Department of Mechanical Engineering, University of Nevada, Las Vegas, 4505 Maryland Parkway, Las Vegas, Nevada, 89154, United States.
Sci Rep. 2019 Jul 4;9(1):9658. doi: 10.1038/s41598-019-46147-2.
A transparent and electroactive plasticized polyvinyl chloride (PVC) gel was investigated to use as a soft actuator for artificial muscle applications. PVC gels were prepared with varying plasticizer (dibutyl adipate, DBA) content. The prepared PVC gels were characterized using Fourier-transform infrared spectroscopy, thermogravimetric analysis, and dynamic mechanical analysis. The DBA content in the PVC gel was shown to have an inverse relationship with both the storage and loss modulus. The electromechanical performance of PVC gels was demonstrated for both single-layer and stacked multi-layer actuators. When voltage was applied to a single-layer actuator and then increased, the maximum displacement of PVC gels (for PVC/DBA ratios of 1:4, 1:6, and 1:8) was increased from 105.19, 123.67, and 135.55 µm (at 0.5 kV) to 140.93, 157.13, and 172.94 µm (at 1.0 kV) to 145.03, 191.34, and 212.84 µm (at 1.5 kV), respectively. The effects of graphene oxide (GO) addition in the PVC gel were also investigated. The inclusion of GO (0.1 wt.%) provided an approximate 20% enhancement of displacement and 41% increase in force production, and a 36% increase in power output for the PVC/GO gel over traditional plasticizer only PVC gel. The proposed PVC/GO gel actuator may have promising applications in artificial muscle, small mechanical devices, optics, and various opto-electro-mechanical devices due to its low-profile, transparency, and electrical response characteristics.
研究了一种透明的电活性增塑聚氯乙烯(PVC)凝胶,用作人工肌肉应用的软致动器。使用不同的增塑剂(己二酸二丁酯,DBA)含量制备 PVC 凝胶。使用傅里叶变换红外光谱、热重分析和动态力学分析对制备的 PVC 凝胶进行了表征。PVC 凝胶中的 DBA 含量与存储和损耗模量均呈反比关系。展示了单层和堆叠多层致动器的 PVC 凝胶的机电性能。当电压施加到单层致动器并增加时,PVC 凝胶(对于 PVC/DBA 比为 1:4、1:6 和 1:8)的最大位移从 105.19、123.67 和 135.55 µm(在 0.5 kV 时)增加到 140.93、157.13 和 172.94 µm(在 1.0 kV 时)增加到 145.03、191.34 和 212.84 µm(在 1.5 kV 时)。还研究了在 PVC 凝胶中添加氧化石墨烯(GO)的效果。GO(0.1wt%)的加入使 PVC/GO 凝胶的位移提高了约 20%,力的产生增加了 41%,功率输出增加了 36%,而传统的仅含增塑剂的 PVC 凝胶。由于其低轮廓、透明和电响应特性,所提出的 PVC/GO 凝胶致动器可能在人工肌肉、小型机械装置、光学和各种光电机械装置中有应用前景。