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Electro-active paper for a durable biomimetic actuator

机译:用于耐用仿生执行器的电活性纸

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摘要

Cellulose electro-active paper (EAPap), known as a smart material, has merits in terms of low voltage operation, light weight, dryness, low power consumption, biodegradability, abundance and low price. Since EAPap requires low power consumption, a remotely driven actuator has been proposed using microwave power transmission. This concept is attractive for many biomimetic systems such as crawling micro-insect robots, flying objects like dragon flies and smart wallpapers. However, the actuation performance of EAPap is sensitive to humidity and degrades with time. Thus, in this paper, a durable EAPap is studied. The fabrication of EAPap is explained and the actuation performance is shown with applied electric field, frequency, humidity level and time. The fabrication process includes dissolving cellulose fibers, eliminating solvent and Li ions with a mixture of deionized water and isopropyl alcohol, washing with water, drying and coating with gold. The morphology of the fabricated EAPap is analyzed by taking scanning electron microscope images and x-ray diffractograms. The actuation performance is tested in terms of bending displacement with frequency, time and humidity level
机译:纤维素电活性纸(EAPap)被称为智能材料,在低电压操作,重量轻,干燥,低功耗,可生物降解性,丰度和价格低廉方面具有优势。由于EAPap需要低功耗,因此提出了使用微波功率传输的远程驱动执行器。这个概念对许多仿生系统很有吸引力,例如爬行的微型昆虫机器人,飞行的物体(如苍蝇)和智能墙纸。但是,EAPap的驱动性能对湿度很敏感,并且会随着时间而降低。因此,本文研究了一种持久的EAPap。解释了EAPap的制造过程,并显示了施加电场,频率,湿度水平和时间的驱动性能。制造过程包括溶解纤维素纤维,用去离子水和异丙醇的混合物消除溶剂和锂离子,用水洗涤,干燥并镀金。通过拍摄扫描电子显微镜图像和X射线衍射图分析制造的EAPap的形态。根据频率,时间和湿度水平下的弯曲位移测试驱动性能

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