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首页> 外文期刊>Advanced Functional Materials >Ultrafast All-Polymer Electrically Tunable Silicone Lenses
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Ultrafast All-Polymer Electrically Tunable Silicone Lenses

机译:超快全聚合物电可调硅胶镜片

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摘要

Dielectric elastomer actuators (DEA) are smart lightweight flexible materials integrating actuation, sensing, and structural functions. The field of DEAs has been progressing rapidly, with actuation strains of over 300% reported, and many application concepts demonstrated. However many DEAs are slow, exhibit large viscoelastic drift, and have short lifetimes, due principally to the use of acrylic elastomer membranes and carbon grease electrodes applied by hand. Here a DEA-driven tunable lens, the world's fastest capable of holding a stable focal length, is presented. By using low-loss silicone elastomers rather than acrylics, a settling time shorter than 175 μs is obtained for a 20% change in focal length. The silicone-based lenses show a bandwidth 3 orders of magnitude higher compared to lenses of the same geometry fabricated from the acrylic elastomer. Stretchable electrodes, a carbon black and silicone composite, are precisely patterned by pad-printing and subsequently cross-linked, enabling strong adhesion to the elastomer and excellent resistance to abrasion. The lenses operate for over 400 million cycles without degradation, and show no change after more than two years of storage. This lens demonstrates the unmatched combination of strain, speed, and stability that DEAs can achieve, paving the way for complex fast soft machines.
机译:介电弹性体执行器(DEA)是一种智能轻质柔性材料,集成了执行,传感和结构功能。 DEA领域一直在快速发展,据报道致动应力超过300%,并且已经证明了许多应用概念。但是,许多DEA速度慢,粘弹性漂移大,寿命短,这主要是由于使用了丙烯酸弹性体膜和手工施加的碳脂电极。这里介绍了DEA驱动的可调透镜,它是世界上能够保持稳定焦距的最快透镜。通过使用低损耗的有机硅弹性体而不是丙烯酸,对于20%的焦距变化,可以得到小于175μs的稳定时间。与由丙烯酸类弹性体制成的相同几何形状的镜片相比,基于有机硅的镜片显示出高3个数量级的带宽。可伸缩电极是炭黑和有机硅复合材料,可通过移印精确地进行构图,然后进行交联,从而实现与弹性体的牢固粘合并具有出色的耐磨性。这些镜片可进行超过4亿次循环而不会退化,并且在存放超过两年后仍无变化。该镜头展示了DEA可以实现的无与伦比的应变,速度和稳定性,为复杂的快速软机铺平了道路。

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  • 来源
    《Advanced Functional Materials》 |2015年第11期|1656-1665|共10页
  • 作者单位

    Microsystems for Space Technologies Laboratory Ecole Polytechnique Federale de Lausanne 2002 Neuchatel, Switzerland;

    Microsystems for Space Technologies Laboratory Ecole Polytechnique Federale de Lausanne 2002 Neuchatel, Switzerland;

    Soft Matter Artificial Muscles & Transducers Group Queen Mary University of London London, E1 4NS, UK;

    Soft Matter Artificial Muscles & Transducers Group Queen Mary University of London London, E1 4NS, UK,Beijing University of Chemical Technology Beijing, China;

    Microsystems for Space Technologies Laboratory Ecole Polytechnique Federale de Lausanne 2002 Neuchatel, Switzerland;

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