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Fabrication and actuation of electro-active polymer actuator based on PSMI-incorporated PVDF

机译:基于PSMI的PVDF的电活性聚合物致动器的制造和致动

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In this study, an ionic networking membrane (INM) of poly(styrene-alt-maleimide) (PSMI)-incorporated poly(vinylidene fluoride) (PVDF) was applied to fabricate electro-active polymer. Based on the same original membrane of PSMI-incorporated PVDF, various samples of INM actuator were prepared for different reduction times with the electroless-plating technique. The as-prepared INM actuators were tested in terms of surface resistance, platinum morphology, resonance frequency, tip displacement, current and blocked force, and their performances were compared to those of the widely used traditional Nafion actuator. Scanning electron microscopy (SEM) and transmission electron microscopy (TEM) revealed that much smaller and more uniform platinum particles were formed on the surfaces of the INM actuators as well as within their polymer matrix. Although excellent harmonic responses were observed for the newly developed INM actuators, they were found to be sensitive to the applied reduction times during the fabrication. The mechanical displacement of the INM actuator fabricated after the optimum reduction times was much larger than that of its Nafion counterpart of comparable thickness under the stimulus of constant and alternating current voltage. The PSMI-incorporated PVDF actuator can become a promising smart material to be used in the fields of biomimetic robots, biomedical devices, sensors and actuator, haptic interfaces, energy harvesting and so on.
机译:在这项研究中,采用聚苯乙烯-马来酰亚胺(PSMI)结合的聚偏二氟乙烯(PVDF)的离子网络膜(INM)来制备电活性聚合物。在装有PSMI的PVDF的同一原始膜的基础上,采用化学镀技术为不同的还原时间准备了各种INM执行器样品。对准备好的INM执行器进行了表面电阻,铂形态,共振频率,尖端位移,电流和阻塞力方面的测试,并将其性能与广泛使用的传统Nafion执行器进行了比较。扫描电子显微镜(SEM)和透射电子显微镜(TEM)显示,在INM致动器的表面以及它们的聚合物基体内形成了更小,更均匀的铂颗粒。尽管对于新开发的INM执行器观察到了极好的谐波响应,但发现它们对制造过程中所应用的减少时间很敏感。在恒定的和交流电压的刺激下,经过最佳的还原时间后制造的INM执行器的机械位移远大于其可比厚度的Nafion同类产品的机械位移。包含PSMI的PVDF执行器可以成为有前途的智能材料,可用于仿生机器人,生物医学设备,传感器和执行器,触觉界面,能量收集等领域。

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