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Electrically Controllable Biomimetic Actuators Made with Multiwalled Carbon Nanotube(MWNT) Loaded lonomeric Nanocomposites

机译:碳纳米管负载多壁纳米复合材料制成的电控仿生作动器

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摘要

Biomimetic actuators that can produce soft-actuation but large force generation capability are of interest. Nafion, an effective ionomeric material from DuPont, has been shown to produce large deformation under low electric fields (< 10V/mm). This response is caused by a direct electro-osmotic effect due to the existence and mobility of cations and subsequent swelling and deswelling of the material. In this effort, multiwalled carbon nanotube (MWNT)/Nafion nanocomposites were prepared by a casting in order to investigate the effect of MWNT loading in the range of 0 to 7 wt% on electromechanical properties of the MWNT/Nafion nanocomposites. The measured elastic modulus and actuation force of the MWNT/Nafion nanocomposites are drastically different, showing larger elastic modulus and improved electromechanical coupling, from the one without MWNT, implying that the effective MWNT loading is crucial to develop high-performance biomimetic actuators.
机译:可以产生软致动但产生力大的仿生致动器引起人们的兴趣。 Nafion是杜邦公司生产的一种有效的离聚物材料,在低电场(<10V / mm)下会产生较大的变形。该反应是由于阳离子的存在和迁移以及随后材料的溶胀和溶胀而引起的直接电渗透作用引起的。在此努力中,通过浇铸制备了多壁碳纳米管(MWNT)/ Nafion纳米复合材料,以研究MWNT负载量在0至7 wt%范围内对MWNT / Nafion纳米复合材料的机电性能的影响。测得的MWNT / Nafion纳米复合材料的弹性模量和驱动力有很大的不同,与没有MWNT的相比,显示出更大的弹性模量和改善的机电耦合,这意味着有效的MWNT负载对于开发高性能仿生执行器至关重要。

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