Xu Siyi, Vogt Daniel M, Hsu Wen-Hao, Osborne John, Walsh Timothy, Foster Jonathan R, Sullivan Sarah K, Smith Vincent C, Rousing Andreas, Goldfield Eugene C, Wood Robert J
School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA.
Wyss Institute for Biologically Inspired Engineering, Harvard University, Boston, MA, 02115, USA.
Adv Funct Mater. 2019 Feb 14;29(7). doi: 10.1002/adfm.201807058. Epub 2018 Dec 6.
Fluidic soft sensors have been widely used in wearable devices for human motion capturing. However, thus far, the biocompatibility of the conductive liquid, the linearity of the sensing signal, and the hysteresis between the loading and release processes have limited the sensing quality as well as the applications of these sensors. In this paper, silicone based strain and force sensors composed of a novel biocompatible conductive liquid (potassium iodide and glycerol solution) are introduced. The strain sensors exhibit negligible hysteresis up to 5 Hz, with a gauge factor of 2.2 at 1 Hz. The force sensors feature a novel multi-functional layered structure, with micro-cylinder-filled channels to achieve high linearity, low hysteresis (5.3% hysteresis at 1 Hz), and good sensitivity (100% resistance increase at a 5 N load). The sensors' gauge factors are stable at various temperatures and humidity levels. These bio-compatible, low hysteresis, and high linearity sensors are promising for safe and reliable diagnostic devices, wearable motion capture, and compliant human-computer interfaces.
流体软传感器已广泛应用于可穿戴设备中的人体运动捕捉。然而,到目前为止,导电液体的生物相容性、传感信号的线性以及加载和释放过程之间的滞后现象限制了这些传感器的传感质量及其应用。本文介绍了由新型生物相容性导电液体(碘化钾和甘油溶液)组成的硅基应变和力传感器。应变传感器在高达5Hz时滞后可忽略不计,在1Hz时应变片系数为2.2。力传感器具有新颖的多功能分层结构,带有微圆柱填充通道,以实现高线性、低滞后(1Hz时滞后5.3%)和良好的灵敏度(5N负载下电阻增加100%)。传感器的应变片系数在各种温度和湿度水平下都很稳定。这些生物相容性好、低滞后且高线性的传感器有望用于安全可靠的诊断设备、可穿戴运动捕捉和柔顺人机接口。