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In-plane strain capability of cellulose EAPap material

机译:纤维素EAPap材料的面内应变能力

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摘要

Electro-Active Paper (EAPap) has been interested in due to its merits in terms of lightweight, dry condition, large displacement output, low actuation voltage, low power consumption and biodegradability. EAPap actuator has been made with cellulose material. Cellulose fibers are dissolved into a solution and extruded in a sheet form, and thin gold electrodes are made on it. This out-of-plane bending deformation is useful for achieving flapping wings, micro-insect robots, and smart wall papers. On the other hand, in-plane strains, such as extension and contraction of EAPap materials are also promising for artificial muscle applications since the Young's modulus of EAPap materials is large. Therefore, we intended to investigate the in-plane strain of EAPap materials in the presence of electric fields. The EAPap samples preparation and the in-plane strain measurement are explained. The test results are shown in terms of electric field, frequency and the orientation of the samples. The power consumption and the strain energy of EAPap samples are discussed. Although there are still unknown facts in EAPap materials, this in-plane strain may be useful for artificial muscle applications.
机译:电活性纸(EAPap)的优势在于重量轻,干燥,输出功率大,驱动电压低,功耗低和可生物降解性。 EAPap执行器由纤维素材料制成。将纤维素纤维溶解在溶液中,然后挤压成片状,并在其上制作薄的金电极。这种平面外弯曲变形对于实现拍打翅膀,微型昆虫机器人和智能墙纸非常有用。另一方面,由于EAPap材料的杨氏模量很大,因此平面应变(例如EAPap材料的拉伸和收缩)也有望用于人造肌肉。因此,我们打算研究在电场存在下EAPap材料的平面应变。解释了EAPap样品的制备和面内应变测量。测试结果以电场,频率和样品的方向表示。讨论了EAPap样本的功耗和应变能。尽管EAPap材料中仍存在未知的事实,但这种面内应变可能对人造肌肉的应用有用。

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