Faculty of Symbiotic Systems Sciences, Fukushima University, 1 Kanayagawa, Fukushima 960-1296, Japan.
Institute of Innovative Research, Tokyo Institute of Technology, 2-12-1 Ookayama, Meguro-ku, Tokyo 152-8550, Japan.
Sensors (Basel). 2019 Feb 8;19(3):689. doi: 10.3390/s19030689.
As per sequential studies on new types of soft rubber for the artificial skin of robots, smart sensors, etc., we have proposed and investigated hybrid skin (H-Skin) and haptic sensors by using magnetic compound fluid (MCF), compounding natural rubber latex (NR-latex), and applying electric and magnetic fields. Through electrolytic polymerization, the MCF rubber is solidified. The MCF rubber has hybrid sensing functions and photovoltaic effects, and electric charge as battery. In case of the production of soft rubber sensors, however, the problem of adhesion between metal electrodes and rubber is very important. In the present study, we propose a novel adhesive technique for bonding the metal electrodes and MCF rubber by using metallic or non-metallic hydrous oxide, which is a metal complex, via electrolytic polymerization. The anionic radical hydrate reacts with the isoprene molecules of NR-latex or chloroprene rubber latex (CR-latex) such that they are cross-linked and the MCF rubber with the hydrate is solidified, which can be represented via a chemical reaction equation. By means of this adhesive technique, we presented five cases of sensors fabricated using metal electrodes and rubbers. This technique is applicable for novel cohesion between rubber and metal.
针对新型软橡胶在机器人的人工皮肤、智能传感器等领域的应用,我们提出并研究了通过使用磁复合流体(MCF)、复合天然橡胶乳胶(NR-乳胶)并施加电场和磁场的混合皮肤(H-Skin)和触觉传感器。通过电解聚合,MCF 橡胶被固化。MCF 橡胶具有混合传感功能和光电效应,并且可以像电池一样充电。然而,在软橡胶传感器的生产中,金属电极和橡胶之间的粘附问题非常重要。在本研究中,我们提出了一种通过使用金属复合水合氧化物作为金属复合物,通过电解聚合将金属电极和 MCF 橡胶粘合的新型粘合技术。阴离子自由基水合物与 NR-乳胶或氯丁橡胶乳胶(CR-乳胶)的异戊二烯分子反应,从而使它们交联,并且带水合物的 MCF 橡胶被固化,可以通过化学反应式表示。通过这种粘合技术,我们展示了使用金属电极和橡胶制造的五种传感器案例。该技术适用于橡胶和金属之间的新型结合。