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首页> 外文期刊>Journal of intelligent material systems and structures >Electroactive polymer actuators for active optical components
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Electroactive polymer actuators for active optical components

机译:用于有源光学组件的电活性聚合物致动器

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Adaptive optical systems incorporate active components that compensate for wavefront aberrations introduced by optical defects. The quality of optical compensation is largely determined by the stroke of the adaptive component's underlying actuating mechanism. Development of compact polypyrrole trilayer actuator arrays may deliver superior performance over conventional active technologies such as electrostatic electrodes or piezoelectric actuators. This study introduces a novel piston-tilt mirror apparatus that utilizes low-voltage electroactive polymer actuators to reorient a plane mirror. The design of the mirror and its ancillary systems are first reported, followed by the polymer synthesis procedure and actuator fabrication method. Finally, laser beam steering results are provided in the context of an experimental retinal imaging system. The outcomes indicate a promising future for electroactive polymer-enabled devices in adaptive optical systems with technological implications ranging from more powerful astronomical telescopes to improved retinal tissue diagnosis.
机译:自适应光学系统结合了有源组件,可以补偿由光学缺陷引起的波前像差。光学补偿的质量在很大程度上取决于自适应组件基本驱动机构的行程。紧凑型聚吡咯三层致动器阵列的开发可以提供优于常规有源技术(如静电电极或压电致动器)的卓越性能。这项研究介绍了一种新颖的活塞倾斜镜装置,该装置利用低压电活性聚合物致动器来重新定向平面镜。首先报告了镜子及其辅助系统的设计,然后介绍了聚合物合成程序和执行器的制造方法。最后,在实验性视网膜成像系统的背景下提供了激光束转向结果。结果表明适应性光学系统中具有电活性聚合物功能的设备的前景广阔,其技术含义从更强大的天文望远镜到改进的视网膜组织诊断。

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