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Lightweight mechanical amplifiers for rolled dielectric elastomer actuators and their integration with bioinspired wing flappers

机译:轻型机械放大器,用于滚动式介电弹性体执行器,并与生物启发的机翼襟翼集成

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Dielectric elastomer actuators (DEAs) are attractive for use in bio-inspired flapping-wing robots because they have high work density (specific energy) and can produce a large actuation strain. Although the active membrane of a dielectric elastomer is lightweight, the support structure that pre-tensions the elastomeric membrane is massive and it lowers the overall work density. If the DEA is to be used successfully to drive flapping-wing robots, its support structure must be as lightweight as possible. In this work, we designed, analysed, and developed a lightweight shell using a cross-ply laminate of carbon fibre reinforced polymer (CFRP) to pre-strain a rolled DEA. The CFRP shell was shown to weigh 24.3% of the total mass for the whole DEA assembly, while providing up to 35.0% axial pre-strain to a rolled DEA (BJB-5005 silicone rubber). This DEA assembly using the CFRP shell achieved 30.9% of the theoretical work density for a BJB-TC5005 membrane at 33:5 MV m~(-1). In comparison, spring rolls with a massive spring core were reported with overall work density merely 10-20% of the maximum value. Furthermore, this CFRP shell can amplify an axial DEA stroke into a larger transverse shell deformation. With these deformation characteristics, this CFRP shell and a rolled DEA were successfully integrated with an insect-inspired thoracic mechanism and they were shown to be feasible to drive it for a flapping wing.
机译:介电弹性体执行器(DEAs)具有很高的工作密度(比能),并且会产生很大的启动应变,因此很受生物启发的扑翼机器人的欢迎。尽管介电弹性体的活性膜很轻,但预拉伸弹性膜的支撑结构却很大,并且降低了整体工作密度。如果要成功地使用DEA来驱动襟翼机器人,则其支撑结构必须尽可能轻巧。在这项工作中,我们使用碳纤维增强聚合物(CFRP)的交叉层压材料对卷材DEA进行预应变,设计,分析和开发了轻巧的外壳。对于整个DEA组件,CFRP外壳的重量占总质量的24.3%,同时对轧制DEA(BJB-5005硅橡胶)提供高达35.0%的轴向预应变。这种使用CFRP外壳的DEA组件在33:5 MV m〜(-1)时达到BJB-TC5005膜理论功密度的30.9%。相比之下,据报道具有大弹簧芯的弹簧辊的总功密度仅为最大值的10-20%。此外,该CFRP壳体可将轴向DEA冲程放大为较大的横向壳体变形。具有这些变形特性,此CFRP壳体和轧制DEA已成功地与昆虫启发性的胸腔机制集成在一起,并被证明可以驱动其拍打机翼。

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