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Carbon nanotube -coated electro-active paper(EAPap) as hybrid high-displacement actuator

机译:碳纳米管涂层电活性纸(EAPap)作为混合高位移促动器

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Electro-Active Paper (EAPap) has been investigated as an attractive EAP material for artificial muscles due to its many advantages such as lightweight, availability, low cost, large displacement output, low actuation voltage and low power consumption. The EAPap is based on cellulose material, and is shown to involve primarily transport of ions in response to an external electric field. Depending on the electrode material, EAPap has shown actuation displacement in the range of 2-4mm, at a few volts. Drawbacks of EAPap actuators include a low force output and a dependence on humidity. To address these limitations, a hybrid EAPap actuator is developed by incorporating an electrode fabricated using single-wall carbon nanotubes (SWNT)/Polyaniline (PANI) with different dopants. SWNT is dispersed in 1-Methy-2-pyrrolidone (NMP), and the resulting solution is used as a solvent for PANI and the various dopants. The SWNT/PANI/NMP solution is then deposited on the EAPap by spin coating. The coated EAPap is dried in a vacuum oven. Raman spectroscopy, X-Ray diffractometry and SEM tests are taken to confirm that the SWNT/PAN I/dopant electrode material is successfully prepared by in situ polymerization. The actuation output of the SWNT/P ANI/EAPap samples is tested in an environmental chamber in terms of free displacement and blocked force. When the SWNT/PANI/Cl~- coated hybrid actuator is excited with 7Vp-p, a maximum displacement of 3.1mm and a maximum power output of 0.29mW are obtained. The hybrid actuator shows an improved actuation force as a result of enhanced stiffness of EAPap.
机译:电活性纸(EAPap)具有许多优点,例如重量轻,实用性强,成本低,输出功率大,驱动电压低,功耗低等,因此已被研究用作人造肌肉的EAP材料。 EAPap基于纤维素材料,并显示主要涉及响应外部电场的离子传输。根据电极材料的不同,EAPap在几伏特下的致动位移范围为2-4mm。 EAPap执行器的缺点包括输出力低和对湿度的依赖性。为了解决这些限制,通过结合使用单壁碳纳米管(SWNT)/聚苯胺(PANI)和不同掺杂剂制造的电极来开发混合EAPap致动器。 SWNT分散在1-Methy-2-吡咯烷酮(NMP)中,所得溶液用作PANI和各种掺杂剂的溶剂。然后通过旋涂将SWNT / PANI / NMP溶液沉积在EAPap上。涂覆的EAPap在真空烘箱中干燥。进行拉曼光谱,X射线衍射和SEM测试以确认SWNT / PAN I /掺杂电极材料是通过原位聚合成功制备的。 SWNT / P ANI / EAPap样品的驱动输出在环境室中根据自由位移和阻塞力进行测试。当SWNT / PANI / Cl〜涂层的混合执行器以7Vp-p激励时,最大位移为3.1mm,最大功率输出为0.29mW。混合动力执行器由于EAPap刚度提高而显示出更高的执行力。

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