的物体。 DEA的进一步小型化可以实现小于1kV的驱动电压。

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