Wang Yi-Fei, Yoshida Ayako, Takeda Yasunori, Sekine Tomohito, Kumaki Daisuke, Tokito Shizuo
Research Center for Organic Electronics (ROEL), Yamagata University, 4-3-16, Jonan, Yonezawa 992-8510, Yamagata, Japan.
Sensors (Basel). 2023 May 24;23(11):5041. doi: 10.3390/s23115041.
We present a high-performance flexible bending strain sensor for directional motion detection of human hands and soft robotic grippers. The sensor was fabricated using a printable porous conductive composite composed of polydimethylsiloxane (PDMS) and carbon black (CB). The utilization of a deep eutectic solvent (DES) in the ink formulation induced a phase segregation between the CB and PDMS and led to a porous structure inside the printed films after being vapored. This simple and spontaneously formed conductive architecture provided superior directional bend-sensing characteristics compared to conventional random composites. The resulting flexible bending sensors displayed high bidirectional sensitivity (gauge factor of 45.6 under compressive bending and 35.2 under tensile bending), negligible hysteresis, good linearity (>0.99), and excellent bending durability (over 10,000 cycles). The multifunctional applications of these sensors, including human motion detection, object-shape monitoring, and robotic perceptions, are demonstrated as a proof-of-concept.
我们展示了一种用于人类手部和软机器人抓手方向运动检测的高性能柔性弯曲应变传感器。该传感器是使用由聚二甲基硅氧烷(PDMS)和炭黑(CB)组成的可印刷多孔导电复合材料制造的。在油墨配方中使用深共熔溶剂(DES)会导致CB和PDMS之间发生相分离,并在蒸发后在印刷薄膜内部形成多孔结构。与传统的随机复合材料相比,这种简单且自发形成的导电结构具有卓越的方向弯曲传感特性。由此产生的柔性弯曲传感器表现出高双向灵敏度(压缩弯曲下的应变片系数为45.6,拉伸弯曲下为35.2)、可忽略不计的滞后现象、良好的线性度(>0.99)以及出色的弯曲耐久性(超过10,000次循环)。作为概念验证,展示了这些传感器的多功能应用,包括人体运动检测、物体形状监测和机器人感知。