Yesaswi Ch Sridhar, Sahu Santosh Kumar, Sreekanth P S Rama
School of Mechanical Engineering, VIT-AP University, Besides AP Secretariat, Amaravati 522237, Andhra Pradesh, India.
Polymers (Basel). 2022 Dec 15;14(24):5497. doi: 10.3390/polym14245497.
Ionic Polymer Metal Composites (IPMCs) are in high demand owing to the ongoing advancements in technology for various applications. New fabrication techniques and a quick retort towards the applied load are the significant reasons for considering IPMCs in smart devices. Here, a Teflon fabric-reinforced Nafion (TFRN) membrane is used to create an IPMC. The materials employed as electrodes are silver and nanofillers. The basement membrane, Nafion 438 (N-438), is sandwiched between the electrodes using a chemical decomposition technique. Subsequently, the electromechanical properties (actuation) of the membrane are tested. The micro and molecular structure of the IPMC membrane coated with Silver (Ag), Ag-Carbon nanotubes (CNTs), and Ag-Graphene nanoparticles samples are examined with the help of SEM and X-ray diffraction (XRD). The membrane scratch test is carried out to evaluate the abrasion and wear resistance of the membrane. The lowest coefficient of friction is shown by N438 + Ag + Graphene (0.05), which increased by 300% when compared to a pure N438 membrane. The hydration and tip deflection test were also performed to understand the water uptake percentage. At 90 °C, the highest water uptake was observed for N438 + Ag + Graphene (0.05), which decreased by 60, 42, 23, 14 and 26% when compared to N438, N438 + Ag, N438 + Ag + CNT (0.01), N438 + Ag + CNT (0.05) and N438 + Ag + Graphene (0.01), respectively. A proportional relationship between hydration level and tip deflection is observed and the highest bending performance is observed for the N438 + Ag + Graphene (0.05) membrane.
由于各种应用技术的不断进步,离子聚合物金属复合材料(IPMC)的需求量很大。新的制造技术以及对施加负载的快速响应是在智能设备中考虑使用IPMC的重要原因。在此,使用聚四氟乙烯织物增强的Nafion(TFRN)膜来制备IPMC。用作电极的材料是银和纳米填料。基底膜Nafion 438(N - 438)通过化学分解技术夹在电极之间。随后,测试膜的机电性能(驱动)。借助扫描电子显微镜(SEM)和X射线衍射(XRD)检查涂有银(Ag)、银 - 碳纳米管(CNT)和银 - 石墨烯纳米颗粒样品的IPMC膜的微观和分子结构。进行膜划痕试验以评估膜的耐磨性。N438 + Ag + 石墨烯的摩擦系数最低(0.05),与纯N438膜相比增加了300%。还进行了水合和尖端挠度试验以了解吸水率。在90°C时,N438 + Ag + 石墨烯(0.05)的吸水率最高,与N438、N438 + Ag、N438 + Ag + CNT(0.01)、N438 + Ag + CNT(0.05)和N438 + Ag + 石墨烯(0.01)相比,分别降低了60%、42%、23%、14%和26%。观察到水合水平与尖端挠度之间存在比例关系,并且N438 + Ag + 石墨烯(0.05)膜的弯曲性能最高。