Department of Mechanical and Intelligent Systems Engineering, The University of Electro-Communications, 1-5-1 Chofugaoka, Chofu, Tokyo, 182-8585, Japan.
Polymer Laboratory, Science and Innovation Center, Mitsubishi Chemical Co., Ltd., 1000 Kamoshida-cho, Aoba-ku, Yokohama-shi, Kanagawa, 227-8502, Japan.
Sci Rep. 2022 Dec 30;12(1):22608. doi: 10.1038/s41598-022-27226-3.
This paper presents a pump using polyvinyl chloride (PVC) gel. PVC gels are compliant, have a simple structure, and exhibit large deformation at voltages in the range of 100-1000 V, which make them suitable for micropumps. In this study, a PVC gel sheet with a surface pattern that enhances active deformation in the thickness direction was employed for the fabrication of a pump. To this end, the PVC gel sheet was sandwiched between three sets of anode and cathode electrodes, after which voltages were sequentially applied to these electrodes to generate a peristaltic deformation of the gel sheet, thus pushing the liquid and creating a one-directional flow. Various pumps were fabricated using PVC gel sheets with different surface patterns, and the pumps were characterized. The pumps exhibited an outline dimension of 35 mm × 25 mm with a thickness of 4 mm, corresponding to a total volume of 3.5 × 10 mm. The results revealed that the pump fabricated using a 174-μm-high pyramid-patterned gel sheet generated a flow rate of 224.1 µL/min at an applied voltage of 800 V and a driving frequency of 3 Hz. This observed value is comparable to or better than those of existing pumps based on smart materials.
本文提出了一种使用聚氯乙烯(PVC)凝胶的泵。PVC 凝胶具有柔韧性、结构简单的特点,在 100-1000V 的电压范围内可发生较大变形,非常适合用于微泵。在这项研究中,使用了具有增强厚度方向主动变形表面图案的 PVC 凝胶片来制造泵。为此,将 PVC 凝胶片夹在三组阳极和阴极电极之间,然后对这些电极施加顺序电压,以产生凝胶片的蠕动变形,从而推动液体并产生单向流动。使用具有不同表面图案的 PVC 凝胶片制造了各种泵,并对这些泵进行了表征。这些泵的外形尺寸为 35mm×25mm,厚度为 4mm,总容积为 3.5×10mm。结果表明,在 800V 的外加电压和 3Hz 的驱动频率下,使用 174μm 高的金字塔图案化凝胶片制造的泵可产生 224.1µL/min 的流量。这一观察值与基于智能材料的现有泵相当或更好。